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To optimize the efficacy of bioheat transfer in capacitive hyperthermia: A physical perspective

机译:要优化电容性热疗中生物传热的功效:物理角度

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摘要

This paper presents the capacitive hyperthermia from physical perspective focusing on the geometric dimensions as parameters. For this purpose six parameters having three levels each, including two tunable parameters i.e. applied voltage, frequency together with four geometric parameters i.e. size of the tumor, location of the tumor, electrode size and relative position of the electrodes w.r.t tumor were considered for analysis. Taguchi based design of experiments approach was used for the aforementioned six parameters. Using Taguchi's standard 127 orthogonal array, the required results could be obtained employing least number of experiments. For this study temperature was taken as the quality characteristic to be optimized. Furthermore, analysis of variance (ANOVA) was performed to quantify the effect of each parameter on the response variable and results were presented. To deal with the extent of thermal damage to the healthy tissue and tumor, the fraction of tissue experiencing thermal damage was calculated. For this purpose two indices namely treatment index and damage index were formulated. Finally it was concluded that maximum achieved temperature alone does not depict the effectiveness of the treatment. Rather, the combination of the maximum achieved temperature and accompanied thermal damage to the surrounding healthy tissue which should be considered
机译:本文从物理角度提出了以电容几何尺寸为参数的电容式高温疗法。为了这个目的,考虑分析每个具有三个级别的六个参数,包括两个可调参数,即施加的电压,频率以及四个几何参数,即肿瘤的大小,肿瘤的位置,电极的大小和电极相对于肿瘤的相对位置。基于田口的实验方法设计用于上述六个参数。使用田口的标准127正交阵列,可以使用最少的实验次数来获得所需的结果。对于该研究,将温度作为要优化的质量特征。此外,进行方差分析(ANOVA)来量化每个参数对响应变量的影响,并给出结果。为了处理对健康组织和肿瘤的热损伤程度,计算了遭受热损伤的组织的比例。为此,制定了两个指标,即治疗指标和损害指标。最后得出的结论是,仅达到的最高温度并不能说明治疗的有效性。相反,应该考虑最高达到的温度以及伴随的对周围健康组织的热损伤的组合

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