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Angular range, sampling and noise considerations for inverse light scattering analysis of nuclear morphology

机译:核形态反光散射分析的角度范围,取样和噪声考虑

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In recent years, significant work has been devoted to the use of angle-resolved elastic scattering for the extraction of nuclear morphology in tissue. By treating the nucleus as a Mie scattering object, techniques such as angle-resolved low-coherence interferometry (a/LCI) have demonstrated substantial success in identifying nuclear alterations associated with dysplasia. Because optical biopsies are inherently noninvasive, only a small, discretized portion of the 4 pi scattering field can be collected from tissue, limiting the amount of information available for diagnostic purposes. In this work, we comprehensively characterize the diagnostic impact of variations in angular sampling, range and noise for inverse light scattering analysis of nuclear morphology, using a previously reported dataset from 40 patients undergoing a/LCI optical biopsy for cervical dysplasia. The results from this analysis are applied to a benchtop scanning a/LCI system which compromises angular range for wide-area scanning capability. This work will inform the design of next-generation optical biopsy probes by directing optical design towards parameters which offer the most diagnostic utility.
机译:近年来,已经致力于使用角度分辨弹性散射来提取组织中核形态的核形态。通过将核视为MIE散射物体,诸如角度分辨的低相干干涉测量(A / LCI)的技术已经证明了确定与发育不良相关的核改变的实质成功。因为光学活组织检查本质上是非侵入性的,所以可以从组织中收集4个PI散射场的小的离散部分,因此限制了可用于诊断目的的信息量。在这项工作中,我们使用先前报道的40例宫颈发育症患者的数据集全面地表征了核形态的角度采样,范围和噪声变化的诊断影响。该分析的结果应用于BENCHTOP扫描A / LCI系统,该系统损害了广域扫描能力的角度范围。这项工作将通过将光学设计引导到提供最多诊断效用的参数来设计下一代光学活检探头。

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