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首页> 外文期刊>Bioelectromagnetics. >Multi‐physics modeling to study the influence of tissue compression and cold stress on enhancing breast tumor detection using microwave radiometry
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Multi‐physics modeling to study the influence of tissue compression and cold stress on enhancing breast tumor detection using microwave radiometry

机译:多物理建模研究组织压缩和冷应激对使用微波辐射测定增强乳腺肿瘤检测的影响

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摘要

The influence of tissue compression and external thermal modulation on passive detection of breast tumors using medical microwave radiometry was investigated using multi‐physics numerical modeling. A three‐dimensional numerical model of the pendant breast with 10 and 6?mm diameter tumors at varying depths (15?mm, 30?mm) was analyzed at thermodynamic equilibrium using a circular waveguide as the receive antenna. The contrast in the brightness temperature, Δ T B , between the unhealthy and healthy breasts was found to be significantly more for breast compression alone, compared to thermal modulation of the tissue surface, irrespective of tissue composition, tumor size, and depth. The study also concludes that small deep‐seated tumor with very low metabolic activity that is not detectable by a radiometer with 0.1?°C sensitivity could be detected under breast compression and short duration cold stress. Thus, detection of deep‐seated breast tumors can be significantly improved under controlled tissue compression with an optional cold stress. Bioelectromagnetics. ? 2019 Bioelectromagnetics Society.
机译:采用多物理数值模型研究了组织压缩和外部热调制对使用医用微波辐射测定的乳腺肿瘤被动检测的影响。使用圆形波导在热力学平衡下分析具有10和6Ωmm的三维数值模型,其直径在不同深度(15Ωmm,30Ωmm),用圆形波导作为接收天线。与组织表面的热调节相比,发现亮度温度与不健康和健康乳房之间的亮度温度δTb之间的对比度是多于组织表面,肿瘤大小和深度的乳腺压缩。该研究还得出结论,在乳房压缩和短持续时间冷应力下,可以在乳房压缩下检测到具有非常低的代谢活性的小型深层肿瘤,其辐射计是0.1Ω·c敏感性。因此,在具有可选的冷应激的受控组织压缩下,可以显着改善深层乳腺肿瘤的检测。生物电磁学。还2019生物电磁学会。

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