Sekiguchi Hirofumi, Nakazawa Kimitaka, Suzuki Shuji
Motor Dysfunction Division, Research Institute, National Rehabilitation Center for the Persons with Disability, 4-1 Namiki, Tokorozawa 359-8555, Japan.
Brain Res. 2003 Jul 11;977(2):169-79. doi: 10.1016/s0006-8993(03)02621-0.
The purpose of this study was to investigate how the recruitment properties of the corticospinal pathway are modulated in the soleus muscle of the lower limb during lengthening (LEN) and shortening (SHO) contractions by comparing the shape of the input-output (I/O) relation of the corticospinal pathway. To this end, we investigated the relationship between various stimulus intensities applied via transcranial magnetic stimulation and the size of motor-evoked potentials in 14 healthy subjects during voluntary plantarflexion and dorsiflexion (active lengthening) with a similar background activity (BGA) level. The shape of this relationship was sigmoidal and was characterized by a plateau value, maximum slope and threshold. The plateau value was clearly lower during LEN contractions than during SHO contractions. Likewise, the maximum slope was lower during LEN contractions. However, the threshold did not differ significantly between the two tasks. Since the plateau value and the maximum slope clearly differed between LEN and SHO contractions despite the similarity of their BGA levels, the central nervous system appears to have a different activation strategy for each of these tasks. Namely, the relative balance between excitatory and inhibitory components of the corticospinal volleys, as well as the subliminal fringe of the corticospinal pathway, were reduced during LEN contractions compared with SHO contractions. These strategies may help to avoid reflexive contractions brought about by higher discharge of muscle spindles and enable fine motor actions in voluntary lengthening contractions.
本研究的目的是通过比较皮质脊髓通路的输入-输出(I/O)关系的形状,来探究在下肢比目鱼肌进行拉长(LEN)和缩短(SHO)收缩时,皮质脊髓通路的募集特性是如何被调节的。为此,我们在背景活动(BGA)水平相似的情况下,研究了14名健康受试者在主动跖屈和背屈(主动拉长)过程中,经颅磁刺激施加的不同刺激强度与运动诱发电位大小之间的关系。这种关系的形状呈S形,其特征在于一个平台值、最大斜率和阈值。LEN收缩期间的平台值明显低于SHO收缩期间。同样,LEN收缩期间的最大斜率也较低。然而,两个任务之间的阈值没有显著差异。尽管LEN和SHO收缩的BGA水平相似,但它们的平台值和最大斜率明显不同,因此中枢神经系统似乎对每个任务都有不同的激活策略。也就是说,与SHO收缩相比,LEN收缩期间皮质脊髓冲动的兴奋和抑制成分之间的相对平衡以及皮质脊髓通路的阈下边缘都有所降低。这些策略可能有助于避免肌梭较高放电引起的反射性收缩,并在主动拉长收缩中实现精细的运动动作。