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μMAPPS: a novel phasor approach to second harmonic analysis for in vitro-in vivo investigation of collagen microstructure

机译:μMAPPS:用于二次谐波分析的新颖相量方法用于胶原蛋白微结构的体外-体内研究

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摘要

Second Harmonic Generation (SHG) is a label-free imaging method used to monitor collagen organization in tissues. Due to its sensitivity to the incident polarization, it provides microstructural information otherwise unreachable by other intensity based imaging methods. We develop and test a Microscopic Multiparametric Analysis by Phasor projection of Polarization-dependent SHG (μMAPPS) that maps the features of the collagen architecture in tissues at the micrometer scale. μMAPPS retrieves pixel-by-pixel the collagen fibrils anisotropy and orientation by operating directly on two coupled phasor spaces, avoiding direct fitting of the polarization dependent SHG signal. We apply μMAPPS to fixed tissue sections and to the study of the collagen microscopic organization in tumors ex-vivo and in-vivo. We develop a clustering algorithm to automatically group pixels with similar microstructural features. μMAPPS can perform fast analyses of tissues and opens to future applications for in-situ diagnosis of pathologies and diseases that could assist histo-pathological evaluation.
机译:第二谐波产生(SHG)是一种无标签的成像方法,用于监测组织中的胶原蛋白组织。由于其对入射偏振的敏感性,它提供了微结构信息,而其他基于强度的成像方法则无法获得这些信息。我们开发和测试了偏振相关SHG(μMAPPS)的相量投影的微观多参数分析,该投影在微米尺度上映射了组织中胶原蛋白结构的特征。 μMAPPS通过直接在两个耦合的相量空间上操作来逐像素地恢复胶原纤维的各向异性和取向,从而避免了偏振相关的SHG信号的直接拟合。我们将μMAPPS应用于固定的组织切片以及离体和体内肿瘤中胶原显微组织的研究。我们开发了一种聚类算法,可以自动将具有相似微结构特征的像素分组。 μMAPPS可以对组织进行快速分析,并为将来可用于病理和疾病的原位诊断打开了方便之门,有助于组织病理学评估。

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