首页> 外文期刊>The Neuroscientist: a review journal bringing neurobiology, neurology and psychiatry >Synaptic plasticity, neurogenesis, and functional recovery after spinal cord injury.
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Synaptic plasticity, neurogenesis, and functional recovery after spinal cord injury.

机译:脊髓损伤后的突触可塑性,神经发生和功能恢复。

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摘要

Spinal cord injury research has greatly expanded in recent years, but our understanding of the mechanisms that underlie the functional recovery that can occur over the weeks and months following the initial injury, is far from complete. To grasp the scope of the problem, it is important to begin by defining the sensorimotor pathways that might be involved by a spinal injury. This is done in the rodent and nonhuman primate, which are two of the most commonly used animal models in basic and translational spinal injury research. Many of the better known experimentally induced models are then reviewed in terms of the pathways they involve and the reorganization and recovery that have been shown to follow. The better understood neuronal mechanisms mediating such post-injury plasticity, including dendritic spine growth and axonal sprouting, are then examined.
机译:近年来,脊髓损伤的研究已大大扩展,但是我们对构成最初损伤后数周和数月内发生功能恢复的机制的了解还远远不够。为了把握问题的范围,从定义可能与脊柱损伤有关的感觉运动通路开始很重要。这是在啮齿动物和非人类灵长类动物中完成的,它们是基础性和转化性脊髓损伤研究中最常用的两种动物模型。然后根据其所涉及的途径以及已证实遵循的重组和回收方法,对许多众所周知的实验诱导模型进行了综述。然后研究了更好地理解的介导这种损伤后可塑性的神经元机制,包括树突棘生长和轴突发芽。

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