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Fast increase of motor cortical inhibition following postural changes in healthy subjects

机译:健康受试者姿势改变后运动皮质抑制的快速增加

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摘要

Background and aims: Postural reactions are associated with changes in the excitability of the motor system. In the present study we investigated the presence of neurophysiological changes of motor cortical areas targeting muscles of the inferior limbs following treatment with a physiotherapy technique aimed to treat postural dysfunctions by stretching postural muscles, global postural reeducation (GPR). Methods: Twenty healthy subjects were evaluated with paired-transcranial magnetic stimulation (TMS) of the motor cortex and recording of motor evoked potentials (MEPs) from peripheral muscles of the inferior limb before and after two GPR manoeuvres applied in different experiments (1 and 2). Results: The effects of GPR were posture- and task-specific: indeed, a GPR manoeuvre applied in standing subjects increased inhibition in cortical areas controlling flexor muscles (Biceps Femoris: p< 0.05) while increasing the excitation of cortical areas controlling extensor muscles (Tibialis Anterior: p< 0.05). On the other hand, following a GPR manoeuvre applied in subjects in supine position, increased inhibition in cortical areas controlling flexor muscles (Biceps Femoris and Soleus) was not paralleled by excitation of extensor ones (F= 12.2; p= 0.005). Conclusions: These findings provide a neurophysiological basis to the clinical benefits associated to physiotherapy and suggest potential applications of treatments based on postural changes on motor cortical disorders.
机译:背景与目的:姿势反应与运动系统的兴奋性变化有关。在本研究中,我们调查了以理疗技术为目标的运动皮层区域针对下肢肌肉的神经生理变化的存在,理疗技术旨在通过拉伸姿势肌肉,整体姿势再教育(GPR)治疗姿势功能障碍。方法:对20名健康受试者进行运动皮质配对经颅磁刺激(TMS)评估,并记录在不同实验中进行两次GPR操作前后下肢周围肌肉的运动诱发电位(MEP)(1和2 )。结果:GPR的影响是针对特定姿势和特定任务的:实际上,对站立的受试者进行GPR动作可增加对控制屈肌的皮质区域的抑制作用(肱二头肌:p <0.05),同时增加对控制伸肌的皮质区域的刺激(胫前肌:p <0.05)。另一方面,在仰卧位的对象上进行GPR操作后,控制屈伸肌的皮质区域(二头肌Femoris和Soleus)的抑制增加与伸肌的激发并没有平行(F = 12.2; p = 0.005)。结论:这些发现为与物理疗法相关的临床益处提供了神经生理学基础,并提出了基于运动皮质疾病姿势改变的治疗方法的潜在应用。

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