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A liquid optical phantom with tissue-like heterogeneities for confocal microscopy

机译:具有组织样异质性的液体光学体模,用于共聚焦显微镜

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摘要

Phantoms play an important role in the development, standardization, and calibration of biomedical imaging devices in laboratory and clinical settings, serving as standards to assess the performance of such devices. Here we present the design of a liquid optical phantom to facilitate the assessment of optical-sectioning microscopes that are being developed to enable point-of-care pathology. This phantom, composed of silica microbeads in an Intralipid base, is specifically designed to characterize a reflectance-based dual-axis confocal (DAC) microscope for skin imaging. The phantom mimics the scattering properties of normal human epithelial tissue in terms of an effective scattering coefficient and a depth-dependent degradation in spatial resolution due to beam steering caused by tissue micro-architectural heterogeneities.
机译:幻影在实验室和临床环境中的生物医学成像设备的开发,标准化和校准中起着重要作用,是评估此类设备性能的标准。在这里,我们介绍一种液体光学体模的设计,以促进评估光学切片显微镜,该显微镜正在开发中以实现即时护理病理。这种体模由脂质体内的二氧化硅微珠组成,专门设计用于表征基于反射率的双轴共焦(DAC)显微镜,用于皮肤成像。根据有效的散射系数以及由于组织微体系结构异质性导致的光束转向,空间分辨率的深度相关性下降,幻影模仿了正常人上皮组织的散射特性。

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