Masson G, Mestre D R, Pailhous J
URA CNRS 1166, Cognition and Mouvement, Université Aix-Marseille II, France.
Exp Brain Res. 1995;103(1):137-50. doi: 10.1007/BF00241971.
How does the spatio-temporal structure of an oscillating radial optical flow affect postural stability? In order to investigate this problem, two different types of stimulus pattern were presented to human subjects. These stimuli were generated either with a constant spatial frequency or with a spatial frequency gradient providing monocular depth cues. When the stimulation was set in motion, the gain response of the antero-posterior postural changes depended upon the oscillation frequency of the visual scene. The amplitude of the postural response did not change with the amplitude of the visual scene motion. The spatial orientation of the postural sway (major axis of sway) depended strictly and solely on the structure of the visual scene. In static conditions, depth information resulting from the presence of a spatial frequency gradient enhanced postural stability. When set in motion, a visual scene with a spatial frequency gradient induced an organization of postural sway in the direction of the visual motion. Considering visual dynamic cues, postural instability depended linearly both on the logarithm of the velocity and on the logarithm of the temporal frequency. A nonlinear relationship existed between the amplitude of the fore-aft postural sway at the driving frequency and the temporal frequency, with a peak around 2-4 Hz. These results are discussed in terms of their implications for the separation of visual and biomechanical factors influencing visuo-postural control.
振荡径向光流的时空结构如何影响姿势稳定性?为了研究这个问题,向人类受试者呈现了两种不同类型的刺激模式。这些刺激要么以恒定空间频率产生,要么以提供单眼深度线索的空间频率梯度产生。当刺激开始运动时,前后姿势变化的增益响应取决于视觉场景的振荡频率。姿势响应的幅度不会随视觉场景运动的幅度而变化。姿势摆动的空间方向(摆动的主轴)严格且仅取决于视觉场景的结构。在静态条件下,由空间频率梯度产生的深度信息增强了姿势稳定性。当开始运动时,具有空间频率梯度的视觉场景会在视觉运动方向上诱导姿势摆动的组织。考虑视觉动态线索,姿势不稳定性在速度对数和时间频率对数上均呈线性依赖关系。在驱动频率下前后姿势摆动的幅度与时间频率之间存在非线性关系,在2 - 4赫兹左右出现峰值。将根据这些结果对影响视觉姿势控制的视觉和生物力学因素分离的意义进行讨论。