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Binocular advantage for prehension movements performed in visually enriched environments requiring visual search

机译:在需要视觉搜索的视觉丰富环境中进行视觉移动的双目优势

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摘要

The purpose of this study was to examine the role of binocular vision during a prehension task performed in a visually enriched environment where the target object was surrounded by distractors/obstacles. Fifteen adults reached and grasped for a cylindrical peg while eye movements and upper limb kinematics were recorded. The complexity of the visual environment was manipulated by varying the number of distractors and by varying the saliency of the target. Gaze behavior (i.e., the latency of the primary gaze shift and frequency of gaze shifts prior to reach initiation) was comparable between viewing conditions. In contrast, a binocular advantage was evident in performance accuracy. Specifically, participants picked up the wrong object twice as often during monocular viewing when the complexity of the environment increased. Reach performance was more efficient during binocular viewing, which was demonstrated by shorter reach reaction time and overall movement time. Reaching movements during the approach phase had higher peak velocity during binocular viewing. During monocular viewing reach trajectories exhibited a direction bias during the acceleration phase, which was leftward during left eye viewing and rightward during right eye viewing. This bias can be explained by the presence of esophoria in the covered eye. The grasping interval was also extended by ~20% during monocular viewing; however, the duration of the return phase after the target was picked up was comparable across viewing conditions. In conclusion, binocular vision provides important input for planning and execution of prehension movements in visually enriched environments. Binocular advantage was evident, regardless of set size or target saliency, indicating that adults plan their movements more cautiously during monocular viewing, even in relatively simple environments with a highly salient target. Nevertheless, in visually-normal adults monocular input provides sufficient information to engage in online control to correct the initial errors in movement planning.
机译:这项研究的目的是检查在视觉丰富的环境中执行目标任务时,双目视觉的作用,在该环境中目标对象被干扰物/障碍物包围。十五名成年人伸手抓住圆柱形的钉子,同时记录了眼球运动和上肢运动学。视觉环境的复杂性是通过改变干扰物的数量和改变目标的显着性来控制的。在观看条件之间,注视行为(即主要注视转移的潜伏时间和注视发生之前的注视转移的频率)是可比较的。相比之下,双筒望远镜的优势在于性能准确性。具体来说,当环境的复杂性增加时,参与者会在单眼观察期间两次错误地拾取物体。在双目观察过程中,到达性能更有效,这可以通过更短的触及时间和整体移动时间来证明。在双目观察过程中,进近阶段的到达运动具有较高的峰值速度。在单眼观察期间,到达轨迹在加速阶段表现出方向偏差,在左眼观察期间向左,在右眼观察期间向右。这种偏见可以通过被遮盖的眼睛中存在食道来解释。在单眼观察期间,抓握间隔也延长了〜20%;但是,在观察条件下,拾取目标后返回阶段的持续时间是可比的。总之,双目视觉为视觉丰富的环境中计划和执行牵制动作提供了重要的信息。无论设置大小或目标显着度如何,双目优势都是显而易见的,这表明即使在具有高度突出目标的相对简单的环境中,成年人在单眼观看期间也要更加谨慎地计划其运动。尽管如此,在视觉正常的成年人中,单眼输入提供了足够的信息来进行在线控制,以纠正运动计划中的初始错误。

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