Apparatus (variants) and system and for providing dental diagnosis, method for dental diagnosis (variants)
Abstract
An apparatus, a system and a method are provided for providing a dental diagnosis and/or a dental appliance to a user by examining a portion of a mouth of the user. To this end, the apparatus, system and method evaluate images whether digital, still, video, digital x-ray or the like, of the portion of the mouth to determine if a medical condition may be cured and/or corrected by a dental appliance stored within a machine and capable of being dispensed from the machine. The apparatus, system and method may evaluate the condition of a user from images of a single tooth. Moreover, evaluation of the images may be performed by the central processing unit of the apparatus or by an outside source, by having the images transmitted via, for example, the internet, electronic mail, telephony, satellite, or other means, to another computer or individual. The user may also take images of his mouth while positioning a ruler or other measuring device adjacent to the mouth. The images may then be transmitted to an individual and/or a central processing unit for diagnosis. In addition, the system may provide a wafer or tray, which the user may position in his mouth to make an impression. The wafer or tray, or an image of the wafer or tray, may then be sent to an individual and/or a central processing unit. In addition, a user may position a film within his mouth and transmit the film or an image of the film to an individual and/or central processing unit.
Term
No projected expiry on record.
- Priority
- Filed
- Granted
- Today
54 claims: 24 independent, 30 dependent
- 1Пристрій для встановлення діагнозу ортодонтичного стану користувача і відпуску одного з великої кількості стоматологічних допоміжних пристроїв, що мають різні розміри, які носять у ротовій порожнині користувачі, в якому частина з великої кількості стоматологічних допоміжних пристроїв, що мають різні розміри, знаходиться у межах кожного з трьох ортодонтичних станів, причому пристрій містить пристрій для захоплення зображення, причому пристрій для захоплення зображення одержує зображення частини ротової порожнини користувача і формує сигнал, що показує зображення;і центральний блок обробки даних, запрограмований даними, які відносяться до ортодонтичних станів, причому центральний блок обробки даних класифікує сигнал, що посилається пристроєм для захоплення зображення, відносячи його до одного з трьох ортодонтичних станів, причому один з трьох стоматологічних допоміжних пристроїв, що мають різні розміри, відпускається з врахуванням ортодонтичного стану користувача.
- 2Пристрій за п. 1, який відрізняється тим, що додатково містить:блок введення для введення інформації у центральний блок обробки даних.
- 3Пристрій за п. 1, який відрізняється тим, що додатково містить:пристрій платежу, запрограмований для одержання платежу від користувача.
- 4Пристрій за п.1, який відрізняється тим, що зображення частини ротової порожнини користувача являє собою зображення одного зуба користувача.
- 5Пристрій за п.1, який відрізняється тим, що центральний блок обробки даних розташований на відстані від пристрою для захоплення зображення.
- 6Пристрій за п.1, який відрізняється тим, що частина ротової порожнини користувача проходить від середньої лінії набору зубів користувача до задньої частини внутрішньої ділянки ротової порожнини користувача.
- 7Пристрій для встановлення діагнозу ортодонтичного стану користувача, причому пристрій містить пристрій для захоплення зображення, причому пристрій для захоплення зображення одержує зображення частини ротової порожнини користувача і формує сигнал, що показує зображення;і центральний блок обробки даних, запрограмований даними, які відносяться до ортодонтичних станів, причому центральний блок обробки даних забезпечує користувачеві діагноз ортодонтичного стану користувача на основі зображення, одержаного пристроєм для захоплення зображення, причому частина ротової порожнини користувача являє собою один зуб користувача.
- 8Пристрій за п.7, який відрізняється тим, що додатково містить:блок введення для введення інформації у центральний блок обробки даних.
- 9Пристрій за п.7, який відрізняється тим, що додатково містить:пристрій платежу, запрограмований для одержання платежу від користувача.
- 10Пристрій за п. 7, який відрізняється тим, що центральний блок обробки даних, запрограмований даними, які відносяться до ортодонтичних станів, при цьому вказаний центральний блок обробки даних забезпечує класифікацію сигналу, направленого пристроєм для захоплення зображення на велику кількість ортодонтичних станів.
- 11Пристрій за п.7, який відрізняється тим, що центральний блок обробки даних розташований на відстані від пристрою для захоплення зображення.
- 12Пристрій для встановлення діагнозу ортодонтичного стану користувача, причому пристрій містить пристрій для захоплення зображення, при цьому пристрій для захоплення зображення одержує зображення частини ротової порожнини користувача, причому частина ротової порожнини користувача проходить від середньої лінії набору зубів користувача до задньої частини внутрішньої ділянки ротової порожнини користувача, причому пристрій для захоплення зображення одержує зображення частини ротової порожнини користувача і формує сигнал, що показує зображення;і центральний блок обробки даних, запрограмований даними, які відносяться до ортодонтичних станів, причому центральний блок обробки даних класифікує сигнал, що посилається пристроєм для захоплення зображення, на велику кількість ортодонтичних станів.
- 13Пристрій за п.12, який відрізняється тим, що додатково містить:блок введення для введення інформації у центральний блок обробки даних.
- 14Пристрій за п. 12, який відрізняється тим, що додатково містить:пристрій для платежу, запрограмований для одержання платежу від користувача.
- 15Пристрій за п.12, який відрізняється тим, що центральний блок обробки даних розташований на відстані від пристрою для захоплення зображення.
- 16Система для встановлення діагнозу ортодонтичного стану користувача, причому система містить пристрій, що має пристрій для захоплення зображення, причому пристрій для захоплення зображення одержує зображення частини ротової порожнини користувача, причому пристрій додатково має пристрій для передачі даних, який передає сигнал, що показує зображення;і центральний блок обробки даних, розташований на відстані від пристрою, запрограмованого статистичними даними, які відносяться до ортодонтичних станів, причому центральний блок обробки даних з'єднаний з пристроєм і одержує сигнал від пристрою, і при цьому центральний блок обробки даних класифікує сигнал, що посилається пристроєм для захоплення зображення, на один з великої кількості ортодонтичних станів.
- 17Система за п.16, яка відрізняється тим, що додатково містить блок введення для введення інформації у пристрій для передачі даних.
- 18Система за п.16, яка відрізняється тим, що додатково містить пристрій платежу, запрограмований для одержання платежу від користувача.
- 19Система за п.16, яка відрізняється тим, що центральний блок обробки даних запрограмований даними, які відносяться до ортодонтичних станів, причому центральний блок обробки даних класифікує сигнал, що посилається пристроєм для захоплення зображення, на велику кількість ортодонтичних станів.
- 20Система за п.16, яка відрізняється тим, що центральний блок обробки даних запрограмований для здійснення діагностування ортодонтичного стану користувача, враховуючи вік користувача.
- 21Система за п.16, яка відрізняється тим, що частина ротової порожнини користувача являє собою один зуб користувача.
- 22Спосіб встановлення діагнозу ортодонтичного стану користувача, причому спосіб включає наступні етапи:забезпечення одного з великої кількості стоматологічних допоміжних пристроїв, що мають різні розміри, причому один з стоматологічних допоміжних пристроїв носять у ротовій порожнині користувачі;забезпечення пристрою для захоплення зображення, причому пристрій для захоплення зображення одержує зображення частини ротової порожнини користувача і формує сигнал, що показує зображення;забезпечення центрального блока обробки даних, запрограмованого даними, які відносяться до ортодонтичних станів, причому центральний блок обробки даних класифікує сигнал, що посилається пристроєм для захоплення зображення, на один з трьох ортодонтичних станів, визначених діапазонами у межах одного ортодонтичного стану, причому частина кожного з великої кількості стоматологічних допоміжних пристроїв, що мають розміри, укладається у межі кожного з трьох ортодонтичних станів;одержання зображення частини ротової порожнини користувача;і передачі зображення у центральний блок обробки даних.
- 23Спосіб за п.22, який відрізняється тим, що зображення частини ротової порожнини користувача являє собою зображення одного зуба користувача.
- 24Спосіб за п.22, який відрізняється тим, що центральний блок обробки даних розташований на відстані від пристрою для захоплення зображення.
- 25Спосіб за п.22, який відрізняється тим, що частина ротової порожнини проходить від одного зуба користувача до середньої лінії користувача.
- 26Спосіб встановлення діагнозу ортодонтичного стану користувача, причому спосіб включає наступні етапи:забезпечення пристрою для захоплення зображення, причому пристрій для захоплення зображення одержує зображення частини ротової порожнини користувача і формує сигнал, що показує зображення;забезпечення центрального блока обробки даних, запрограмованого даними, які відносяться до ортодонтичних станів, причому центральний блок обробки даних представляє користувачеві діагноз ортодонтичного стану користувача на основі сигналу, що передається пристроєм для захоплення зображення;одержання зображення частини ротової порожнини користувача, причому частина ротової порожнини користувача являє собою один зуб користувача;і передачі зображення у центральний блок обробки даних.
- 27Спосіб за п.26, який відрізняється тим, що центральний блок обробки даних запрограмований даними, які відносяться до ортодонтичних станів, причому центральний блок обробки даних класифікує сигнал, що посилається пристроєм для захоплення зображення, на велику кількість ортодонтичних станів.
- 28Спосіб за п.26, який відрізняється тим, що центральний блок обробки даних розташований на відстані від пристрою для захоплення зображення.
- 29Спосіб встановлення діагнозу ортодонтичного стану користувача, причому спосіб включає наступні етапи:забезпечення пристрою, що має пристрій для захоплення зображення, причому пристрій для захоплення зображення одержує зображення частини ротової порожнини користувача, причому пристрій додатково має пристрій для передачі даних, здатний передавати сигнал, що показує зображення, або набір даних користувача у центральний блок обробки даних;забезпечення центрального блока обробки даних, розташованого на відстані від пристрою, запрограмованого статистичними даними, які відносяться до ортодонтичних станів;одержання зображення частини ротової порожнини користувача;і передачі зображення у центральний блок обробки даних, причому центральний блок обробки даних класифікує сигнал, який посилається пристроєм для захоплення зображення, на один з великої кількості ортодонтичних станів.
- 30Спосіб за п.29, який відрізняється тим, що частина ротової порожнини користувача являє собою один зуб користувача.
- 31Спосіб за п.29, який відрізняється тим, що частина ротової порожнини користувача проходить від середньої лінії набору зубів користувача до задньої частини внутрішньої ділянки ротової порожнини користувача.
- 32Спосіб за п.29, який відрізняється тим, що центральний блок обробки даних запрограмований для здійснення діагностування ортодонтичного стану користувача, враховуючи вік користувача.
- 33Спосіб за п.29, який відрізняється тим, що центральний блок обробки даних запрограмований даними, які відносяться до ортодонтичних станів, причому центральний блок обробки даних класифікує сигнал, що посилається пристроєм для захоплення зображення, на велику кількість ортодонтичних станів.
- 34Спосіб встановлення діагнозу ортодонтичного стану користувача, причому спосіб включає наступні етапи:забезпечення пристрою для захоплення зображення, причому пристрій для захоплення зображення одержує зображення частини ротової порожнини користувача, причому частина ротової порожнини користувача проходить від середньої лінії набору зубів користувача до задньої частини внутрішньої ділянки ротової порожнини користувача, причому пристрій для захоплення зображення формує сигнал, що показує зображення;забезпечення центрального блока обробки даних, запрограмованого даними, які відносяться до ортодонтичних станів, причому центральний блок обробки даних забезпечує користувачеві діагноз ортодонтичного стану користувача на основі сигналу, що передається пристроєм для захоплення зображення;одержання зображення частини ротової порожнини користувача, причому частина ротової порожнини являє собою один зуб користувача;і передачі зображення у центральний блок обробки даних.
- 35Спосіб за п.34, який відрізняється тим, що центральний блок обробки даних запрограмований даними, які відносяться до ортодонтичних станів, причому центральний блок обробки даних класифікує сигнал, що посилається пристроєм для захоплення зображення, на велику кількість ортодонтичних станів.
- 36Спосіб за п.34, який відрізняється тим, що центральний блок обробки даних розташований на відстані від пристрою для захоплення зображення.
- 37Пристрій для встановлення діагнозу ортодонтичного стану користувача, причому пристрій містить блок введення даних, який приймає дані, що вводяться, у вигляді віку користувача;і центральний блок обробки даних, запрограмований даними, які відносяться до ортодонтичних станів, причому центральний блок обробки даних діагностує ортодонтичний стан користувача, враховуючи тільки вік користувача.
- 38Пристрій за п.37, який відрізняється тим, що центральний блок обробки даних розташований на відстані від пристрою для захоплення зображення.
- 39Спосіб встановлення діагнозу ортодонтичного стану користувача, причому спосіб включає наступні етапи:забезпечення блока введення даних;здійснення введення віку користувача у блок введення даних;забезпечення центрального блока обробки даних, що запрограмований даними, які відносяться до ортодонтичних станів, і приймає інформацію від блока введення даних;і встановлення діагнозу ортодонтичного стану користувача, враховуючи тільки вік користувача.
- 40Спосіб за п.39, який відрізняється тим, що центральний блок обробки даних розташований на відстані від пристрою для захоплення зображення.
- 41Пристрій для встановлення діагнозу ортодонтичного стану користувача, причому пристрій містить пристрій для захоплення зображення, прикріплений до стрижня з можливістю переміщення на стрижні, причому пристрій для захоплення зображення одержує зображення частини ротової порожнини користувача і формує сигнал, що показує зображення;і центральний блок обробки даних, запрограмований даними, які відносяться до ортодонтичних станів, причому центральний блок обробки даних одержує сигнал, що посилається пристроєм для захоплення зображення, і класифікує сигнал на велику кількість ортодонтичних станів.
- 42Пристрій за п.41, який відрізняється тим, що центральний блок обробки даних розташований на відстані від пристрою для захоплення зображення.
- 43Пристрій за п.41, який відрізняється тим, що зображення являє собою зображення одного зуба користувача.
- 44Пристрій за п.41, який відрізняється тим, що зображення проходить від середньої лінії набору зубів користувача до задньої частини внутрішньої ділянки ротової порожнини користувача.
- 45Спосіб встановлення діагнозу ортодонтичного стану користувача, причому спосіб включає наступні етапи:забезпечення відбиткового зліпка;забезпечення центрального блока обробки даних, запрограмованого даними, які відносяться до ортодонтичних станів;розташування відбиткового зліпка всередині ротової порожнини користувача і виготовлення відбитка зуба користувача;захоплення зображення відбиткового зліпка;і передачі зображення відбиткового зліпка у центральний блок обробки даних.
- 46Спосіб встановлення діагнозу ортодонтичного стану користувача, причому спосіб включає наступні етапи:забезпечення плівки;забезпечення центрального блока обробки даних, запрограмованого даними, які відносяться до ортодонтичних станів;розташування плівки всередині ротової порожнини користувача і виготовлення відбитка зуба користувача;захоплення зображення плівки;і передачі зображення плівки у центральний блок обробки даних.
- 47Спосіб встановлення діагнозу ортодонтичного стану ротової порожнини користувача, причому спосіб включає наступні етапи:забезпечення центрального блока обробки даних, запрограмованого даними, які відносяться до ортодонтичних станів;забезпечення пристрою для захоплення зображення, причому пристрій для захоплення зображення одержує зображення частини ротової порожнини користувача;передачі зображення частини ротової порожнини користувача у центральний блок обробки даних;і зміни зображення для поправки на неправильне змикання щелеп користувача.
- 48Спосіб встановлення діагнозу ортодонтичного стану користувача, причому спосіб включає наступні етапи:забезпечення відбиткової ложки;забезпечення центрального блока обробки даних, запрограмованого даними, які відносяться до ортодонтичних станів;розташування відбиткової ложки всередині ротової порожнини користувача і виготовлення відбитка зуба користувача;захоплення зображення відбиткової ложки;і передачі зображення відбиткової ложки у центральний блок обробки даних.
- 49Пристрій для встановлення діагнозу ортодонтичного стану користувача, причому пристрій містить пристрій для захоплення зображення, причому пристрій для захоплення зображення одержує зображення частини ротової порожнини користувача і формує сигнал, що показує зображення;фокусувальний пристрій, за допомогою якого пристрій для захоплення зображення здатний проводити фокусування;і центральний блок обробки даних, запрограмований даними, які відносяться до ортодонтичних станів, і додатково запрограмований для здійснення діагностики ортодонтичного стану користувача на основі відстані між фокусувальним пристроєм і користувачем.
- 50Спосіб встановлення діагнозу ортодонтичного стану користувача, причому спосіб включає наступні етапи:забезпечення пристрою для захоплення зображення, причому пристрій для захоплення зображення одержує зображення частини ротової порожнини користувача і формує сигнал, що показує зображення;забезпечення фокусувального пристрою, за допомогою якого пристрій для захоплення зображення здатний здійснювати фокусування;забезпечення центрального блока обробки даних, запрограмованого даними, які відносяться до ортодонтичних станів, і додатково запрограмованого для діагностики ортодонтичного стану користувача на основі відстані між фокусувальним пристроєм і користувачем;здійснення розташування фокусувального пристрою у напрямі до ротової порожнини користувача;одержання зображення частини ротової порожнини користувача;і здійснення передачі зображення у центральний блок обробки даних.
- 51Спосіб встановлення діагнозу ортодонтичного стану користувача, причому спосіб включає наступні етапи:забезпечення відбиткового зліпка;забезпечення пристрою для захоплення зображення, причому пристрій для захоплення зображення одержує зображення і формує сигнал, що показує зображення;забезпечення центрального блока обробки даних, розташованого на відстані від пристрою для захоплення зображення, запрограмованого даними, які відносяться до ортодонтичних станів;розташування відбиткового зліпка всередині ротової порожнини користувача і виготовлення відбитка зуба користувача;захоплення зображення відбиткового зліпка;і передачі зображення відбиткового зліпка у центральний блок обробки даних.
- 52Спосіб встановлення діагнозу ортодонтичного стану користувача, причому спосіб включає наступні етапи:забезпечення відбиткової ложки;забезпечення пристрою для захоплення зображення, причому пристрій для захоплення зображення одержує зображення і формує сигнал, що показує зображення;забезпечення центрального блока обробки даних, розташованого на відстані від пристрою для захоплення зображення, і запрограмованого даними, які відносяться до ортодонтичних станів;розташування відбиткової ложки всередині ротової порожнини користувача і виготовлення відбитка зуба користувача;захоплення зображення відбиткової ложки;і передачі зображення відбиткової ложки у центральний блок обробки даних.
- 53Спосіб встановлення діагнозу ортодонтичного стану користувача, причому спосіб включає наступні етапи:забезпечення пристрою для одержання відбитка, здатного одержати відбиток зуба користувача;забезпечення пристрою для захоплення зображення, причому пристрій для захоплення зображення одержує зображення і формує сигнал, що показує зображення;забезпечення центрального блока обробки даних, запрограмованого даними, які відносяться до ортодонтичних станів;розташування пристрою для одержання відбитка всередині ротової порожнини користувача і виготовлення відбитка зуба користувача;захоплення зображення пристрою для одержання відбитка;і передачі зображення пристрою для одержання відбитка у центральний блок обробки даних.
- 54Спосіб встановлення діагнозу ортодонтичного стану користувача, причому спосіб включає наступні етапи:забезпечення пристрою для одержання відбитка, здатного одержати відбиток зуба користувача;забезпечення пристрою для захоплення зображення, причому пристрій для захоплення зображення одержує зображення і формує сигнал, що показує зображення;забезпечення центрального блока обробки даних, розташованого на відстані від пристрою для захоплення зображення і запрограмованого даними, що відносяться до ортодонтичних станів;розташування пристрою для одержання відбитка всередині ротової порожнини користувача і виготовлення відбитка зуба користувача;захоплення зображення пристрою для одержання відбитка;і передачі зображення пристрою для одержання відбитка у центральний блок обробки даних.
Independent claims54
287 paragraphs in 7 sections, as filed
UKRAINE
(19) and A (11) 75373 (13) C2
(51) IPC (2006)
A61S 3 / 00A61S 7/00
MINISTRY OF EDUCATION SCIENCE OF UKRAINE
STATE DEPARTMENT OF INTELLECTUAL PROPERTY
DESCRIPTION
TO THE INVENTORY PATENT
(54) DEVICE (OPTIONAL) AND SYSTEM FOR STOMATOLOGICAL DIAGNOSIS AND DISCHARGE OF STOMATOLOGICAL DIAGNOSIS AND DISTRIBUTION (OPTIONS)
1
(21) 2003054180
(22) Oct 09, 2001
(24) April 17, 2006
(86) rst / from01 / 313bb, 09.10.2001
(31) 09 / 686,142
(32) 11.10.2000
(33) from
(46) April 17, 2006, Bull. №4, 2006г.
(72) Bergersen Earl O., South Ossetia
(73) ortho-tien, inc., From
(56) out of 5882192, 16.03.1999
of 6015289, January 18, 2000
from 5278756, 11.01.1994
(57) 1. A device for diagnosing an orthodontic condition of a user and dispensing one of a large number of dental auxiliary devices having different sizes that are carried in the mouth cavity of users, in which part of a large number of dental auxiliaries having different sizes, is within each of the three orthodontic states, and the device contains a device for capturing the image, and the device for capturing the image carries an image of the mouth portion of the user and the background mputs a signal that shows the image; and the central data processing unit, programmed by the data relating to orthodontic states, with the central processing unit data classifies the signal sent by the device for capturing an image relating to one of the three orthodontic states,
2. The device according to claim 1, which is different in that it comprises at least:
input block for entering information into the central data block.
3. The device of claim 1, which is different in that it comprises, in an amount:
payment device programmed to receive payment from the user.
4. The device according to claim 1, characterized in that the image of the part of the oral cavity of the user-wach is an image of one tooth of the wearer.
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5. The apparatus of claim 1, characterized in that the central processing unit is located distance from the device for capturing the image.
6. A device as claimed in claim 1, characterized in that the portion of the user's oral cavity passes from the middle line of the set of teeth to the user at the back of the internal oral cavity of the user.
7. A device for diagnosing an orthodontic condition of a user, the device comprising an image capture device, and an image capture device receives an image of a part of the mouthpiece of the user-wach and generates a signal representing the image; andcentral data processing unit, programmed with data relating to orthodontic states, and the central data processing unit provides the user with a diagnosis of an orthodontic user's state based on the image received by the device to capture an image, in which the part of the oral cavity of the user is one user's tooth .
8. A device as claimed in claim 7, differing in how the price includes:
input block for entering information into the central data block.
9. The device of claim 7, which is different in that the cost comprises:
payment device programmed to receive payment from the user.
10. An apparatus as claimed in claim 7, characterized in that the central data processing unit programmed with the data referring to the orthodontic states, wherein said central data processing unit provides a classification of a signal directed by the device to capture an image on a large number orthodontic states.
11. The device of claim 7, characterized in that the central data processing unit is located distance from the device for capturing the image.
A device for diagnosing an orthodontic condition of a user, the device comprising a device for capturing an image, wherein the device for capturing an image is dispensed with.
iA (11) 75373 (13) C2
σ>
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chews the image of the mouth part of the mouthpiece, with the part of the oral cavity of the user extending from the middle line of the set of user toes to the back of the inner part of the oral cavity of the user, and the device for capturing the image receives an image of the oral cavity of the user, and forms a signal showing the image; andcentral data processing unit, programmed with data relating to orthodontic states, and the central data processing unit classifies the signal sent by the device to capture an image to a large number of orthodontic states.
13. The device according to claim 12, which is different in that the cost comprises:
input block for entering information into the central data block.
14. The apparatus of claim 12, which is different in that it comprises at least:
payment device, programmed for payment of payment from the user.
15. The apparatus of claim 12, characterized in that the central data processing unit is located at a distance from the device for capturing the image.
16. A system for diagnosing an orthodontic condition of a user, the system comprising a device having an image capture device, the image capture device receiving an image of the portion of the mouth cavity of the user, further comprising an apparatus for transmitting data transmission image signal; and a central data processing unit located at a distance from a device programmed by statistical data that relates to orthodontic states, the central data processing unit connected to the device and receives a signal from the device, and in this case, the central data processing unit classifies the signal , referenced by the device for image capture, to one of a large number of orthodontic states.
17. The system of claim 16, which is different in that it comprises, in an amount, an input block for inputting information into a data transmission device.
18. The system of claim 16, wherein the device comprises a payment device programmed to receive a payment from the user.
19. The system of claim 16, wherein the central data processing unit is programmed with data relating to orthodontic states, wherein the central data processing unit classifies the signal sent by the image capture device to a large number of orthodontic states.
20. The system of claim 16, characterized in that the central data processing unit is programmed to perform diagnostics of the orthodontic state of the user, taking into account the age of the user.
21. The system of claim 16, wherein the portion of the oral cavity of the user is one tooth of the user.
22. Method of establishing an orthodontic diagnosis of a user's condition, the method comprising the following stages: providing one of a large number
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dental auxiliaries with different sizes, with one of the dental intermediate devices carried in the oral cavity users; providing a device for capturing an image, and the image capture device receives an image of a part of the user's cavity and generates a signal representing the image; Providing a central data processing unit programmed by those that relate to orthodontic states, the central data processing unit classifies the signal sent by the image capture device to one of the three orthodontic states defined by the ranges in the intermediate orthodontic state, and part of each of a large number of dental auxiliary devices having dimensions, is placed on the boundary of each of the three orthodontic states; clothing of the image of the oral cavity user; and transferring images to the central data processing unit.
23. The method of claim 22, wherein the image of the oral cavity portion of the oral cavity is an image of one tooth of the wearer.
24. The method of claim 22, wherein the central data processing unit is located at a distance from the device for capturing the image.
25. The method of claim 22, wherein the portion of the oral cavity extends from one user's tooth to the middle line of the user.
26. A method for establishing an orthodontic diagnosis of a user's condition, the method comprising the following steps: providing a device for capturing the image, the device for capturing the image receives an image of the portion of the mouth's user's cavity and generates an image that generates an image; providing a central block of data processing, programmed with data, which are attributed to orthodontic states, andcentral data processing unit is to the user to diagnose the orthodontic state of the user based on the signal transmitted by the device to capture the image; obtaining a picture of the part of the oral cavity of the user-wach, and part of the oral cavity of the wearer is one user's tooth; and transfer images to the central processing unit data.
27. The method of claim 26, wherein the central processing unit is programmed with data referring to orthodontic states, wherein the central data processing unit classifies the signal sent by the image capture device to a large number of orthodontic states.
28. The method of claim 26, wherein the central processing unit is located at a distance from the device for capturing the image.
29. A method for establishing an orthodontic diagnosis of a user's condition, the method comprising the following steps: providing a device having means for capturing an image, and obtaining an image capture device
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the image of the portion of the mouth cavity of the user-witch, the device further comprising a data transmission device capable of transmitting an image representing the image or a user-user data set in a central data processing unit; provision of a central data processing unit located at a distance from the device, programmed with statistical data, which are carried out to orthodontic states; reception of a mapping of the part of the oral cavity of the user; and transferring the image to the central data block, with the central data processing unit classifying the signal sent by the device to capture an image, one of a large number of orthodontic states.
30. The method of claim 29, wherein the portion of the oral cavity of the user is one tooth of the user.
31. The method of claim 29, wherein the part of the user's oral cavity passes from the middle line of the set of teeth to the user at the back of the inner portion of the oral user's cavity.
32. The method of claim 29, wherein the central data processing unit is programmed for diagnosing the orthodontic state of the user, taking into account the age of the user.
33. The method of claim 29, wherein the central processing unit is programmed with data relating to orthodontic states, wherein the central data processing unit classifies the signal sent by the image capture device to a large number of orthodontic states.
34. Method for establishing the diagnosis of orthodontic status of the user, and the method includes the following steps: providing the device to capture the image, and the device for capturing the image receives an image of the part of the oral user's cavity, with the part of the oral user's cavity extends from the midline of the set of teeth of the user to the back of the inner part of the oral cavity user , and the device for capturing the imageforms the signal that shows the image; Providing a central data processing unit arranged by data relating to orthodontic states, the central processing unit of the data providing the user with a diagnosis of the orthodontic state of the user based on a signal transmitted by the image capture device; receiving image of the part of the oral user's cavity and part of the oral cavity represents one user's tooth; and transfer images to the central processing unit data.
35. The method of claim 34, wherein the central processing unit is programmed with data relating to orthodontic states, wherein the central data processing unit classifies the signal sent by the image capture device to a large number of orthodontic states.
36. The method of claim 34, wherein the central data processing unit is located
6
at a distance from the device to capture the image.
37. A device for diagnosing an orthodontic condition of a user, wherein the device comprises a data entry unit that receives data as a user's age; and a central data unit, programmed data that relate to orthodontic states, in which the central data unit diagnoses the orthodontic state of the user, taking into account only the age of the user.
38. The apparatus of claim 37, wherein the central processing unit is located at a distance from the device for capturing the image.
39. A method for establishing an orthodontic diagnosis of a user's condition, the method comprising the following steps: providing a data input block; implementing a user's age into the data entry block; providing the central block of data processing, programmed with data that relate to orthodontic states, and receive information from the data input block; and diagnosis of an orthodontic condition of the user, taking into account only the age of the user.
40. The method of claim 39, wherein the central processing unit is located at a distance from the device for capturing the image.
41. A device for diagnosing an orthodontic condition of a user, the device comprising a device for capturing an image embedded in a rod with the ability to move the sharps, and the image capture device receives an image of the portion of the mouthpiece of the user and generates a signal , showing the image; and a central data processing unit programmed with data relating to orthodontic states, with the central data processing unit receiving a signal referenced by the device for capturing the image, and classifies a signal to a large number of orthodontic states.
42. The apparatus of claim 41, characterized in that the central data processing unit is located distance from the device for capturing the image.
43. The apparatus of claim 41, wherein the image is an image of one tooth user.
44. The apparatus of claim 41, characterized in that the image extends from the middle line of the set of user teeth to the back of the inner portion of the oral cavity of the user.
45. A method of diagnosing an orthodontic condition of the user, and the method includes the following stages: the provision of a reflective creep; Provision of a central data processing unit programmed with data relating to orthodontic states; the location of the reflective inset inside the user's oral cavity and the production of a user's tooth impression; capturing the image of a reflection patch; and the transmission of a reflective snap image to the central data processing unit.
46. A method for diagnosing an orthodontic condition of a user, the method comprising nast-
7
stroke stages: film provision; providing a central data processing unit programmed by data that relate to orthodontic states; the location of the film inside the oral user's cavity and the production of the reflection of the user's tooth; capture the image of the film; and transfer the film image to the central block data block.
47. A method for diagnosing an orthodontic state of the oral cavity of the user, and the method includes the following steps: providing a central data processing unit programmed by data that relate to orthodontic states; providing the device for capturing the image, and the device for capturing the image receives an image of the part of the oral user's cavity; transmitting images of the time of the user's oral cavity to the central data processing unit; and changing the image for the correction for incorrect closing of the user's jaws.
48. Method of diagnosis of an orthodontic condition of the user, and the method includes the following stages: provision of a reflective spoon; Provision of a central data processing unit, programmed with data that relates to the optometric states; the location of the reflector inside the user's oral cavity and the production of a user's tooth impression; capturing images of a reflective spoon; and transfer images of a spoon to a central data block.
49. A device for detecting an orthodontic condition of a user, wherein the device comprises a device for capturing an image; the device for capturing an image receives an image of the part of the oral cavity of the user and forms an image showing the image; the focusing device by which The image capture capability can hold focusing; and the central processing unit of data, programmed with data relating to orthodontic states, and additionally programmed to perform diagnostics of orthodontic user status based on the distance between the focusing device and the user.
50. A method for establishing an orthodontic diagnosis of a user's condition, the method comprising the following steps: providing a device for capturing the image, and the device for capturing the image receives an image of the portion of the oral user's cavity and generates an image that generates an image; providing a focal device by which the image capture device is capable of focusing; providing the central processing unit data programmed with data relating to orthodontic states, and additionally programmed to diagnose the orthodontic status of the user based on the distance between the focus device and the user; arranging the focusing device towards the user's rotational cavity; receiving image of the part of the user's oral cavity;
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51. Method of diagnosis of an orthodontic condition of the user, and the method includes the following stages: provision of a reflective creep; ensuring the device to capture the image, and the device for capturing the image takes an image and forms a signal showing the image; provision of a central block of data processing, located at a distance from the device for image capture, programmed data that relate to orthodontic states; the location of a reflective cavity in the mouth of the user's oral cavity and the production of a tooth impression of the user; capture the image of a reflective stick; and transferring the image of the retroreflective clip to the central processing unit data.
52. A method of diagnosing an orthodontic condition of the user, and the method includes the following stages: providing a reflective spoon; providing the device for capturing the image, and the device for capturing the image takes an image and forms a signal showing the image; providing the central block of data processing, located at a distance from the device for capturing the image, and programmed with data that relate to orthodontic states; the location of a reflective spoon inside the cavity of the user and the manufacture of the user's tooth reflection;
capture the image of a reflective spoon; and transfer images of a spoon to a central data block.
53. A method for diagnosing an orthodontic condition of a user, the method comprising the following steps:
Providing a device for receiving an imprint capable of receiving a user's tooth impression; providing a device for capturing the image; the image capture device obtains an image and generates a signal indicating the image;
providing a central data processing unit programmed with data relating to orthodontic states;
the arrangement of the device for obtaining an imprint inside the user's oral cavity and the development of the user's tooth impression;
capture the image of the device for obtaining a reflection; and transmitting an image of the device for receiving a fingerprint in the central processing unit data.
54. A method for diagnosing an orthodontic condition of a user, the method comprising the following steps: providing a device for obtaining a reflection capable of obtaining a tooth impression of the wearer; providing a device for capturing the image, the image capture device receiving an image and generating a signal representing the image; Providing a central data processing unit located at the discretion of the image capture device programmed with data relating to orthodontic states; arrangement of the device for obtaining an imprint inside the oral cavity user and the production of a tooth impression of the user-witch; capture an image of the device for
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imprinting; and transmitting images of data device device.
to get a reference to the central block of
The present invention generally relates to a device, system, and method that provides a dental diagnostic and / or a dental auxiliary device for the user. More specifically, this invention provides a device, system and method that provide an examination of one or more users, namely, part of their oral cavity, and subsequently allow the diagnosis of medical conditions to be obtained. In addition, the present invention provides a device, system and method that provides the opportunity for one or more users to obtain a corrective dental device, depending on their medical conditions. In addition, the present invention provides a means for obtaining payment for services.
The analysis of the condition of the teeth of the user (the patient) is, naturally, well-known. Throughout the life of the patient, the teeth often require corrective measures to maintain them in a healthy condition, or to correct defects with which the patient may be born or that may develop at a later age, such as deep bite, progeny, compression of the teeth with a decrease in inter-mediums between them and their mutually overlapping growth and / or increase of interdental gaps. Lack of corrective measures for teeth caused the appearance of various procedures, surveys, diagnostic receptions and the like, such as those taken by the dentist or dental orthodontist, as well as corrective measures in the form of dental auxiliary devices that can carry in the oral cavity.
However, dentists or orthodontists are often inaccessible due to the occupation of a person, geographical location or various other reasons. In addition, some individuals can not afford to use the services of such specialists. In other cases, such as developing countries, dentists or orthodontist dentists are inaccessible to some patients for reasons such as poverty or inability to visit the STOMATIC office. Consequently, people living in developing countries often lack quality dentistry and / or necessary co-regulatory measures, including diagnosis and counseling.
It is also commonly known to provide a surgical device that examines the oral cavity and / or the teeth that tries to diagnose / or take corrective measures. Such a device instructs users about whether they have a pot-rebu in the use of dental auxiliary devices. The device operates in an environment that is absolutely independent of the clinic or stomatologic cabinet or the like. However, known devices are complicated, and the range of inspection that is conducted by them is limited. For example, known devices can get images of all of the inner part of the oral cavity. Because of
This, the survey process is tedious and lasting. Moreover, the accuracy of the diagnosis of a known device depends on the angle at which the image of the inner part of the oral cavity is obtained. In addition, the data obtained by known devices is compared with the data stored in the device. When using such devices, data blocking inside the device and related software is a single source for diagnostics in the user-wach.
Therefore, there is a need for an improved device, system and method to provide advanced dental diagnosis. In addition, there is a need for a device, system, and method for providing an improved evaluation of visualization data by providing visualization data obtained, for example, by a digital camera, a digital X-ray machine or similar device, via the Internet, e-mail, telephone, satellite or similar devices, for further evaluation and / or diagnostics, as well as, if necessary, remote-release corrective dental ancillary device.
The present invention provides a device, system and method, as well as an optimized method for obtaining a rebate or a photo that provides the opportunity for one or more users to be subjected to the examination of parts of their oral cavity and / or to receive a diagnosis of their condition. The present invention, moreover, provides the device, system and method or methods of obtaining prints or photographs, enabling the user to obtain a corrective dental auxiliary device, depending on their condition. To this end, in one embodiment of the present invention, the device provides diagnostics of the user's orthodontic state and releases one of a large number of dental auxiliary devices that are carried in the oral cavity of the user, or one auxiliary device of a universal size. The device has a device for capturing the image, and the device for capturing the image receives an image of the portion of the mouth's user's cavity and generates a signal that generates an image. The device, in addition, has a central data processing unit programmed by those that relate to orthodontic states. The central data processing unit classifies the sig-nal sent by the device for capturing the imaging to a large number of orthodontic stages.
In one embodiment, the device further comprises an input block for inputting information to the central data processing unit.
In one embodiment, the device further comprises a payment device programmed to receive payment from the user.
In one embodiment, the image of the time of the user's oral cavity is
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image of one user's tooth.
In one embodiment, the central data block is located at a distance from the device for capturing the image.
In one embodiment, the portion of the oral user's cavity goes from the midline of the set of user teeth to the back of the inside of the mouth of the user.
In another embodiment of the present invention, the device provides a diagnosis of an orthodontic condition of the user. The device has a device for capturing the image, and the device for capturing the image receives an image of the part of the mouthcooperation of the user and generates a signal that creates the image. The device also has a central data processing unit programmed by those that relate to orthodontic states, and the central data processing unit ensures that the user diagnoses the orthodontic state of the user based on the image obtained by the device for capturing the image, and the part of the oral cavity of the user is one tooth user.
In one embodiment, the device, besides the one, has an input block that inputs information to the central data processing unit.
In one embodiment, the device further comprises a payment device programmed to receive a payment from the user.
In one embodiment, the central block data block is programmed with data that are carried to orthodontic states, and the central data processing unit classifies the sig-nal, which is sent by the device to capture the image, to a large number of orthodontic states.
In one embodiment, the central data block is located at a distance from the device for capturing the image.
In another embodiment of the present invention, the device provides a diagnosis of an orthodontic condition of the user. The device has an image capture device, and the device for capturing the image receives an image of the part of the oral cavity of the user, with the part of the oral user's cavity extending from the midline of the set of teeth of the user to the back of the inside of the user's oral cavity, in which case the device for capturing the image generates a signal indicating the image. The device, besides, has a central data processing unit, request-paged data that relate to orthodontic states, with the central processing unit data classifies the signal sent by the device for capturing the image on a large number of orthodontic states.
In one embodiment, the device, in addition to the one, has an input block for entering information in the central data processing unit.
In one embodiment, the device further comprises a payment device programmed to receive a payment from the user.
In one embodiment, the central data block is located at a distance from the device for capturing the image.
In another embodiment of the present invention
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the system provides a diagnosis of orthodontic stateuser. The system has a device having means for capturing an image, and the image capture device captures the image of the user's oral cavity. The device also has a data transfer device capable of transmitting images in the form of a signal representing the image. The system further comprises a central data processing unit, located at a distance from the device, programmed by the statistical data relating to the orthodontic states, the central data processing unit connecting to the device and receiving a signal from the device.
In one embodiment, the system, further, has an input block for inputting information into the device for data transmission.
In one embodiment, the system, further, has a payment device programmed to receive a payment from the user.
In one embodiment, the central data block is programmed with data that are assigned to orthodontic states. The central data processing unit classifies the signal sent by the image capture device to a large number of orthodontic states.
In one embodiment, the central data block is programmed to diagnose the orthodontic state of the user based on the age of the user.
In one embodiment, the portion of the oral user's cavity represents one tooth user.
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method includes the steps: providing a large amount of dental auxiliary devices, with one or more dental ancillary devices carried in the mouth of the user; providing a device for capturing an image, and the image capture device receives an image of a part of the user's cavity and generates a signal representing the image; providing the centralblock of data processing, programmed with data relating to orthodontic states, andcentral data processing unit classifies the sig-nal, referenced by the device to capture the image, to a large number of orthodonticstates that correspond to each type and sizedentist's auxiliary devices; obtaining a picture of the part of the oral cavity of the user-wach; and transfer images to the central data block.
In one embodiment, the image of the time of the mouth of the user is a picture of one user's tooth.
In one embodiment, the central data block is located at a distance from the device for capturing the image.
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method comprises the steps of: providing a large amount of dental auxiliary devices, each dental auxiliary device being worn in the oral cavity of the user.
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cha providing the device for capturing the image, and the device for capturing the image takes an image of the part of the oral cavity user and forms a signal showing the image; provision of a central data processing unit, programmed with data relating to the opto-dental states, with the central block data block classifies the signal sent by the device to capture an image on a large number of orthodontic states; receiving image of the part of the user's oral cavity; and transfer images to the central processing unit data.
In one embodiment, the image of the time-mouth of the oral cavity is an image of a single tooth of the user.
In one embodiment, the central data block is located at a distance from the device for capturing the image.
In one embodiment, the portion of the oral cavity passes from one tooth to the user in the middle line of the set of user teeth.
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method includes the steps: providing a device for capturing the image, with the device for capturing the image receives an image of the part of the user's oral cavity andforms the signal showing the image; providing a central data processing unit programmed by data relating to orthodontic states, and the central data processing unit provides the user with a diagnosis of orthodontic status based on the signal transmitted by the device to capture an image; reception of a depiction of the part of the oral cavity of the user, and the part of the oral cavity is one user's tooth; and transferring the image to the central data processing unit.
In one embodiment, the central data blockboards are programmed with data that are assigned to orthodontic states, and the central data processing unit classifies the sig-nal, which is sent by the device to capture the image, to a large number of orthodontic states.
In one embodiment, the central data block is located at a distance from the device for capturing the image.
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method comprises the steps of: providing a device having an image capture device, the image capture device receiving an image of a portion of the mouth cavity of the user; furthermore, the device has a data transmission device capable of transmitting an image representing the image or a set data user in the central data processing unit; provision of a central data processing unit remotely spaced from the device and programmed with statistical data that relates to the optoelectronic states; reception of the image of the time of the mouth of the user; and transfer images to the central data processing unit.
In one embodiment, the mouth portion
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The cavity of the user is the one user's tooth.
In one embodiment, the portion of the oral user's cavity goes from the midline of the set of user teeth to the back of the inside of the mouth of the user.
In one embodiment, the central data block is programmed to carry out the diagnosis of the orthodontic state of the user based on the age of the user.
In one embodiment, the central block data block is programmed with data that are carried to orthodontic states, and the central data processing unit classifies the sig-nal, which is sent by the device to capture the image, to a large number of orthodontic states.
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user; the method has the steps of: providing a device for capturing an image; the device for capturing an image receives an image of the time of the user's oral cavity, and the portion of the user's oral cavity passes from the middle line of the set of teeth to the user at the back of the inside of the mouth of the user, and the device for capturing the image generates a signal , showing the image; Providing a central data processing unit programmed with data that is related to the opto-dental states, and the central block data blocker provides the user with a diagnostic of the orthodontic state of the user based on the signal transmitted by the image capture device; Obtaining an image of part-n of the user's oral cavity and the time-mouth of the oral cavity represents one dentist; and transferring images to the central data processing unit.
In one embodiment, the central block data block is programmed with data that are carried to orthodontic states, and the central data processing unit classifies the sig-nal, which is sent by the device to capture the image, to a large number of orthodontic states.
In one embodiment, the central data block is located at a distance from the device for capturing the image.
In another embodiment of the present invention, the device provides a diagnosis of an orthodontic condition of the user. The device has a device for input data, which accepts data entered in the form of the user's eyes. The device furthermore has a central data processing unit programmed by data that relate to orthodontic states, and the central data processing unit performs the diagnosis of an orthodontic user state based on the age of the user.
In one embodiment, the central data block is located at a distance from the device for capturing the image.
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method has the stages: providing the device input data; entering a user's age in
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data entry bar; provision of a central block of data processing programmed by data relating to orthodontic states that receives information from a data input device; and giving the user a diagnosis of an orthodontic user's status based on the age of the user.
In one embodiment, the central data block is located at a distance from the device for capturing the image.
In another embodiment of the present invention, the device provides a diagnosis of an orthodontic condition of the user. The device has a device for capturing the image, attached to the rod or scratches, and can move on the rods or scratches, and the device for capturing the scene receives an image of the part of the mouth cavity of the user and forms the signal that creates the image. The device furthermore has a central data processing unit programmed with data that relate to orthodontic states, the central data processing unit receiving a signal sent by the image capture device and classifying the signal on a large number of orthodontic states .
In one embodiment, the central data block is located at a distance from the device for capturing the image.
In one embodiment, the image is an image of a user's tooth.
In one embodiment, the image is an image of the part of the oral cavity from the median line of the set of user teeth to the back of the inside of the inside of the mouth cavity of the user.
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method has the stages: providing a snapshot for reflection; providing the central processing unit data, programmed with data relating to orthodontic states; the location of the cavity for the reflection inside the user's oral cavity and the production of the user's tooth impression; Hopping the image of the clip for the imprint; and transferring the image to the imprint incentral data processing unit.
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method has the stages: providing a film; providing a central data processing unit, programmed with data that relates to orthodontic states; location of the film inside the cavity of the user and the manufacture of the user's tooth reflection; capture an image of a photosensitive film; and transferring an image to a central data processing unit.
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method has the steps of: providing a central data processing unit programmed by data referring to orthodontic states; providing an image capture device; wherein the device for capturing an image takes an image of the portion of the mouth cavity; transmission of the image of the part of the mouth-to-mouth cavity of the user to the central block data block; and image changes.
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In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method has the stages: provision of the output device; providing a central block of data processing, programmed with data relating to orthodontic states; and polling the user relative to the orthodontic state of the user through the device for output.
In one embodiment, the method has additional steps: providing an input device; and the introduction of a response from the user on questions from the central processing unit.
In one embodiment, the method has an additional stage of transmission of the response to the central block data block.
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method has the stages: providing a reflectiveboth; provision of a central data processing unit, programmed with data relating to the dangers of the rhododendron; the location of the reflector in the inside of the user's oral cavity and the production of a user's tooth impression; capturing the image of a spoon; and transmitting a reflection spoon to the central data block.
In another embodiment of the present invention, the device provides a diagnosis of an orthodontic condition of the user. The device has a device for capturing the image, and the device for capturing the image receives an image of the part of the mouthcooperation of the user and generates a signal that creates the image. The device furthermore has a focusing mechanism by which the image capture device is capable of performing a pho-shuffle. The device, in addition, has a central data processing unit, programmed with data that relate to orthodontic states, and, moreover, is programmed to diagnose the orthodontic status of the user based on the distance between the focus-mechanism and the user.
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method includes the steps: providing the device for capturing the image, and the device for capturing the image receives an image of the oral cavity of the user-wach and forms a signal showing the image; providing a focus mechanism, with which device for capturing images can focus; provision of a central data processing unit programmed by those that relate to orthodontic states, and additionally programmed to diagnose the orthodontic state of the user based on the distance between the focusing mechanism and the user; the location of the focusing mechanism in the direction of the oral cavity; receiving images of the part of the oral cavity of the user;
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method includes the steps: providing a patch for the imprint; Providing a device for capturing an image, and the device for capturing an image receives an image and
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generates a signal that shows the image; Providing a central data processing unit located at a distance from the device for capturing images, and programmed with data that relate to orthodontic states; placement of a patch for the imprint inside the oral cavity user and the production of a tooth impression of the user-witch; capture the image of the cue for the imprint; and transfer the image of the imprint form to the central data processing unit.
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method includes the steps: providing a reflow spoon; Providing a device for storing an image, and the image-taking device receives an image and generates a signal that shows the image; providing a central data processing unit located at a distance from the device for image capture, and programmed with data relating to orthodontic states; the location of the reflector in the inside of the user's oral cavity and the production of a user's tooth impression; capturing the image of a spoon; and transmitting a reflection spoon to the central data block.
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method includes the steps: providing a device for receiving an imprint that is capable of taking a fingerprint of the user's tooth; providing a device for capturing images, and the device for capturing images receives an image and generates a signal showing the image; providing the central processing unit data programmed by data relating to orthodontic states; location of the device for obtaining a print inside the mouth of the user and making a fingerprint user; capture the image of the reflector; and transferring the image of the spoon to the central processing unit.
In another embodiment of the present invention, a method provides diagnosis of an orthodontic condition of the user. The method includes the steps: providing a device for receiving an imprint that is capable of taking a fingerprint of the user's tooth; providing a device for capturing images, and the device for capturing images receives an image and generates a signal showing the image; providing a central processing unit for data located at a distance from the device to capture an image and programmed data that relate to orthodontic states; the location of the device to obtain a reflection within the user's oral cavity and the development of the user's tooth impression; capture the image of the device for receiving the imprint; and transmitting an image of the device to obtain a reflection in the central data processing unit.
Therefore, the advantage of the present invention is to protect the device, system and method for providing the user with a diagnosis of his stomatologic state.
Another advantage of the present invention is to protect the device, system and method of delivery
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the user of the corrective dental intermediate device.
Another advantage of the present invention is to provide a device, system, and method, which provides an opportunity to evaluate the condition of the mouthpiece of the user based on the results extracted by the image of one tooth.
Further, it is an advantage of the present invention to provide a device, a system and a method for evaluating images of a portion of an oral cavity of transmitting images to a remote central processing unit and / or to a remote packet.
Another advantage of the present invention is to provide a device, system and method for assuring the assessment and / or diagnosis of the condition of the tooth users around the world, including patients of different races.
Another advantage of the present invention is to provide a device, system and method for releasing corrective auxiliary dental devices based on severity categories related to the dental conditions, in order to improve the evaluation efficiency.
Another advantage of the present invention is to provide a device, system and method for communication with the user and diagnosing the conditions of the lower jaw joint by verbal means, such as a communication device, a voice recorder or the like, or by written means.
Additional features and advantages of the present invention will be described and will be apparent from a detailed description of the current implementation and decaying methods.
1 is a schematic diagram of a black box system in one embodiment of the present invention.
FIG. 2 is a schematic diagram of a black drawer method in one embodiment of a system of the present invention.
FIG. 3 is a view in the plan of an auxiliary dental device used in one embodiment of the system of the present invention.
FIG. 4 is a perspective view of a device according to one embodiment of the present invention.
5 is a side view of a device in accordance with a variant of the realization of a given input.
6 is a perspective view of a device according to one embodiment of the present invention.
Fig. 7 is a perspective view of a device in accordance with a variant of the realization of a given input.
Fig. 8 is a perspective view of a device in accordance with a variant of the realization of a given input.
Fig. 9 is a perspective view of a device in accordance with a variant of the realization of a given input.
FIG. 10 is a side view of a device in accordance with a variant of the realization of a given input.
Detailed description of the prevailing variation in our time.
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The present invention generally relates to a device, system, and method that provides a dental evaluation and / or diagnostic and / or a dental auxiliary device to the user using a test portion of the oral cavity of the mouthpiece. For this, the device, system, and method evaluates the image or prints of the oral cavity to determine if the medical condition can be cured and / or adjusted by a dental auxiliary device stored inside the device and can be extracted from device, or directly sent to the user from a remote site or sent to the dealer.
In the drawings shown, in which the single digit numerals refer to the same parts, FIG. 1 illustrates a system 1 having the blocks, which include a central data processing unit 10 (hereinafter referred to as the CBD). CBO 10 can assessdata, which are transmitted to the Central Bank 10 units of the system1. Further, the Central Bank 10 may regulate the blocks of the system. CBC 10 may be programmed by a specialist in this area for data evaluation, as well as to regulate system blocks 1.
In addition, system 1 may include a unit 20 which registers information (hereinafter referred to as "BRI"). BRI 20 may include a device for insertion as part of BRI 20 to enable the user to enter information to be processed by TBOS 10 before the system 1, at or after it. Such information may include, but is not limited to, age, race, sex, etc. The BRI 20 input device may include a keyboard or any other means for entering symbols or information to be processed by the CSB 10.
System 1 may also have a monitor 30 that can allow the user to see information inputted by the user in BRI 20. In addition, the monitor 30 may display on-screen instructions for the user referring to the correct use of system 1.
The system may also have a device for conducting the driving, such as, for example, a negotiating device, a voice recorder, or another unit known to those skilled in the art. The output device 35 can carry out verbal communication with the user and may ask the user questions regarding the stomatological states of the user.
System 1 may also provide an image capture unit 40 (hereinafter referred to as "BZZ"). CZK 40 can form impressions of the inside of the inside of the oral cavity and / or the outer face of the user. CZ40 can form images, digital, photographic, video, digital X-ray or similar images using a camera or other capture-image device known to field-tracking specialists. Images from CZK 40 may be transferred to the CMB 10 for evaluation.
The system may also have a focusing mechanism 45 that is used in conjunction with a CZ40. The focusing mechanism 45 may consist of a lens or a similar device. CBO 10 can estimate the distance from digital X-ray,
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a graphic image or other type of image to the tooth surface using a focusing mechanism 45 and can then evaluate the degree of increase or decrease required for the diagnosis from the point of view of calculating the exact size of the tooth or user's teeth.
An image from CZ 40 or information gathered-in another way by system 1 may be transmitted electronically or by other means transmitted by block 50 (hereinafter referred to as "BPD"). BPd 50 can transfer images or data to another location, for example, via the Internet, e-mail, or other known means for evaluating another system or specialist such as a doctor, dentist, orthodontist, or similar dentist. BPD 50 may be implemented by a specialist in the field in such a way that BPD 50 can transmit images and / or data, for example, via the Internet, telephone, travel guide or other means.
System 1 may also have a storage area 60 for auxiliary dental devices. Zone 60 may contain a variety of auxiliary dental devices that can be sent to the user by the system 1. CBO 10 systems 1 can store information regarding the severity of the medical condition. The severity can be identified in one of the three categories: minimal, moderate or severe. For example, CB10 may store information, such as medical standards, relating to the degree of deep bite. CBO 10 can determine whether there is a deep bite of minimal, moderate or severe, based on images obtained from CZK 40. For this, ranges for each of these three categories may be established. User-specific and CZK 40 image data may be analyzed by the appropriate software program installed in the CMB 10 to identify, to which category the user belongs to. A deep bite that exceeds the minimum stage can be cured by corrective stoma-logical auxiliary device. If the CMO 10 determines that the deep bite of the user exceeds the minimum degree, the corrective stomatological auxiliary device from zone 60 of the maintenance of auxiliary dental devices may be directed to the user. However, if the CBO10 determines that the degree of deep bite is maximal and / or determines that the age of the user is more than 15 years old, CB10 may choose the option of refusing the user in the diagnosis and / or abstinence auxiliary device. that the deep bite of the user exceeds the minimum degree, the corrective stomatological auxiliary device from zone 60 of the maintenance of auxiliary dental devices may be directed to the user. However, if the CBO10 determines that the degree of deep bite is maximal and / or determines that the age of the user is more than 15 years old, CB10 may choose the option of refusing the user in the diagnosis and / or abstinence auxiliary device. that the deep bite of the user exceeds the minimum degree, the corrective stomatological auxiliary device from zone 60 of the maintenance of auxiliary dental devices may be directed to the user. However, if the CBO10 determines that the degree of deep bite is maximal and / or determines that the age of the user is more than 15 years old, CB10 may choose the option of refusing the user in the diagnosis and / or abstinence auxiliary device.
In addition, system 1 may also have a service compensation unit 70 (hereinafter referred to as "BCP"). BCP 70 may provide the user with the opportunity to pay for the services provided by the system1. BCP 70 may include, for example, a credit card processing unit, which can provide the user with the opportunity to pay for services rendered, for example, by credit card, debit card, or similar means of payment. In addition, the BCP 70 may have cash, agreed debt obligations or the like, such as a payment for the use of the system 1 and / or the receipt of an auxiliary dental device.
FIG. 2 illustrates block diagram 200 of system 1. System-
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Theme 1 can provide the user with a stomatological examination and / or a state-of-the-art diagnosis. The use of system 1 may begin, for example, by introducing in the BRI of the 20 user-specific personal information as shown in step 210. As shown in step 215, personal information may be processed by the CBO 10 for correlation with the given dental standards for individuals of all ages , races, sex andetc., which may already be stored in the Central Bank 10.
The user can then place his head on the head rest as shown in step 220, the chin support or similar device associated with the survey system. Then, images of the inside of the user's root cavity may be obtained, as shown in step 230. Images can be made, for example, by a digital camera, converted into a digital form of X-ray research or similar methods.
The image can then be transmitted as shown in step 240 or to an external source such as a doctor, dentist, orthodontist and / or other trained specialist, or CTB 10, or both for evaluation, as shown in step 270. Transmission can be carried out, for example, via the Internet, e-mail, telephony, satellite, or other means. Alternatively, a local transfer to the CB10 system 1 can carry out an analysis and / or diagnosis.
The system and method according to the present invention may use different images for determining the medical conditions that may be felt by the user. For example, CBO 10 can estimate the image of the front view to determine the middle lines, a certain anterior cutter to calculate its exact medio-distal width, and therefore for the accurate calculation of the size of all other dairy and permanent teeth, cut and not cut, according to medical standards, which are stored within the CMB 10. In addition, the appearance of the front can be used to determine the state, whether the user is suffering from deep bite, yawn-pockets or his normal state of the lower cutters. In addition, the front view can be used to determine the rotation or compression location of the cutters with a decrease in the intervals between them or increase the spaces between the cutters,
CBO 10 can analyze an image that has the appearance of biting part of the oral cavity of the user for rotation of the anterior teeth, as well as for determining the width of the teeth and the severity of the compressed location of the anterior teeth with a decrease in intermediate between the anterior teeth and increase the intervals between them. CBO 10 can identify the average user line and be able to calculate the teeth of the user from the middle line, according to the specific anatomical characteristics of each tooth of the user to determine which teeth are present and which teeth are missing in the mouthpiece of the user.
CBO 10 can analyze an image that has a side view of the part of the oral cavity of the user for measuring gaps where the posterior teeth are generally present, but may still be such that
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not completely cut through. CBO 10 can also analyze images of the side to determine the cross-bites that are present in the posterior segment, and the severity of progeny. In addition, the CBO 10 can analyze the image of the side view for the value of the state, whether the user correctly zamknvyshevye. If the user improperly closes the jaws, CMO 10 and / or system 1 can instruct the user to correctly compensate for the precise location to obtain a more accurate progeny or deep bite index. The TSC 10 may also analyze the image of the viewfinder from the side of the user's face to measure the face and impact height progenies for the profile of the public. The facial appearance in the front can be used to determine the compatibility of the lips after teeth and / or facial swelling and deflection of the lower jaw in the lower jaw.
System 1 according to the present invention can also estimate and predict the size of all teeth in the oral cavity and diagnose the adequacy of the interval for the teeth of the user who is fasting, simply by capturing the image of a single tooth. Indeed, system 1 according to this invention can determine the size of other teeth on the basis of the size of one tooth, as well as the prescribed dental standards, such as the standards shown in Appendix A, and are stored inside the CMB 10 for extrapolation of different sizes of teeth left- in the mouth cavity of the user. In addition, CMB 10 can distinguish whether a reliable anterior tooth for extrapolation of the size of other teeth, and dairy and permanent, as well as spaces within the teeth.
In addition, CB10 can be programmed to recognize certain anatomical and morphological changes that are characteristic of various teeth, such as liver, premolars, molars and incisors, as well as changes from dairy to permanent teeth. These changes also include different sizes of the medio-distal widths, as well as the clinical differences in the width of the crown, which distinguish the milk teeth from permanent teeth.
In addition, system 1, according to the present invention, can maintain medical standards in the middle of the CMB 10 for different races of people. Statistical comparisons can be used for CMB 10 to determine whether certain teeth are dairy or permanent, and also to determine the ro-ments of certain teeth in the user's oral cavity, even if the angle under which the image is obtained is not a straight angle to the teeth Indeed, CB10 can determine which teeth have been rotated, and which ones have not been rotated. CBO 10 can estimate the vibration of the bite, as well as reduced width values of the rotated front teeth. Then the CBA 10 can determine which tooth was rotated, but did not recognize the rotation, by the values of the width in the form of the circle. In addition, statistical comparisons can help CMB 10 in determining the presence of a large gap or compression of the location of the teeth with a decrease in the intervals between them and the degree of location of teeth with large intervals or compressed arrangement of teeth with a decrease in intervals between them. In addition, the shorter intermediate
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Caries induced by caries and premature loss of dairy teeth with unfavorable displacement of adjoining mature teeth and / or as a result of loss of post-teeth or loss of gaps caused by caries, or inadequate teething, or absence of teething with loss of gaps may also be identified by CBO 10.
Moreover, CMB 10 can determine if the patient is missing any teeth. In cases where the tooth may not be present in the image, and instead of the teeth, there is a dark gap, CB10 may determine that there should be a tooth in this area. ЦБО10 can carry out the calculation of teeth from the midline and can determine whether the teeth are present, and indeed the tooth is related to the dark gap. If ЦБО 10 determines that the tooth is before the dark interval, ЦБО 10 can determine whether the size of the gap to place the tooth at the border of the interval. CBO 10 can also determine the percentage share of the shorter medial interval and / ordistal interval. CBO 10 can determine this percentage fraction by the media-distal measurement of the size of the image of the tooth and dividing that size by the size that should have this tooth, by the factor, which evaluates its size by the width of the upper central incisor. Then the CBO 10 can calculate the actual media distance distance, which exists in the interval, multiplying the shortened interval, this factor of increase.
In addition, if the images are not obtained by the reciprocal angles, regardless of whether they represent a picture of one tooth, or a large number of teeth, a computer program that is stored inside the CMB 10, can ensure the ability of CMB 10 to configure the image in such a way as to compensate for the difference.
Moreover, if the patient needs a math auxiliary device, system 1 according to the present invention can measure the device for matching the toothpower using a single tooth measurement. More specifically, a computer program stored in the CMB 10 , can provide the opportunity TSBO 10 imposition of the image of the dental auxiliary device on the image of the set of injections of the patient, extrapolated from the data that relate to the image of one tooth, as well as with statistical data that is stored all re-din CBA 10.
In addition to the images obtained from CZK 40, system 1 may ask the patient whether it sounds or clicks in the lower jaw joint or joints and may ask the user to move it with the jaw down and forward to determine if there is more sound or clicks. System 1 can ask the user visually, through the display on the monitor 30, or system 1 can ask questions by using the user's words with the help of an acoustic device or similar device. The user may have the ability to respond verbally or inputinformation in BRI 20. In addition, the system 1 can determine whether there is dysfunction of the mandibular joint, observing the maximum opening of the mouth.
System 1 can also determine if there is a
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The muffler is an incorrect bite when it is shifted in front and / or in a completely closed position. System 1 can ask the user to close his mouth. If system 1 using CZ 40 and CB 10 identifies the user to incorrectly closed the mouth, system 1 can compensate for this fitting image of the upper jaw and lower jaw, for example by re-combining part of the image containing the lower jaw, as long as it is not correctly aligned with the image part containing the upper jaw of the user. Inresult, you can calculate more accurate indications of the ratio of jaws, the ratio of molar or progeny.
Once the diagnosis has been delivered by an external source, CBD 10 or both, the diagnosis may be provided to the user, as shown in stage 280. The diagnosis may be given to a user by a written medium, such as on a sheet of paper released by system 1. The sheet may include a graphical representation of the location of the dental auxiliary device in the mouth user's cavity. Or the diagnosis may be reported to the user by a verbal means, such as through a conversational device connected with system 1, or in a similar way. In addition, the diagnosis can be provided to the user in the form of a message that is displayed on the monitor 30.
In diagnostics, system 1 can determine whether a dental auxiliary device is required by the user, as shown in step 290. The CBO 10 may be pre-programmed with data showing the severity of the condition, such as deep ocular or progeny, for individuals of different ages, race, sex, etc. d. CBO 10 may be programmed to classify the severity of deep depression or progeny as a minimum, moderate and severe on the basis of prescribed dental standards. If the CBO 10 determines that a specific level of severity for the user can be cured by a user of the dental auxiliary device, system 1 may release a suitably sized dental auxiliary, as shown in step 300. However, if the patient (user) does not require a dental auxiliary device,
After the services have been provided, the user can pay for the services, as shown in step 310. Payment can be made, for example, by credit card or debit card. For this, the user can place a credit card or debit card inside the system 1, and the cost of services may be charged from the card. System 1 may be connected, for example, via the Internet, telephony or other means with another system, such as a bank, for example, capable of registering charges levied. In another embodiment, the payment may be made by accepting a system 1 of a document negotiated under a contract or cash.
3, in general, illustrates a dental intermediate device 300 that can be released
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System 1. The dental auxiliary device 300 may be made, for example, from rubber or other material known to the skilled worker of the region. The auxiliary dentistry 300 may correct orthodontic states such as deep bite, progeny and epilepsy, and may be worn in the oral cavity of the wearer. The dental auxiliary device 300 may have a large number of configurations for correction of the orthodontic condition, depending on the age and number of mature teeth present in the oral cavity of the user. Preferably, system 1 according to the present invention stores and / or releases trispecificly configured dental intermediate devices for correcting a number of diagnostic states. For example, if orthodontic states that can be diagnosed by the system, Include dental auxiliary devices for correcting a tooth row in the early period (at the age from 4 to 7 years); for the correction of the mixed dentition (in the age from 6 to 12 years old); and an adult dentition (at the age of 12 years and older), then system 1 can store and / or release three different dental auxiliary devices 300 of varying sizes, of each type, one dental auxiliary device for each age diagonal . Of course, system 1 can be programmed to diagnose any of a large number of orthodontic states with any of the large number of dental auxiliary devices within the system 1 for correcting the diagnosed state. and an adult dentition (at the age of 12 years and older), then system 1 can store and / or release three different dental auxiliary devices 300 of varying sizes, of each type, one dental auxiliary device for each age diagonal . Of course, system 1 can be programmed to diagnose any of a large number of orthodontic states with any of the large number of dental auxiliary devices within the system 1 for correcting the diagnosed state. and an adult dentition (at the age of 12 years and older), then system 1 can store and / or release three different dental auxiliary devices 300 of varying sizes, of each type, one dental auxiliary device for each age diagonal . Of course, system 1 can be programmed to diagnose any of a large number of orthodontic states with any of the large number of dental auxiliary devices within the system 1 for correcting the diagnosed state.
System 1 can also diagnose which type and size of the dental auxiliary device 300 is required for the user based on the number of teeth in the user's oral cavity. System 1 may comprise, preferably, three types of dental auxiliaries 300, corresponding, preferably, to users having 20 , 24 and 28 teeth in their oral cavity according to measurements and extrapolations performed, for example, from the middle line to the back of the user's oral cavity. Each type of dental abutment device 300 may preferably have a large number of sizes. System 1 may provide the user with a certain 100-math auxiliary device 300 for the type and size of the dental auxiliary device 300 corresponding to the correction of the orthodontic sta- tion of the user.
In another embodiment of system 1, system 1 may diagnose the orthodontic state of the user simply on the information received by the user's instructions. The user can enter his age at UBRI 20. The CBD 10 can then transfer the command to the system 1 to release the dental auxiliary device 300 of the user-specific type and size based on the age of the user and / or medical standards that are programmed in the CMB 10.
In another embodiment of system 1, system 1 may use an age of the user to facilitate the diagnosis. For example, as if the CBO 10 receives information that the user in the oral cavity has 21 tooth, the system 1 can be programmed to determine, for example, that based on the age of the user must
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to be present three molars. System 1 may further determine that the dental auxiliary device 300 corresponding to a dental auxiliary device for a user with 24 teeth of the user's gate cavity is required for co-orthodontic state of the user.
In another version of the implementation of the orthodontic condition of the user can be diagnosed with image of one tooth. In this embodiment, if one front tooth is absent, system 1 can diagnose the orthodontic condition of the user-user by the image of another tooth in the mouth of the user.
In yet another embodiment, the orthodontic state of the user can be diagnosed with an image of the inside of the oral cavity of the user in the portion of the oral cavity of the user from the middle line to the back of the interior of the oral cavity of the user. It can be carried out one measurement from the middle line of the posterior part, which, in general, reveals five, six or seven teeth. By this measurement, a computer evaluates the data that is needed to determine, for example, that the user's oral cavity is, respectively, 20, 24 or 28 teeth.
4 shows a device 400 having a camera 410 for receiving digital, photographic, video, digital X-ray or the like of a portion of the oral cavity of the user. The camera 410 may be held, for example, by a set of clamps 420 on a set of rods 430 fixed, for example, to the wall with fasteners 440 and may be placed at the user's desired height for obtaining images. The pressures 420 may be designed to enter the frictional engagement with the rods 430 and retain the camera 410 in place until it moves with the pressure applied to the knobs450 to adjust the height of the camera 410, for example, by the user. To do this, the user can capture a set of knobs 450 attached to the camera 410 to locate the camera 410 at the desired height.
Device 400 can be used, for example, in a pharmacy. The diagnosis can be transmitted to an outlying area, for example, by e-mail or a similar method, and the person who maintains the device 400, such as, for example, a pharmacist, may, on the basis of the diagnosis, provide a user-patient dental auxiliary device 300. Or system 1 can inform the user, visually by the monitor 30 or other means of communication, about the location of the appropriate dental auxiliary device inside the pharmacy, store store, grocery store or other similar store, which may be either odavatysya a dental dopomizhnyyprystriy.
5 is a side view of a part of the embodiment shown in FIG. 4, in which the chamfer 410 is located at a desired height. Corrugator 512 may position its head 516 in the chest position 510 and support in the head for support 518. The chin and / or head support 518 for the head 510 may, for example, be lifted or lowered by various means, known to
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we are specialists in the field. The camera 410 may be connected, for example, with a CMB 10 that can estimate images of the portion of the mouth cavity 512 obtained by the camera 410. The CCD 10 may be manufactured by a single unit of 400 or located at a distance from the chamber 410 of the device 400.
6 illustrates an embodiment of the device of the present invention, in which the camera 610 may be attached, for example, to a rod 620, for example, with clamps 630. In this embodiment, the device 600 is not attached to the wall and can be mounted on the basis of 640 provided, such as a rod 620 or other means of support. The user can raise or lower the camera 610 through the rod 620 to the required height to ensure that the camera can receive the images of the user's internal cavity 610. The device 600 can also be used, for example, in a pharmacy or other similar stores.
In another embodiment of the present invention, system 1 may provide the user with a diagnosis for obtaining images, for example, via electronic mail, the Internet, or similar means of communication. Images can be obtained at a time when the user places a ruler or other measuring device near his or her face. Then, the second expert, using a digital camera, a digital video camera or similar cameras, can capture a person's face and / or user profile. You can get pre-dot images of the user, including your eyesight with a smile in the front, the right and left side of the mouth and / or the appearance of bite from the top and bottom. Images can also be obtained by user-user using any kind of remote work of a digital photo or digital videocamera, or any other method, known specialist in this area. Then images can be transmitted to a remote location, for example, via e-mail, the Internet, or similar means of communication, and the diagnosis may be carried out by the TBC or a specialist to determine whether the user is a candidate for a dental auxiliary device. If the user is a candidate, the type and size of the dental auxiliary device may also be determined by the CBO or a faculty member. The user can then pay for the diagnostic interface and / or the dental auxiliary device, for example, by credit card or similar means of payment, transferring credit card numbers along with the images or indicating the number of the credit card by other means known to the facsimiles in the field. Internet or similar means of communication, and the diagnosis may be carried out by the TBC or a specialist to determine whether the user is a candidate for a dental auxiliary device. If the user is a candidate, the type and size of the dental auxiliary device may also be determined by the CBO or a faculty member. The user can then pay for the diagnostic interface and / or the dental auxiliary device, for example, by credit card or similar means of payment, transferring credit card numbers along with the images or indicating the number of the credit card by other means known to the facsimiles in the field. Internet or similar means of communication, and the diagnosis may be carried out by the TBC or a specialist to determine whether the user is a candidate for a dental auxiliary device. If the user is a candidate, the type and size of the dental auxiliary device may also be determined by the CBO or a faculty member. The user can then pay for the diagnostic interface and / or the dental auxiliary device, for example, by credit card or similar means of payment, transferring credit card numbers along with the images or indicating the number of the credit card by other means known to the facsimiles in the field. the type and size of the dental auxiliary device may also be determined by the CBO or the faculty member. The user can then pay for the diagnostic interface and / or the dental auxiliary device, for example, by credit card or similar means of payment, transferring credit card numbers along with the images or indicating the number of the credit card by other means known to the facsimiles in the field. the type and size of the dental auxiliary device may also be determined by the CBO or the faculty member. The user can then pay for the diagnostic interface and / or the dental auxiliary device, for example, by credit card or similar means of payment, transferring credit card numbers along with the images or indicating the number of the credit card by other means known to the facsimiles in the field.
FIG. 7 shows a reflection snapshot 700, which can be used to diagnose an orthodontist state of the user. Reflective slices 700 can be made, for example, of wax, rubber, plastic or other material known to a specialist in the area. Reflection snaps 700 may be received by the user from system 1, or reflection snaps 700 can be obtained, for example, as a user's reaction to ads on the Internet, on television or on the radio. In addition, reflective snippets 700 may be obtained, for example, without a prescription from a pharmacy, a grocery store or the like.
28
These stores are sent directly to the consumer by mail.
FIG. 8 illustrates a reflective image 800, in which the user can leave a print 810 after the reflex cap 800. After the user has left the imprint on the reflex cap 800, the reflected image 800 can be sent to a remote location for diagnosis. Diagnosis may consist, for example, of pouring gypsum or other material, known to those skilled in the art, in the reflective zip 800 to obtain a positive model of the tooth user. A plate that may have a plane of pins, and each pin which is perpendicular to the plane and is able to rotate along an axis perpendicular to the plane can be used to match the shape of the imprint 810 made in the reflection blind 800, as well as to provide a positive model of the upper and lower teeth of the user.
In another embodiment, a depth-sensitive photograph of the reflective snap 700 may be made after the user leaves the bite of his bite in the reflection bundle of 700. Sensitive to the depth of the photograph may provide a three-dimensional scan of the upper and lower teeth, which can be received by the diagnosis.
In another embodiment of the present invention, the user's oral cavity image may be photoconductive or sensitive to a pressure film that the user can place between the upper jaw and the lower jaw of the applicator. Then the film can provide an image of the upper teeth and lower teeth. Then the image can be transmitted to a remote location, for example, the Internet, e-mail, direct mail or similar methods for diagnosing the CBA or a specialist.
9 illustrates a spoon 900, which may be used to provide a diagnosis to a user in another embodiment of the realization of a given input. The spoon 900 can have a lower part 910 that is flat, and an edge 920, some of which are selected to match the inside of the mouthpiece of the user. The lower portion 910 of the reflective spoon 900 may be filled with waxes formed by plastic or any other material known to those skilled in the art. The reproduction of the inside of the oral cavity can be made by the user with a bite with his imprint on the bottom of the 910 reflecting spoon 900. Then, a spoon of 900 or an image of a spoonful of 900 may be sent to the STB or a specialist for diagnosis. 10 illustrates a side view of a spoon spoon 900.
In addition to the reflex slug 700 and the reflection spoon 900, any type of device known to those skilled in the art can be provided to obtain a user's fingerprints. In the first place, the device for receiving the imprint may be sent to a specialist for analysis. In addition, the obtained image of the device can be used to receive the imprint, and it can be investigated by the Central Bank 10, the Central Bank of Ukraine, located at a distance from system 1,
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or a specialist.
It is necessary to understand that for specialists in this region will be apparent various changes and modifications described here prevailing in our time options for realization. Such changes and modifications may be
30
without departing from the essence and range of requirements for the supply of goods and without reducing its existing advantages. Therefore, it is anticipated that such changes and modifications are covered by the appended claims formula.
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Computer layout M. Lomalov Signature Circulation 26 copies.
Ministry of Education and Science of Ukraine
State Department of Intellectual Property, st. Uritskogo, 45, Kyiv, SME, 03680, Ukraine
State Enterprise "Ukrainian Institute of Industrial Property", st. Glazunova, 1, Kyiv - 42, 01601
Contents7
36 members in 20 offices
Priority claims9
| Document | Office | Kind | Date |
|---|---|---|---|
| 09686142 | United States of America | – | |
| 68614200 | United States of America | A | |
| 68614200 | United States of America | A | |
| 0131366 | United States of America | W | |
| 0131366 | United States of America | W | |
| 09686142 | – | – | – |
| PCTUS0131366 | – | – | – |
| US20000686142 | – | – | – |
| WO2001US31366 | – | – | – |
Members36
| Document | Office | Kind | |
|---|---|---|---|
| CA2420658A1 | Canada | A1 | |
| WO0230313A2 | World Intellectual Property Organization (WIPO) | A2 | |
| AU9669101A | Australia | A | |
| WO0230313A3 | World Intellectual Property Organization (WIPO) | A3 | |
| WO0230313B1 | World Intellectual Property Organization (WIPO) | B1 | |
| NO20031255D0 | Norway | D0 | |
| NO20031255L | Norway | L | |
| US6582225B1 | United States of America | B1 | |
| US2003138752A1 | United States of America | A1 | |
| EP1331897A2 | European Patent Office (EPO) | A2 | |
| CZ2003871A3 | Czechia | A3 | |
| BR0114546A | Brazil | A | |
| JP2004510539A | Japan | A | |
| MXPA03001522A | Mexico | A | |
| CN1536977A | China | A | |
| PL361979A1 | Poland | A1 | |
| EP1331897A4 | European Patent Office (EPO) | A4 | |
| AR044522A1 | Argentina | A1 | |
| UA75373C2This record | Ukraine | C2 | |
| SA01220046B1 | Saudi Arabia | B1 | |
| SA1643B1 | Saudi Arabia | B1 | |
| RU2292856C2 | Russian Federation | C2 | |
| MY130245A | Malaysia | A | |
| CN100435750C | China | C | |
| EP1331897B1 | European Patent Office (EPO) | B1 | |
| AT431112T | Austria | T | |
| ATE431112T1 | Austria | T1 | |
| DE60138723D1 | Germany | D1 | |
| JP4292006B2 | Japan | B2 | |
| PL203276B1 | Poland | B1 | |
| ES2326309T3 | Spain | T3 | |
| CA2420658C | Canada | C | |
| US8303301B2 | United States of America | B2 | |
| CZ304155B6 | Czechia | B6 | |
| BR0114546B1 | Brazil | B1 | |
| BRPI0114546B1 | Brazil | B1 |
Numbers
- Publication
- 75373
- Publication, DOCDB
- 75373
- Publication, EPODOC
- UA75373
- Application
- 2003054180
- Application, DOCDB
- 2003054180
- Application, EPODOC
- UA20030054180
Titles3
- Ukrainian
- ПРИСТРІЙ (ВАРІАНТИ) І СИСТЕМА ДЛЯ СТОМАТОЛОГІЧНОЇ ДІАГНОСТИКИ ТА ВІДПУСКУ І СПОСІБ СТОМАТОЛОГІЧНОЇ ДІАГНОСТИКИ ТА ВІДПУСКУ (ВАРІАНТИ)
- English
- APPARATUS (VARIANTS) AND SYSTEM AND FOR PROVIDING DENTAL DIAGNOSIS, METHOD FOR DENTAL DIAGNOSIS (VARIANTS)
- Russian
- УСТРОЙСТВО (ВАРИАНТЫ) И СИСТЕМА ДЛЯ СТОМАТОЛОГИЧЕСКОЙ ДИАГНОСТИКИ, СПОСОБ СТОМАТОЛОГИЧЕСКОЙ ДИАГНОСТИКИ (ВАРИАНТЫ)
Classification
- CPC, 5
- A61C7/00
- A61C7/002
- A61C9/0006
- A61C19/04
- A61C9/0046
- IPC, 7
- A61C7 00
- A61C3 00
- A61C19 04
- A61B1 24
- A61B6 51
- A61C9 00
- A61C13 08