Claims
- 1. A method of selectively providing cardiac pacing with an implantable medical device (IMD) comprising:
operating an IMD in an atrial based pacing mode; monitoring A-A intervals for ventricular activity; switching to a DDI pacing mode if no ventricular activity is sensed during a given A-A interval; delivering a ventricular support pacing pulse while in the DDI pacing mode; switching to a DDD pacing mode after delivering the ventricular support pacing pulse; determining if intact AV conduction is present, subsequent to switching to the DDD pacing mode; and switching to the atrial based pacing mode if intact AV conduction is present.
- 2. The method of claim 1, wherein the DDI pacing mode is in operation for no more than one consecutive cardiac cycle.
- 3. The method of claim 1, wherein switching to the DDI pacing mode includes switching to the DDI pacing mode for no more than one consecutive A-A interval.
- 4. The method of claim 1, wherein switching to the DDI pacing mode includes operating in the DDI pacing mode for an A-A interval immediately subsequent to the given A-A interval.
- 5. The method of claim 1, wherein switching to the DDI pacing mode includes switching to the DDI pacing mode upon termination of the given A-A interval.
- 6. The method of claim 1, wherein switching to the DDI pacing mode includes operating in the DDI pacing mode for at least a portion of an A-A interval immediately subsequent to the given A-A interval.
- 7. The method of claim 1, wherein determining if intact AV conduction is present includes varying at least one parameter of the DDD pacing mode.
- 8. The method of claim 1, wherein determining if intact AV conduction is present includes actively adjusting a pacing parameter.
- 9. The method of claim 1, wherein any delivered atrial pulse is at a level sufficient to achieve atrial capture.
- 10. The method of claim 1, wherein the atrial based pacing mode is selected from the group consisting of: AAI, AAI/R, ADI, ADI/R.
- 11. The method of claim 1, wherein the ventricular support pulse is delivered within an AV interval of about 80 milliseconds.
- 12. The method of claim 1, wherein determining if intact AV conduction is present includes determining if intact AV conduction is present during a first cycle operated in the DDD pacing mode.
- 13. The method of claim 12, wherein determining if intact AV conduction is present during the first cycle includes implementing an extended AV escape interval relative to normal DDD operation.
- 14. The method of claim 13, wherein sensed ventricular activity during the extended AV escape interval indicates intact AV conduction and triggers the switch to the atrial based pacing mode.
- 15. The method of claim 13, wherein cycles subsequent to the first cycle operated in the DDD pacing mode include implementing a normal AV escape interval that is shorter than the extended AV escape interval.
- 16. The method of claim 1, wherein determining if intact AV conduction is present while operating in the DDD pacing mode includes extending an AV escape interval for at least one cardiac cycle.
- 17. The method of claim 16, wherein extending the AV escape interval includes extending the AV escape interval to any length up to and including a length of an A-A interval.
- 18. The method of claim 17, wherein the DDD pacing mode will permit an A-A interval to transpire without ventricular activity while determining if intact AV conduction is present.
- 19. The method of claim 18, wherein only one A-A interval is permitted to transpire without ventricular activity while determining if intact AV conduction is present.
- 20. The method of claim 18, wherein multiple, non-sequential A-A intervals are permitted to transpire without ventricular activity during one session of checking for intact AV conduction.
- 21. The method of claim 16, wherein the DDD pacing mode will permit an A-A interval to transpire without ventricular activity while determining if intact AV conduction is present.
- 22. The method of claim 1, wherein determining if intact AV conduction is present includes inhibiting the delivery of a ventricular pace for one complete A-A interval.
- 23. The method of claim 1, wherein checking for intact AV conduction occurs periodically while in the DDD pacing mode.
- 24. The method of claim 1, wherein determining if intact AV conduction is present occurs during a first cycle operated in the DDD mode and inhibition of a ventricular pace is indicative of intact conduction.
- 25. A method of selectively providing cardiac pacing with an implantable medical device (IMD) comprising:
operating the IMD in an atrial based pacing mode; monitoring A-A intervals for ventricular activity; switching to a dual chamber pacing mode if no ventricular activity is sensed in a given A-A interval and operating in the dual chamber pacing mode for at least two consecutive A-A intervals immediately subsequent to the given A-A interval; determining if intact AV conduction is present subsequent to switching to the dual chamber pacing mode; and switching to the atrial based pacing mode if intact AV conduction is present.
- 26. The method of claim 25, further comprising operating in the dual chamber pacing mode for a predetermined number of cardiac cycles prior to determining if intact AV conduction is present.
- 27. The method of claim 25, wherein switching to dual chamber pacing mode further includes:
switching to a first dual chamber pacing mode for one A-A interval immediately subsequent to the given A-A interval; and switching to a second dual chamber pacing mode for a second A-A interval immediately following the one A-A interval.
- 28. The method of claim 27, further comprising switching to a third dual chamber pacing mode for a third A-A interval immediately following the second A-A interval.
- 29. The method of claim 27, wherein the first dual chamber pacing mode is DDI.
- 30. The method of claim 27, wherein the second dual chamber pacing mode is DDD.
- 31. The method of claim 28, wherein the second dual chamber mode is DDD with a first AV escape interval and the third dual chamber mode is DDD with a second AV escape interval, wherein the first AV escape interval is longer than the second AV escape interval.
- 32. The method of claim 31, wherein sensed ventricular activity during the first AV escape interval indicates intact AV conduction and triggers the switch to the atrial based pacing mode.
- 33. The method of claim 25, wherein any delivered atrial pulse is at a level sufficient for atrial capture.
- 34. The method of claim 25, wherein determining if intact AV conduction is present includes extending an AV escape interval for at least one cardiac cycle.
- 35. The method of claim 34, wherein extending the AV escape interval includes extending the AV escape interval to any length up to and including a length of an A-A interval.
- 36. The method of claim 34, wherein the dual chamber pacing mode will permit an A-A interval to transpire without ventricular activity while determining if intact AV conduction is present.
- 37. The method of claim 36, wherein only one A-A interval is permitted to transpire without ventricular activity while determining if intact AV conduction is present.
- 38. The method of claim 25, wherein determining if intact AV conduction is present includes inhibiting the delivery of a ventricular pace for one complete A-A interval.
- 39. The method of claim 25, wherein determining if intact AV conduction is present includes actively changing at least one parameter while operating in the dual chamber mode.
- 40. The method of claim 25, further comprising delivering a ventricular support pace during a first A-A interval operated in the dual chamber pacing mode.
- 41. The method of claim 40, wherein the ventricular support pace is delivered after a truncated A-V escape interval.
- 42. The method of claim 41, wherein the truncated A-V escape interval is about 80 milliseconds.
- 43. The method of claim 25, wherein the atrial based pacing mode is selected from the group consisting of: AAI, AAI/R, ADI, ADI/R.
- 44. A method of selectively providing cardiac pacing with an implantable medical device (IMD) comprising:
operating the IMD in an atrial based pacing mode; monitoring A-A intervals for ventricular activity; switching to a dual chamber pacing mode if no ventricular activity is sensed in a given A-A interval and operating in the dual chamber pacing mode for at least two consecutive A-A intervals immediately subsequent to the given A-A interval; and switching to the atrial based pacing mode if a ventricular pacing pulse is inhibited while in the dual chamber pacing mode.
- 45. The method of claim 44, wherein an AV escape interval is extended from a normal value to an extended value for at least one cardiac cycle while operating in the dual chamber pacing mode.
- 46. The method of claim 45, wherein the extended AV escape interval is equal to an A-A interval.
- 47. The method of claim 45, wherein the A-V escape interval is extended periodically.
- 48. The method of claim 47, wherein the A-V escape interval is extended for only one cardiac cycle.
- 49. The method of claim 47, wherein the A-V escape interval is extended for multiple, non-consecutive cardiac cycles.
- 50. The method of claim 44, wherein the atrial based pacing mode is selected from the group consisting of: AAI, AAI/R, ADI, ADI/R.
- 51. The method of claim 44, further comprising delivering a ventricular support pace during a first A-A interval operated in the dual chamber pacing mode.
- 52. The method of claim 48, wherein the ventricular support pace is delivered after a truncated A-V escape interval.
- 53. The method of claim 52, wherein the truncated A-V escape interval is about 80 milliseconds.
- 54. An implantable medical device (IMD) for selectively providing cardiac pacing comprising:
means for operating an IMD in an atrial based pacing mode; means for monitoring A-A intervals for ventricular activity; means for switching to a DDI pacing mode if no ventricular activity is sensed during a given A-A interval; means for delivering a ventricular support pacing pulse while in the DDI pacing mode; means for switching to a DDD pacing mode after delivering the ventricular support pacing pulse; means for determining if intact AV conduction is present, subsequent to switching to the DDD pacing mode; and means for switching to the atrial based pacing mode if intact AV conduction is present.
- 55. The IMD of claim 54, wherein the DDI pacing mode is in operation for no more than one consecutive cardiac cycle.
- 56. The IMD of claim 54, further comprising means for operating in the DDI pacing mode for no more than one consecutive A-A interval.
- 57. The IMD of claim 54, further comprising means for operating in the DDI pacing mode for an A-A interval immediately subsequent to the given A-A interval.
- 58. The IM of claim 54, wherein the means for switching to the DDI pacing mode further include means for switching to the DDI pacing mode upon termination of the given A-A interval.
- 59. The IMD of claim 54, further comprising means for operating in the DDI pacing mode for at least a portion of an A-A interval immediately subsequent to the given A-A interval.
- 60. The IMD of claim 54, wherein the means for determining if intact AV conduction is present include means for varying at least one parameter of the DDD pacing mode.
- 61. The IMD of claim 54, wherein the means for determining if intact AV conduction is present further include means for actively adjusting a pacing parameter.
- 62. The IMD of claim 54, wherein any atrial pulse delivered by the means for operating an IMD in the atrial based pacing mode during atrial based pacing is at a level sufficient to achieve atrial capture.
- 63. The IMD of claim 54, wherein the atrial based pacing mode is selected from the group consisting of: AAI, AAI/R, ADI, ADI/R.
- 64. The IMD of claim 54, wherein the ventricular support pulse is delivered within an AV interval of about 80 milliseconds.
- 65. The IMD of claim 54, wherein the means for determining if intact AV conduction is present determine if AV conduction is present during a first cycle operated in the DDD pacing mode.
- 66. The IMD of claim 65, wherein means for determining if intact AV conduction is present implement an extended AV escape during the first cycle operated in the DDD mode, wherein the extended AV escape interval is extended relative to a normal AV escape interval used in normal DDD operation.
- 67. The IMD of claim 66, wherein ventricular activity sensed during the extended AV escape interval indicates intact AV conduction and triggers the means for switching to the atrial based pacing mode.
- 68. The IMD of claim 66, further comprising means for operating in the DDD pacing mode that implement the normal AV escape interval for cycles subsequent to the first cycle operated in the DDD pacing mode.
- 69. The IMD of claim 54, wherein the means for determining if intact AV conduction is present while operating in the DDD pacing mode include means for extending an AV escape interval for at least one cardiac cycle.
- 70. The IMD of claim 69, wherein the means for extending the AV escape interval selectively extend the AV escape interval to any length up to and including a length of an A-A interval.
- 71. The IMD of claim 70, wherein the means for determining if intact AV conduction is present will permit an A-A interval to transpire without ventricular activity while operating in the DDD pacing mode.
- 72. The IMD of claim 71, wherein the means for determining if intact AV conduction is present will only permit one A-A interval to transpire without ventricular activity during a given session of determining if intact AV conduction is present.
- 73. The IMD of claim 71, wherein the means for determining if intact AV conduction is present will permit multiple, non-sequential A-A intervals to transpire without ventricular activity during a given session of checking for intact AV conduction.
- 74. The IMD of claim 69, wherein the means for determining if intact AV conduction is present will permit an A-A interval to transpire without ventricular activity while operating in the DDD pacing mode and determining if intact AV conduction is present.
- 75. The IMD of claim 54, wherein the means for determining if intact AV conduction is present includes means for inhibiting the delivery of a ventricular pace for one complete A-A interval.
- 76. The IMD of claim 54, wherein the means for checking for intact AV conduction periodically check for intact AV conduction while the IMD operates in the DDD pacing mode.
- 77. The IMD of claim 54, wherein the means for determining if intact AV conduction is present function during a first cycle operated in the DDD mode and inhibition of a ventricular pace is indicative of intact conduction.
- 78. An implantable medical device (IMD) for selectively providing cardiac pacing comprising:
means for operating the IMD in an atrial based pacing mode; means for monitoring A-A intervals for ventricular activity; means for switching to a dual chamber pacing mode if no ventricular activity is sensed in a given A-A interval; means for operating in the dual chamber pacing mode for at least two consecutive A-A intervals immediately subsequent to the given A-A interval; means for determining if intact AV conduction is present subsequent to switching to the dual chamber pacing mode; and means for switching the IMD back to the atrial based pacing mode if intact AV conduction is found.
- 79. The IMD of claim 78, further comprising means for operating in the dual chamber pacing mode for a predetermined number of cardiac cycles prior to determining if intact AV conduction is present.
- 80. The IMD of claim 78, wherein the means for switching to dual chamber pacing mode further include:
means for switching to a first dual chamber pacing mode for one A-A interval immediately subsequent to the given A-A interval; and means for switching to a second dual chamber pacing mode for a second A-A interval immediately following the one A-A interval.
- 81. The IMD of claim 80, further comprising means for switching to a third dual chamber pacing mode for a third A-A interval immediately following the second A-A interval.
- 82. The IMD of claim 80, wherein the first dual chamber pacing mode is DDI.
- 83. The IMD of claim 80, wherein the second dual chamber pacing mode is DDD.
- 84. The IMD of claim 81, wherein the second dual chamber mode is DDD with a first AV escape interval and the third dual chamber mode is DDD with a second AV escape interval, wherein the first AV escape interval is longer than the second AV escape interval.
- 85. The IMD of claim 84, wherein ventricular activity sensed during the first AV escape interval indicates intact AV conduction and triggers the means for switching to the atrial based pacing mode.
- 86. The IMD of claim 78, wherein the means for operating the IMD in an atrial based pacing mode deliver every atrial pulse at a level sufficient for atrial capture while operating in the atrial based pacing mode.
- 87. The IMD of claim 78, wherein the means for determining if intact AV conduction is present include means for extending an AV escape interval for at least one cardiac cycle.
- 88. The IMD of claim 87, wherein the means for extending the AV escape interval selectively extend the AV escape interval to any length up to and including a length of an A-A interval.
- 89. The IMD of claim 87, wherein the means for determining if AV conduction is present permit an A-A interval to transpire without ventricular activity while determining if intact AV conduction is present and operating in the dual chamber pacing mode.
- 90. The IMD of claim 89, wherein the means for determining if AV conduction is present permit only one A-A interval to transpire without ventricular activity while determining if intact AV conduction is present.
- 91. The IMD of claim 78, wherein the means for determining if intact AV conduction is present inhibit the delivery of a ventricular pace for one complete A-A interval.
- 92. The IMD of claim 78, wherein the means for determining if intact AV conduction is present actively change at least one parameter while operating in the dual chamber mode.
- 93. The IMD of claim 78, further comprising means for delivering a ventricular support pace during a first A-A interval operated in the dual chamber pacing mode.
- 94. The IMD of claim 93, wherein the means for delivering the ventricular support pace deliver the support pace after a truncated A-V escape interval.
- 95. The IMD of claim 94, wherein the truncated A-V escape interval is about 80 milliseconds.
- 96. The IMD of claim 78, wherein the atrial based pacing mode is selected from the group consisting of: AAI, AAI/R, ADI, ADI/R.
- 97. An implantable medical device (IMD) for selectively providing cardiac pacing comprising:
means for operating the IMD in an atrial based pacing mode; means for monitoring A-A intervals for ventricular activity; means for switching to a dual chamber pacing mode if no ventricular activity is sensed in a given A-A interval; means for operating in the dual chamber pacing mode for at least two consecutive A-A intervals immediately subsequent to the given A-A interval; and means for switching to the atrial based pacing mode if a ventricular pacing pulse is inhibited while in the dual chamber pacing mode.
- 98. The IMD of claim 97, further comprising means for extending an AV escape interval from a normal value to an extended value for at least one cardiac cycle while operating in the dual chamber pacing mode.
- 99. The IMD of claim 98, wherein the extended AV escape interval is equal to an A-A interval.
- 100. The IMD of claim 98, wherein the means for extending the A-V escape interval periodically extend the A-V escape interval.
- 101. The IMD of claim 100, wherein the means for extending the A-V escape interval extend the AV escape interval for only one cardiac cycle.
- 102. The IMD of claim 100, wherein the means for extending the A-V escape interval extend the AV escape interval for multiple, non-consecutive cardiac cycles.
- 103. The IMD of claim 97, wherein the atrial based pacing mode is selected from the group consisting of: AAI, AAI/R, ADI, ADI/R.
- 104. The IMD of claim 97, further comprising means for delivering a ventricular support pace during a first A-A interval operated in the dual chamber pacing mode.
- 105. The method of claim 104, wherein the means for delivering the ventricular support pace deliver the support pace after a truncated A-V escape interval.
- 106. The IMD of claim 105, wherein the truncated A-V escape interval is about 80 milliseconds.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This patent application is a continuation of prior U.S. patent application Ser. No. 10/246,816, filed Sep. 17, 2002, entitled “PREFERRED ADI/R: A PERMANENT PACING MODE TO ELIMINATE VENTRICULAR PACING WHILE MAINTAINING BACKUP SUPPORT”, which is a continuation-in-part of Ser. No. 09/746,571, filed Dec. 21, 2000, entitled “PREFERRED ADI/R: A PERMANENT PACING MODE TO ELIMINATE VENTRICULAR PACING WHILE MAINTAINING BACKUP SUPPORT”, both of which are herein incorporated by reference in their entirety.
Continuations (1)
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Continuation in Parts (1)
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