Baldissera Fausto, Rota Viviana, Esposti Roberto
Istituto di Fisiologia Umana II dell'Università degli Studi di Milano, Via Mangiagalli 32, 20133, Milano, Italy.
Exp Brain Res. 2008 Feb;185(1):63-74. doi: 10.1007/s00221-007-1131-9. Epub 2007 Oct 2.
While sitting on a turnable stool, with both shoulders flexed at 90 degrees or, alternatively, with arms parallel to the trunk and the elbows flexed at 90 degrees--the hands being semisupine--subjects performed unidirectional and cyclic movements on the horizontal plane of the right arm (adduction-abduction) or hand (flexion-extension). The left arm was still, in a position symmetrical to that of the right limb and with the hand contacting a fixed support by the palmar or dorsal surface. During both unidirectional and cyclic arm or hand movements, activation of the prime mover muscles (right Pectoralis Major for arm adduction and Infraspinatus for abduction; right Flexor Carpi Radialis and Extensor Carpi Radialis for the hand movements) was accompanied by activation of the homologous muscles of the contralateral arm and inhibition of antagonists. The contralateral activities (1) regularly preceded the burst in the movement prime movers and (2) were organised in fixation chains that, exerting forces on the hand fixed support, will counterbalance the rotatory action exerted on the trunk by the primary movement. Based on these features, these activities may be classified as anticipatory postural adjustments (APAs). The observed APAs distribution is such as to favour the preferential (mirror symmetrical) coupling of upper limb movements on the horizontal plane. The possible role of these APAs in determining the different constraints experienced when performing mirror symmetrical versus isodirectional coupling is discussed.
受试者坐在可旋转的凳子上,双肩屈曲90度,或者双臂与躯干平行,双肘屈曲90度(双手半旋前),然后在水平面内进行右臂的单向和循环运动(内收-外展)或手部的单向和循环运动(屈曲-伸展)。左臂静止,处于与右肢对称的位置,手部通过手掌或手背接触固定支撑物。在进行单向和循环的手臂或手部运动时,原动肌(右臂内收时为右胸大肌,外展时为右冈下肌;手部运动时为右桡侧腕屈肌和右桡侧腕伸肌)激活的同时,对侧手臂的同源肌肉也被激活,而拮抗肌则受到抑制。对侧的活动(1)通常先于运动原动肌的爆发,(2)以固定链的形式组织起来,对手部固定支撑物施加力,以抵消主要运动对躯干产生的旋转作用。基于这些特征,这些活动可被归类为预期姿势调整(APAs)。观察到的预期姿势调整分布有利于上肢在水平面上的优先(镜像对称)耦合。本文讨论了这些预期姿势调整在确定进行镜像对称耦合与同向耦合时所经历的不同约束方面可能发挥的作用。