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首页> 外文期刊>Journal of Neurology >Strategies for axonal repair in central nervous system diseases
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Strategies for axonal repair in central nervous system diseases

机译:中枢神经系统疾病的轴突修复策略

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摘要

Significant functional recovery after spinal cord injury can be observed in rodents, in spite of the presence of extensive irreversible structural damage. One potential mechanism for functional regeneration of the corticospinal tract may involve the formation of new spinal circuits remote from the lesion that allow the lesion site to be by-passed and contact re-established with the original targets of the transected axons. In both traumatic and inflammatory lesions of the spinal cord, transection at the thoracic level is followed by extensive collateral sprouting at higher levels of the spinal cord. These collaterals can make contact with long propriospinal neurones in the cervical cord, which project to the lumbar ventral horn via the ventral funiculus. These new connections can serve as a ‘bridge’ to reconnect the corticospinal neurone to its target anterior horn cell. The integrity of this circuitry has been demonstrated by retrograde tracing with pseudorabies virus. Recuperation of electromyographic activity following stimulation of the motor cortex indicates that these new spinal circuits are functionally active. Such remodelling of spinal circuitry following spinal injury may play an important role in determining the extent of functional recovery.
机译:尽管存在广泛的不可逆结构损伤,但在啮齿动物中仍可观察到脊髓损伤后脊髓的功能恢复显着。皮质脊髓束功能再生的一种潜在机制可能涉及远离病变处形成新的脊髓回路,从而绕过病变部位并与横切的轴突的原始靶点重新建立接触。在脊髓的创伤性和炎性病变中,在胸部水平切开后,在较高水平的脊髓上都会有大量的侧支发芽。这些侧支可以与颈脊髓中较长的脊髓前神经元接触,后者通过腹侧真菌突出到腰腹角。这些新的连接可以用作将皮质脊髓神经元重新连接到其目标前角细胞的“桥梁”。通过伪狂犬病病毒的逆向追踪已经证明了该电路的完整性。运动皮层刺激后肌电活动恢复,表明这些新的脊髓回路功能活跃。脊柱损伤后脊柱回路的这种重塑可能在确定功能恢复程度方面起重要作用。

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