Previc F H, Kenyon R V, Boer E R, Johnson B H
Crew Technology Division, Armstrong Laboratory, Brooks AFB, TX 78235-5000.
Percept Psychophys. 1993 Jul;54(1):93-107. doi: 10.3758/bf03206941.
The effects of background visual roll stimulation on postural control, manual control, and self-motion perception were investigated in this study. In the main experiment, 8 subjects were exposed to wide field-of-view background scenes that were tilted and static, continuously rotating, or sinusoidally rotating at frequencies between 0.03 and 0.50 Hz, as well as a baseline condition. The subjects performed either a postural control task (maintain an upright stance) or a manual control task (keep an unstable central display horizontally level). Root-mean square (RMS) error in both the postural and manual control tasks was low in the static tilt condition and extremely high in response to continuous rotation. Although the phases of the postural and manual responses were highly similar, the power and RMS error generated by the sinusoidal visual background stimulation peaked at a lower frequency in the postural task. Vection ratings recorded at the end of the postural and manual trials somewhat paralleled the frequency tuning differences between tasks, which a subsequent experiment showed to be the result of the differential motion of the central display rather than the differential positioning of the subject. In general, these results show that the dynamic characteristics of visual orientation systems vary according to the specific motor and/or perceptual system investigated.
本研究调查了背景视觉滚动刺激对姿势控制、手动控制和自我运动感知的影响。在主要实验中,8名受试者暴露于宽视野背景场景中,这些场景包括倾斜且静止的、以0.03至0.50赫兹的频率连续旋转或正弦旋转的,以及基线条件。受试者执行姿势控制任务(保持直立姿势)或手动控制任务(保持不稳定的中央显示器水平)。在静态倾斜条件下,姿势和手动控制任务中的均方根(RMS)误差较低,而在连续旋转时则极高。尽管姿势和手动反应的相位高度相似,但正弦视觉背景刺激产生的功率和RMS误差在姿势任务中在较低频率处达到峰值。在姿势和手动试验结束时记录的动感评分在一定程度上与任务之间的频率调谐差异平行,后续实验表明这是中央显示器的差异运动而非受试者的差异定位的结果。总体而言,这些结果表明视觉定向系统的动态特性根据所研究的特定运动和/或感知系统而有所不同。