Method for sensing occurrence of fracture in cardio-pulmonary resuscitation process and compression apparatus
A cardiopulmonary resuscitation and pressure technology, applied in the field of medical emergency, can solve problems such as failure to prevent bone damage and its complications, failure to improve compression quality, failure to perceive fractures, etc., to prevent fractures and their complications, improve compression quality, reduce The effect of fracture probability
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Embodiment 1
[0032] see figure 1 , a method for sensing a fracture during cardiopulmonary resuscitation, comprising the steps of:
[0033] 1) Set the distance sensor 3 to detect the compression depth value of the compression actuator 2, and transmit the detected compression depth value to the central control system 1; set the pressure sensor 4 to detect the real-time compression pressure value of the compression actuator 2 to the chest cavity, and send the compression depth The pressure value is transmitted to the central control system 1;
[0034] 2) Start the compression execution part 2 to perform the compression action on the chest cavity of the patient, and the compression frequency, compression depth, and compression speed gradually increase to the set value after n (the value of n can be set in the range of 1-8) pressure tests;
[0035] 3) The central control system 1 stores the corresponding relationship between chest compression pressure and compression depth as a comparison para...
Embodiment 2
[0044] see figure 1 , a pressing device adopting the method for sensing a fracture during cardiopulmonary resuscitation described in the first embodiment above, its central control system 1 (comprising an STM32 processor chip, a power processing module, a data acquisition AD / DA conversion module, a control drive Module, etc.) is connected with the pressing actuator 2 (the pressing element can adopt any kind of pressing device for cardiopulmonary resuscitation), and controls the pressing action of the pressing actuator 2, and the pressing actuator 2 is placed at the cardiopulmonary resuscitation compression place of the human chest cavity 6 Directly above, the central control system 1 is connected with a distance sensor 3 for detecting the pressing depth of the pressing actuator 2 and a pressure sensor 4 for detecting the pressing pressure, the distance sensor 3 is arranged on the pressing actuator 2, and the pressure sensor 4 Set on the pressing end face of the pressing actuat...
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