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National Institute of Standards and Technology measurement service of the optical properties of biomedical phantoms: Current status

机译:美国国家标准技术研究院生物医学模型的光学特性测量服务:现状

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The National Institute of Standards and Technology (NIST) has maintained scales for reflectance and transmittance over several decades. The scales are primarily intended for regular transmittance, mirrors, and solid surface scattering diffusers. The rapidly growing area of optical medical imaging needs a scale for volume scattering of diffuse materials that are used to mimic the optical properties of tissue. Such materials are used as phantoms to evaluate and validate instruments under development intended for clinical use. To address this need, a double-integrating sphere based instrument has been installed to measure the optical properties of tissue-mimicking phantoms. The basic system and methods have been described in previous papers. An important attribute in establishing a viable calibration service is the estimation of measurement uncertainties. The use of custom models and comparisons with other established scales enabled uncertainty measurements. Here, we describe the continuation of those efforts to advance the understanding of the uncertainties through two independent measurements: the bidirectional reflectance distribution function and the bidirectional transmittance distribution function of a commercially available solid biomedical phantom. A Monte Carlo-based model is used and the resulting optical properties are compared to the values provided by the phantom manufacturer.
机译:美国国家标准技术研究院(NIST)几十年来一直保持着反射率和透射率的等级。光栅尺主要用于常规透射率,反射镜和固体表面散射漫射器。光学医学成像的迅速增长的领域需要用于模拟组织光学特性的漫射材料体积散射的标度。此类材料用作人体模型,以评估和验证正在开发的用于临床的仪器。为了满足这一需求,已经安装了基于双积分球的仪器来测量组织模拟体模的光学特性。基本系统和方法已在先前的论文中进行了描述。建立可行的校准服务的重要属性是测量不确定度的估计。使用自定义模型以及与其他已建立规模的比较可以进行不确定性测量。在这里,我们描述了通过两个独立的测量方法来继续推进对不确定性的理解的努力:双向反射率分布函数和市售固体生物医学模型的双向透射率分布函数。使用基于蒙特卡洛的模型,并将所得的光学性能与模型制造商提供的值进行比较。

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