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不同偏振敏感二次谐波产生成像技术的比较

Comparison of Different Polarization Sensitive Second Harmonic Generation Imaging Techniques.

作者信息

Alizadeh Mehdi, Ghotbi Masood, Loza-Alvarez Pablo, Merino David

机构信息

Department of Physics, University of Kurdistan, Sanandaj 66177-15175, Iran.

ICFO-Institut de Ciencies Fotoniques, The Barcelona Institute of Science and Technology, 08860 Barcelona, Spain.

出版信息

Methods Protoc. 2019 Jun 7;2(2):49. doi: 10.3390/mps2020049.

Abstract

Polarization sensitive second harmonic generation (pSHG) microscopy is an imaging technique able to provide, in a non-invasive manner, information related to the molecular structure of second harmonic generation (SHG) active structures, many of which are commonly found in biological tissue. The process of acquiring this information by means of pSHG microscopy requires a scan of the sample using different polarizations of the excitation beam. This process can take considerable time in comparison with the dynamics of in vivo processes. Fortunately, single scan polarization sensitive second harmonic generation (SS-pSHG) microscopy has also been reported, and is able to generate the same information at a faster speed compared to pSHG. In this paper, the orientation of second harmonic active supramolecular assemblies in starch granules is obtained on by means of pSHG and SS-pSHG. These results are compared in the forward and backward directions, showing a good agreement in both techniques. This paper shows for the first time, to the best of the authors' knowledge, data acquired using both techniques over the exact same sample and image plane, so that they can be compared pixel-to-pixel.

摘要

偏振敏感二次谐波产生(pSHG)显微镜是一种成像技术,能够以非侵入性方式提供与二次谐波产生(SHG)活性结构的分子结构相关的信息,其中许多结构常见于生物组织中。通过pSHG显微镜获取此信息的过程需要使用激发光束的不同偏振对样品进行扫描。与体内过程的动态相比,这个过程可能会花费相当长的时间。幸运的是,也有单扫描偏振敏感二次谐波产生(SS-pSHG)显微镜的报道,与pSHG相比,它能够以更快的速度生成相同的信息。在本文中,通过pSHG和SS-pSHG获得了淀粉颗粒中二次谐波活性超分子组装体的取向。在正向和反向方向上对这些结果进行了比较,两种技术显示出良好的一致性。据作者所知,本文首次展示了在完全相同的样品和图像平面上使用这两种技术获取的数据,以便可以逐像素进行比较。

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