IP Library Patent Application 18365908
Patent Application
App. No. 18/365,908

ATRIAL TRACKING CONFIRMATION IN AN INTRACARDIAC VENTRICULAR PACEMAKER

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Patent No.
US None
App. No.
18/365,908
Abstract

A pacemaker having a motion sensor delivers atrial-synchronized ventricular pacing by detecting events from a signal produced by the motion sensor and delivering ventricular pacing pulses at a rate that tracks the rate of the detected events. The pacemaker is configured to confirm atrial tracking of the ventricular pacing pulses by determining if detected events from the motion sensor signal are atrial events. The pacemaker is configured to adjust a control parameter used for detecting events from the motion sensor signal if atrial tracking is not confirmed.

Claims (78)

1 . A medical device comprising:

a pulse generator configured to deliver ventricular pacing pulses;

a motion sensor configured to sense a motion signal;

a control circuit in communication with the motion sensor and the pulse generator and configured to:

apply a first post-ventricular atrial refractory period to the motion signal in response to a delivered ventricular pacing pulse;

determine that a rate of the delivered ventricular pacing pulses is greater than a threshold rate;

apply a second post-ventricular atrial refractory period to the motion signal in response to determining that the rate of the delivered ventricular pacing pulses is greater than the threshold rate, the second post-ventricular atrial refractory period being greater than the first post-ventricular atrial refractory oversensing period;

sense a non-refractory atrial event signal from the motion signal after the second post-ventricular atrial refractory period; and

based on a time of the non-refractory atrial event signal, select one of the first post-ventricular atrial refractory period or the second post-ventricular atrial refractory period to be applied to the motion signal following at least one subsequent ventricular pacing pulse.

2 . The medical device of claim 1 wherein the control circuit is further configured to control the pulse generator to deliver each of a plurality of the ventricular pacing pulses by:

applying the first post-ventricular atrial refractory period;

sensing an atrial event signal from the motion signal after the first post-ventricular atrial refractory period; and

in response to sensing the atrial event signal, controlling the pulse generator to deliver a ventricular pacing pulse of the plurality of the ventricular pacing pulses.

3 . The medical device of claim 2 wherein the control circuit is further configured to determine the second post-ventricular atrial blanking period by:

determining a ventricular to atrial event time interval extending from one of the delivered ventricular pacing pulses to one of the atrial event signals sensed from the motion signal after the first post-ventricular atrial refractory period; and

determining the second post-ventricular atrial blanking period based on the determined ventricular to atrial event time interval.

4 . The medical device of claim 1 wherein the control circuit is further configured to:

based on the time of the non-refractory atrial event signal, select one of the first post-ventricular atrial refractory period or the second post-ventricular atrial refractory period to be applied following at least one subsequent ventricular pacing pulse by:

when the non-refractory atrial event signal is not sensed later than a tracking confirmation time interval, apply the second post-ventricular atrial refractory period following at least one subsequent ventricular pacing pulse; and

when the non-refractory atrial event signal is sensed later than the tracking confirmation time interval, restore the first post-ventricular atrial refractory period.

5 . The medical device of claim 4 wherein the control circuit is further configured to increase an oversense counter when the non-refractory atrial event signal is not sensed later than the tracking confirmation time interval.

6 . The medical device of claim 1 wherein the control circuit is further configured to:

apply a tracking confirmation time interval in response to detecting the rate of the ventricular pacing pulses being greater than the threshold rate; and

determine the time of the non-refractory atrial event signal by determining if the non-refractory atrial event signal sensed after the second post-ventricular atrial refractory period is sensed later than the tracking confirmation time interval.

7 . The medical device of claim 6 wherein the control circuit is further configured to:

determine a ventricular rate interval from the delivered ventricular pacing pulses; and

determine the tracking confirmation time interval based on twice the ventricular rate interval.

8 . The medical device of claim 1 wherein the control circuit is further configured to:

determine a ventricular rate interval from the delivered ventricular pacing pulses;

determine an extended lower rate interval based on the ventricular rate interval; and

start the extended lower rate interval and the second post-ventricular atrial refractory period upon a delivered ventricular pacing pulse in response to determining that the rate of the delivered ventricular pacing pulses is greater than the threshold rate.

9 . The medical device of claim 8 wherein the control circuit is further configured to:

determine the ventricular rate interval by determining a median ventricular rate interval; and

determine the extended lower rate interval based on twice the median ventricular rate interval.

10 . The medical device of claim 1 further comprising:

a housing enclosing the pulse generator, the motion sensor and the control circuit; and

at least one pair of electrodes on the housing for delivering the ventricular pacing pulses.

11 . A method comprising:

delivering ventricular pacing pulses;

sensing a motion signal;

applying a first post-ventricular atrial refractory period to the motion signal in response to a delivered ventricular pacing pulse;

determining that a rate of the delivered ventricular pacing pulses is greater than a threshold rate;

applying a second post-ventricular atrial refractory period to the motion signal in response to determining that the rate of the delivered ventricular pacing pulses is greater than the threshold rate, the second post-ventricular atrial refractory period being longer than the first post-ventricular atrial refractory oversensing period;

sensing a non-refractory atrial event signal from the motion signal after the second post-ventricular atrial refractory period; and

based on a time of the sensed non-refractory atrial event signal, selecting one of the first post-ventricular atrial refractory period or the second post-ventricular atrial refractory period to be applied to the motion signal following at least one subsequent ventricular pacing pulse.

12 . The method of claim 11 delivering each of a plurality of the ventricular pacing pulses comprises:

applying the first post-ventricular atrial refractory period;

sensing an atrial event signal from the motion signal after the first post-ventricular atrial refractory period; and

in response to sensing the atrial event signal, delivering a ventricular pacing pulse of the plurality of the ventricular pacing pulses.

13 . The method of claim 12 further comprising determining the second post-ventricular atrial blanking period by:

determining a ventricular to atrial event time interval extending from one of the delivered ventricular pacing pulses to one of the atrial event signals sensed from the motion signal after the first post-ventricular atrial refractory period; and

determining the second post-ventricular atrial blanking period based on the determined ventricular to atrial event time interval.

14 . The method of claim 11 further comprising:

based on the time of the non-refractory atrial event signal, selecting one of the first post-ventricular atrial refractory period or the second post-ventricular atrial refractory period to be applied following at least one subsequent ventricular pacing pulse by:

when the non-refractory atrial event signal is not sensed later than a tracking confirmation time interval, applying the second post-ventricular atrial refractory period following at least one subsequent ventricular pacing pulse; and

when the non-refractory atrial event signal is sensed later than the tracking confirmation time interval, restoring the first post-ventricular atrial refractory period.

15 . The method of claim 14 further comprising increasing an oversense counter when the non-refractory atrial event signal is not sensed later than the tracking confirmation time interval.

16 . The method of claim 11 further comprising:

applying a tracking confirmation time interval in response to detecting the rate of the ventricular pacing pulses being greater than the threshold rate; and

determining the time of the non-refractory atrial event signal by determining if the non-refractory atrial event signal sensed after the second post-ventricular atrial refractory period is sensed later than the tracking confirmation time interval.

17 . The method of claim 16 further comprising:

determining a ventricular rate interval from the delivered ventricular pacing pulses; and

determining the tracking confirmation time interval based on twice the ventricular rate interval.

18 . The method of claim 11 wherein the control circuit is further configured to:

determining a ventricular rate interval from the delivered ventricular pacing pulses;

determining an extended lower rate interval based on the ventricular rate interval; and

starting the extended lower rate interval and the second post-ventricular atrial refractory period upon a delivered ventricular pacing pulse in response to determining that the rate of the delivered ventricular pacing pulses is greater than the threshold rate.

19 . The method of claim 18 further comprising:

determining the ventricular rate interval by determining a median ventricular rate interval; and

determining the extended lower rate interval based on twice the median ventricular rate interval.

20 . A non-transitory computer readable medium storing a set of instructions that, when executed by a control circuit of a medical device, cause the device to:

deliver ventricular pacing pulses;

sense a motion signal;

apply a first post-ventricular atrial refractory period to the motion signal in response to a delivered ventricular pacing pulse;

determine that a rate of the delivered ventricular pacing pulses is greater than a threshold rate;

apply a second post-ventricular atrial refractory period to the motion signal in response to determining that the rate of the delivered ventricular pacing pulses is greater than the threshold rate, the second post-ventricular atrial refractory period being longer than the first post-ventricular atrial refractory oversensing period;

sense a non-refractory atrial event signal from the motion signal after the second post-ventricular atrial refractory period; and

based on a time of the sensed non-refractory atrial event signal, select one of the first post-ventricular atrial refractory period or the second post-ventricular atrial refractory period to be applied to the motion signal following at least one subsequent ventricular pacing pulse.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2023
From: SHELDON, TODD J.; DEMMER, WADE M.; HERR, GREGGORY R.
To: MEDTRONIC, INC.
Reel/Frame 064500/0901 →