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预测性扫视的空间准确性决定了连续视觉运动动作的表现。

Spatial Accuracy of Predictive Saccades Determines the Performance of Continuous Visuomotor Action.

作者信息

Aoyama Chisa, Goya Ryoma, Suematsu Naofumi, Kadota Koji, Yamamoto Yuji, Shimegi Satoshi

机构信息

Graduate School of Frontier Biosciences, Osaka University, Osaka, Japan.

Graduate School of Medicine, Osaka University, Osaka, Japan.

出版信息

Front Sports Act Living. 2022 Jan 17;3:775478. doi: 10.3389/fspor.2021.775478. eCollection 2021.

Abstract

In a table tennis rally, players perform interceptive actions on a moving ball continuously in a short time, such that the acquisition process of visual information is an important determinant of the performance of the action. However, because it is technically hard to measure gaze movement in a real game, little is known about how gaze behavior is conducted during the continuous visuomotor actions and contributes to the performance. To examine these points, we constructed a novel psychophysical experiment model enabling a continuous visuomotor task without spatial movement of any body parts, including the arm and head, and recorded the movement of the gaze and effector simultaneously at high spatiotemporal resolution. In the task, Gabor patches (target) moved one after another at a constant speed from right to left at random vertical positions on an LC display. Participants hit the target with a cursor moving vertically on the left side of the display by controlling their prehensile force on a force sensor. Participants hit the target with the cursor using a rapid-approaching movement (rapid cursor approach, RCA). Their gaze also showed rapid saccadic approaching movement (saccadic eye approach, SEA), reaching the predicted arrival point of the target earlier than the cursor. The RCA reached in or near the Hit zone in the successful (Hit) trial, but ended up away from it in the unsuccessful (Miss) trial, suggesting the spatial accuracy of the RCA determines the task's success. The SEA in the Hit trial ended nearer the target than the Miss trial. The spatial accuracy of the RCA diminished when the target disappeared 100 ms just after the end of the SEA, suggesting that visual information acquired after the saccade acted as feedback information to correct the cursor movement online for the cursor to reach the target. There was a target speed condition that the target disappearance did not compromise RCA's spatial accuracy, implying the possible RCA correction based on the saccadic gaze location information. These experiments clarified that gaze behavior conducted during fast continuous visuomotor actions enables online correction of the ongoing interceptive movement of an effector, improving visuomotor performance.

摘要

在乒乓球对拉中,运动员在短时间内持续对运动的球进行拦截动作,因此视觉信息的获取过程是动作表现的重要决定因素。然而,由于在实际比赛中技术上难以测量注视运动,对于在连续的视觉-运动动作中注视行为是如何进行的以及如何影响动作表现知之甚少。为了研究这些问题,我们构建了一个新颖的心理物理学实验模型,该模型能够在不涉及包括手臂和头部在内的任何身体部位进行空间移动的情况下完成连续的视觉-运动任务,并以高时空分辨率同时记录注视和效应器的运动。在该任务中,Gabor斑块(目标)在液晶显示器上以恒定速度从右向左在随机的垂直位置依次移动。参与者通过控制在力传感器上的抓握力,用在显示器左侧垂直移动的光标击中目标。参与者使用快速接近运动(快速光标接近,RCA)用光标击中目标。他们的注视也表现出快速的扫视接近运动(扫视眼接近,SEA),比光标更早到达目标的预测到达点。在成功(击中)试验中,RCA到达击中区域内或附近,但在失败(未击中)试验中则远离该区域,这表明RCA的空间精度决定了任务的成败。击中试验中的SEA比未击中试验更接近目标结束。当目标在SEA结束后100毫秒立即消失时,RCA的空间精度降低,这表明扫视后获取的视觉信息作为反馈信息在线校正光标运动,以使光标到达目标。存在一种目标速度条件,即目标消失不会影响RCA的空间精度,这意味着可能基于扫视注视位置信息对RCA进行校正。这些实验表明,在快速连续的视觉-运动动作中进行的注视行为能够在线校正效应器正在进行的拦截运动,提高视觉-运动表现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ace8/8801910/5d2f8ec4fbe6/fspor-03-775478-g0001.jpg

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