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直立站立时皮质脊髓和I类传入通路的独立调节。

Independent modulation of corticospinal and group I afferents pathways during upright standing.

作者信息

Baudry S, Duchateau J

机构信息

Laboratory of Applied Biology, Neuroscience Institute, Université Libre de Bruxelles (ULB), 808 route de Lennik, 1070 Brussels, Belgium.

Laboratory of Applied Biology, Neuroscience Institute, Université Libre de Bruxelles (ULB), 808 route de Lennik, 1070 Brussels, Belgium.

出版信息

Neuroscience. 2014 Sep 5;275:162-9. doi: 10.1016/j.neuroscience.2014.06.021. Epub 2014 Jun 18.

Abstract

Balance control during upright standing is accompanied by an increased amplitude of motor-evoked potentials (MEP) induced by transcranial magnetic stimulation and a decreased amplitude of the Hoffmann (H) reflex in the soleus muscle. Nonetheless, whether these observations reflect reciprocal adjustments between corticospinal and group I afferents pathways during upright standing remains unknown. To further investigate this question, cathodal transcranial direct current stimulation (c-tDCS) applied over the motor cortex and vibration of Achilles tendons were used to modify the excitability of corticospinal and group I afferent pathways, respectively. MEPs and H reflexes were recorded in the soleus muscle during upright standing with or without bilateral Achilles tendon vibration, these recordings being performed before and after 20 min of c-tDCS (1.5 mA) or sham stimulation applied over the sensorimotor cortex. The results indicate that tendon vibration increased MEP amplitude (+28%) and decrease (-68%) the H-reflex amplitude (p<0.05). After c-tDCS, MEP amplitude was reduced by 13% and 26% without and with tendon vibration (p<0.05), respectively. In contrast, no significant change occurred in H-reflex amplitude after c-tDCS. Regardless of the conditions (c-tDCS and tendon vibration), no significant correlation was observed between changes in MEP and H-reflex amplitudes. The results failed to demonstrate close reciprocal changes in soleus MEP and H-reflex amplitudes during upright standing. These original findings suggest independent adjustments in corticospinal and group I afferents pathways during upright standing.

摘要

直立站立时的平衡控制伴随着经颅磁刺激诱发的运动诱发电位(MEP)幅度增加以及比目鱼肌中霍夫曼(H)反射幅度降低。然而,这些观察结果是否反映了直立站立期间皮质脊髓和I类传入通路之间的相互调整仍不清楚。为了进一步研究这个问题,分别使用施加在运动皮层上的阴极经颅直流电刺激(c-tDCS)和跟腱振动来改变皮质脊髓和I类传入通路的兴奋性。在有或没有双侧跟腱振动的直立站立过程中记录比目鱼肌的MEP和H反射,这些记录在对感觉运动皮层施加20分钟的c-tDCS(1.5 mA)或假刺激之前和之后进行。结果表明,肌腱振动使MEP幅度增加(+28%),并使H反射幅度降低(-68%)(p<0.05)。c-tDCS后,在没有和有肌腱振动的情况下,MEP幅度分别降低了13%和26%(p<0.05)。相比之下,c-tDCS后H反射幅度没有显著变化。无论条件如何(c-tDCS和肌腱振动),MEP和H反射幅度的变化之间均未观察到显著相关性。结果未能证明直立站立期间比目鱼肌MEP和H反射幅度存在密切的相互变化。这些原始发现表明直立站立期间皮质脊髓和I类传入通路存在独立调整。

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