Hyperthermic perfusion chemotherapy apparatus based on Bluetooth technology, and control method of apparatus
A heat perfusion and bluetooth technology, applied in the direction of heating appliances for treatment, surgery, and medical equipment, etc., can solve the problems of unreliable temperature data, temperature control lag, and inability to control temperature, etc., to achieve superior biocompatibility, good Bending resistance, the effect of enhancing the integrity
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Embodiment 1
[0044] according to Figure 1 to Figure 4 Shown is a thermoperfusion chemotherapy device based on bluetooth technology, including an interconnected thermoperfusion therapy device 1 and a puncture catheter, characterized in that the puncture catheter includes a catheter body 2 and an inflatable catheter 3 connected to a medical air pump 14 , the liquid outlet end 4 of the catheter body 2 is wrapped with the inflatable balloon 5, the inflatable balloon 5 is connected to the inflatable catheter 3, and the inflatable catheter 3 is connected to the inflatable catheter 3. The liquid inlet end 6 of the catheter body 2 extends and is connected with the medical air pump 14 outside the body, the inflatable balloon 5 is provided with a miniature temperature sensor 7 for detecting the temperature in the cavity, and the free end of the catheter body 2 Be provided with bluetooth temperature module 15, described bluetooth temperature module 15 comprises controller 8, signal amplifying circui...
Embodiment 2
[0047] according to Figure 1 to Figure 2 As shown, the difference between this embodiment and embodiment 1 is that the inflation conduit 3 is fixedly connected with the conduit body 2 .
[0048] Compared with Embodiment 1, this embodiment further defines the inflation conduit 3, the function of the fixed connection between the inflation conduit 3 and the conduit body 2 is to make the integrity between the inflation conduit 3 and the conduit body 2 stronger , so that the catheter is more convenient when it is inserted or pulled out, and the swing of the inflatable catheter 3 due to ventilation is reduced after the medical air pump 14 is ventilated.
Embodiment 3
[0050] according to Figure 1 to Figure 2 As shown, the difference between this embodiment and Embodiment 1 is that the inflatable balloon 5 seals the micro temperature sensor 7 through the waterproof layer 13 arranged outside the micro temperature sensor 7 .
[0051] Compared with Embodiment 1, this embodiment further defines the inflatable balloon 5, and the described inflatable balloon 5 connects the described miniature temperature sensor 7 through the waterproof layer 13 arranged outside the described miniature temperature sensor 7. The effect of sealing and wrapping is to prevent the interstitial fluid in the abdomen and pelvis from infiltrating into the miniature temperature sensor 7, which will affect the measurement of the temperature sensor.
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