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Three-dimensional Reconstruction of Human Median, Ulnar and Radial Nerve

机译:人中中位,尺骨和桡神经的三维重建

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This study was undertaken to implement the three-dimensional (3D) reconstruction of the intraneural structure in the upper limb peripheral nerves. Three fresh cadaver peripheral nerves (One median, one ulnar and one radial nerve) were located with human hair, embedded in OCT, sectioned consecutively every 100μm at a 20μm thickness. Then all slices were stained with the Acetylcholinesterase histochemical (AChe) method. 2D information of these slices were obtained through high resolution scanner. A special software (3D Nerve visualization system) was used for 3D reconstruction of these nerves. Finally, 3D microstructure inside these nerves were reproduced in the computer. 3D Nerve visualization system can show exactly the 3D microstructure inside these nerves and the rules of the regrouping and redistribution of the fasciculus. In addition, the reconstructed nerves could rotate at any angle along any axis, which might help us to observe the shape, position and relationships of fasciculus from different positions. It might do a great help to provide a anatomic basis for the approach in treating peripheral nerve injuries.
机译:本研究旨在实施上肢外周神经中肾内结构的三维(3D)重建。三个新鲜的尸体外周神经(一个中位数,一个尺骨和一个桡神经)都位于OCT中的人发,每100μm以20μm厚度连续切开。然后用乙酰胆碱酯酶组织化学(ACHE)方法染色所有切片。通过高分辨率扫描仪获得这些切片的2D信息。一种特殊的软件(3D神经可视化系统)用于这些神经的三维重建。最后,在计算机中再现这些神经内部的3D微观结构。 3D神经可视化系统可以恰好显示这些神经内部的3D微观结构以及坐毛的重新组合和重新分布的规则。另外,重建的神经可以沿任何轴线以任何角度旋转,这可能有助于我们观察来自不同位置的坐毛的形状,位置和关系。为治疗外周神经损伤的方法提供解剖学依据,这可能会很大帮助。

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