Implantable cardioversion and defibrillation device
An implantable heart rhythm technology, applied in the medical field, can solve problems such as single inspection method, large discharge volume, and easy misdischarge
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Embodiment 1
[0048] like figure 1 , 4 -13, the device includes a wire 100, a balloon 600, a vibration sensor 500, an induction electrode 400, a defibrillation coil 200, a pressure sensor 300 and a pulse generator 1000, wherein the balloon 600, the vibration sensor 500, the induction electrode 400, the defibrillation coil 200 and the pressure sensor 300 are sequentially arranged at the left end of the wire 100, the vibration sensor 500, the induction electrode 400, the defibrillation coil 200 and the pressure sensor 300 are connected to the pulse generator 1000 through the wire 100, wherein the balloon 600 is used for The wire 100 is fixed, and the balloon 600 is provided with a balloon pressure sensor (not shown in the figure), the balloon pressure sensor is used to sense the pressure generated when the heart beats, the sensing electrode 400 is used to detect the electrical signal of the heart, and the pressure sensor 300 is used to Detect the pressure generated when the heart beats. The ...
Embodiment 2
[0056] like figure 2 , Figure 7 , Figure 9 , Figure 10 and Figure 12 As shown, an implantable cardioverter defibrillation device, the device includes a guide wire 100, a balloon 600, a defibrillation coil 200, a pressure sensor 300, an induction electrode 400 and a pulse generator 1000, wherein the balloon 600, the induction The electrode 400 defibrillation coil 200 and the pressure sensor 300 are sequentially arranged on the left end of the wire 100, the induction electrode 400, the defibrillation coil 200 and the pressure sensor 300 are connected to the pulse generator 1000 through the wire 100, wherein the balloon 600 is used to fix the wire 100, The balloon 600 is provided with a balloon pressure sensor, the sensing electrode 400 is used to detect the electrical signal of the heart, the pressure sensor 300 is used to detect the pressure generated when the heart beats, the upper left end of the lead wire 100 is located behind the sternum 800 The top of the upper en...
Embodiment 3
[0064] like image 3 , Figure 8 , Figure 9 , Figure 11 and Figure 12 As shown, an implantable cardioverter defibrillation device, the device includes a guide wire 100, a balloon 600, a defibrillation coil 200, a vibration sensor 500, an induction electrode 400 and a pulse generator 1000, wherein the balloon 600, the vibration The sensor 500, the induction electrode 400 and the defibrillation coil 200 are sequentially arranged on the left end of the wire 100, the vibration sensor 500, the induction electrode 400 and the defibrillation coil 200 are connected to the pulse generator 1000 through the wire 100, wherein the balloon 600 is used to fix the wire 100 , the balloon 600 is provided with a balloon pressure sensor, the balloon pressure sensor is used to sense the pressure generated by the heart beat, the sensing electrode 400 is used to detect the electrical signal of the heart, and the vibration sensor 500 is used to detect the vibration and respiration generated by ...
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