Taniguchi M, Yoshimine T, Cheyne D, Kato A, Kihara T, Ninomiya H, Hirata M, Hirabuki N, Nakamura H, Hayakawa T
Department of Neurosurgery, Osaka University Medical School, Japan.
Neuroreport. 1998 May 11;9(7):1497-502. doi: 10.1097/00001756-199805110-00046.
Movement-related magnetic fields were recorded with a whole-head magnetoencephalographic system in three dextrals and three sinistrals during right or left index finger extension. The motor field (MF) demonstrated an asymmetrical isofield map pattern with larger field reversal over the contralateral hemisphere for dominant hand movement and an almost symmetrical pattern for non-dominant hand movement in each subject. The equivalent current dipole moment of the MF for the contralateral hemisphere was significantly larger than the ipsilateral hemisphere for dominant hand movement, and almost equal for both hemispheres for non-dominant hand movement. These results were congruent for both dextrals and sinistrals, suggesting a more important role of the hemisphere contralateral to the dominant hand in unilateral voluntary movement, regardless of handedness.
在三名右利手和三名左利手个体进行右手或左手示指伸展时,使用全头式脑磁图系统记录与运动相关的磁场。运动区(MF)显示出一种不对称的等场图模式,即优势手运动时对侧半球的场反转更大,而非优势手运动时每个受试者的模式几乎对称。优势手运动时,对侧半球MF的等效电流偶极矩显著大于同侧半球,非优势手运动时两侧半球几乎相等。这些结果在右利手和左利手个体中都是一致的,表明无论用手习惯如何,优势手对侧半球在单侧自主运动中发挥着更重要的作用。