Raffi Milena, Piras Alessandro, Persiani Michela, Perazzolo Monica, Squatrito Salvatore
Department of Biomedical and Neuromotor Sciences, University of Bologna, Italy.
Department of Biomedical and Neuromotor Sciences, University of Bologna, Italy.
J Electromyogr Kinesiol. 2017 Aug;35:61-68. doi: 10.1016/j.jelekin.2017.05.008. Epub 2017 May 31.
Optic flow is a crucial signal in maintaining postural stability. We sought to investigate whether the activity of postural muscles and body sway was modulated by eye position during the view of radial optic flow stimuli. We manipulated the spatial distribution of dot speed and the fixation point position to simulate specific heading directions combined with different gaze positions. The experiments were performed using stabilometry and surface electromyography (EMG) on 24 right-handed young, healthy volunteers. Center of pressure (COP) signals were analyzed considering antero-posterior and medio-lateral oscillation, COP speed, COP area, and the prevalent direction of oscillation of body sway. We found a significant main effect of body side in all COP parameters, with the right body side showing greater oscillations. The different combinations of optic flow and eye position evoked a non-uniform direction of oscillations in females. The EMG analysis showed a significant main effect for muscle and body side. The results showed that the eye position modulated body sway without changing the activity of principal leg postural muscles, suggesting that the extraretinal input regarding the eye position is a crucial signal that needs to be integrated with perceptual optic flow processing in order to control body sway.
视流是维持姿势稳定性的关键信号。我们试图研究在观看径向视流刺激时,姿势肌肉的活动和身体摆动是否受眼睛位置的调节。我们操纵点速度的空间分布和注视点位置,以模拟结合不同注视位置的特定前进方向。使用稳定测量法和表面肌电图(EMG)对24名右利手的年轻健康志愿者进行了实验。考虑前后和内外侧振荡、压力中心(COP)速度、COP面积以及身体摆动的主要振荡方向,对COP信号进行了分析。我们发现身体侧别在所有COP参数中都有显著的主效应,右侧身体表现出更大的振荡。视流和眼睛位置的不同组合在女性中引起了不均匀的振荡方向。EMG分析显示肌肉和身体侧别有显著的主效应。结果表明,眼睛位置调节身体摆动,而不改变主要腿部姿势肌肉的活动,这表明关于眼睛位置的视网膜外输入是一个关键信号,需要与感知视流处理相结合,以控制身体摆动。