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脊髓的教育与再教育。

The education and re-education of the spinal cord.

作者信息

Wolpaw Jonathan R

机构信息

Wadsworth Center, Laboratory of Nervous System Disorders, New York State Department of Health and State University of New York, Albany, NY 12201, USA.

出版信息

Prog Brain Res. 2006;157:261-280. doi: 10.1016/s0079-6123(06)57017-7.

Abstract

In normal life, activity-dependent plasticity occurs in the spinal cord as well as in the brain. Like CNS plasticity elsewhere, this spinal cord plasticity can occur at many neuronal and synaptic sites and by a variety of mechanisms. Spinal cord plasticity is prominent in postnatal development and contributes to acquisition of standard behaviors such as locomotion and rapid withdrawal from pain. Later on in life, spinal cord plasticity contributes to acquisition and maintenance of specialized motor skills, and to compensation for the peripheral and central changes associated with aging, disease, and trauma. Mastery of even the simplest behaviors is accompanied by complex spinal and supraspinal plasticity. This complexity is necessary, to preserve the full roster of behaviors, and is also inevitable, due to the ubiquity of activity-dependent plasticity in the CNS. Careful investigation of spinal cord plasticity is essential for understanding motor skills; and, because of the relative simplicity and accessibility of the spinal cord, is a logical and convenient starting point for exploring skill acquisition. Appropriate induction and guidance of activity-dependent plasticity in the spinal cord is likely to be a key part of the realization of effective new rehabilitation methods for spinal cord injuries, cerebral palsy, and other chronic motor disorders.

摘要

在正常生活中,依赖活动的可塑性不仅发生在大脑,也发生在脊髓。与中枢神经系统其他部位的可塑性一样,这种脊髓可塑性可发生在许多神经元和突触部位,并通过多种机制实现。脊髓可塑性在出生后发育过程中很突出,有助于获得标准行为,如运动和对疼痛的快速躲避。在生命后期,脊髓可塑性有助于获得和维持特殊运动技能,并补偿与衰老、疾病和创伤相关的外周和中枢变化。即使是掌握最简单的行为也伴随着复杂的脊髓和脊髓上可塑性。这种复杂性对于保留完整的行为清单是必要的,而且由于中枢神经系统中依赖活动的可塑性无处不在,也是不可避免的。仔细研究脊髓可塑性对于理解运动技能至关重要;而且,由于脊髓相对简单且易于研究,是探索技能习得的合理且便捷的起点。在脊髓中适当诱导和引导依赖活动的可塑性可能是实现针对脊髓损伤、脑瘫和其他慢性运动障碍的有效新康复方法的关键部分。

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