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The Effect of the Design of Surgical Electrodes on the Formation of Sparking Enhanced Burns

机译:手术电极的设计的影响引发的形成增强烧伤

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摘要

Electrocautery is a safe and effective method of hemostasis during cutaneous surgery. Despite the unquestionable benefits, electrocautery sparks in the surgical field represent a significant fire risk that can be eliminated by clarifying the causation and conditions of their development. Apart from the experimental methods, computer modeling is proven to be an effective approach to improve the performance of electrocautery. This paper is dealing with the design of electrodes to prevent burns during standard procedures. Simulations were carried out by using the comsol simulation package for various electrode configurations (cylinder-cylinder, sphere-sphere, sphere-cylinder, and cylinder-sphere) representing shapes of surgical electrodes. The primary goal was to determine the location where sparking starts. The obtained simulation results agree well with the experimental data taken from the literature supporting that the sparking formation is strongly affected by the electrode configuration. It was found that sparking occurs most easily when both electrodes are cylindrical. Also, the sparking mechanism depends on electrical asymmetry that results in undesirable direct current burns. Results presented here can be used to establish practices for the safe use of the electrocautery devices and to prevent injury to patients and staff.
机译:电烙术是一种安全有效的方法在皮肤的手术止血。毫无疑问的好处,电烙术火花外科领域代表着重大的火灾风险可以被澄清他们发展的因果关系和条件。除了实验方法,计算机建模是被证明是一种有效的方法提高电烙术的性能。纸是处理电极的设计在标准程序阻止燃烧。模拟进行了利用comsol各种电极模拟方案配置(cylinder-cylinder sphere-sphere,sphere-cylinder和cylinder-sphere)代表手术电极的形状。主要目标是确定的位置引发的开始。与实验数据吻合较好引发的文献支持电极形成强烈的影响配置。最容易当电极都是圆柱形的。此外,取决于引发机制电流不对称,导致不良直流烧伤。被用来建立安全使用的实践电烙术的设备和预防病人和医护人员受伤。

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