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Structural Analysis of Blended Materials Using Multiphoton Autofluorescence and Second Harmonic Generation Microscopy

机译:多光子自发荧光和二次谐波产生显微镜对混合材料的结构分析

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摘要

The purpose of this work is to investigate the microstructure of blended materials using non-invasive, optical imaging modality. Multiphoton autofluorescence and second harmonic generation signals will be used for characterizing and quantifying individual non-linear optical properties of each polymer in pure polymeric thin films. In addition, reflected confocal signals will used to outline the interface of refractive index mismatch. And the phase separation phenomenon of immiscible blended membranes composed of different ratio of nylon and chitosan are analyzed and differentiated using the non-invasive optical information including autofluerescence, second harmonic generation, and reflected signals. We therefore propose the potentiality of using multiphoton autofluorescence and second harmonic generation microscopy complemented with reflected confocal microscopy for studying the synthetic blended polymeric scaffolds and also, in the future, the dynamic, in vivo, cell-matrix interaction in the field of tissue engineering.
机译:这项工作的目的是使用非侵入性的光学成像方法研究混合材料的微观结构。多光子自发荧光和二次谐波产生信号将用于表征和量化纯聚合物薄膜中每种聚合物的单个非线性光学性质。另外,反射的共聚焦信号将用于勾勒折射率失配的界面。并利用包括自发荧光,二次谐波产生和反射信号在内的非侵入性光学信息,分析和区分了由不同比例的尼龙和壳聚糖组成的不混溶共混膜的相分离现象。因此,我们提出了使用多光子自发荧光和二次谐波产生显微镜以及反射共聚焦显微镜研究合成共混聚合物支架的潜力,以及将来在组织工程领域中动态,体内,细胞-基质相互作用的研究。

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