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胼胝体前后部对手和手指同时进行的双手运动的作用。

Anterior and posterior callosal contributions to simultaneous bimanual movements of the hands and fingers.

作者信息

Eliassen J C, Baynes K, Gazzaniga M S

机构信息

Center for Neuroscience, University of California at Davis, Davis, California, USA.

出版信息

Brain. 2000 Dec;123 Pt 12:2501-11. doi: 10.1093/brain/123.12.2501.

Abstract

In order to study the role of the corpus callosum in two-handed coordination we tested callosotomy subjects while they attempted to initiate simultaneous discrete movements with both hands. We observed four split-brain patients, including one pre- and post-operatively, as well as normal and epileptic control subjects. Split-brain patients made button presses that were less synchronous than either normal or epileptic controls. Although split-brain patients' average performance did not always differ from control subjects, callosotomy resulted in a 3-fold increase in the variability with which 'simultaneous' movements were initiated. The one subject tested pre- and post-callosotomy showed distinct changes in movement initiation synchrony after both the anterior and the posterior stages of the surgery. These changes suggest that anterior and posterior callosal fibres may make unique contributions to bimanual synchronization, depending on whether responses are self-initiated or in reaction to a visual stimulus. This study demonstrates that neural communication across anterior and posterior fibres of the corpus callosum strongly influences the temporal precision of bimanual coordination. Specifically, callosal transmission affects the degree of bilateral synchrony with which simple simultaneous hand and finger movements are initiated.

摘要

为了研究胼胝体在双手协调中的作用,我们对胼胝体切开术患者进行了测试,让他们尝试用双手同时发起离散动作。我们观察了4名裂脑患者,包括1名术前和术后患者,以及正常对照组和癫痫对照组。裂脑患者按下按钮的同步性低于正常对照组或癫痫对照组。虽然裂脑患者的平均表现并不总是与对照组不同,但胼胝体切开术导致发起“同步”动作的变异性增加了3倍。接受胼胝体切开术前和术后测试的1名受试者在手术的前后阶段后,动作发起同步性均出现了明显变化。这些变化表明,胼胝体前后纤维可能对双手同步做出独特贡献,这取决于反应是自我发起的还是对视觉刺激的反应。这项研究表明,胼胝体前后纤维之间的神经通信强烈影响双手协调的时间精度。具体而言,胼胝体传递会影响发起简单同时手部和手指动作的双侧同步程度。

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