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IMPEDANCE CONTROLLED HOT SNARE POLYPECTOMY

机译:阻抗控制的热蛇麻痹

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This paper explores the ability to measure the impedance of a system consisting of the biological system of the patient combined with the mechanical system of the hot snare and, given a specified impedance threshold value, turn off the firing of an electrosurgical device before serious injury occurs. In electrosurgery, the tissue damage is caused by the thermal energy generated from the resistance in the cells. An impedance feedback control system is designed and tested to minimize the effects of too much thermal damage. This design is based on measuring the impedance of the system and implementing a microcontroller to coordinate the activity and to interrupt the electrosurgical device preventing further firing. The feedback control system was proven to automatically stop the electrosurgical device for three given impedance values of 500Ω, 750Ω, and 1000Ω with an accuracy of ±5Ω. The auto-stop system is able to measure and fire at 5.4 times a second with a duty cycle of 41%. This successfully minimizes the thermal injury sustained from electrosurgery.
机译:本文探讨了测量系统阻抗的能力,该系统包括患者的生物系统和热圈套器的机械系统,并在给定特定的阻抗阈值的情况下,在严重伤害发生之前关闭电外科设备的发射。在电外科手术中,组织损伤是由细胞电阻产生的热能引起的。设计并测试了阻抗反馈控制系统,以将过多的热损伤的影响降至最低。该设计基于测量系统的阻抗并实现微控制器以协调活动并中断电外科设备,从而防止进一步触发。事实证明,该反馈控制系统可以自动停止电外科设备的三个给定阻抗值500Ω,750Ω和1000Ω,精度为±5Ω。自动停止系统能够以每秒5.4次的速度进行测量和发射,占空比为41%。这成功地使电外科手术所遭受的热损伤最小化。

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