Method and system for measuring cardiac electrogram depolarization voltage
US-2024407702-A1 · Dec 12, 2024 · US
US9545211B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9545211-B2 |
| Application number | US-201514656666-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 12, 2015 |
| Priority date | Mar 27, 2012 |
| Publication date | Jan 17, 2017 |
| Grant date | Jan 17, 2017 |
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The system and method provide for electrocardiogram analysis and optimization of patient-customized cardiopulmonary resuscitation and therapy delivery. An external medical device includes a housing and a processor within the housing. The processor can be configured to receive an input signal for a patient receiving chest compressions and to select at least one filter mechanism and to apply the filter mechanism to the signal to at least substantially remove chest compression artifacts from the signal. A real time dynamic analysis of a cardiac rhythm is applied to adjust and integrate CPR prompting of a medical device. Real-time cardiac rhythm quality is facilitated using a rhythm assessment meter.
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What is claimed is: 1. A system for treating a cardiac arrest patient, the system comprising: an ECG monitor; and a mechanical chest compression device wherein, the mechanical chest compression device is configured to automatically deliver a series of chest compressions and ventilation pauses, the ECG monitor is configured to filter the ECG signal to remove the compression artifact and produce a filtered ECG signal, and the ECG monitor is configured to display the filtered signal when the mechanical chest compression device is delivering chest compressions and displays the unfiltered ECG signal during ventilation pauses, wherein the ECG monitor includes a filter configured to perform the filtering of the ECG signal by attenuating a plurality of regularly spaced bands, and wherein the ECG monitor is configured to change a quality factor (Q) of the filter responsive to an event. 2. The system of claim 1 , wherein the ECG monitor is configured to identify the ventilation pauses. 3. The system of claim 2 , wherein the ECG monitor is further configured to automatically switch from displaying the filtered ECG signal to displaying the unfiltered ECG signal responsive to identifying the ventilation pauses. 4. The system of claim 1 , wherein the mechanical chest compression device is configured to transmit a signal to the ECG monitor indicative of the ventilation pauses. 5. The system of claim 1 , wherein the filter comprises a comb filter. 6. The system of claim 1 , wherein the event includes an attachment of a monitoring lead to the ECG monitor, a delivery of a shock, or a beginning of the delivery of chest compressions. 7. The system of claim 1 , wherein the ECG monitor is configured to temporarily reduce the Q of the filter from a first value to a second value responsive to the event. 8. The system of claim 7 , wherein the ECG monitor is further configured to restore the Q of the filter from the second value back to the first value after a period of time. 9. The system of claim 7 , wherein the period of time is one second. 10. The system of claim 7 , wherein the first value is 16. 11. The system of claim 7 , wherein the second value is 2. 12. A system for treating a cardiac arrest patient, the system comprising: an ECG monitor; and a mechanical chest compression device wherein, the mechanical chest compression device is configured to automatically deliver a series of chest compressions and ventilation pauses, the ECG monitor is configured to filter the ECG signal to remove the compression artifact and produce a filtered ECG signal, and the ECG monitor is configured to display the filtered signal when the mechanical chest compression device is delivering chest compressions and displays the unfiltered ECG signal during ventilation pauses, wherein the ECG monitor includes a filter configured to perform the filtering of the ECG signal by attenuating a plurality of regularly spaced bands, and wherein the ECG monitor includes a filter protection switch configured to allow the filter to operate normally during the chest compressions. 13. The system of claim 12 , wherein an input to a numerator delay line of the filter is the ECG signal. 14. The system of claim 12 , wherein the filter protection switch is further configured to switch to a protected mode during the ventilation pauses. 15. The system of claim 14 , wherein an input to a numerator delay line of the filter is taken from an output of the numerator delay line when the filter protection switch is in the protected mode. 16. The system of claim 15 , wherein the filter protection switch is further configured to switch back from the protected mode to allow the filter to operate normally again responsive to a resuming of the chest compressions after the ventilation pauses. 17. The system of claim 16 , wherein the input to the numerator delay line of the filter is the ECG signal when the filter protection switch is no longer in the protected mode. 18. The system of claim 12 , wherein the filter comprises a comb filter. 19. The system of claim 12 , wherein the ECG monitor is configured to identify the ventilation pauses. 20. The system of claim 19 , wherein the ECG monitor is further configured to automatically switch from displaying the filtered ECG signal to displaying the unfiltered ECG signal responsive to identifying the ventilation pauses. 21. The system of claim 12 , wherein the mechanical chest compression device is configured to transmit a signal to the ECG monitor indicative of the ventilation pauses.
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