Department of Rehabilitation Medicine, Juntendo University Graduate School of Medicine, Tokyo, Japan.
Department of Physical Therapy, Faculty of Health Science, Juntendo University, 2-1-1 Hongo, Bunkyo, Tokyo, 113-8421, Japan.
Exp Brain Res. 2020 Aug;238(7-8):1701-1705. doi: 10.1007/s00221-020-05849-0. Epub 2020 Jun 17.
Spinal reciprocal inhibition (RI) and intracortical inhibition are important physiological mechanisms for voluntary movement control and functional recovery of voluntary movement in patients with stroke. Spasticity, which impairs motor performance, is one of the major manifestations of stroke. RI may be involved in reducing spasticity. This might allow finger extension, and, therefore, better hand function by reducing co-contraction with finger extensors. One potential mechanism of functional reorganization of the motor cortex is that pre-existing masking pathways are unmasked by decreased intracortical inhibition. The inhibitory neurotransmitter GABA plays an important role in this process. Changes in RI might be mediated through unmasking of cortical pathways through decreased inhibition, with the neurotransmitter GABA. These changes can be assessed using short-latency intracortical inhibition (SICI) and RI. Functional recovery in the chronic phase of stroke induced by rehabilitation was accompanied by SICI and spinal RI changes. Cortical reorganization and spinal plasticity might play important roles in functional recovery induced by rehabilitation, even in patients with chronic severe hemiparesis. This review aims to provide a focused overview of neuroplasticity of spinal RI and intracortical inhibition associated with functional motor recovery from stroke.
脊髓交互抑制(RI)和皮质内抑制是自愿运动控制和中风患者自愿运动功能恢复的重要生理机制。痉挛是中风的主要表现之一,它会损害运动表现。RI 可能参与减少痉挛。这可能通过减少与手指伸肌的共同收缩来允许手指伸展,从而改善手部功能。运动皮层功能重组的一个潜在机制是,通过降低皮质内抑制作用,预先存在的掩蔽通路被解除掩蔽。抑制性神经递质 GABA 在这个过程中起着重要作用。RI 的变化可能通过 GABA 介导的抑制作用降低,从而使皮层通路暴露出来。可以使用短潜伏期皮质内抑制(SICI)和 RI 来评估这些变化。康复诱导的中风慢性期的功能恢复伴随着 SICI 和脊髓 RI 变化。皮层重组和脊髓可塑性可能在康复诱导的功能恢复中发挥重要作用,即使在患有慢性严重偏瘫的患者中也是如此。本综述旨在提供与中风后功能运动恢复相关的脊髓 RI 和皮质内抑制的神经可塑性的重点概述。