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Phantom and animal tissues for modelling the electrical properties of human liver.

机译:人体模型和动物组织,用于模拟人类肝脏的电特性。

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摘要

The dielectric properties of human liver were characterized over the frequency range of 0.3-3 GHz for freshly excised tissue samples of primary hepatocellular carcinoma, metastatic colorectal carcinoma, and normal liver tissues resected from the tumour margin. On average, the dielectric constant (epsilon(r)) of freshly excised human liver tumour was 12% higher than that of surrounding normal liver, and the electrical conductivity (sigma) of tumour was 24% higher. In order to establish suitable tissue models for human liver, the electrical properties were compared to measurements of homogenous phantom mixtures, in vitro bovine liver, and in vivo canine and porcine liver tissues. The data demonstrate that there are several animal tissues that can be used to model the average dielectric properties of human liver reasonably accurately, and use of the most readily available bovine liver appears well-justified, even when stored for up to 10 days in a refrigerator. Additionally, the dielectric properties of in vitro liver remained stable over a large temperature range, with sigma rising only 1.1%/ degrees C in porcine liver (15-37 degrees C) and 2.0%/ degrees C in bovine liver (10-90 degrees C), and epsilon(r) decreasing < or =0.2%/ degrees C in both tissues. This effort identifies homogeneous solid and liquid phantom models and several heterogeneous in vitro tissues that adequately model the dielectric properties of human liver tumours for use in quantitative studies of microwave power deposition in liver.
机译:对于新鲜切除的原发性肝细胞癌,转移性结直肠癌和从肿瘤边缘切除的正常肝组织,在0.3-3 GHz的频率范围内表征了人类肝脏的介电特性。平均而言,新鲜切除的人肝肿瘤的介电常数(ε)比周围正常肝的介电常数(ε)高12%,肿瘤的电导率(sigma)高24%。为了建立适合人体肝脏的组织模型,将电学性能与均质体模混合物,体外牛肝以及体内犬和猪肝组织的测量值进行了比较。数据表明,有几种动物组织可用于合理准确地模拟人肝的平均介电特性,并且即使在冰箱中保存长达10天,使用最容易获得的牛肝也很合理。 。此外,体外肝脏的介电性能在较大温度范围内保持稳定,猪肝(15-37摄氏度)的sigma仅升高1.1%/℃,牛肝(10-90摄氏度)的sigma仅升高2.0%/℃。 C),并且在两个组织中,ε均降低<或= 0.2%/摄氏度。这项工作确定了均质的固体和液体体模模型以及几种异质的体外组织,这些组织充分地模拟了人类肝脏肿瘤的介电特性,可用于肝脏中微波功率沉积的定量研究。

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