IP Library Granted Patent US 45,922
Granted Patent E1
US 45,922 · App. 13/872,037 · Granted Mar 15, 2016

Processing pulse signal in conjunction with accelerometer signal in cardiac resuscitation

Inventors: Alan F. Marcovecchio (San Clemente, CA); Frederick Geheb, Sr. (Danvers, MA); Donald R. Boucher (Andover, MA)
Assignee: ZOLL Medical Corporation
A61H31/00A61B5/021A61B5/0205A61B5/11A61B5/024A61H31/005
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Quick Facts
Patent No.
US 45,922
App. No.
13/872,037
Granted
Mar 15, 2016
Kind
E1
Abstract

A cardiac resuscitation device that includes a pulse sensor configured to detect pulse information characterizing the cardiac pulse in the patient, an accelerometer configured to detect chest movements of the patient during chest compressions, and memory and processing circuits configured to process the outputs of the pulse sensor and accelerometer to monitor the effect that chest compressions have on the patient's pulse.

Claims (28)

1. A cardiac resuscitation device, comprising

a pulse sensor configured to detect pulse information characterizing the cardiac pulse in the patient, wherein the pulse sensor has a pulse sensor output signal as its output, and wherein the pulse sensor output signal contains information characterizing individual pulses, each corresponding to movement of blood in the patient's circulatory system;

an accelerometer configured to detect chest movements of the patient during a series of individual chest compressions, wherein the accelerometer has an accelerometer output signal as its output; and

memory and processing circuits configured to process the pulse sensor output signal in conjunction with the accelerometer output signal to determine, for each of a plurality of individual chest compressions in the series of individual chest compressions, if the individual chest compression actually caused movement of blood thus resulting in an individual pulse.

2. The device of claim 1 wherein the device comprises a defibrillator for delivering a defibrillation waveform to the patient and chest electrodes for detecting at least one ECG signal on the patient and for delivering a defibrillation waveform to the patient.

3. The device of claim 2 wherein the memory and processing circuits are further configured to analyze the pulse sensor output signal in conjunction with the ECG signal.

4. The device of claim 3 wherein the pulse rate of the pulse signal is compared to the pulse rate of the ECG signal.

5. The subject matter of claim 2 wherein the defibrillator comprises an automatic external defibrillator (AED).

6. The subject matter of claim 5 further comprising the capability to provide the user with prompts for performing CPR, and wherein the prompts are dependent at least in part on whether the processing of the pulse signal determines that individual chest compressions actually cause movements of blood and thus individual pulses.

7. The device of claim 1 wherein the memory and processing circuits are configured to process the accelerometer output signal to determine the rate and depth of delivered individual chest compressions.

8. The device of claim 1 wherein the memory and processing circuits are configured to process the pulse sensor output signal to determine the magnitude and frequency of the patient's pulse.

9. The subject matter of claim 1 wherein the memory and processing circuits are further configured to determine the efficacy of CPR treatment of the patient.

10. A cardiac resuscitation device, comprising

a pulse sensor configured to detect pulse information characterizing the cardiac pulse in the patient, wherein the pulse sensor has a pulse sensor output signal as its output, and wherein the pulse sensor output signal contains information characterizing individual pulses, each corresponding to movement of blood in the patient's circulatory system;

a sensor configured to detect chest movements of the patient during a series of individual chest compressions, wherein the sensor has a sensor output signal as its output; and

memory and processing circuits configured to process the pulse sensor output signal in conjunction with the sensor output signal to determine, for each of a plurality of individual chest compressions in the series of individual chest compressions, if the individual chest compression actually caused movement of blood thus resulting in an individual pulse,

wherein the pulse sensor and memory and processing circuits are further configured to provide the user with prompts for performing CPR, and wherein the prompts are dependent at least in part on whether the processing of the pulse signal determines that individual chest compressions actually cause movements of blood and thus individual pulses.

11. A cardiac resuscitation device, comprising

a pulse sensor configured to detect pulse information characterizing the cardiac pulse in the patient, wherein the pulse sensor has a pulse sensor output signal as its output, and wherein the pulse sensor output signal contains information characterizing individual pulses, each corresponding to movement of blood in the patient's circulatory system;

a sensor configured to detect chest movements of the patient during a series of individual chest compressions, wherein the sensor has a sensor output signal as its output; and

memory and processing circuits configured to process the pulse sensor output signal in conjunction with the sensor output signal to determine, for each of a plurality of individual chest compressions in the series of individual chest compressions, if the individual chest compression actually caused movement of blood thus resulting in an individual pulse,

wherein the pulse sensor and memory and processing circuits are configured to process the pulse sensor output signal throughout a cardiac resuscitation to determine when the patient exhibits a pulse sufficient to not require further CPR.

12. The device of claim 11 wherein the pulse sensor and memory and processing circuits are configured to provide the user with a prompt indicating that further CPR is not required.

13. A cardiac resuscitation device, comprising

a pulse sensor configured to detect pulse information characterizing the cardiac pulse in the patient, wherein the pulse sensor has a pulse sensor output signal as its output, and wherein the pulse sensor output signal contains information characterizing individual pulses, each corresponding to movement of blood in the patient's circulatory system;

a sensor configured to detect chest movements of the patient during a series of individual chest compressions, wherein the sensor has a sensor output signal as its output; and

memory and processing circuits configured to process the pulse sensor output signal in conjunction with the sensor output signal to determine, for each of a plurality of individual chest compressions in the series of individual chest compressions, if the individual chest compression actually caused movement of blood thus resulting in an individual pulse,

wherein the pulse sensor and memory and processing circuits are configured to process the pulse sensor output signal throughout a cardiac resuscitation to inform the user of when the patient's pulse returns.

Continuity (5)
Reissue 11228857 · Sep 15, 2005
Continuation 13025124 · Feb 10, 2011
Reissue 11228857 · Sep 15, 2005
Continuation 10441933 · May 20, 2003
Continuation In Part 10421652 · Apr 23, 2003