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左利手受试者半球间相互作用的不对称性。

Asymmetry of interhemispheric interaction in left-handed subjects.

作者信息

Pollok Bettina, Gross Joachim, Schnitzler Alfons

机构信息

Department of Neurology, MEG-Laboratory, Heinrich Heine University, Duesseldorf, Germany.

出版信息

Exp Brain Res. 2006 Nov;175(2):268-75. doi: 10.1007/s00221-006-0545-0. Epub 2006 Aug 4.

Abstract

In right-handed subjects the execution of a simple finger-tapping task is associated with an asymmetry of interhemispheric interaction, probably suggesting that the dominant left hemisphere inhibits the right one. The present study investigated the left-handed subjects in order to elucidate whether this asymmetry is related to handedness. Nineteen healthy subjects performed unimanual left, right, and bimanual auditorily paced finger-tapping tasks while neuromagnetic activity was recorded with a 122-channel whole-head neuromagnetometer (MEG). Simultaneously, we recorded activity of the first dorsal interosseus (FDI) muscle of both hands. By using the analysis tool dynamic imaging of coherent sources (DICS), oscillatory activity at alpha as well as at beta frequency within the primary sensorimotor (S1/M1) and premotor (PMC) cortex was localized. As expected, we observed oscillatory coupling between S1/M1 and PMC contralateral to the moving hand. Furthermore, coupling between left PMC and bilateral S1/M1 occurred in each movement condition, suggesting that the left PMC modulates neural activity in bilateral primary sensorimotor cortices independent of the moving hand. Coupling between bilateral S1/M1 occurred more frequently and significantly stronger during the right hand condition. This result demonstrates the same interhemispheric coupling pattern as in right-handed subjects, suggesting that the asymmetry of this interaction is not due to hand dominance. A specialization of the left premotor cortex either for superior motor control per se or for the execution of sequential tasks might account for these results.

摘要

在右利手受试者中,执行简单的手指敲击任务与半球间相互作用的不对称性相关,这可能表明占主导地位的左半球抑制右半球。本研究对左利手受试者进行了调查,以阐明这种不对称性是否与利手有关。19名健康受试者进行了单手的左手、右手以及双手听觉同步手指敲击任务,同时用122通道全头式神经磁强计(MEG)记录神经磁活动。同时,我们记录了双手第一背侧骨间肌(FDI)的活动。通过使用相干源动态成像(DICS)分析工具,对初级感觉运动(S1/M1)和运动前区(PMC)皮质内α以及β频率的振荡活动进行了定位。正如预期的那样,我们观察到S1/M1与运动手对侧的PMC之间存在振荡耦合。此外,在每种运动条件下,左PMC与双侧S1/M1之间均出现耦合,这表明左PMC独立于运动手调节双侧初级感觉运动皮质的神经活动。在右手条件下,双侧S1/M1之间的耦合出现得更频繁且明显更强。这一结果表明与右利手受试者具有相同的半球间耦合模式,这表明这种相互作用的不对称性并非由于手的优势。左运动前区皮质要么本身具有优越的运动控制能力,要么专门用于执行序列任务,这可能解释了这些结果。

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