Ischemic preconditioning training sleeve belt device based on APP control
An ischemia preconditioning and cuff technology, applied in the field of medical devices, can solve the problems of breeding bacteria, taking a long time, and not obvious shortcomings, and achieving the effects of good air permeability, preventing errors, and avoiding the breeding of bacteria
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Embodiment 1
[0035] This embodiment provides an ischemic preconditioning training cuff device based on APP control, such as figure 1 As shown, it includes a cuff 11, a main airbag 2, an auxiliary airbag 1, a host, a pressure sensor, a heart rate sensor, a microphone sensor, and a mobile terminal APP. The main airbag 2 and the auxiliary airbag 1 are parallel to each other and are all located on the cuff. When the cuff device is worn on the upper arm of the human body, the main airbag 2 is located above the brachial artery of the human body; image 3 , when the cuff device is worn on the upper arm of the human body, the main airbag 2 is located above the brachial artery of the human body and is the main part for measuring blood pressure;
[0036] The main engine is fixed on the cuff through a matching buckle, and the cuff is provided with an air nozzle, and the air nozzle communicates with the main airbag 2 and the auxiliary airbag 1 respectively;
[0037] The microphone sensor, heart rate ...
Embodiment 2
[0061] The core-spun yarn described in the experimental content was prepared according to the grouping situation in Table 1 in Example 1, and its preparation conditions were optimized to obtain the best antibacterial ability. After the treatment is completed, according to the content of the invention, the core-spun yarn and far-infrared fiber treated with nano-silver are woven by double-sided warp knitting. Figure 4 Cloth of the construction shown.
[0062] Bacterial culture and antibacterial verification method (taking Staphylococcus aureus as an example): Cultivate Staphylococcus aureus overnight to OD600=0.6, dilute the bacterial solution to 1000CFU / ml with PBS buffer after microscopic counting, and spray evenly to The above-mentioned cloth surface after ultraviolet disinfection was placed in a sterile petri dish, and incubated at a constant temperature of 37° C. for 3 days. The cloth was taken out and covered on the sterile LB solid medium for 5 minutes, then the cloth w...
Embodiment 3
[0067] The antibacterial cloth obtained by immersing 2% nano-silver for 2 minutes and then drying at 115°C for 5 minutes was washed 5 times, 10 times, 20 times, and 50 times respectively, and the washing time was 15 minutes each time, and the washing temperature was 40°C. Then check its antibacterial activity (taking Staphylococcus aureus as an example) according to the method described in Example 2, record the area of the cloth before and after washing simultaneously, and carry out shrinkage calculation. The results are shown in Table 2, the antibacterial cloth of the present invention can have excellent antibacterial ability after 20 times of washing, although the antibacterial cloth after 50 times of washing has significantly reduced antibacterial activity, it still has stronger antibacterial ability. The shrinkage rate of the fabric can also meet the requirements of the relevant national standards, and the shrinkage rate does not increase with the number of washings.
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