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Dielectric and Optical Properties of Blood with Different RBCs Concentrations in the THz Band

机译:THz带中具有不同RBCS浓度的血液和光学性质

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Nano-devices operating inside the human body enabled many new applications in the healthcare domain. Communication between nano-devices is a crucial task that aids the rising new applications in thriving. Unfortunately, in-vivo medium contains biomaterials and fluids, e.g., blood, that contaminate the THz signal. In this paper we investigate the effect of the Red Blood Cells (RBCs) concentration (i.e. hematocrit) in blood on its dielectric and optical properties. We present an electromagnetic model for blood with the flexibility of specifying the volume fraction and the particle shape of its RBCs by using Effective Medium Theory (EMT). Results show that the effect of RBCs concentrations on dielectric and optical properties is minimal while favoring the blood with high RBCs concentration as a better communication medium. Obtained results clearly highlight that the RBCs particle shape has no effect on blood's dielectric and optical properties.
机译:在人体内部操作的纳米器件在医疗领域中启用了许多新应用。纳米器件之间的通信是一个重要的任务,有助于蓬勃发展的新应用。不幸的是,体内培养基含有生物材料和流体,例如血液,污染THz信号。在本文中,我们研究红细胞(RBCS)浓度(即血细胞比容)在血液上的介质和光学性质的影响。我们通过使用有效介质理论(EMT)来提出血液的电磁模型,其具有指定体积分数和其RBC的粒子形状。结果表明,RBCS浓度对电介质和光学性质的影响是最小的,同时赞成具有高RBCS浓度的血液作为更好的通信介质。获得的结果显然强调RBCS颗粒形状对血液电介质和光学性质没有影响。

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