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Modulation of corticospinal input to the legs by arm and leg cycling in people with incomplete spinal cord injury

机译:用手臂和腿部循环术中脊髓损伤的人的腿部皮质螺旋输入调节

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The spinal cervico-lumbar interaction during rhythmic movements in humans has recently been studied; however, the role of arm movements in modulating the corticospinal drive to the legs is not well understood. The goals of this study were to investigate the effect of active rhythmic arm movements on the corticospinal drive to the legs (study 1) and assess the effect of simultaneous arm and leg training on the corticospinal pathway after incomplete spinal cord injury (iSCI) (study 2). In study 1, neurologically intact (NI) participants or participants with iSCI performed combinations of stationary and rhythmic cycling of the arms and legs while motor evoked potentials (MEPs) were recorded from the vastus lateralis (VL) muscle. In the NI group, arm cycling alone could facilitate the VL MEP amplitude, suggesting that dynamic arm movements strongly modulate the corticospinal pathway to the legs. No significant difference in VL MEP between conditions was found in participants with iSCI. In study 2, participants with iSCI underwent 12 wk of electrical stimulation-assisted cycling training: one group performed simultaneous arm and leg (A&L) cycling and the other legs-only cycling. MEPs in the tibialis anterior (TA) muscle were compared before and after training. After training, only the A&L group had a significantly larger TA MEP, suggesting increased excitability in the corticospinal pathway. The findings demonstrate the importance of arm movements in modulating the corticospinal drive to the legs and suggest that active engagement of the arms in lower limb rehabilitation may produce better neural regulation and restoration of function.
机译:最近研究了人类节奏运动期间的脊髓颈腰椎相互作用;然而,手臂运动在调节皮质螺旋驱动到腿部的作用是不太理解的。本研究的目标是探讨活性节律臂运动对腿部皮质螺旋驱动器的影响(研究1),并评估不完全脊髓损伤(ISCI)后同时臂和腿训练对皮质脊柱途径的影响(研究2)。在研究1中,神经学上完整(NI)参与者或参与者的isci进行了静止和有节奏循环的组合,而动机诱发电位(MEPs)从墨水侧面(VL)肌肉中记录。在Ni组中,单独臂循环可以促进VL MEP幅度,表明动态臂运动强烈调节皮质脊柱通路到腿部。在与ISCI的参与者中发现了条件之间的VL MEP中没有显着差异。在研究2中,与ISCI的参与者接受了12周的电气刺激辅助循环训练:一组同时进行手臂和腿(A&L)骑自行车,仅对其他双腿进行循环。在训练之前和之后比较了胫骨前(TA)肌肉中的MEP。在培训之后,只有A&L基团具有显着更大的TA MEP,表明皮质脊柱途径中的兴奋性增加。该研究结果表明了臂运动在调节皮质螺旋驱动到腿部的重要性,并表明臂在下肢康复中的主动接合可以产生更好的神经调节和功能恢复。

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