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Vessel Sealing Using the Bipolar Electrosurgical Method

机译:使用双极电外科方法密封血管

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摘要

The electrosurgical sealing method has risen to prominence in recent years as more vessel sealing procedures are being conducted in minimally invasive surgery. Electrosurgical sealing works by applying electrical current to coagulate and denature proteins in the vessel, thereby creating a bond. In this study, experiments were conducted to seal 3 and 8 mm diameter vessels in a porcine model with a bipolar electrosurgical device and measure the electrical voltage and current, and temperature distribution in the vessel near the area of the seal. The vessel seal was modeled with finite element analysis (FEA) and compared to the experimental data. FEA allow for insight into the correlation of temperature to quality of the seal in the vessel. The maximum temperatures were 83℃ and 63℃ in the 3 and 8 mm vessels, respectively. Validation of the experimental results was attempted through the use of a simplified FEA model. The model showed similar thermal profiles near the electrode, but further downstream temperatures did not rise as fast as the experimental results. Further refinement to overcome limitations in the model is identified.
机译:近年来,随着在微创外科手术中进行更多的血管密封手术,电外科密封方法日益受到重视。电外科密封通过施加电流使血管中的蛋白质凝结并使其变性,从而形成结合而起作用。在这项研究中,进行了实验,使用双极电外科手术设备在猪模型中密封了直径为3和8 mm的血管,并测量了电压和电流以及在密封区域附近的血管中的温度分布。使用有限元分析(FEA)对容器密封件进行建模,并与实验数据进行比较。 FEA有助于深入了解温度与容器中密封质量之间的关系。 3和8 mm容器的最高温度分别为83℃和63℃。通过使用简化的FEA模型尝试验证实验结果。该模型在电极附近显示出相似的热曲线,但进一步的下游温度没有像实验结果一样快地上升。确定了克服模型中限制的进一步改进。

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