Maguire Clare C, Sieben Judith M, de Bie Robert A
Department of Physiotherapy, Bildungszentrum Gesundheit Basel-Stadt, 4142, Muenchenstein, Switzerland; CAPHRI School for Public Health and Primary Care, Maastricht University, 6200 MD, Maastricht, The Netherlands.
CAPHRI School for Public Health and Primary Care, Maastricht University, 6200 MD, Maastricht, The Netherlands; Department of Anatomy and Embryology, Maastricht University, 6200 MD, Maastricht, The Netherlands.
J Bodyw Mov Ther. 2017 Apr;21(2):422-434. doi: 10.1016/j.jbmt.2016.09.012. Epub 2016 Sep 30.
Many aspects of post-stroke gait-rehabilitation are based on low-level evidence or expert opinion. Neuroscientific principles are often not considered when evaluating the impact of interventions. The use of walking-aids including canes and rollators, although widely used for long periods, has primarily been investigated to assess the immediate kinetic, kinematic or physiological effects. The long-term impact on neural structures und functions remains unclear.
A literature review of the function of and factors affecting plasticity of spinal interneuronal-networks and central-pattern-generators (CPG) in healthy and post-stroke patients. The relevance of these mechanisms for gait recovery and the potential impact of walking-aids is discussed.
Afferent-input to spinal-networks influences motor-output and spinal and cortical plasticity. Disrupted input may adversely affect post-stroke plasticity and functional recovery. Joint and muscle unloading and decoupling from four-limb CPG control may be particularly relevant.
Canes and rollators disrupt afferent-input and may negatively affect the recovery of gait.
中风后步态康复的许多方面基于低水平证据或专家意见。在评估干预措施的影响时,神经科学原理常常未被考虑。尽管拐杖和助行器长期被广泛使用,但对它们的研究主要是为了评估其即时的动力学、运动学或生理学效应。其对神经结构和功能的长期影响仍不清楚。
对健康和中风后患者脊髓中间神经元网络及中枢模式发生器(CPG)的功能以及影响其可塑性的因素进行文献综述。讨论了这些机制与步态恢复的相关性以及助行器的潜在影响。
对脊髓网络的传入输入会影响运动输出以及脊髓和皮质的可塑性。输入中断可能对中风后的可塑性和功能恢复产生不利影响。关节和肌肉卸载以及与四肢CPG控制的解耦可能尤为相关。
拐杖和助行器会干扰传入输入,可能对步态恢复产生负面影响。