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In silico evaluation of geometry variations with respect to the thermal spread during coagulation of egg white using bipolar vessel sealing instruments

机译:使用双极血管密封仪器对蛋白凝结过程中的热扩散进行几何变化的计算机模拟评估

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Background Bipolar vessel sealing is an efficient electrosurgical procedure for the occlusion of blood vessels particularly during minimally invasive surgery. Reliable knowledge of the thermal spread is crucial for a safe application of bipolar vessel sealing instruments when operating close to thermo-sensitive structures, such as nerves. The evolution of the thermal spread over time and space depends on a variety of parameters, such as the biological tissue, the energy applied to the tissue, and the geometry of the vessel sealing instrument. Mathematical modeling has proven useful for the prediction of the thermal spread. It is, thus, a promising tool for the systematic analysis of the influence of geometrical changes on the thermal spread. Results We present an experimentally validated in silico study to evaluate the impact of geometry variations on the progression of chicken egg white coagulation and the final shape of coagulated egg white as an approximation of the temporal and spatial evolution of the thermal spread during bipolar vessel sealing. Egg white has similar thermal and electrical properties to human tissue, with the advantage being that the spatial and temporal evolution of the thermal spread can be visually gauged. The simulations were performed using a mathematical model based on the finite element analysis of chicken egg white. The progression of egg white coagulation was predicted for two different peak voltages and various electrode geometries. Starting with two planar electrodes, one electrode was gradually changed to adopt a wedge shape. These changes to the geometry showed a distinct influence on the progression of egg white coagulation in the simulations. The predictions were successfully validated using an experimental setup with two different electrodes representing the extreme geometries. Discussion The predicted spatial temperature distributions were experimentally validated for two geometries. Our simulation study shows that the geometry has a pronounced influence on the thermal spread and, thus, is a suitable parameter to reduce thermal damage. The in silico optimization of instrument designs is a suitable tool to accelerate the development of new vessel sealing instruments, with only a few promising designs having to be tested as prototypes.
机译:背景技术双极血管密封是一种有效的电外科手术方法,尤其是在微创手术中,用于闭塞血管。当在靠近神经等热敏感结构的地方操作时,可靠的热扩散知识对于安全使用双极血管密封仪器至关重要。热扩散在时间和空间上的演变取决于各种参数,例如生物组织,施加到组织的能量以及血管密封器械的几何形状。数学建模已证明对预测热扩散有用。因此,它是用于系统分析几何变化对热扩散影响的有前途的工具。结果我们提供了一个经过实验验证的计算机模拟研究,以评估几何形状变化对鸡蛋白凝结的进展和凝结蛋白的最终形状的影响,作为双极血管密封过程中热扩散的时间和空间演变的近似值。蛋清具有与人体组织相似的热和电特性,其优点是可以直观地测量热扩散的时空分布。使用基于鸡蛋白的有限元分析的数学模型进行模拟。对于两个不同的峰值电压和不同的电极几何形状,可以预测蛋白的凝固过程。从两个平面电极开始,一个电极逐渐变为楔形。在模拟中,这些几何形状的变化显示出对蛋清凝固过程的明显影响。使用具有代表极端几何形状的两个不同电极的实验装置成功地验证了这些预测。讨论预测的空间温度分布已通过实验验证了两个几何形状。我们的仿真研究表明,几何形状对热扩散有显着影响,因此是减少热损伤的合适参数。仪器设计的计算机优化是一种合适的工具,可以加快新的容器密封仪器的开发速度,只有极少数有希望的设计必须作为原型进行测试。

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