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避免碰撞中的注视运动与空间工作记忆:一项交通十字路口任务。

Gaze movements and spatial working memory in collision avoidance: a traffic intersection task.

作者信息

Hardiess Gregor, Hansmann-Roth Sabrina, Mallot Hanspeter A

机构信息

Cognitive Neuroscience, Department of Biology, Institute of Neurobiology, University of Tübingen Tübingen, Germany.

出版信息

Front Behav Neurosci. 2013 Jun 6;7:62. doi: 10.3389/fnbeh.2013.00062. eCollection 2013.

Abstract

Street crossing under traffic is an everyday activity including collision detection as well as avoidance of objects in the path of motion. Such tasks demand extraction and representation of spatio-temporal information about relevant obstacles in an optimized format. Relevant task information is extracted visually by the use of gaze movements and represented in spatial working memory. In a virtual reality traffic intersection task, subjects are confronted with a two-lane intersection where cars are appearing with different frequencies, corresponding to high and low traffic densities. Under free observation and exploration of the scenery (using unrestricted eye and head movements) the overall task for the subjects was to predict the potential-of-collision (POC) of the cars or to adjust an adequate driving speed in order to cross the intersection without collision (i.e., to find the free space for crossing). In a series of experiments, gaze movement parameters, task performance, and the representation of car positions within working memory at distinct time points were assessed in normal subjects as well as in neurological patients suffering from homonymous hemianopia. In the following, we review the findings of these experiments together with other studies and provide a new perspective of the role of gaze behavior and spatial memory in collision detection and avoidance, focusing on the following questions: (1) which sensory variables can be identified supporting adequate collision detection? (2) How do gaze movements and working memory contribute to collision avoidance when multiple moving objects are present and (3) how do they correlate with task performance? (4) How do patients with homonymous visual field defects (HVFDs) use gaze movements and working memory to compensate for visual field loss? In conclusion, we extend the theory of collision detection and avoidance in the case of multiple moving objects and provide a new perspective on the combined operation of external (bottom-up) and internal (top-down) cues in a traffic intersection task.

摘要

在交通状况下过马路是一项日常活动,包括碰撞检测以及避开运动路径上的物体。此类任务需要以优化的格式提取和呈现有关相关障碍物的时空信息。相关任务信息通过注视运动在视觉上被提取,并在空间工作记忆中呈现。在虚拟现实交通路口任务中,受试者面对的是一个双车道十字路口,汽车以不同频率出现,对应着高和低交通密度。在对场景进行自由观察和探索(使用不受限制的眼睛和头部运动)时,受试者的总体任务是预测汽车的碰撞可能性(POC),或调整适当的行驶速度以便无碰撞地穿过十字路口(即找到可供穿过的自由空间)。在一系列实验中,对正常受试者以及患有同侧偏盲的神经疾病患者在不同时间点的注视运动参数、任务表现以及工作记忆中汽车位置的呈现进行了评估。在下文中,我们将这些实验的结果与其他研究一起进行综述,并提供关于注视行为和空间记忆在碰撞检测和避免中的作用的新视角,重点关注以下问题:(1)可以识别出哪些感官变量有助于进行充分的碰撞检测?(2)当存在多个移动物体时,注视运动和工作记忆如何有助于避免碰撞,以及(3)它们与任务表现如何相关?(4)患有同侧视野缺损(HVFDs)的患者如何利用注视运动和工作记忆来补偿视野缺失?总之,我们扩展了在多个移动物体情况下的碰撞检测和避免理论,并为交通路口任务中外部(自下而上)和内部(自上而下)线索的联合操作提供了新视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb65/3674308/d37e56a7b9ad/fnbeh-07-00062-g0001.jpg

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