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Hemispheric Asymmetry of Frequency-Dependent Suppression in the Ipsilateral Primary Motor Cortex During Finger Movement: A Functional Magnetic Resonance Imaging Study

机译:手指运动过程中同侧主要运动皮层的频率依赖性抑制的半球不对称性:功能性磁共振成像研究

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摘要

Electrophysiological studies have suggested that the activity of the primary motor cortex (M1) during ipsilateral hand movement reflects both the ipsilateral innervation and the transcallosal inhibitory control from its counterpart in the opposite hemisphere, and that their asymmetry might cause hand dominancy. To examine the asymmetry of the involvement of the ipsilateral motor cortex during a unimanual motor task under frequency stress, we conducted block-design functional magnetic resonance imaging with 22 normal right-handed subjects. The task involved visually cued unimanual opponent finger movement at various rates. The contralateral M1 showed symmetric frequency-dependent activation. The ipsilateral M1 showed task-related deactivation at low frequencies without laterality. As the frequency of the left-hand movement increased, the left M1 showed a gradual decrease in the deactivation. This data suggests a frequency-dependent increased involvement of the left M1 in ipsilateral hand control. By contrast, the right M1 showed more prominent deactivation as the frequency of the right-hand movement increased. This suggests that there is an increased transcallosal inhibition from the left M1 to the right M1, which overwhelms the right M1 activation during ipsilateral hand movement. These results demonstrate the dominance of the left M1 in both ipsilateral innervation and transcallosal inhibition in right-handed individuals.
机译:电生理学研究表明,同侧手运动过程中初级运动皮层(M1)的活动既反映了同侧神经支配作用,又反映了对侧半球对应对象的经皮肌抑制性控制,并且它们的不对称性可能导致手占优势。为了检查在频率压力下单手运动任务中同侧运动皮层参与的不对称性,我们对22名正常惯用右手的受试者进行了块设计功能磁共振成像。该任务涉及以视觉方式提示对手的单手手指以各种速率运动。对侧M1显示对称的频率依赖性激活。同侧M1在低频下显示出与任务相关的失活,没有侧向性。随着左手移动频率的增加,左M1的停用状态逐渐降低。该数据表明左手M1在同侧手部控制中的频率依赖性增加。相反,随着右手运动频率的增加,右手M1表现出更明显的失活。这表明从左M1到右M1的越界抑制增加,这在同侧手运动过程中压倒了右M1的激活。这些结果证明了左手M1在右手个体的同侧神经支配和经call抑制中均占优势。

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