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Three-dimensional Reconstruction of Functional Fascicular Groups Inside a Segment of Common Peroneal Nerve

机译:腓总神经节段内功能性束状群的三维重建

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摘要

The virtual human plan has been the hot point of recent research. The objective of this study is to explore the possibility of three-dimensional (3D) reconstruction of functional fascicular groups inside short segmental peripheral nerve. A 5 cm length of common peroneal nerve was horizontally sliced at 0.25 mm intervals, and each section was stained with acetycholinesterase histochemical staining. The 2D panorama images were acquired by high-resolution digital camera under 100 x microscope and mosaic software; different functional fascicular groups were distinguished and marked. The topographic database was then matched using image processing software, through the 3D reconstruction achieved using 3D reconstruction software (Amira 3.1). The reconstructed 3D images could be rotated or zoomed in any direction and the intercross and recombination processes of nerve bundles could be observed. Based on the serial histological sections and computer technology, the 3D microstructure of short segmental peripheral nerve functional fascicular groups was reconstructed. These results provide the possibility of 3D reconstruction of long segmental peripheral nerve functional fascicular groups.
机译:虚拟人类计划一直是最近研究的热点。这项研究的目的是探讨三维三维(3D)重建短节段周围神经内功能性束状群的可能性。以0.25mm的间隔水平地切开5cm长的腓总神经,并用乙酰胆碱酯酶组织化学染色对每个切片进行染色。二维全景图是通过高分辨率数码相机在100倍显微镜和镶嵌软件下获得的;区分并标记了不同的功能性束群。然后使用3D重建软件(Amira 3.1)进行3D重建,使用图像处理软件对地形数据库进行匹配。重建的3D图像可以沿任何方向旋转或缩放,并且可以观察到神经束的交叉和重组过程。基于连续的组织学切片和计算机技术,重建了短节段性周围神经功能束群的3D显微结构。这些结果提供了长节段周围神经功能束群的3D重建的可能性。

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