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首页> 外文期刊>Journal of neurotrauma >Retrograde axonal degeneration 'dieback' in the corticospinal tract after transection injury of the rat spinal cord: a confocal microscopy study.
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Retrograde axonal degeneration 'dieback' in the corticospinal tract after transection injury of the rat spinal cord: a confocal microscopy study.

机译:大鼠脊髓横断损伤后皮质脊髓束内逆行轴突变性“死亡”:共聚焦显微镜研究。

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摘要

Axonal dieback is a process in which axons in spinal tracts retract away from the initial site of injury. The purpose of this project is to study the dynamics of dieback in corticospinal tract (CST) axons after various time intervals post-injury, to find the optimal spatial-temporal window for regenerative treatment. Rats received transection injuries at the T8 spinal level and were sacrificed at different time periods (1, 2, 4, 8, and 16 weeks). Three weeks prior to sacrifice, DiI crystals were implanted in the sensorimotor cortex and produced excellent CST labeling, and clear delineation of the terminal bulbs of transected axons. With DiI and confocal microscopy, we visualized axons along the entire length of the CST, and quantified the temporal and spatial features of dieback in axons of the CST based on the location of the terminal bulbs. We found that the majority of axons stopped dieing back 4 weeks after injury by which time they were approximately 2.5 mm from the site of injury. However, at 8 and 16 weeks after injury, some terminal bulbs were more than 10 and 19 mm, respectively, from the site of injury.
机译:轴突消亡是一个过程,其中脊髓中的轴突从损伤的初始部位缩回。该项目的目的是研究损伤后不同时间间隔后皮质脊髓束突(CST)轴突的回缩动力学,以寻找再生治疗的最佳时空窗口。大鼠在T8脊柱水平受到横断损伤,并在不同的时间段(1、2、4、8和16周)处死。处死前三周,将DiI晶体植入感觉运动皮层,并产生出色的CST标记,并清楚地描绘出横切轴突末端球的轮廓。使用DiI和共聚焦显微镜,我们可以观察到CST整个长度上的轴突,并根据末端球茎的位置量化了CST轴突中回死的时空特征。我们发现大多数轴突在受伤后4周停止死亡,而此时它们距受伤部位约2.5毫米。但是,在受伤后第8周和第16周,一些末端球茎距受伤部位分别超过10毫米和19毫米。

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