Massion J, Viallet F, Massarino R, Khalil R
Laboratoire de Neurosciences fonctionnelles, L.N.F. 3, C.N.R.S., Marseille.
C R Acad Sci III. 1989;308(15):417-23.
The aim of the present experimental series was to investigate the central organization of the coordination between posture and movement in a bimanual load lifting task. The seated subject was instructed to maintain horizontal one forearm (postural arm) which was loaded with a 1 kg weight. The unloading was performed either by the experimenter (imposed unloading) or by a voluntary movement of the other arm (bimanual unloading). With the bimanual unloading, the movement control was accompanied by an anticipatory adjustment of the postural forearm flexors activity, which resulted in the maintenance of the forearm position despite the unloading. No change in the anticipatory postural adjustment was observed in one patient with complete callosal section. It was reduced in 5 patients with lesion of the SMA region, but only when the postural forearm was contralateral to the lesion. It is suggested that the SMA region contralateral to the postural forearm may select the circuits responsible for the phasic postural adjustments which are necessary to ensure postural maintenance, whereas the motor cortex contralateral to the voluntary movement controls both the movement and, via collaterals, the preselected circuits responsible for the associated postural adjustment.
本系列实验的目的是研究在双手提举重物任务中姿势与运动协调的中枢组织。让坐着的受试者保持水平的一条前臂(姿势臂),该手臂上加载了1千克重物。卸载操作要么由实验者进行(强制卸载),要么通过另一只手臂的自主运动进行(双手卸载)。在双手卸载时,运动控制伴随着姿势前臂屈肌活动的预期调整,这使得尽管进行了卸载,前臂位置仍得以维持。在一名胼胝体完全切断的患者中,未观察到预期姿势调整有变化。在5名中央前回运动区(SMA)受损的患者中,预期姿势调整减少,但仅当姿势前臂与损伤部位对侧时才会出现这种情况。研究表明,与姿势前臂对侧的中央前回运动区可能会选择负责阶段性姿势调整的神经回路,这些调整对于确保姿势维持是必要的,而与自主运动对侧的运动皮层既控制运动,又通过侧支控制负责相关姿势调整的预选神经回路。