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人类眼睛运动对z轴线性加速度的反应:视觉与前庭输入之间相位关系变化的影响。

Human eye movement response to z-axis linear acceleration: the effect of varying the phase relationships between visual and vestibular inputs.

作者信息

Lathan C E, Wall C, Harris L R

机构信息

Department of Brain and Cognitive Sciences, MIT 37-219, Cambridge 02139, USA.

出版信息

Exp Brain Res. 1995;103(2):256-66. doi: 10.1007/BF00231712.

Abstract

We investigated the effect of systematically varying the phase relationship between 0.5-Hz sinusoidal z-axis optokinetic (OKN) and linear acceleration stimuli upon the resulting vertical eye movement responses of five humans. Subjects lay supine on a linear sled which accelerated them sinusoidally along their z-axis at 0.4 g peak acceleration (peak velocity 1.25 m/s). A high-contrast, striped z-axis OKN stimulus moving sinusoidally at 0.5 Hz, 70 degrees/s peak velocity was presented either concurrently or with the acceleration stimulus or alone. Subjects' vertical eye movements were recorded using scleral search coils. When stimuli were paired in the naturally occurring relationship (e.g., visual stripes moving upward paired with downward physical acceleration), the response was enhanced over the response to the visual stimulus presented alone. When the stimuli were opposed (e.g., visual stripes moving upward during upward physical acceleration, a combination that does not occur naturally), the response was not significantly different from the response to the visual stimulus presented alone. Enhancement was maximized when the velocities of the visual and motion stimuli were in their normal phase relationship, while the response took intermediate values for other phase relationships. The phase of the response depended upon the phase difference between the two inputs. We suggest that linear self-motion processing looks at agreement between the two stimuli-a sensory conflict model.

摘要

我们研究了系统改变0.5赫兹正弦z轴视动(OKN)与线性加速度刺激之间的相位关系对五名受试者垂直眼动反应的影响。受试者仰卧在一个线性雪橇上,雪橇沿z轴以0.4g的峰值加速度(峰值速度1.25米/秒)作正弦加速运动。一个高对比度的、以0.5赫兹正弦运动、峰值速度为70度/秒的条纹z轴OKN刺激与加速度刺激同时呈现、或单独呈现。使用巩膜搜索线圈记录受试者的垂直眼动。当刺激以自然出现的关系配对时(例如,视觉条纹向上移动与向下的身体加速度配对),反应比单独呈现视觉刺激时增强。当刺激相反时(例如,在身体向上加速时视觉条纹向上移动,这种组合不会自然出现),反应与单独呈现视觉刺激时没有显著差异。当视觉和运动刺激的速度处于正常相位关系时,增强效果最大,而对于其他相位关系,反应取中间值。反应的相位取决于两个输入之间的相位差。我们认为线性自我运动处理着眼于两种刺激之间的一致性——一种感觉冲突模型。

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