首页> 外文会议>Conference on engineering systems design and analysis;Biennial conference on engineering systems design and analysis;ESDA 2008 >EXPERIMENTAL AND FINITE ELEMENT ANALYSIS OF THE THERMAL-ELECTRIC PROCESS IN MONOPOLAR ELECTROSURGICAL THERMAL MANAGEMENT
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EXPERIMENTAL AND FINITE ELEMENT ANALYSIS OF THE THERMAL-ELECTRIC PROCESS IN MONOPOLAR ELECTROSURGICAL THERMAL MANAGEMENT

机译:单极电热管理中热电过程的实验和有限元分析

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This study develops a thermal management system for the most commonly used energy-based surgical instrument: the monopolar electrosurgical device. Monopolar electrosurgery, using the same principle as the electrical discharge machining, is widely used to cut or remove tissue by sparks during surgical operations. This study develops a thermal management system consists of cooling channels placed around the active electrode to reduce the thermal damage to the tissue. Finite element modeling (FEM) was performed to analyze temperature distribution in biological tissue subject to heat generation by a commonly used monopolar electrosurgical device. The mathematical model was verified by comparing FEM predicted temperature distribution with experimental measurements. Ex-vivo experiments were performed with bovine liver tissue heated by a monopolar pencil electrode. The experimental data for 1 mm distance from the electrode is seen to fit within 1% of the predicted temperature values by the FEM simulation. The accuracy of the model decreases at further distances from the electrode. The inaccuracies are believed to be due to unaccounted temperature-dependent thermal conductivity. The addition of the cooling channels shows a reduction of the radial thermal damage of the tissue in both FEM simulations and ex-vivo experimental procedures.
机译:本研究为最常用的基于能量的外科手术器械开发了热管理系统:单极电外科设备。使用与放电加工相同的原理的单极电外科,广泛用于通过手术操作期间通过火花切割或移除组织。该研究开发了热管理系统,包括围绕有源电极放置的冷却通道,以减少对组织的热损坏。进行有限元建模(FEM)以分析通过常用的单极电外科器件进行热源产生的生物组织中的温度分布。通过将有限元预测温度分布与实验测量进行比较来验证数学模型。用由单极铅笔电极加热的牛肝组织进行前体内实验。观察到距电极的1mm距离的实验数据以PEM模拟适合预测温度值的1%内。模型的精度在距离电极的进一步距离下降。据信不准确是由于不负责的温度依赖性导热率。冷却通道的添加显示了有组织模拟和前体内实验程序中组织的径向热损伤的降低。

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