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US20140323928A1 - Compression Depth Monitor with Variable Release Velocity Feedback - Google Patents

Compression Depth Monitor with Variable Release Velocity Feedback
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Publication number
US20140323928A1
US20140323928A1US13/874,372US201313874372AUS2014323928A1US 20140323928 A1US20140323928 A1US 20140323928A1US 201313874372 AUS201313874372 AUS 201313874372AUS 2014323928 A1US2014323928 A1US 2014323928A1
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US
United States
Prior art keywords
chest
velocity
compression
compressions
cpr
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
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US13/874,372
Inventor
Guy R. Johnson
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Zoll Medical Corp
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Zoll Medical Corp
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Publication date
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Priority to US13/874,372priorityCriticalpatent/US20140323928A1/en
Assigned to ZOLL MEDICAL CORPORATIONreassignmentZOLL MEDICAL CORPORATIONASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: JOHNSON, GUY R.
Publication of US20140323928A1publicationCriticalpatent/US20140323928A1/en
Priority to US16/167,573prioritypatent/US11944582B2/en
Priority to US18/443,402prioritypatent/US20240307265A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A system for facilitating the effective administration of cardiopulmonary resuscitation (CPR) by providing feedback regarding release velocity, which is the velocity of the chest while resiliently expanding during the upstroke of a CPR compression cycle. The feedback is provided, indicating whether the CPR provider has substantially released the chest, through a control systems which analyzes sensor input corresponding to chest displacement to determine chest compression depth and release velocity, compares the determined release velocity to a desired release velocity threshold. The desired release velocity is determined based on the depth of compression. The desired release velocity may be determined based on assumed or target compression depth, selected by a CPR provider and input into the control system, or the desired release velocity may be determined adaptively, based on the chest compression depth achieved during compressions and/or the rate of compressions, as determined by the control system.

Description

Claims (20)

We claim:
1. A system for facilitating the effective administration of cardiopulmonary resuscitation (CPR), said system comprising:
a housing or other structure adapted to be held in fixed relationship to the chest of a CPR recipient during chest compressions;
a sensor connected to the housing or other structure, the sensor operable to provide at least one signal corresponding to motion of the chest;
an output device for providing prompts to a CPR provider; and
a control system operable to receive a signal corresponding to motion of the chest, said control system programmed to determine the depth of compressions from a signal corresponding to motion of the chest, and determine release velocity during a release portion of a CPR compression cycle from a signal corresponding to motion of the chest, and programmed to determine whether the CPR provider is substantially releasing the chest following chest compressions; and further programmed to operate the output device to provide the CPR provider with information as to whether the chest is being substantially released following chest compressions;
wherein the control system is programmed to determine whether the CPR provider has substantially released the chest based on a desired release velocity threshold, and is further programmed to determine the desired release velocity based on the depth of compression.
2. The system ofclaim 1 wherein the control system is programmed to determine whether the CPR provider has substantially released the chest based on a desired release velocity threshold, and is further programmed to determine the desired release velocity adaptively, based on the determined depth of compression.
3. The system ofclaim 1 wherein the control system is programmed to determine the desired release velocity based on the compression depth determined for a single compression.
4. The system ofclaim 1 wherein the control system is programmed to determine the desired release velocity based on the compression depth determined for a series of chest compressions.
5. The system ofclaim 1 wherein the control system is programmed to determine the desired release velocity based on the compression depth determined for a series of chest compressions, and compare the average release velocity achieved over said series of compressions to the desired release velocity to determine whether the CPR provider is substantially releasing the chest following compressions.
6. The system ofclaim 2 wherein the control system is programmed to determine whether the CPR provider is substantially releasing the chest following compressions based on the average release velocity.
7. The system ofclaim 2 wherein the control system is programmed to determine whether the CPR provider is substantially releasing the chest following compressions based on the peak release velocity determined during the release portion of the CPR compression cycle.
8. The system ofclaim 2 wherein the control system is programmed to determine whether the CPR provider is substantially releasing the chest following compressions based on the average release velocity determined during a window of time in the release portion of the CPR compression cycle.
9. The system ofclaim 1 wherein the control system is programmed to determine the desired release velocity based on the compression rate, in addition to the determined compression depth.
10. The system ofclaim 1 wherein the sensor comprises an accelerometer operable to sense acceleration of the chest and provide acceleration signals corresponding to acceleration of the chest, and the control system is programmed to determine the depth of compressions from the acceleration signals and determine release velocity from the accelerations signals.
11. The system ofclaim 1 wherein the sensor comprises an velocity sensor operable to sense velocity of the chest and provide velocity signals corresponding to the velocity of the chest, and the control system is programmed to determine the depth of compressions from the velocity signals and determine release velocity from the velocity signals.
12. The system ofclaim 1 wherein the sensor comprises an displacement sensor operable to sense displacement of the chest and provide displacement signals corresponding to the displacement of the chest, and the control system is programmed to determine the depth of compressions from the displacement signals and determine release velocity from the displacement signals.
13. The system ofclaim 1 wherein the control system is programmed to determine whether the CPR provider has substantially released the chest based on a desired release velocity threshold, and is further programmed to determine the desired release velocity based on the target depth of compression, where the control system further programmed to accept input from a user regarding the target depth of compression as assessed at the time CPR is provided.
14. The system ofclaim 13 wherein the control system is programmed to compare the average release velocity achieved over a series of compressions to the desired release velocity to determine whether the CPR provider is substantially releasing the chest following compressions.
15. The system ofclaim 13 wherein the control system is programmed to determine whether the CPR provider is substantially releasing the chest following compressions based on the average release velocity.
16. The system ofclaim 13 wherein the control system is programmed to determine whether the CPR provider is substantially releasing the chest following compressions based on the peak release velocity determined during the release portion of the CPR compression cycle.
17. The system ofclaim 13 wherein the sensor comprises an accelerometer operable to sense acceleration of the chest and provide acceleration signals corresponding to acceleration of the chest, and the control system is programmed to determine the depth of compressions from the acceleration signals and determine release velocity from the accelerations signals.
18. The system ofclaim 13 wherein the sensor comprises an velocity sensor operable to sense velocity of the chest and provide velocity signals corresponding to the velocity of the chest, and the control system is programmed to determine the depth of compressions from the velocity signals and determine release velocity from the velocity signals.
19. The system ofclaim 13 wherein the sensor comprises an displacement sensor operable to sense displacement of the chest and provide displacement signals corresponding to the displacement of the chest, and the control system is programmed to determine the depth of compressions from the displacement signals and determine release velocity from the displacement signals.
20. A method for facilitating the effective administration of cardiopulmonary resuscitation (CPR), said method comprising:
operating a sensor for generating a signal corresponding to motion of a cardiac arrest victim's chest to determine motion of the cardiac arrest victim's chest during CPR chest compressions;
operating a control system with an output device, wherein said control system is operable to receive a signal corresponding to motion of the chest, said control system programmed to determine the depth of compressions from a signal corresponding to motion of the chest, and determine release velocity during a release portion of a CPR compression cycle from a signal corresponding to motion of the chest, and programmed to determine whether the CPR provider is substantially releasing the chest following chest compressions; and further programmed to operate the output device to provide the CPR provider with information as to whether the chest is being substantially released following chest compressions;
wherein the control system is programmed to determine whether the CPR provider has substantially released the chest based on a desired release velocity threshold, and is further programmed to determine the desired release velocity based on the depth of compression; and
providing, through the output device, a prompt to the CPR provider whether the chest is being substantially released following chest compressions.
US13/874,3722013-04-302013-04-30Compression Depth Monitor with Variable Release Velocity FeedbackAbandonedUS20140323928A1 (en)

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Application NumberPriority DateFiling DateTitle
US13/874,372US20140323928A1 (en)2013-04-302013-04-30Compression Depth Monitor with Variable Release Velocity Feedback
US16/167,573US11944582B2 (en)2013-04-302018-10-23Compression depth monitor with variable release velocity feedback
US18/443,402US20240307265A1 (en)2013-04-302024-02-16Compression Depth Monitor With Variable Release Velocity Feedback

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US13/874,372US20140323928A1 (en)2013-04-302013-04-30Compression Depth Monitor with Variable Release Velocity Feedback

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US16/167,573ContinuationUS11944582B2 (en)2013-04-302018-10-23Compression depth monitor with variable release velocity feedback

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US20140323928A1true US20140323928A1 (en)2014-10-30

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US13/874,372AbandonedUS20140323928A1 (en)2013-04-302013-04-30Compression Depth Monitor with Variable Release Velocity Feedback
US16/167,573Active2035-05-11US11944582B2 (en)2013-04-302018-10-23Compression depth monitor with variable release velocity feedback
US18/443,402PendingUS20240307265A1 (en)2013-04-302024-02-16Compression Depth Monitor With Variable Release Velocity Feedback

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US16/167,573Active2035-05-11US11944582B2 (en)2013-04-302018-10-23Compression depth monitor with variable release velocity feedback
US18/443,402PendingUS20240307265A1 (en)2013-04-302024-02-16Compression Depth Monitor With Variable Release Velocity Feedback

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