Nova Patents
EP2349385A1

Heart help device, system and method

Abstract

This record has no abstract on file.

Term

3 yearsto projected expiry

Projected expiry 12 October 2029, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

190 claims: 32 independent, 158 dependent

  1. 1
    Claims of equivalent WO 2010042018 A1 CLAIMS 1. An implantable device for improving the pump function of the heart of a patient by applying an external force on the heart, said device comprising at least one heart contacting organ, periodically exerting force onto the heart muscle following the heart contractions and adding force thereto, said implantable device adapted to have a drive adapted to create kinetic movement to be used by the heart contacting organ, wherein said implantable device comprises a fixation device adapted to be mounted in a stable position to human bone allowing said drive unit and kinetic movement to get necessary contra force, wherein said drive unit further comprising a respiration movement compensator for compensating for the respiratory movement of the heart in relation to the stable bone position.
  2. 31
    The implantable device according to any one of claims 25 - 30, wherein said wherein said connecting arm furthermore is displaceable along a third axis.
  3. 38
    The implantable heart help device according to any one of claims 21, 22 and 24 - 29, wherein said connecting arm is adapted to, when implanted, be positioned through the thoracic diaphragm, and thereby assist in the fixation of a heart pump device located on the thoracic side of the thoracic diaphragm.
  4. 50
    The implantable device according to any one of claims 45 - 49, wherein said operating device is adapted to be placed in the abdomen of a human patient.
  5. 61
    The implantable heart help device according to claim I 1 wherein said at least one fixating device is adapted to fixate said device to the posterior side of the sternum.
  6. 85
    The implantable device according to any one of claims 80 and 83, wherein said system further comprises a pressurized fluid system.
  7. 92
    A method of surgically placing an active heart assistant device outside a patient's heart via a laparoscopic thoracic approach, the method comprising the steps of:JL62239 a. inserting a needle or a tube like instrument into the thorax of the patient's body, b. using the needle or a tube like instrument to fill the thorax with gas thereby expanding the thoracic cavity, c. placing at least two laparoscopic trocars in the patient's body, d. inserting a camera through one of the laparoscopic trocars into the thorax, e. inserting at least one dissecting tool through one of said at least two laparoscopic trocars and dissecting an intended placement area of the patient's heart, f. placing the heart assistant device in the placement area in the thorax as one or more pieces comprising;g. placing the heart contacting organ affecting the blood stream, h. placing a drive unit creating kinetic movement to be used by the heart contacting organ, i. -mounting a fixation device in a stable position to human bone allowing said_drive unit and kinetic movement to get necessary contra force, j. placing a respiration movement compensator for compensating for the respiratory movement of the heart in relation to the stable bone position, and k. placing and connecting an implanted energy receiver or an internal source of energy for powering the heart assistant device to perform at least one of the following method steps;at least partly compressing the heart and at least partly relaxing the heart assistant device to support the hearts pumping mechanism from the outside thereof.
  8. 93
    An operation method for surgically placing an active heart assistant device in relation to a patient's heart, the method comprising the steps of:a. cutting the patient's skin, b. opening the thoracic cavity, c. dissecting a placement area where to place the heart assistant device inside in relation to the heart, d. placing the heart assistant device in the placement area in the thorax as one or more pieces comprising;e. placing the heart contacting organ affecting the blood stream, f. placing a drive unit creating kinetic movement to be used by the heart contacting organ, g. -mounting a fixation device in a stable position to human bone allowing said_drive unit and kinetic movement to get necessary contra force, 2239 h. placing a respiration movement compensator for compensating for the respiratory movement of the heart in relation to the stable bone position, and i. placing and connecting an implanted energy receiver or a internal source of energy for powering the heart assistant device to perform at least one of the following method steps;at least partly compressing the heart and at least partly relaxing the heart assistant device to support the hearts pumping mechanism from the outside thereof.
  9. 94
    A method of surgically placing an active heart assistant device in relation to a patient's heart via a laparoscopic abdominal approach, the method comprising the steps of:a. inserting a needle or a tube like instrument into the abdomen of the patient's body, b. using the needle or a tube like instrument to fill the abdomen with gas thereby expanding the abdominal cavity, c. placing at least two laparoscopic trocars in the patient's abdomen d. inserting a camera through one of the laparoscopic trocars into the abdomen, e. inserting at least one dissecting tool through one of said at least two laparoscopic trocars and f. dissecting and creating an opening in the diaphragm muscle, 2239 g. dissecting an intended placement area of the patient's heart through said opening, h. placing the heart assistant device in the placement area in the thorax as one or more pieces comprising;i. placing the heart contacting organ affecting the blood stream, j. placing a drive unit creating kinetic movement to be used by the heart contacting organ, k. -mounting a fixation device in a stable position to human bone allowing said_drive unit and kinetic movement to get necessary contra force, I. placing a respiration movement compensator for compensating for the respiratory movement of the heart in relation to the stable bone position, and m. placing and connecting an implanted energy receiver or an internal source of energy for powering the heart assistant device to perform at least one of the following method steps;at least partly compressing the heart and at least partly relaxing the heart assistant device to support the hearts pumping mechanism from the outside thereof.
  10. 95
    An operation method for surgically placing an active heart assistant device in relation to a patient's heart, the method comprising the steps of:a. cutting the patient's skin, JL62239 b. opening the abdominal cavity, c. dissecting and creating an opening in the diaphragm muscle, d. dissecting a placement area where to place the heart assistant device through said opening, e. placing the heart assistant device in the placement area in the thorax as one or more pieces comprising;f. placing the heart contacting organ affecting the blood stream, g. placing a drive unit creating kinetic movement to be used by the heart contacting organ, h. -mounting a fixation device in a stable position to human bone allowing said_drive unit and kinetic movement to get necessary contra force, i. placing a respiration movement compensator for compensating for the respiratory movement of the heart in relation to the stable bone position, and j. placing and connecting an implanted energy receiver or an internal source of energy for powering the heart assistant device to perform at least one of the following method steps;at least partly compressing the heart and at least partly relaxing the heart assistant device to support the hearts pumping mechanism from the outside thereof.
  11. 96
    The operation method according to any one of claims 92 - 95, wherein the step of placing the heart assistant device additionally comprise the step of:a. supplying kinetic power from said drive unit to said heart assistant device causing movement of said heart contacting organ.
  12. 99
    The operation method according to any one of claims 96, wherein the drive unit further comprising a stator and a rotor adapted to be driving at least a part of the heart assistant device with rotational energy, the method further comprising the steps of:a. placing said stator and rotor in the abdomen or thorax, wherein said rotor is connecting to said heart assistant device, b.supplying energy to said stator to rotate said rotor and thereby causing kinetic energy to be transported to said heart assistant device. 2239
  13. 102
    The method according to any of the preceding claims 92-101, wherein the heart assistant device or drive unit is using energy, direct or indirect, from an external energy source, supplying energy non-invasively, without any penetration through the patient's skin, for powering the heart assistant device or drive unit.
  14. 103
    The operation method according to any one of claims 92- 102, wherein said heart assistant device or drive unit is connected to an internal energy source via a cable, the method of placement further comprising;a. dissecting and placing a wire connected to the heart assistant device or drive unit into the right atrium of the heart and further up in the venous blood vessel system, b. exiting the blood vessel system in or closer to the subcutaneous area, such as in the vena subclavia, vena jugularis or vena brachialis placing an internal energy source in the subcutaneous area or close thereto or in the thorax or abdomen, JL62239 c. supplying from an external energy source energy non-invasively, without any penetration through the patient's skin, to power the internal energy source for indirect or direct power the heart assistant device or drive unit.
  15. 104
    The operation method according to any of the preceding claims 92- 103, the method of placement further comprising;a. placing an electrode in the right atrium or ventricle of the heart b. placing the wire to the electrode via the right atrium of the heart and further up in the venous blood vessel system, c. exiting the blood vessel system in or closer to the subcutaneous area, such as in the vena subclavia, vena jugularis or vena brachialis, d. placing an internal control unit in the subcutaneous area or close thereto or in the thorax or abdomen, the method further comprising at least one of the following steps;e. transmitting energy pulses from said electrode for controlling heart contractions, and f. coordinating the heart assistant device or drive unit.
  16. 105
    The operation method according to any one of claims 92- 103, wherein the method of placement further comprising;a. placing an electrode in the right atrium or ventricle of the heart b. placing the wire to the electrode via the right atrium of the heart and further up in the venous blood vessel system, JL62239 c. exiting the blood vessel system in or closer to the subcutaneous area, such as in the vena subclavia, vena jugularis or vena brachialis, d. placing an internal control unit in the subcutaneous area or close thereto or in the thorax or abdomen, the method further comprising at least one of the following steps;e. receiving sensor input relating to electrical pulses or muscle contractions of the heart, f. coordinating the heart assistant device or drive unit based on said sensor input.
  17. 106
    A method of fixating an implantable heart help device in a human patient, for improving the pump function of the heart of a human patient by applying an external force on the heart muscle, said device comprising at least one heart contacting organ, and said device is adapted to be fixated to a part of the human body comprising bone, said method comprising the steps of:cutting the skin of the human patient, dissecting an area of the part of the human body comprising bone, fixating said implantable heart help device to said part of the human body comprising bone, placing said heart contacting organ onto the heart of the patient, JL62239 placing an operating device, adapted to operate said heart contacting organ to periodically exert force on the outside of said heart, withholding force from the part of the human body comprising bone, connecting a source of energy for powering said implantable device for improving the pump function of the heart.
  18. 109
    A surgical method of placing an implantable device for improving the pump function of the heart of a human patient by applying an external force on the heart muscle, said device comprising at least one heart contacting organ said device being adapted to be fixated to bone of a human patient, the method comprising the steps of:a. cutting the skin of said human patient, b. inserting a needle or a tube like instrument into the thorax of the patient's body, c. using the needle or a tube like instrument to fill the thorax with gas thereby expanding the thoracic cavity, d. placing at least two laparoscopic trocars in the patient's body, JL62239 e. inserting a camera through one of the laparoscopic trocars into the thorax, f. inserting at least one dissecting tool through one of said at least two laparoscopic trocars and dissecting an intended placement area in the area of a part of the human body comprising bone, g.fixating said implantable device onto the part of the human body comprising bone with a first fixation device, h. placing the heart contacting organ onto the heart of the patient, i. placing an operating device, operating said heart contacting organ to periodically exert force on the outside of said heart, withholding force from the sternum, j. connecting a source of energy for powering said implantable device for improving the pump function of the heart.
  19. 112
    A method of fixating a heart help device to a part of the human body comprising bone, said heart help device comprising a fixation device and a connecting arm, the method comprising the steps of. dissecting the part of the human body comprising bone, JL62239 fixating said fixation device to the bone, such that said fixation device is in contact with said connection arm.
  20. 117
    The method according to any one of claims 112 - 116, wherein said heart help device comprises at least one heart contacting organ adapted to be in contact with the heart of the human patient and adapted to be in direct or indirect contact with said connection arm, wherein said method further comprises the steps of placing said at least one heart contacting organ in contact with the heart of the human patient.
  21. 118
    The method according to any one of claims 112 - 116, wherein said method further comprises the step of placing an operating device in the abdomen of the patient.
  22. 119
    The method according to any one of claims 112 - 116, wherein said method further comprises the step of placing an energizing device in the abdomen of the patient.
  23. 162
    A surgical method of placing an implantable device for improving the pump function of the heart of a human patient by applying an external force on the heart muscle, said device comprising at least one heart contacting organ being adapted to be fixated to bone of a human patient, the method comprising the steps of:a. cutting the skin of said human patient, b. inserting a needle or a tube like instrument into the abdomen of the patient's body, c. using the needle or a tube like instrument to fill the abdomen with gas thereby expanding the abdominal cavity, d. placing at least two laparoscopic trocars in the patient's abdomen, i. - inserting a camera through one of the laparoscopic trocars into the abdomen, e. inserting at least one dissecting tool through one of said at least two laparoscopic trocars f. dissecting an intended placement area in the area of a part of the human body comprising bone, g.fixating said implantable device onto the part of the human body comprising bone using a first fixation device, h. dissecting an opening in the thoracic diaphragm, i. placing the heart contacting organ onto the heart of the patient, passing through said opening in said thoracic diaphragm, 2239 j. placing an operating device, operating said heart contacting organ to periodically exert force on the outside of said heart, withholding force from the sternum, k. connecting a source of energy for powering said implantable device for improving the pump function of the heart.
  24. 168
    A method of surgically placing an active heart assistant device outside a patient's heart via a laparoscopic thoracic approach, the method comprising the steps of:a. inserting a needle or a tube like instrument into the thorax of the patient's body, b. using the needle or a tube like instrument to fill the thorax with gas thereby expanding the thoracic cavity, c. placing at least two laparoscopic trocars in the patient's body, d. inserting a camera through one of the laparoscopic trocars into the thorax, e. inserting at least one dissecting tool through one of said at least two laparoscopic trocars and dissecting an intended placement area of the patient's heart, f. placing the heart assistant device affecting the blood stream, and g. placing and connecting an implanted energy receiver or an internal source of energy for powering the heart assistant device to perform at least one of the following method steps;h.at least partly compressing the heart and at least partly relaxing the heart assistant device to support the hearts pumping mechanism from the outside thereof. 2239
  25. 169
    A method for surgically placing an active heart assistant device in relation to a patient's heart the method comprising the steps of:a. cutting the patient's skin, b. opening the thoracic cavity, c. dissecting a placement area where to place the heart assistant device inside in relation to the heart, d. placing the a heart assistant device in the placement area in the thorax, and e. placing and connecting an implanted energy receiver or a internal source of energy for powering the heart assistant device to perform at least one of the following method steps;f. at least partly compressing the heart and at least partly relaxing the heart assistant device to support the hearts pumping mechanism from the outside thereof.
  26. 170
    A method of surgically placing an active heart assistant device in relation to a patient's heart via a laparoscopic abdominal approach, the method comprising the steps of:a. inserting a needle or a tube like instrument into the abdomen of the patient's body, b. using the needle or a tube like instrument to fill the abdomen with gas thereby expanding the abdominal cavity, c. placing at least two laparoscopic trocars in the patient's abdomen JL62239 d. inserting a camera through one of the laparoscopic trocars into the abdomen, e. inserting at least one dissecting tool through one of said at least two laparoscopic trocars, and f. dissecting and creating an opening in the diaphragm muscle, g. dissecting an intended placement area of the patient's heart through said opening, h. placing the heart assistant device in the placement area in the thorax, and i. placing and connecting an implanted energy receiver or an internal source of energy for powering the heart assistant device to perform at least one of the following method steps;j. at least partly compressing the heart and at least partly relaxing the heart assistant device to support the hearts pumping mechanism from the outside thereof.
  27. 171
    A method for surgically placing an active heart assistant device in relation to a patient's heart, the method comprising the steps of:a. cutting the patient's skin, b. opening the abdominal cavity, c. dissecting and creating an opening in the thoracic diaphragm, d. dissecting a placement area where to place the heart assistant device through said opening, JL62239 e. placing the a heart assistant device in the placement area, and f. placing and connecting an implanted energy receiver or an internal source of energy for powering the heart assistant device to perform at least one of the following method steps;at least partly compressing the heart and at least partly relaxing the heart assistant device to support the hearts pumping mechanism from the outside thereof.
  28. 172
    The method according to any one of claims 168 - 171, wherein the step of placing the heart assistant device additionally comprises the steps of:placing a drive unit for at least partly powering the heart assistant device with kinetic movements in the thorax or abdomen area, supplying kinetic power from said drive unit to said heart assistant device causing movement of said heart assistant device.
  29. 176
    The method according to any one of claims 168 - 172, wherein an opening is performed from the abdomen through the thoracic diaphragm for placing the energy receiver or energy source in the abdomen.
  30. 177
    The method according to any one of claims 170, 171 and 176, wherein said opening is performed in the thoracic diaphragm at the section of the thoracic diaphragm in which the pericardium is fixated to the thoracic diaphragm.
  31. 178
    The method according to any one of claims 168-177, wherein the heart assistant device or drive unit is using energy, JL62239 direct or indirect, from an external energy source, supplying energy non-invasively, without any penetration through the patient's skin, for powering the heart assistant device or drive unit.
  32. 179
    The method according to any one of claims 168 - 178, wherein said heart assistant device or drive unit is connected to an internal energy source via a cable, the method of placement further comprising the steps of;a. dissecting and placing a wire connected to the heart assistant device or drive unit into the right atrium of the heart and further up in the venous blood vessel system, b. exiting the blood vessel system in or closer to the subcutaneous area, such as in the vena subclavia, vena jugularis or vena brachialis c. placing an internal energy source in the subcutaneous area or close thereto or in the thorax or abdomen, d. supplying from an external energy source energy non- invasively, without any penetration through the patient's skin, to power the internal energy source for indirect or direct power the heart assistant device or drive unit.
  33. 180
    The method according to any one of claims 168 - 179, wherein the method of placement further comprises the steps of;JL62239 a. placing an electrode in the right atrium or ventricle of the heart b. placing the wire to the electrode via the right atrium of the heart and further up in the venous blood vessel system, c. exiting the blood vessel system in or closer to the subcutaneous area, such as in the vena subclavia, vena jugularis or vena brachialis, d. placing an internal control unit in the subcutaneous area or close thereto or in the thorax or abdomen, the method further comprising at least one of the following steps;e. receiving sensor input relating to electrical pulses or muscle contractions of the heart, f. transmitting energy pulses from said electrode for controlling heart contractions, g. coordinating the heart assistant device or drive unit.
Independent claims33