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首页> 外文期刊>Experimental Brain Research >Enhanced excitability of the corticospinal pathway of the ankle extensor and flexor muscles during standing in humans
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Enhanced excitability of the corticospinal pathway of the ankle extensor and flexor muscles during standing in humans

机译:在站立过程中增强了踝部伸肌和屈肌的皮质脊髓途径的兴奋性

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The purpose of this study was to investigate how the recruitment properties of the corticospinal pathway are modulated in the soleus (SOL) and tibialis anterior (TA) muscles depending on postures. A wide range of stimulus intensities were applied via transcranial magnetic stimulation over the primary motor cortex during standing (STD) and sitting (SIT) with a comparable background activity level in each muscle. The relationship between the stimulation intensities and the size of motor-evoked potentials was assessed by the Boltzmann sigmoid function, which is characterized by a plateau value, maximum slope, and threshold. The plateau value and maximum slope were significantly higher during STD than during SIT in the SOL muscle (STD vs. SIT, plateau value: 50.0 ± 21.8 vs. 33.9 ± 12.3 mV ms, maximal slope: 1.6 ± 0.7 vs. 1.2 ± 0.5 mV ms/% maximal stimulator output). Similar changes of the parameters were also observed in the TA muscle (STD vs. SIT, plateau value: 71.0 ± 22.9 vs. 41.4 ± 16.1 mV ms, maximal slope: 5.0 ± 2.0 vs. 2.5 ± 0.7 mV ms/% maximal stimulator output). The threshold did not differ significantly between the two conditions and both muscles. These results indicate that the central nervous system requires a different control for each postural condition; that is, the relative balance of the excitatory and inhibitory inputs to the corticospinal pathways as well as the number of neurons of subliminal fringe in the corticospinal pathway was increased during STD compared with those during SIT. Keywords Postural control - Recruitment curve - Ankle muscles - Corticospinal pathway - Transcranial magnetic stimulation
机译:这项研究的目的是调查如何根据姿势在比目鱼(SOL)和胫骨前(TA)肌肉中调节皮质脊髓途径的募集特性。在站立(STD)和坐姿(SIT)期间,通过经颅磁刺激在初级运动皮层上施加各种刺激强度,每条肌肉的背景活动水平相当。刺激强度与电机诱发电位大小之间的关系通过玻尔兹曼乙状结肠功能进行评估,该功能的特征在于平台值,最大斜率和阈值。 STD期间高原值和最大斜率显着高于SOL肌肉中SIT期间(STD vs.SIT,高原值:50.0±21.8 vs.33.9±12.3 mV ms,最大斜率:1.6±0.7 vs.1.2±0.5 mV ms /%最大刺激器输出)。在TA肌肉中也观察到类似的参数变化(STD vs.SIT,平台值:71.0±22.9 vs.41.4±16.1 mV ms,最大斜率:5.0±2.0 vs.2.5±0.7 mV ms /%最大刺激器输出)。在两种情况和两种肌肉之间,阈值均无显着差异。这些结果表明中枢神经系统需要对每种姿势状况进行不同的控制。也就是说,与SIT相比,STD期间皮质脊髓途径的兴奋性和抑制性输入的相对平衡以及皮质脊髓途径中阈下边缘神经元的数量增加了。关键词姿势控制-招聘曲线-踝关节肌肉-皮质脊髓途径-经颅磁刺激

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