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Multi-layered tissue head phantoms for noninvasive optical diagnostics

机译:用于无创光学诊断的多层组织头部模型

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Extensive research in the area of optical sensing for medical diagnostics requires development of tissue phantoms with optical properties similar to those of living human tissues. Development and improvement of in vivo optical measurement systems requires the use of stable tissue phantoms with known characteristics, which are mainly used for calibration of such systems and testing their performance over time. Optical and mechanical properties of phantoms depend on their purpose. Nevertheless, they must accurately simulate specific tissues they are supposed to mimic. Many tissues and organs including head possess a multi-layered structure, with specific optical properties of each layer. However, such a structure is not always addressed in the present-day phantoms. In this paper, we focus on the development of a plain-parallel multi-layered phantom with optical properties (reduced scattering coefficient $mu_{s}^{prime}$ and absorption coefficient μa) corresponding to the human head layers, such as skin, s...
机译:在用于医学诊断的光学感测领域中的广泛研究要求开发具有与人类活体组织相似的光学特性的组织模型。体内光学测量系统的开发和改进需要使用具有已知特征的稳定组织体模,其主要用于校准此类系统并随时间测试其性能。体模的光学和机械性能取决于其用途。然而,他们必须准确地模拟应该模仿的特定组织。包括头部在内的许多组织和器官都具有多层结构,每一层都有特定的光学特性。但是,这种结构在当今的幻象中并不总是得到解决。在本文中,我们专注于开发具有与人头层相对应的光学特性(降低的散射系数$ mu_ {s} ^ { prime} $和吸收系数μa)的平平行多层体模,例如作为皮肤,...

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