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Multifunctional automatic cardio-pulmonary resuscitation first-aid equipment

A technology of cardiopulmonary resuscitation and first aid equipment, applied in the fields of iron lung, medical science, sensors, etc., can solve the problems of increasing the number of pauses and affecting the success rate of treatment, so as to ensure the effectiveness, avoid the occurrence of invalid pressing, and reduce the degree of dependence

Inactive Publication Date: 2016-06-01
SHENGJING HOSPITAL OF CHINA MEDICAL UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in the actual rescue process, it is often necessary to suspend cardiac compression several times to observe the patient's ECG activity to determine the next treatment method. The increase in the number of suspensions seriously affects the success rate of treatment.

Method used

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  • Multifunctional automatic cardio-pulmonary resuscitation first-aid equipment
  • Multifunctional automatic cardio-pulmonary resuscitation first-aid equipment

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0029] This embodiment provides a multifunctional automatic cardiopulmonary resuscitation emergency equipment, characterized in that: the multifunctional automatic cardiopulmonary resuscitation emergency equipment includes a base 1, a platform 2, a pressing plate 3, a connecting rod 4, a screw nut 5, Ball screw 6, column 7, servo motor 8, host 9, touch screen 10, manual input device 11, automatic defibrillation device 12, heart rate detection photoelectric sensor 13, heart rate detection pressure sensor 14, cooling gas generator 15, with hollow Laminated hood 16;

[0030] Wherein: the platform 2 is installed on the base 1; the column 7 is installed on the base 1, the ball screw 6 is installed on the column 7, the ball screw 6 is vertically arranged with the base 1; the top of the ball screw 6 is connected with a servo motor 8; The screw nut 5 cooperates with the ball screw 6; the rear end of the screw nut 5 has a guide block 501, and the guide block 501 is embedded in the guid...

Embodiment 2

[0045] This embodiment provides a multifunctional automatic cardiopulmonary resuscitation emergency equipment, characterized in that: the multifunctional automatic cardiopulmonary resuscitation emergency equipment includes a base 1, a platform 2, a pressing plate 3, a connecting rod 4, a screw nut 5, Ball screw 6, column 7, servo motor 8, host 9, touch screen 10, manual input device 11, automatic defibrillation device 12, heart rate detection photoelectric sensor 13, heart rate detection pressure sensor 14, cooling gas generator 15, with hollow Laminated hood 16;

[0046] Wherein: the platform 2 is installed on the base 1; the column 7 is installed on the base 1, the ball screw 6 is installed on the column 7, the ball screw 6 is vertically arranged with the base 1; the top of the ball screw 6 is connected with a servo motor 8; The screw nut 5 cooperates with the ball screw 6; the rear end of the screw nut 5 has a guide block 501, and the guide block 501 is embedded in the guid...

Embodiment 3

[0058] This embodiment provides a multifunctional automatic cardiopulmonary resuscitation emergency equipment, characterized in that: the multifunctional automatic cardiopulmonary resuscitation emergency equipment includes a base 1, a platform 2, a pressing plate 3, a connecting rod 4, a screw nut 5, Ball screw 6, column 7, servo motor 8, host 9, touch screen 10, manual input device 11, automatic defibrillation device 12, heart rate detection photoelectric sensor 13, heart rate detection pressure sensor 14, cooling gas generator 15, with hollow Laminated hood 16;

[0059] Wherein: the platform 2 is installed on the base 1; the column 7 is installed on the base 1, the ball screw 6 is installed on the column 7, the ball screw 6 is vertically arranged with the base 1; the top of the ball screw 6 is connected with a servo motor 8; The screw nut 5 cooperates with the ball screw 6; the rear end of the screw nut 5 has a guide block 501, and the guide block 501 is embedded in the guid...

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Abstract

Multifunctional automatic cardio-pulmonary resuscitation first-aid equipment comprises a base, a platform, a pressing plate, a connecting rod, a screw nut, a ball screw, a stand column, a servo motor, a host, a touch screen, a manual input device, an automatic defibrillation device, a heart rate detection sensor, a cooling gas generation device and a hood provided with a hollow interlayer, wherein the front end of the screw nut is connected with the pressing plate through the connecting rod; the automatic defibrillation device is connected with the host; the heart rate detection sensor is connected with the host; the hood provided with the hollow interlayer is connected with the cooling gas generation device. The equipment has the advantages as follows: accurate pressing depth and pressing frequency of a patient can be automatically controlled in the emergent treatment process of cardiac arrest, waveforms of ventricular fibrillation are automatically recognized, defibrillation is triggered, smoothness of an airway is kept, mechanical assisted ventilation is provided, the dependence on a special doctor in the emergent treatment process is reduced, the accuracy and the automatic degree are improved, the cardio-pulmonary resuscitation effectiveness is guaranteed, brain death is reduced, and the multifunctional automatic cardio-pulmonary resuscitation first-aid equipment can be applied in a wide range.

Description

technical field [0001] The invention relates to the field of medical equipment, in particular to a multifunctional automatic cardiopulmonary resuscitation emergency equipment. Background technique [0002] The incidence of cardiac arrest outside the hospital is 20-140 / 100,000 people, but the survival rate is only 2%-11%, and the survival rate of adult cardiac arrest patients in the hospital is only 12%-22%. Survival of a victim of cardiac arrest depends primarily on early detection and immediate initiation of emergency care, but equally important is the effectiveness of CPR. Even when performed strictly according to guidelines, CPR is substantially ineffective because it provides only 10% to 30% of normal blood flow to the heart and 30% to 40% of normal blood flow to the brain. Cerebral blood flow interruption for more than 5 seconds may cause irreversible brain damage, and severe cases may cause brain death. This inefficient resuscitation requires rescuers to provide high...

Claims

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Application Information

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IPC IPC(8): A61H31/02A61B5/0245
Inventor 朱俊超杨延超黄昕万玉骁李阳滕秀飞李真
Owner SHENGJING HOSPITAL OF CHINA MEDICAL UNIV
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