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Refractive index tomography of myelinating glial cells

机译:髓鞘神经胶质细胞的折射率层析成像

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Refractive index tomography as an emerging technique enables the 3D morphological investigation of cells with nomarker. Here, refractive index tomographic imaging of myelinating glial cells is presented. Myelin as a signal insulationlayer around an axon is formed by the wrapping of Schwann cells or oligodendrocytes. Microscopic investigation ofmyelination traditionally requires fluorescent markers. Glial cells generally wrap the axon for more than ten layers. Thismultilayer formation has alternating and uniform layers of protein and lipid. Earlier studies on the structure of the myelinsheath have shown that the thickness period is lower than 20nm including the thickness of the extracellular medium aftereach layer. Direct observation of an individual layer is not possible (using classical microscopy techniques) due todimensions being very small compared to the wavelength of the illumination light. However, periodic nature of thelayers enables the differentiation of a myelinated axon from an unmyelinated one. Rapid change of the integratedrefractive index and the Bragg fiber like structure alters the transmission behavior as a function of wavelength andincidence angle. With the 3D sectioning capability of refractive index tomography, these features can be easilyidentified.
机译:折射率层析成像作为一种新兴技术,可以对没有标记的细胞进行3D形态研究。在这里,提出了髓鞘神经胶质细胞的折射率层析成像。通过包裹雪旺氏细胞或少突胶质细胞形成髓鞘作为轴突周围的信号绝缘层。传统上,\ n \髓鞘的显微研究需要荧光标记。胶质细胞通常将轴突包裹十层以上。这种\ n \ n多层形成具有交替和均匀的蛋白质和脂质层。较早的对髓鞘结构的研究表明,包括每个层之后的细胞外介质的厚度,其厚度周期均小于20nm。 (使用经典的显微镜技术)无法直接观察单个层,因为与照明光的波长相比,其很小。然而,层的周期性性质使得有髓的轴突与无髓的轴突得以区分。积分折射率和布拉格纤维状结构的快速变化改变了传输行为,随波长和入射角而变。借助折射率断层扫描的3D剖切功能,可以轻松识别这些功能。

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  • 来源
    《Quantitative Phase Imaging V》|2019年|1088713.1-1088713.5|共5页
  • 会议地点 2410-9045;1605-7422
  • 作者单位

    School of Engineering and Natural Sciences, Istanbul Medipol University, Turkey;

    Research Center for Regenerative and Restorative Medicine (REMER), Istanbul Medipol University, Turkey;

    Research Center for Regenerative and Restorative Medicine (REMER), Istanbul Medipol University, Turkey;

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