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A study of factors influencing detectability of breast tumour in microwave radiometry

机译:微波放射法影响乳腺肿瘤可检测性的因素研究

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Survival rate for breast cancer is directly related to the stage at diagnosis, therefore clinical emphasis is on early screening and detection. Microwave radiometry is a passive imaging modality proposed for breast cancer detection without the need for ionizing radiation. Detection of breast tumor using radiometry is challenging as the intensity of the thermal radiation received by the antenna is influenced by tumor stage, location, physiological conditions and the imaging setup. In this work we have identified tissue compression (c), ambient temperature (Ta), and convection cooling of tissue surface (h) as the controllable parameters and study their influence on tumour detectability in medical microwave radiometry. A 3D coupled multi-physics model of the breast with the chestwall is developed in this study. Simulations are carried out for a 1.5 cm diameter tumour centrally located in a 14 cm diameter breast for 0–20% tissue compression factor (c), 16–25°C ambient temperature (Ta) and 5–10 W/m2K convection cooling (h). Temperature distributions inside the breast and power received by a circular aperture antenna at 1.3 GHz are simulated for varying values of c, Ta and h to assess the influence of these external imaging parameters on the detectability of breast tumour. Simulation results indicate improved detectability for tissue under compression, higher convection cooling and lower ambient temperature.
机译:乳腺癌的存活率与诊断的阶段直接相关,因此临床重点是早期筛查和检测。微波辐射测定法是一种被动成像方式,建议用于乳腺癌检测,而无需电离辐射。由于天线接收到的热辐射强度受肿瘤的分期,位置,生理状况和成像设置的影响,因此使用辐射测定法检测乳腺肿瘤具有挑战性。在这项工作中,我们确定了组织压缩(c),环境温度(Ta)和组织表面的对流冷却(h)作为可控制的参数,并研究了它们在医用微波辐射测量中对肿瘤可检测性的影响。在这项研究中,开发了胸部与胸壁的3D耦合多物理场模型。对直径为1.5 cm的肿瘤(直径位于14 cm的乳房中央)进行了模拟,组织压缩系数(c)为0–20%(c),环境温度(Ta)为16–25°C,对流冷却为5–10 W / m2K( H)。针对c,Ta和h的变化值,模拟了乳房内部的温度分布和1.3 GHz圆形孔径天线接收的功率,以评估这些外部成像参数对乳房肿瘤可检测性的影响。仿真结果表明,在压缩,更高的对流冷却和更低的环境温度下,组织的可检测性得到了改善。

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