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Microstructural Analysis of Human White Matter Architecture Using Polarized Light Imaging: Views from Neuroanatomy

机译:利用偏振光成像技术对人的白色物质结构进行微观结构分析:来自神经解剖学的观点

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摘要

To date, there are several methods for mapping connectivity, ranging from the macroscopic to molecular scales. However, it is difficult to integrate this multiply-scaled data into one concept. Polarized light imaging (PLI) is a method to quantify fiber orientation in gross histological brain sections based on the birefringent properties of the myelin sheaths. The method is capable of imaging fiber orientation of larger-scale architectural patterns with higher detail than diffusion MRI of the human brain. PLI analyses light transmission through a gross histological section of a human brain under rotation of a polarization filter combination. Estimates of the angle of fiber direction and the angle of fiber inclination are automatically calculated at every point of the imaged section. Multiple sections can be assembled into a 3D volume. We describe the principles of PLI and present several studies of fiber anatomy as a synopsis of PLI: six brainstems were serially sectioned, imaged with PLI, and 3D reconstructed. Pyramidal tract and lemniscus medialis were segmented in the PLI datasets. PLI data from the internal capsule was related to results from confocal laser scanning microscopy, which is a method of smaller scale fiber anatomy. PLI fiber architecture of the extreme capsule was compared to macroscopical dissection, which represents a method of larger-scale anatomy. The microstructure of the anterior human cingulum bundle was analyzed in serial sections of six human brains. PLI can generate highly resolved 3D datasets of fiber orientation of the human brain and has high comparability to diffusion MR. To get additional information regarding axon structure and density, PLI can also be combined with classical histological stains. It brings the directional aspects of diffusion MRI into the range of histology and may represent a promising tool to close the gap between larger-scale diffusion orientation and microstructural histological analysis of connectivity.
机译:迄今为止,有几种方法可以绘制连通性,从宏观到分子尺度。但是,很难将这种倍数缩放的数据集成到一个概念中。偏振光成像(PLI)是一种基于髓鞘的双折射特性来量化组织学脑组织中纤维方向的方法。与人脑的扩散MRI相比,该方法能够以更大的细节对较大规模的建筑图案的纤维方向进行成像。在偏振滤光片组合的旋转下,PLI分析通过人脑大体组织切片的光传输。纤维方向角和纤维倾斜角的估计值会在成像部分的每个点自动计算。可以将多个部分组装成3D体积。我们描述了PLI的原理,并提出了一些作为PLI的概要的纤维解剖学研究:连续切开六个脑干,用PLI成像,并重建3D。在PLI数据集中分割了金字塔形束和中间弯弯曲曲。内囊的PLI数据与共聚焦激光扫描显微镜的结果有关,这是一种较小规模的纤维解剖方法。将极端囊的PLI纤维结构与宏观解剖进行了比较,这代表了一种较大规模的解剖方法。在六个人脑的连续切片中分析了人前扣带束的微观结构。 PLI可以生成高度解析的人脑纤维取向3D数据集,并且具有与MR扩散的高度可比性。为了获得有关轴突结构和密度的其他信息,PLI也可以与经典的组织学染色相结合。它将扩散MRI的方向性纳入组织学范围,并可能代表一种有希望的工具,可以缩小大规模扩散方向与连通性的微观结构组织学分析之间的差距。

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