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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Improvement of patient return electrodes in electrosurgery by experimental investigations and numerical field calculations.
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Improvement of patient return electrodes in electrosurgery by experimental investigations and numerical field calculations.

机译:通过实验研究和数值场计算改善电外科手术中患者返回电极的性能。

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摘要

Numerical field calculations and experimental investigations were performed to examine the heating of the surface of human skin during the application of a new electrode design for the patient return electrode. The new electrode is characterised by an equipotential ring around the central electrode pads. A multi-layer thigh model was used, to which the patient return electrode and the active electrode were connected. The simulation geometry and the dielectric tissue parameters were set according to the frequency of the current. The temperature rise at the skin surface due to the flow of current was evaluated using a two-step numerical solving procedure. The results were compared with experimental thermographical measurements that yielded a mean value of maximum temperature increase of 3.4 degrees C and a maximum of 4.5 degrees C in one test case. The calculated heating patterns agreed closely with the experimental results. However, the calculated mean value in ten different numerical models of the maximum temperature increase of 12.5 K (using a thermodynamic solver) exceeded the experimental value owing to neglect of heat transport by blood flow and also because of the injection of a higher test current, as in the clinical tests. The implementation of a simple worst-case formula that could significantly simplify the numerical process led to a substantial overestimation of the mean value of the maximum skin temperature of 22.4 K and showed only restricted applicability. The application of numerical methods confirmed the experimental assertions and led to a general understanding of the observed heating effects and hotspots. Furthermore, it was possible to demonstrate the beneficial effects of the new electrode design with an equipotential ring. These include a balanced heating pattern and the absence of hotspots.
机译:在为患者返回电极应用新电极设计过程中,进行了数值场计算和实验研究,以检查人体皮肤表面的加热情况。新电极的特征是围绕中央电极焊盘的等电位环。使用多层大腿模型,将患者返回电极和活动电极连接到该模型。根据电流频率设置仿真几何形状和介电组织参数。使用两步数值求解程序评估了由于电流流动导致的皮肤表面温度升高。将结果与实验热成像测量结果进行比较,该实验热成像测量结果在一个测试案例中产生的平均最高温度升高值为3.4摄氏度,最高温度平均值为4.5摄氏度。计算的加热方式与实验结果非常吻合。但是,由于忽略了血流带来的热传递,并且还注入了更高的测试电流,因此在十个不同的最大温度升高12.5 K(使用热力学求解器)的不同数值模型中计算出的平均值超过了实验值,就像在临床测试中一样。简单的最坏情况公式的实施可以显着简化数值过程,导致对最高皮肤温度22.4 K平均值的高估,并且仅显示出有限的适用性。数值方法的应用证实了实验的断言,并导致对观察到的热效应和热点的总体了解。此外,有可能证明带有等电位环的新型电极设计的有益效果。这些包括均衡的加热模式和不存在热点。

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