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Investigation on Simulation-Based Specific Absorption Rate in Ultra-Wideband Antenna for Breast Cancer Detection

机译:基于仿真的超宽带乳腺癌检测比吸收率研究

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The electrical properties of the cancer affected cell or malignant tumor cell are completely different from normal healthiest breast tissue. Specific absorption rate (SAR) is used as one of the best parameter to identify the malignant tissue in breast with the help of electrical properties of the human breast tissue, for example, permittivity and conductivity. The design of modified octagonal shaped ultra-wideband monopole microstrip antenna with size of 27 × 29 × 1.6 mm3, fabricated with FR4 material, is found suitable for ultra-wideband applications and used to detect the cancer. The antenna impedance bandwidth of simulated and measured results are good (S11<; -10 dB) and its operating frequency ranges from 3 to 15 GHz with voltage standing wave ratio ≤ 2. A 3-D breast model is designed with 60 mm radius, and simulated SAR values are tabulated for skin, fatty tissue, glandular tissue, and tumor. As glandular tissue is one of the softest tissues in human female breast, it has the possibility of developing tumor in lobules and ducts. The tumors of different size are incorporated in glandular tissue. It is found that the SAR value varies based on the tumor size in glandular tissue.
机译:受癌症影响的细胞或恶性肿瘤细胞的电特性与正常的最健康的乳腺组织完全不同。在人体乳腺组织的电特性(例如介电常数和电导率)的帮助下,比吸收率(SAR)被用作识别乳腺恶性组织的最佳参数之一。尺寸为27×29×1.6 mm n的改进型八边形超宽带单极微带天线的设计 n 3 n适用于超宽带应用并用于检测癌症。模拟和测量结果的天线阻抗带宽都很好(S n 11<;-10 dB),其工作频率范围为3至15 GHz,电压驻波比≤2。3-D乳房模型是设计半径为60 mm,并针对皮肤,脂肪组织,腺组织和肿瘤列出了模拟SAR值。腺组织是人类女性乳房中最柔软的组织之一,因此有可能在小叶和导管中发展出肿瘤。不同大小的肿瘤合并在腺组织中。发现SAR值根据腺组织中的肿瘤大小而变化。

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