Stepping type cardiopulmonary resuscitation instrument

A resuscitator and treadmill technology, applied in the field of passive treadmill cardiopulmonary resuscitation apparatus, can solve the problems of easily causing pneumothorax, hemothorax, rib fractures, inability to ensure consistent compression mechanical force, and low success rate of bare-handed CPR rescue. The ratio of pressing and breathing times is easy to control, the structure is simple, and the cost is controllable

Inactive Publication Date: 2019-06-07
罗轶
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Unarmed CPR also has the disadvantage that the ratio of compressions to breathing times is difficult to control, and the mechanical force of compressions cannot be guaranteed to be consistent, which can easily cause pneumothorax, hemothorax, and rib fractures. Disadvantages such as pressing affects treatment
Therefore, the rescue success rate of manual CPR is low, and the overall resuscitation effect is relatively poor. In a non-randomized historical control cohort survey of 499 patients in Richmond, Virginia, USA, the spontaneous circulation recovery rate of manual CPR cases was 20.2%, and the survival and admission rate was 11.1%. The final discharge survival rate is only 2.9%
[0007] At present, there are still a small number of personnel who have received training in cardiopulmonary resuscitation. In the emergency of out-of-hospital cardiac arrest (OHCA), it is difficult for ordinary people to correctly perform cardiopulmonary resuscitation.

Method used

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  • Stepping type cardiopulmonary resuscitation instrument
  • Stepping type cardiopulmonary resuscitation instrument
  • Stepping type cardiopulmonary resuscitation instrument

Examples

Experimental program
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Embodiment Construction

[0039] Such as Figure 1-4 Shown: a step-type cardiopulmonary resuscitation apparatus, including fluid, left and right step-type fluid pumps 1, fluid tubes 2, several multi-point diastolic pumps 3, flexible belts 4 and elastic buckles 5.

[0040] The fluid is liquid or gas, and the left and right pedal fluid pumps 1 are connected to the multi-point diastolic pump 3 by the fluid tube 2 to form a through watertight or airtight space. The fluid is accommodated in the above-mentioned space, and the volume of the fluid is set to be greater than or equal to the sum of the volumes of the left and right pedal fluid pumps 1 . The volume of the single pedal fluid pump 1 is set to be greater than or equal to the sum of the volumes of all the multi-point diastolic pumps 3 .

[0041] According to known knowledge of cardiopulmonary resuscitation and human anatomy, several multi-point diastolic pumps 3 are arranged on the flexible belt 4 surrounding the chest of the human body.

[0042] Th...

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Abstract

The invention relates to a stepping type cardiopulmonary resuscitation instrument. The stepping type cardiopulmonary resuscitation instrument comprises fluid, a left stepping type fluid pump, a rightstepping type fluid pump, fluid pipes, a plurality of multipoint relaxation pumps, a flexible banding belt and an elastic button. In accordance with out hospital cardiac arrest (OHCA), the stepping type cardiopulmonary resuscitation instrument can perform timely treatment. The stepping type cardiopulmonary resuscitation instrument is simple in structure, low in cost, easy to manufacture, easy to accumulate, easy to learn, easy to use, and convenient to promote and generalize, can timely provide more convenient effective uninterrupted continuous treatment than bare-handed CPR, and ordinary people with CPR experience can conveniently help during first aid.

Description

technical field [0001] The invention relates to the timely treatment of out-of-hospital cardiac arrest (OHCA), especially a passive device with low cost, simple structure, easy to learn and use, thin and portable, easy to popularize, and convenient for timely and continuous treatment of out-of-hospital cardiac arrest (OHCA). Pedal cardiopulmonary resuscitator. Background technique [0002] "2015 AHA Guidelines for Cardiopulmonary Resuscitation and Emergency Cardiovascular Aid" distinguishes between in-hospital cardiac arrest (IHCA) and out-of-hospital cardiac arrest (OHCA), divides the chain of survival into the in-hospital and out-of-hospital care systems, and identifies different ways for patients to receive treatment. [0003] Once cardiac arrest occurs, if immediate rescue and resuscitation is not obtained, it will cause irreversible damage to the patient's brain and other vital organs and tissues in 4 to 6 minutes. Therefore, cardiopulmonary resuscitation after cardiac ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61H31/00A61M16/00
Inventor 罗轶罗曼冬
Owner 罗轶
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