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首页> 外文期刊>Neural regeneration research >Rehabilitation following spinal cord injury: how animal models can help our understanding of exercise-induced neuroplasticity
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Rehabilitation following spinal cord injury: how animal models can help our understanding of exercise-induced neuroplasticity

机译:脊髓损伤后康复:动物模型如何帮助我们对运动诱导的神经塑性的理解

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Spinal cord injury is a devastating condition that is followed by long and often unsuccessful recovery after trauma. The state of the art approach to manage paralysis and concomitant impairments is rehabilitation, which is the only strategy that has proven to be effective and beneficial for the patients over the last decades. How rehabilitation influences the remodeling of spinal axonal connections in patients is important to understand, in order to better target these changes and define the optimal timing and onset of training. While clinically the answers to these questions remain difficult to obtain, rodent models of rehabilitation like bicycling, treadmill training, swimming, enriched environments or wheel running that mimic clinical rehabilitation can be helpful to reveal the axonal changes underlying motor recovery. This review will focus on the different animal models of spinal cord injury rehabilitation and the underlying changes in neuronal networks that are improved by exercise and rehabilitation.
机译:脊髓损伤是一种毁灭性的条件,其次是在创伤后长期且经常不成功的恢复。恢复瘫痪和伴随损伤的最先进的方法是恢复恢复,这是过去几十年来证明对患者有效和有益的唯一策略。如何影响患者脊柱官方连接的重建是重要的,以便更好地理解,以便更好地瞄准这些变化并定义最佳的时间和训练开始。虽然临床上这些问题的答案仍然难以获得,但是恢复的啮齿动物模型,如骑自行车,跑步机训练,游泳,丰富的环境或车轮,以模仿临床康复的速度可能有助于揭示潜在的电机恢复潜在的轴突变化。本综述将专注于脊髓损伤康复的不同动物模型,通过运动和康复改善神经元网络的潜在变化。

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