Nova Patents
IL288635A

Intelligent joint prosthesis

Abstract

This record has no abstract on file.

IL288635A, drawing sheet 1
Sheet 1 of 61

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

130 claims: 78 independent, 52 dependent

  1. 1
    What is claimed is:1. A tibial insert for an implantable knee prosthesis, comprising a tibial insert that is 1, 2, 3, 4, 5, 6, 7, 8, 9, or, 10 mm thicker on a medial side of the implant, as compared to a lateral side of the implant.
  2. 2
    A tibial insert for an implantable knee prosthesis, comprising a tibial insert that is 1, 2, 3, 4, 5, 6, 7, 8, 9, or, 10 mm thicker on the lateral side of the implant, as compared to a medial side of the implant.
  3. 3
    A tibial insert for an implantable knee prosthesis, comprising a tibial insert that is 1, 2, 3, 4, 5, 6, 7, 8, 9, or, 10 mm thicker on an anterior side of the implant, as compared to a posterior side of the implant.
  4. 4
    A tibial insert for an implantable knee prosthesis, comprising a tibial insert that is 1, 2, 3, 4, 5, 6, 7, 8, 9, or, 10 mm thicker on a posterior side of the implant, as compared to an anterior side of the implant.
  5. 5
    A tibial insert or articular spacer for an implantable knee prosthesis, comprising a tibial insert that is 1, 2, 3, 4, 5, 6, 7, 8, 9, or, 10 mm thicker on one of a medial, lateral, anterior and/or posterior side of the implant compared to a corresponding side of the implant, where medial and lateral are corresponding sides and anterior and posterior are corresponding sides.
  6. 6
    The tibial insert according to any one of claims 1-5, wherein said tibial insert is composed of polyethylene, or polyetheretherketone (PEEK).
  7. 7
    The tibial insert according to any one of claims 1-6 wherein said tibial insert is customized to a patient.
  8. 9
    An implantable medical device, comprising:a circuit configured to be fixedly attached to an implantable prosthetic device;a power component;and a device configured to uncouple the circuit from the power component.
  9. 10
    An implantable medical device, comprising:a circuit configured to be fixedly attached to an implantable prosthetic device;a battery;and a fuse coupled between the circuit and the battery.
  10. 11
    A method, comprising electrically opening a fuse that is disposed between a circuit and a battery, at least the fuse and the circuit being disposed on an implanted prosthetic device.
  11. 12
    An implantable medical device, comprising:at least one sensor configured to generate a sensor signal;and a control circuit configured to cause the at least one sensor to generate the sensor signal at a frequency that is related to a telemedicine code.
  12. 13
    An implantable medical device, comprising:at least one sensor configured to generate a sensor signal;and a control circuit configured to cause the at least one sensor to generate the sensor signal at a frequency that allows a doctor to qualify for payment under a telemedicine insurance code.
  13. 14
    An implantable medical device, comprising:at least one sensor configured to generate a sensor signal;and a control circuit configured to cause the at least one sensor to generate the sensor signal at a frequency that allows a doctor to qualify for full payment under a telemedicine insurance code.
  14. 15
    A method, comprising, generating a sensor signal that is related to an implanted medical device at a frequency that allows a doctor to qualify for payment available under a telemedicine insurance code.
  15. 16
    A method, comprising, generating a sensor signal that is related to an implanted medical device at a frequency that allows a doctor to qualify for full payment available under a telemedicine insurance code.
  16. 17
    An implantable prosthesis, comprising:a housing;and an implantable circuit disposed in the housing and configured to generate at least one first signal representative of a movement;to determine whether the signal meets at least one first criterion;and to send the signal to a remote location in response to determining that the signal meets the at least one first criterion.
  17. 18
    A base station, comprising:a housing;and a base-station circuit disposed in the housing and configured to receive, from an implantable prosthesis, at least first signal representative of a movement;to send the at least one first signal to a destination;to receive at least one second signal from a source;and to send the at least one second signal to the implantable prosthesis.
  18. 19
    A method, comprising opening a fuse disposed on an implantable prosthesis between a power source and an implantable circuit in response to a current through the fuse exceeding an overcurrent threshold.
  19. 20
    A method, comprising opening a fuse disposed on an implantable prosthesis between a power source and an implantable circuit in response to a current through the fuse exceeding an overcurrent threshold for at least a threshold time.
  20. 21
    A method, comprising opening a fuse disposed on an implantable prosthesis between a power source and an implantable circuit in response to a voltage across the fuse exceeding an overvoltage threshold.
  21. 22
    A method, comprising opening a fuse disposed on an implantable prosthesis between a power source and an implantable circuit in response to a voltage across the fuse exceeding an overvoltage threshold for at least a threshold time.
  22. 23
    A method, comprising opening a fuse disposed on an implantable prosthesis between a power source and an implantable circuit in response to a temperature exceeds an overtemperature threshold.
  23. 24
    A method, comprising opening a fuse disposed on an implantable prosthesis between a power source and an implantable circuit in response to a temperature exceeding an overtemperature threshold for at least a threshold length of time.
  24. 25
    A method, comprising:generating a sensor signal in response to a movement of a subject in which a prosthesis is implanted;and transmitting the sensor signal to a remote location.
  25. 26
    A method, comprising:generating a sensor signal in response to a movement of a subject in which a prosthesis is implanted;sampling the sensor signal;and transmitting the samples to a remote location.
  26. 27
    A method, comprising:generating a sensor signal in response to a movement of a subject in which a prosthesis is implanted;determining whether the sensor signal represents a qualified event;and transmitting the signal to a remote location in response to determining that the sensor signal represents a qualified event.
  27. 28
    A method, comprising:generating a sensor signal in response to a movement of a subject in which a prosthesis is implanted;receiving a polling signal from a remote location;and transmitting the sensor signal to the remote location in response to the polling signal.
  28. 29
    A method, comprising:generating a sensor signal in response to a movement of a subject in which a prosthesis is implanted;generating a message that includes the sensor signal or data representative of the sensor signal;and transmitting the message to a remote location.
  29. 30
    A method, comprising:generating a sensor signal in response to a movement of a subject in which a prosthesis is implanted;generating a data packet that includes the sensor signal or data representative of the sensor signal;and transmitting the data packet to a remote location.
  30. 31
    A method, comprising:generating a sensor signal in response to a movement of a subject in which a prosthesis is implanted;encrypting at least a portion of the sensor signal or data representative of the sensor signal;and transmitting the encrypted sensor signal to a remote location.
  31. 32
    A method, comprising:generating a sensor signal in response to a movement of a subject in which a prosthesis is implanted;encoding at least a portion of the sensor signal or data representative of the sensor signal;and transmitting the encoded sensor signal to a remote location.
  32. 33
    A method, comprising:generating a sensor signal in response to a movement of a subject in which a prosthesis is implanted;transmitting the sensor signal to a remote location;and entering an implantable circuit associated with the prosthesis into a lower-power mode after transmitting the sensor signal.
  33. 34
    A method, comprising:generating a first sensor signal in response to a movement of a subject in which a prosthesis is implanted;transmitting the first sensor signal to a remote location;entering at least one component of an implantable circuit associated with the prosthesis into a lower-power mode after transmitting the sensor signal;and generating a second sensor signal in response to a movement of the subject after an elapse of a lowpower-mode time for which the implantable circuit is configured.
  34. 35
    A method, comprising:receiving a sensor signal from a prosthesis implanted in a subject;and transmitting the received sensor signal to a destination.
  35. 36
    A method, comprising:sending an inquiry to a prosthesis implanted in a subject receiving a sensor signal from a prosthesis after sending the inquiry;and transmitting the received sensor signal to a destination.
  36. 37
    A method, comprising:receiving a sensor signal and at least one identifier from a prosthesis implanted in a subject;determining whether the identifier is correct;and transmitting the received sensor signal to a destination in response to determining that the identifier is correct.
  37. 38
    A method, comprising:receiving a message including a sensor signal from a prosthesis implanted in a subject;decrypting at least a portion of the message;and transmitting the decrypted message to a destination.
  38. 39
    A method, comprising:receiving a message including a sensor signal from a prosthesis implanted in a subject;decoding at least a portion of the message;and transmitting the decoded message to a destination.
  39. 40
    A method, comprising:receiving a message including a sensor signal from a prosthesis implanted in a subject;encoding at least a portion of the message;and transmitting the encoded message to a destination.
  40. 41
    A method, comprising:receiving a message including a sensor signal from a prosthesis implanted in a subject;encrypting at least a portion of the message;and transmitting the encrypted message to a destination.
  41. 42
    A method, comprising:receiving a data packet including a sensor signal from a prosthesis implanted in a subject;decrypting at least a portion of the data packet;and transmitting the decrypted data packet to a destination.
  42. 43
    A method, comprising:receiving a data packet including a sensor signal from a prosthesis implanted in a subject;decoding at least a portion of the data packet;and transmitting the decoded data packet to a destination.
  43. 44
    A method, comprising:receiving a data packet including a sensor signal from a prosthesis implanted in a subject;encoding at least a portion of the data packet;and transmitting the encoded data packet to a destination.
  44. 45
    A method, comprising:receiving a data packet including a sensor signal from a prosthesis implanted in a subject;encrypting at least a portion of the data packet;and transmitting the encrypted data packet to a destination.
  45. 46
    A method, comprising:receiving a sensor signal from a prosthesis implanted in a subject;decrypting at least a portion of the sensor signal;and transmitting the decrypted sensor signal to a destination.
  46. 47
    A method, comprising:receiving a sensor signal from a prosthesis implanted in a subject;decoding at least a portion of the sensor signal;and transmitting the decoded sensor signal to a destination.
  47. 48
    A method, comprising:receiving a sensor signal from a prosthesis implanted in a subject;encoding at least a portion of the sensor signal;and transmitting the encoded sensor signal to a destination.
  48. 49
    A method, comprising:receiving a sensor signal from a prosthesis implanted in a subject;encrypting at least a portion of the sensor signal;and transmitting the encrypted sensor signal to a destination.
  49. 50
    An implantable circuit for an implantable prosthesis.
  50. 51
    An implantable prosthesis including an implantable circuit.
  51. 52
    An implantable prosthesis including a fuse.
  52. 53
    A base station for communication with an implantable prosthesis.
  53. 54
    A monitoring-session-data collection, analysis, and status-reporting system implemented as a component of one or more computer systems, each computer system having one or more processors, one or more memories, one or more network connections, and access to one or more mass-storage devices, the one or more the monitoring-session-data collection, data-analysis, and status-reporting system comprising:a monitoring-session-data-receiving component that receives monitoring-session-data, including acceleration data generated by sensors within or proximal to a prosthesis attached or implanted within a patient, from an external monitoring-session-data source and that stores the received monitoring-session-data in one or more of the one or more memories and one or more mass-storage devices;a monitoring-session-data-processing component that prepares the monitoring-session-data for processing, determines component trajectories representing motion modes and additional metric values from the monitoring-session-data;and a monitoring-session-data-analysis component that determines a prosthesis status and a patient status from the motion modes and additional metric values, distributes the determined prosthesis status and patient status to target computer systems through the network connections, and when indicated by the determined prosthesis status and patient status, distributes one or more alarms and events to target computer systems through the network connections.
  54. 62
    A method, carried out by a monitoring-session-data collection, analysis, and statusreporting system implemented as a component of one or more computer systems, each computer system having one or more processors, one or more memories, one or more network connections, and access to one or more mass-storage devices, the method comprising:receiving monitoring-session-data, including acceleration data generated by sensors within or proximal to a prosthesis attached or implanted within a patient, from an external monitoringsession-data source;storing the received monitoring-session-data in one or more of the one or more memories and one or more mass-storage devices;determining a prosthesis status and a patient status from the motion modes and additional metric values, distributing the determined prosthesis status and patient status to target computer systems through the network connections, and when indicated by the determined prosthesis status and patient status, distributing one or more alarms and events to target computer systems through the network connections.
  55. 69
    A physical data-storage device encoded with computer instructions that, when executed by one or more processors within one or more computer systems of a monitoring-sessiondata collection, analysis, and status-reporting system, each computer system having one or more processors, one or more memories, one or more network connections, and access to one or more mass-storage devices, control the monitoring-session-data collection, analysis, and status-reporting system to:receive monitoring-session-data, including acceleration data generated by sensors within or proximal to a prosthesis attached or implanted within a patient, from an external monitoringsession-data source.
  56. 70
    A method for determining joint loosening in a patient having an implanted artificial joint, comprising a) analyzing movement of an implanted artificial joint, and b) comparing said movement vs. previous / standardized norms.
  57. 71
    A method for determining loosening of an implanted prosthesis in a patient having the implanted prosthesis, comprising:a) obtaining a standardized norm of movement by analyzing movement of an implanted prosthesis during one or more first monitoring sessions;b) obtaining a current description of movement by analyzing movement of an implanted prosthesis during one or more second monitoring sessions that occur subsequent to the one or more first monitoring sessions;and c) comparing said current description of movement to said standardized norm of movement, to thereby identify loosening of an implanted prothesis in a patient having the implanted prosthesis.
  58. 72
    A method for identifying a clinical or subclinical condition associated with an implant in a patient, the method comprising:a. monitoring a first motion of the implant during a first monitoring session using a sensor which is directly coupled to the implant, to provide a first monitoringsession data for the first motion;b. monitoring a second motion of the implant during a second monitoring session using the sensor, to provide a second monitoring-session-data for the second motion;and c. comparing the first monitoring-session data or a product thereof to the second monitoring-session-data or a product thereof, to provide a comparison that is indicative of a clinical or subclinical condition associated with the implant.
  59. 80
    A method for treating a clinical or subclinical condition associated with an implant in a patient, comprising:a. identifying an implant in a patient, where the implant has a clinical or subclinical condition;and b. attaching corrective external bracing to patient to restore proper alignment and/or enhanced stability to the implant.
  60. 82
    A method for treating a clinical or subclinical condition associated with an implant in a patient, comprising:a. identifying an implant in a patient, where the implant has a clinical or subclinical condition;and b. contacting the implant with a fixation system to retard progression of the subclinical condition.
  61. 86
    A method for treating a clinical or subclinical condition associated with an implant in a patient, comprising:a. identifying an implant in a patient, where the implant has a clinical or subclinical condition;and b. contacting the implant with a tamp, where the contacting changes a location of the implant within the patient.
  62. 88
    A method for treating a clinical or subclinical condition associated with an implant in a patient, comprising:a. identifying an implant in a patient, where the implant has a clinical or subclinical condition;and b. implanting an insert adjacent to a component of the implant, where the insert modifies forces acting on the component of the implant.
  63. 91
    A method for treating a clinical or subclinical condition associated with an implant in a patient, comprising:a. identifying an implant in a patient, where the implant has a clinical or subclinical condition;and b. delivering a pro-osteointegration agent to a location surrounding the implant.
  64. 93
    A method for treating a clinical or subclinical condition associated with an implant in a patient, comprising:a. identifying an implant in a patient, where the implant has a clinical or subclinical condition;and b. delivering an anti-bacterial agent to a location surrounding the implant.
  65. 95
    The method of any of claims 72-94 wherein the implant is an intelligent implant.
  66. 96
    The method of claims 72-94 wherein the implant is selected from a knee implant, a hip implant and a shoulder implant.
  67. 97
    The method of any of claims 72-94 wherein the product of the monitoring-session data comprises a motion mode.
  68. 98
    The method of any of claims 72-94 wherein the product of the monitoring-session data comprises a motion mode, and a status of the implant is determined from the motion mode.
  69. 99
    The method of any of claims 72-94 wherein the product of the monitoring-session data comprises a motion mode, and a status of the patient is determined from the motion mode.
  70. 100
    The method of claims 72-94 wherein the implant has been located within the patient for at least 10 weeks prior to the first monitoring session.
  71. 101
    The method of claims 72-94 wherein the implant has changed alignment over a period of at least 2 weeks.
  72. 102
    The method of claims 72-94 wherein the implant has loosened over a period of at least two weeks.
  73. 103
    The method of claims 72-94 wherein the implant has deformed over a period of at least two weeks.
  74. 104
    The method of claims 72-94 wherein the implant comprises a control circuit configured to cause the sensor to generate a sensor signal at a frequency that is related to a telemedicine code for the clinical or subclinical condition, and the sensor signal is generated at the frequency.
  75. 105
    The method of claims 72-94 wherein the implant comprises a control circuit configured to cause the sensor to generate a sensor signal at a frequency that allows a doctor to qualify for payment under a telemedicine insurance code, and the sensor signal is generated at the frequency.
  76. 106
    The method of claims 72-94 wherein the implant comprises a control circuit configured to cause the sensor to generate a sensor signal at a frequency that allows a doctor to qualify for full payment under a telemedicine insurance code, and the sensor signal is generated at the frequency.
  77. 107
    The method of claims 72-94 further comprising generating a sensor signal that is related to the implant at a frequency that allows (i) a doctor to qualify for full payment available under a telemedicine insurance code, or (ii) a doctor to qualify for payment available under a telemedicine insurance code.
  78. 108
    A method comprising:a. providing an intelligent prosthesis implanted in a bone adjacent to a joint of a patient, where an accelerometer is contained within the intelligent prosthesis, and where the accelerometer is positioned within the bone;b. moving the implanted intelligent prosthesis relative to an external environment wherein the patient is located, where the implanted intelligent prosthesis is moved during a first monitoring session;c. making first measurements with the accelerometer during the first monitoring session, where the first measurements provide first monitoring-session-data or a product thereof which identifies a status of the implanted intelligent prosthesis at a time of the first measurements.
Independent claims78