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Modeled Current Distribution Inside the Normal and Malignant Human Urothelium Using Finite Element Analysis

机译:使用有限元分析对正常和恶性人类尿道内的电流分布进行建模

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When the tissue is changing from normal to abnormal, the distribution of tissue liquids between intra and extra cellular space will be changed and then the measured conductivity and impedivity will also be changed. Therefore, it will cause a different current distribution inside the human bladder tissue in normal and malignant cases. By knowing the amount of electrical impedance inside the bladder tissue and the morphological parameters of the different layers of this tissue, the current distribution inside the bladder tissue (surface fluid, superficial urothelium, intermediate urothelium, basal urothelium, basement membrane, and connective tissue) was modelled and calculated in different frequencies using the finite element analysis. The model results showed that very little of the current actually flows through the urothelium and much of the injected current flows through the connective tissue beneath the urothelium (in normal cases). However, most of the current flows through the surface fluid in the low frequency range in normal tissue. Furthermore, for the high frequencies, the tight junctions are short-circuited, so the current penetrates deeper, flowing through the connective tissue beneath the urothelium, while, in the malignant cases, at least 50% of the injected current flows beneath transformed urothelium across the frequency range modelled.
机译:当组织从正常变为异常时,组织液在细胞内和细胞外空间之间的分布将发生变化,然后测得的电导率和阻抗也将发生变化。因此,在正常和恶性情况下,它将在人膀胱组织内引起不同的电流分布。通过了解膀胱组织内部的电阻抗量以及该组织不同层的形态学参数,可以了解膀胱组织内部的电流分布(表面液,表面尿路上皮,中间尿路上皮,基底尿路上皮,基底膜和结缔组织)使用有限元分析对模型进行建模和计算。模型结果表明,实际上只有极少数电流流经尿道上皮,而注入的电流中有很大一部分流经尿路上皮下的结缔组织(在正常情况下)。但是,大多数电流在正常组织的低频范围内流过表面流体。此外,对于高频,紧密的结点会短路,因此电流会更深地渗透,流经尿道上皮下的结缔组织,而在恶性情况下,至少有50%的注入电流在转化的尿路上皮下流过频率范围建模。

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