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视觉介导的眼球运动调节了在自身运动感知中对光流的捕捉。

Visually mediated eye movements regulate the capture of optic flow in self-motion perception.

机构信息

Faculty of Health and Behavioural Sciences, School of Psychology, University of Wollongong, Wollongong, NSW 2500, Australia.

出版信息

Exp Brain Res. 2010 Apr;202(2):355-61. doi: 10.1007/s00221-009-2137-2. Epub 2009 Dec 30.

Abstract

Eye movements help capture optic-flow information necessary to perceive visually our self motion. Visual and vestibular systems control compensatory eye movements that serve to stabilize the retinal images we capture. We examined the role that these eye movements may play in generating visual illusions of self motion (or vection). Observers viewed radially expanding optic-flow displays while performing lateral translational head oscillations at 1 Hz. Simulated viewpoint changes in these displays were synchronized with head movements, either in an ipsilateral (minimal sensory conflict) or a contralateral (high sensory conflict) direction. In control conditions, the observer viewed purely radial displays. Vection-onset latency and overall vection strength ratings were recorded, as well as horizontal eye movements. Vection onsets and strength ratings were significantly greater when the observer's head movements were incorporated into the visual displays. However, vection strength ratings were very similar for both ipsilateral and contralateral active display oscillation. Surprisingly, the non-ecological contralateral viewpoint oscillation actually induced vection earlier, despite the relatively small eye-in-head rotations coordinating gaze in these conditions. Our results support the view that compensatory eye movements are controlled through cooperative visual and vestibular interactions, and show that linear vection is highly robust against large sensory conflicts.

摘要

眼球运动有助于捕捉到感知自身运动所需的视流信息。视觉和前庭系统控制着代偿性眼球运动,以稳定我们捕捉到的视网膜图像。我们研究了这些眼球运动在产生视觉运动错觉(或视动)中的作用。观察者在以 1Hz 进行横向平移头部摆动时观察到辐射状扩展的视流显示。这些显示中的模拟视点变化与头部运动同步,无论是同侧(最小感觉冲突)还是对侧(高感觉冲突)方向。在对照条件下,观察者观看纯粹的辐射显示。记录了视动起始潜伏期和整体视动强度评分,以及水平眼球运动。当观察者的头部运动纳入视觉显示时,视动起始和强度评分显著增加。然而,同侧和对侧主动显示振荡的视动强度评分非常相似。令人惊讶的是,尽管在这些条件下协调注视的头内眼球旋转相对较小,但非生态对侧视点振荡实际上更早地引起了视动。我们的结果支持这样的观点,即代偿性眼球运动是通过协作的视觉和前庭相互作用控制的,并表明线性视动对大的感觉冲突具有高度的鲁棒性。

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