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静态视觉线索、非视觉线索以及光流在距离估计中的作用。

The contributions of static visual cues, nonvisual cues, and optic flow in distance estimation.

作者信息

Sun Hong-Jin, Campos Jennifer L, Young Meredith, Chan George S W, Ellard Colin G

机构信息

Department of Psychology, McMaster University, 1280 Main Street West, Hamilton, Ontario L8S 4K1, Canada.

出版信息

Perception. 2004;33(1):49-65. doi: 10.1068/p5145.

Abstract

By systematically varying cue availability in the stimulus and response phases of a series of same-modality and cross-modality distance matching tasks, we examined the contributions of static visual information, idiothetic information, and optic flow information. The experiment was conducted in a large-scale, open, outdoor environment. Subjects were presented with information about a distance and were then required to turn 180 before producing a distance estimate. Distance encoding and responding occurred via: (i) visually perceived target distance, or (ii) traversed distance through either blindfolded locomotion or during sighted locomotion. The results demonstrated that subjects performed with similar accuracy across all conditions. In conditions in which the stimulus and the response were delivered in the same mode, when visual information was absent, constant error was minimal; whereas, when visual information was present, overestimation was observed. In conditions in which the stimulus and response modes differed, a consistent error pattern was observed. By systematically comparing complementary conditions, we found that the availability of visual information during locomotion (particularly optic flow) led to an 'under-perception' of movement relative to conditions in which visual information was absent during locomotion.

摘要

通过系统地改变一系列同模态和跨模态距离匹配任务的刺激阶段和反应阶段中的线索可用性,我们研究了静态视觉信息、自身运动感觉信息和光流信息的作用。实验在大规模、开放的户外环境中进行。向受试者呈现有关距离的信息,然后要求他们在进行距离估计之前先转180度。距离编码和反应通过以下方式进行:(i) 视觉感知的目标距离,或 (ii) 通过蒙眼运动或有视觉的运动所走过的距离。结果表明,受试者在所有条件下的表现准确性相似。在刺激和反应以相同模式呈现的条件下,当没有视觉信息时,恒定误差最小;而当有视觉信息时,则观察到高估现象。在刺激和反应模式不同的条件下,观察到一致的误差模式。通过系统地比较互补条件,我们发现运动过程中视觉信息(特别是光流)的可用性导致相对于运动过程中没有视觉信息的条件下,对运动的“感知不足”。

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