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Danger of Thermal Burns by Forceps at Video-assisted Electrosurgery during Spray Coagulation

机译:喷雾凝结过程中视频辅助电外科手术中镊子烫伤的危险

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At video-assisted electrosurgery there is always a risk of causing thermal burn accidents, when high-frequency current flows into the non-targeted organs through forceps. It has been reported that the factors which cause the thermal burns are 1) capacitive coupling, 2) direct coupling, and 3) insulation failure or insulation puncture of monopolar forceps for video-assisted electrosurgery. The purpose of this study was to verify the possibility of the thermal burns by capacitive coupling current and insulation puncture using an experimental model. In this experiment, the conventional high-frequency surgical equipment and the monopolar forceps for video-assisted electrosurgery were used. We measured the capacitive coupling current which flows through the insulation tunic of forceps in each output mode of high-frequency surgical equipment. We also investigated the existence of electric discharge or insulation puncture, by changing the output of electric voltage and the thickness of the insulation tunic of forceps. We further evaluated detectability of the thinness of the insulation tunic with a commercial equipment to check the insulation failure of the forceps. The capacitive coupling current increased, as the length of trocar became longer, and was the largest in the spray coagulation mode. Electric discharge and insulation puncture occurred in the contact coagulation mode and the spray coagulation mode. The commercial tester to confirm the insulation of electrosurgical instrument was unable to detect abnormally thinned tunic for insulation. In order not to cause thermal burn accidents, it is important to avoid test hits in the spray coagulation mode, and to check the state of the insulation tunic before and after use.
机译:在视频辅助电外科手术中,当高频电流通过镊子流入非目标器官时,总是存在引起热灼伤事故的风险。据报道,引起热灼伤的因素是1)电容耦合,2)直接耦合和3)用于视频辅助电外科的单极镊子的绝缘失效或绝缘刺穿。这项研究的目的是通过实验模型验证电容耦合电流和绝缘击穿引起的热灼伤的可能性。在该实验中,使用了常规的高频外科手术设备和视频辅助电外科手术用的单极镊子。我们测量了高频手术设备每种输出模式下流过镊子绝缘外套的电容耦合电流。我们还通过改变电压输出和钳子绝缘外套的厚度来研究放电或绝缘刺穿的存在。我们用商用设备进一步评估了绝缘外套的薄度的可检测性,以检查镊子的绝缘故障。随着套管针的长度变长,电容耦合电流增加,并且在喷雾凝固模式中是最大的。在接触凝固模式和喷雾凝固模式下发生放电和绝缘刺穿。确认电外科仪器绝缘的商用测试仪无法检测到异常稀薄的外衣以进行绝缘。为了避免引起热灼伤事故,重要的是要避免在喷雾凝结模式下碰到测试物,并在使用前后检查绝缘外套的状态。

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