IP Library Granted Patent US 11,058,885
Granted Patent B2
US 11,058,885 · App. 16/197,638 · Granted Jul 13, 2021

Wearable cardioverter defibrillator (WCD) system detecting ventricular tachycardia and/or ventricular fibrillation using variable heart rate decision threshold

Inventor: Jaeho Kim (Redmond, WA)
Assignee: West Affum Holdings Corp.
A61N1/3987A61N1/3904A61N1/3925A61N1/046A61N1/0484
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Quick Facts
Patent No.
US 11,058,885
App. No.
16/197,638
Granted
Jul 13, 2021
Kind
B2
Abstract

A wearable cardioverter defibrillator (WCD) system according to embodiments is configured to be worn by an ambulatory patient, and to sense ECG signals of the patient. The WCD system includes a processor that extracts heart rate values from the ECG signals. If a heart rate value exceeds a decision threshold then, for subsequent heart rate values, the decision threshold may be lowered for administering a certain shock to the patient. In some embodiments the lowering is due to a cancel input being received, an intermediate shock having been administered, and so on. In some embodiments the decision threshold is lowered only temporarily. This may help with detecting a tachycardic event, and in particular with preventing the inhibiting of detecting such an event, as the patient's heart rate during such events may decrease while the heart's condition is deteriorating.

Claims (72)

1. A wearable cardioverter defibrillator (WCD) system for an ambulatory patient, comprising:

an energy storage module configured to store an electrical charge;

a first electrode;

a second electrode configured to sense an electrocardiogram (ECG) signals of the ambulatory patient;

a support structure configured to be worn by an ambulatory patient so as to maintain the first electrode and the second electrode on a body of the ambulatory patient; and

a processor configured to:

extract a first heart rate value from the ECG signals sensed by the second electrode,

then determine whether or not the first heart rate value is larger than a first decision threshold,

then extract a second heart rate value from the ECG signals,

determine whether or not the second heart rate value is larger than a second decision threshold, the second decision threshold being less than the first decision threshold by an adjustment fraction, the adjustment fraction being at least 2%, and

cause, responsive to determining that the second heart rate value is larger than the second decision threshold, at least some of the stored electrical charge to be discharged via the first electrode through the ambulatory patient so as to deliver a certain shock to the ambulatory patient.

2. The WCD system of claim 1 , in which

the adjustment fraction is at least 5%.

3. The WCD system of claim 1 , in which

the second decision threshold is less than the first decision threshold by the adjustment fraction responsive to having determined that the first heart rate value is larger than the first decision threshold.

4. The WCD system of claim 1 , further comprising:

a cancel switch configured to receive a shock cancel input, and in which

a shock cancel input is received after it is determined that the first heart rate value is larger than a first decision threshold and before the second heart rate value is extracted, and

the second decision threshold is thus less than the first decision threshold responsive to the shock cancel input having been received.

5. The WCD system of claim 1 , in which

the processor is further configured to cause, responsive to determining that the first heart rate value is larger than the first decision threshold, at least some of the stored electrical charge to be discharged via the first electrode through the ambulatory patient so as to deliver an intermediate shock to the ambulatory patient before the second heart rate value is extracted, the intermediate shock distinct from the certain shock, and

the second decision threshold is thus less than the first decision threshold responsive to the intermediate shock being delivered.

6. The WCD system of claim 1 , in which

the second decision threshold is thus less than the first decision threshold responsive to the second heart rate value being extracted within a critical period after the first heart rate value was extracted.

7. The WCD system of claim 6 , in which

the processor is further configured to:

determine whether or not there is noise in the ECG signals for a certain delay time, and

the critical period is increased to account for the delay time responsive to determining that there is noise in the ECG signals.

8. A non-transitory computer-readable storage medium storing one or more programs which, when executed by at least one processor of a wearable cardioverter defibrillator (WCD) system, the WCD system including an energy storage module storing an electrical charge, a first electrode, a second electrode sensing an electrocardiogram (ECG) signals of the ambulatory patient, a support structure configured to be worn by an ambulatory patient so as to maintain the first electrode and the second electrode on a body of the ambulatory patient, these one or more programs result in operations comprising:

extracting a first heart rate value from the ECG signals sensed by the second electrode;

then determining whether or not the first heart rate value is larger than a first decision threshold;

then extracting a second heart rate value from the ECG signals;

determining whether or not the second heart rate value is larger than a second decision threshold, the second decision threshold being less than the first decision threshold by an adjustment fraction, the adjustment fraction being at least 2%; and

causing, responsive to determining that the second heart rate value is larger than the second decision threshold, at least some of the stored electrical charge to be discharged via the first electrode through the ambulatory patient so as to deliver a certain shock to the ambulatory patient.

9. The medium of claim 8 , in which

the adjustment fraction is at least 5%.

10. The medium of claim 8 , in which

the second decision threshold is less than the first decision threshold by the adjustment fraction responsive to having determined that the first heart rate value is larger than the first decision threshold.

11. The medium of claim 8 , in which

the WCD system further includes a cancel switch, and

when the one or more programs are executed by the at least one processor, the operations further comprise: receiving, by the cancel switch a shock cancel input after it is determined that the first heart rate value is larger than a first decision threshold and before the second heart rate value is extracted, and

in which the second decision threshold is thus less than the first decision threshold responsive to the shock cancel input having been received.

12. The medium of claim 8 , in which when the one or more programs are executed by the at least one processor, the operations further comprise:

cause, responsive to determining that the first heart rate value is larger than the first decision threshold, at least some of the stored electrical charge to be discharged via the first electrode through the ambulatory patient so as to deliver an intermediate shock to the ambulatory patient before the second heart rate value is extracted, the intermediate shock distinct from the certain shock, and

in which the second decision threshold is thus less than the first decision threshold responsive to the intermediate shock being delivered.

13. The medium of claim 8 , in which

the second decision threshold is thus less than the first decision threshold responsive to the second heart rate value being extracted within a critical period after the first heart rate value was extracted.

14. The medium of claim 13 , in which

it is further determined whether or not there is noise in the ECG signals for a certain delay time, and

the critical period is increased to account for the delay time responsive to determining that there is noise in the ECG signals.

15. A method for a wearable cardioverter defibrillator (WCD) system, the WCD system including an energy storage module storing an electrical charge, a first electrode, a second electrode sensing an electrocardiogram (ECG) signals of the ambulatory patient, a support structure configured to be worn by an ambulatory patient so as to maintain the first electrode and the second electrode on a body of the ambulatory patient, and a processor, the method comprising:

extracting a first heart rate value from the ECG signals sensed by the second electrode;

then determining whether or not the first heart rate value is larger than a first decision threshold;

then extracting a second heart rate value from the ECG signals;

determining whether or not the second heart rate value is larger than a second decision threshold, the second decision threshold being less than the first decision threshold by an adjustment fraction, the adjustment fraction being at least 2%; and

causing, responsive to determining that the second heart rate value is larger than the second decision threshold, at least some of the stored electrical charge to be discharged via the first electrode through the ambulatory patient so as to deliver a certain shock to the ambulatory patient.

16. The method of claim 15 , in which

the adjustment fraction is at least 5%.

17. The method of claim 15 , in which

the second decision threshold is less than the first decision threshold by the adjustment fraction responsive to having determined that the first heart rate value is larger than the first decision threshold.

18. The method of claim 15 , in which

the WCD system further includes a cancel switch, and

further comprising: receiving, by the cancel switch a shock cancel input after it is determined that the first heart rate value is larger than a first decision threshold and before the second heart rate value is extracted, and

in which the second decision threshold is thus less than the first decision threshold responsive to the shock cancel input having been received.

19. The method of claim 15 , further comprising:

cause, responsive to determining that the first heart rate value is larger than the first decision threshold, at least some of the stored electrical charge to be discharged via the first electrode through the ambulatory patient so as to deliver an intermediate shock to the ambulatory patient before the second heart rate value is extracted, the intermediate shock distinct from the certain shock, and

in which the second decision threshold is thus less than the first decision threshold responsive to the intermediate shock being delivered.

20. The method of claim 15 , in which

the second decision threshold is thus less than the first decision threshold responsive to the second heart rate value being extracted within a critical period after the first heart rate value was extracted.

21. The method of claim 20 , in which

it is further determined whether or not there is noise in the ECG signals for a certain delay time, and

the critical period is increased to account for the delay time responsive to determining that there is noise in the ECG signals.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Jul 11, 2026
From: PERCEPTIVE CREDIT HOLDINGS IV, LP
To: WEST AFFUM HOLDINGS DESIGNATED ACTIVITY COMPANY
Reel/Frame 075954/0207 →
SECURITY AGREEMENT Recorded Oct 4, 2023
From: WEST AFFUM HOLDINGS DESIGNATED ACTIVITY COMPANY
To: PERCEPTIVE CREDIT HOLDINGS IV, LP
Reel/Frame 065116/0049 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2022
From: WEST AFFUM HOLDINGS CORP.
To: WEST AFFUM HOLDINGS DAC
Reel/Frame 060389/0694 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2020
From: KESTRA MEDICAL TECHNOLOGIES, INC.
To: WEST AFFUM HOLDINGS CORP.
Reel/Frame 053721/0954 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 21, 2018
From: KIM, JAEHO
To: PHYSIO-CONTROL DEVELOPMENT CO., LLC
Reel/Frame 047562/0940 →
Continuity (2)
Provisional Application 62592070 · Nov 29, 2017
Related Publication 20190160297A1 · May 30, 2019
Cited By (1)
US 12,642,981