IP Library Granted Patent US 7,623,917
Granted Patent B2
US 7,623,917 · App. 11/322,761 · Granted Nov 24, 2009

Method of optimizing data collection and therapy delivery based on respiration

Assignee: Medtronic, Inc.
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Quick Facts
Patent No.
US 7,623,917
App. No.
11/322,761
Granted
Nov 24, 2009
Kind
B2
Abstract

A method and system for improving or optimizing the collection of data from and the delivery of therapy to a patient by an implantable medical device (IMD) is disclosed which uses information about the patient's respiratory cycle.

Claims (44)

1. A computer-readable medium programmed with instructions for performing a method of collecting hemodynamic data in an implantable medical device, the medium comprising instructions for causing a programmable processor to:

monitor respiratory cycles of a patient, including determining when an inspiration phase is occurring and when an expiration phase is occurring;

identify at least one timing reference point of a respiratory cycle;

collect a set of hemodynamic data from the patient at intervals based on the at least one timing reference point of a respiratory cycle such that all data in the set were obtained during approximately the same portion of the respiratory cycle; and

collect multiple sets of hemodynamic data using multiple timing reference points.

2. A medium according to claim 1 further comprising instruction to determine the inspiration and expiration phases of the respiratory cycle by low-pass filtering a hemodynamic pressure signal of the patient.

3. A medium according to claim 2 wherein the hemodynamic pressure parameter is right ventricular pressure.

4. A medium according to claim 1 wherein the first and second sets of therapy parameters include cardiac pacing parameters.

5. A medium according to claim 4 wherein the cardiac pacing parameters include at least an interventricular paced timing delay, comprising a time interval from the occurrence of a depolarization event in one ventricular chamber to the programmed delivery of a pacing stimulus in the other ventricular chamber.

6. A medium according to claim 5 wherein the interventricular paced timing delay of the first set of therapy parameters is different from the interventricular timing delay of the second set of therapy parameters.

7. A medium according to claim 6 wherein the interventricular timing delay of the first set of therapy parameters is greater than the interventricular timing delay of the second set of therapy parameters.

8. A medium according to claim 4 wherein the cardiac pacing parameters include at least an atrio-ventricular (AV) delay.

9. A medium according to claim 1 wherein the at least one timing reference point of a respiratory cycle includes a relative peak value that occurs during the respiratory cycle.

10. A medium according to claim 1 further comprising instructions to sample the hemodynamic data at most once per respiratory cycle to collect the set of hemodynamic data.

11. A medium according to claim 10 further comprising instructions to vary the number of respiratory cycles between successive hemodynamic data samples.

12. A medium according to claim 11 further comprising instructions to vary the number of respiratory cycles between successive hemodynamic data samples in response to changes in respiration rate.

13. A computer-readable medium programmed with instructions for performing a method of collecting hemodynamic data in an implantable medical device, the medium comprising instructions for causing a programmable processor to:

monitor respiratory cycles of a patient, including determining when an inspiration phase is occurring and when an expiration phase is occurring;

identify at least one timing reference point of a respiratory cycle;

collect a set of hemodynamic data from the patient at intervals based on the at least one timing reference point of a respiratory cycle such that all data in the set were obtained during approximately the same portion of the respiratory cycle; and

collect multiple sets of hemodynamic data using a single timing reference point and at least one reference offset.

14. A medical device system comprising:

means for monitoring respiratory cycles of a patient, including determining when an inspiration phase is occurring and when an expiration phase is occurring;

means for identifying at least one timing reference point of a respiratory cycle;

means for collecting a set of hemodynamic data from the patient at intervals based on the at least one timing reference point of a respiratory cycle such that all data in the set were obtained during approximately the same portion of the respiratory cycle; and

means for collecting multiple sets of hemodynamic data using multiple timing reference points.

15. A system according to claim 14 further comprising:

means for delivering a first set of therapy parameters during the inspiration phase; and

means for delivering a second set of therapy parameters different from the first set during expiration phase.

16. A system according to claim 15 wherein the first and second set of therapy parameters includes cardiac pacing parameters including at least an interventricular paced timing delay (V-V delay), the V-V delay comprising a time interval from the occurrence of a depolarization event in one ventricular chamber to the programmed delivery of a pacing stimulus in the other ventricular chamber.

17. A system according to claim 14 further comprising means for delivering therapy parameters that vary substantially linearly as a function of the phase of the patient's respiratory cycle.

18. A system according to claim 14 further comprising means for delivering therapy parameters that vary by different amounts between respiratory cycles.

19. A system according to claim 14 further comprising instruction to determine the inspiration and expiration phases of the respiratory cycle by low-pass filtering a hemodynamic pressure signal of the patient.

20. A system according to claim 19 wherein the hemodynamic pressure parameter is right ventricular pressure.

21. A system according to claim 14 wherein the first and second sets of therapy parameters include cardiac pacing parameters.

22. A system according to claim 21 wherein the cardiac pacing parameters include at least an interventricular paced timing delay, comprising a time interval from the occurrence of a depolarization event in one ventricular chamber to the programmed delivery of a pacing stimulus in the other ventricular chamber.

23. A system according to claim 22 wherein the interventricular paced timing delay of the first set of therapy parameters is different from the interventricular timing delay of the second set of therapy parameters.

24. A system according to claim 23 wherein the interventricular timing delay of the first set of therapy parameters is greater than the interventricular timing delay of the second set of therapy parameters.

25. A system according to claim 21 wherein the cardiac pacing parameters include at least an atrio-ventricular (AV) delay.

26. A medical device system comprising:

means for monitoring respiratory cycles of a patient, including determining when an inspiration phase is occurring and when an expiration phase is occurring;

means for identifying at least one timing reference point of a respiratory cycle;

means for collecting a set of hemodynamic data from the patient at intervals based on the at least one timing reference point of a respiratory cycle such that all data in the set were obtained during approximately the same portion of the respiratory cycle; and

means for collecting multiple sets of hemodynamic data using a single timing reference point and at least one reference offset.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 7, 2006
From: CHO, YONG K.; BURNES, JOHN E.
To: MEDTRONIC, INC.
Reel/Frame 017438/0155 →
Continuity (1)
Related Publication 20070156193A1 · Jul 5, 2007