首页> 外文会议>Conference on Design and Performance Validation of Phantoms Used in Conjunction with Optical Measurements of Tissue; 20080119-21; San Jose,CA(US) >Evaluating optical properties of isolated biological scatterers from confocal and low-coherence images
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Evaluating optical properties of isolated biological scatterers from confocal and low-coherence images

机译:从共焦和低相干图像评估孤立的生物散射体的光学性质

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In biomedical optics applications, the scattering of light by biological tissue is typically mimicked by embedding microparticles such as polystyrene microspheres or TiO_2 within a non-scattering matrix. Such particles are well structured and give rise to uniform optical scattering properties. However, typical biological scatterers are seldom well-organized nor uniformly sized. In this work, we sought to characterize the scattering properties from particles common to many tissues such as collagen fibers, cells, and lipids. These purified particles were suspended and sandwiched between 2 glass cover slips to form disposable phantoms. The phantoms were imaged by optical coherence tomography and reflectance-mode confocal microscopy. From the images, the attenuation and reflectivity of the sample were evaluated by fitting the depth-dependent signal from specified regions of the image to a theoretical model. The fitted attenuation and reflectivity were used to deduce a distribution of local values of the scattering coefficient and anisotropy factor for each phantom. The measured optical properties at the 2 wavelengths differed in ways that can be explained by Mie theory, suggesting that despite their complex structure, typical biological scatterers exhibit some regularity that can potentially be characterized quantitatively.
机译:在生物医学光学应用中,生物组织的光散射通常通过将微粒(例如聚苯乙烯微球或TiO_2)嵌入非散射基质中来模拟。这样的颗粒结构良好,并产生均匀的光学散射特性。但是,典型的生物散射体很少组织得很好,大小也不一。在这项工作中,我们试图表征许多组织(如胶原纤维,细胞和脂质)共有的颗粒的散射特性。将这些纯化的颗粒悬浮并夹在2个玻璃盖玻片之间,以形成一次性的体模。通过光学相干断层扫描和反射模式共聚焦显微镜对体模成像。从图像中,通过将来自图像指定区域的深度相关信号拟合到理论模型,可以评估样品的衰减和反射率。拟合的衰减和反射率用于推导每个体模的散射系数和各向异性因子的局部值分布。在2个波长处测得的光学性质在Mie理论可以解释的方式上有所不同,这表明尽管其结构复杂,典型的生物散射体仍具有一定的规律性,可以定量表征。

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