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在物体操作过程中,人类初级感觉运动皮层内的双手和单手偏好区域。

Zones of bimanual and unimanual preference within human primary sensorimotor cortex during object manipulation.

作者信息

Theorin Anna, Johansson Roland S

机构信息

Department of Integrative Medical Biology, Physiology Section, Umeå University, SE-901 87 Umeå, Sweden.

出版信息

Neuroimage. 2007;36 Suppl 2:T2-T15. doi: 10.1016/j.neuroimage.2007.03.042. Epub 2007 Mar 31.

Abstract

We asked which brain areas are engaged in the coordination of our hands in dexterous object manipulations where they cooperate for achieving a common goal. Well-trained right-handers steered a cursor on a screen to hit successively displayed targets by applying isometric forces and torques to a rigid tool. In two bimanual conditions, the object was held freely in the air and the hands thus generated coupled opposing forces. Yet, depending on the mapping rule linking hand forces and cursor movements, all subjects selected either the left or the right hand as prime actor. In two unimanual conditions, the subjects performed the same task with either the left or the right hand operating on a fixed tool. Functional magnetic resonance imaging revealed common activation across all four conditions in a dorsal fronto-parietal network biased to the left hemisphere and in bilateral occipitotemporal cortex. Contrary to the notion that medial wall premotor areas are especially active in complex bimanual actions, their activation depended on acting hand (left, right) rather than on grip type (bimanual, unimanual). We observed effects of grip type only in the primary sensorimotor cortex (SMC). In particular, with either hand as prime actor, bimanual actions preferentially activated subregions of the SMC contralateral to the acting hand. A sizeable subregion with preference for unimanual activity was found only in the left SMC in our right-handed subjects. Collectively, these results indicate a hemispheric asymmetry for the SMC and that partially different neural populations support the control of bimanual versus unimanual object manipulations.

摘要

我们探究了在进行需要双手协同以实现共同目标的灵巧物体操作时,大脑的哪些区域参与了手部的协调。训练有素的右利手通过向一个刚性工具施加等长力和扭矩,在屏幕上操纵光标依次击中连续显示的目标。在两种双手操作条件下,物体在空中自由握持,双手因此产生相互对抗的耦合力。然而,根据将手部力量与光标移动联系起来的映射规则,所有受试者要么选择左手要么选择右手作为主要操作手。在两种单手操作条件下,受试者用左手或右手操作固定工具来执行相同的任务。功能磁共振成像显示,在所有四种条件下,左半球偏向的背侧额顶叶网络以及双侧枕颞叶皮层均有共同激活。与内侧壁运动前区在复杂双手动作中特别活跃的观点相反,它们的激活取决于操作手(左手、右手)而非握持类型(双手、单手)。我们仅在初级感觉运动皮层(SMC)观察到了握持类型的影响。具体而言,无论哪只手作为主要操作手,双手动作都优先激活了与操作手对侧的SMC子区域。在我们的右利手受试者中,仅在左侧SMC发现了一个明显偏好单手活动的子区域。总体而言,这些结果表明SMC存在半球不对称性,并且部分不同的神经群体支持对双手与单手物体操作的控制。

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