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错误校正机制在反扫视中的作用:初级扫视中的在线控制和次级扫视中的离线控制的贡献。

Error correcting mechanisms during antisaccades: contribution of online control during primary saccades and offline control via secondary saccades.

机构信息

The Hospital for Sick Children, Toronto, Ontario, Canada.

出版信息

PLoS One. 2013 Aug 6;8(8):e68613. doi: 10.1371/journal.pone.0068613. Print 2013.

Abstract

Errors in eye movements can be corrected during the ongoing saccade through in-flight modifications (i.e., online control), or by programming a secondary eye movement (i.e., offline control). In a reflexive saccade task, the oculomotor system can use extraretinal information (i.e., efference copy) online to correct errors in the primary saccade, and offline retinal information to generate a secondary corrective saccade. The purpose of this study was to examine the error correction mechanisms in the antisaccade task. The roles of extraretinal and retinal feedback in maintaining eye movement accuracy were investigated by presenting visual feedback at the spatial goal of the antisaccade. We found that online control for antisaccade is not affected by the presence of visual feedback; that is whether visual feedback is present or not, the duration of the deceleration interval was extended and significantly correlated with reduced antisaccade endpoint error. We postulate that the extended duration of deceleration is a feature of online control during volitional saccades to improve their endpoint accuracy. We found that secondary saccades were generated more frequently in the antisaccade task compared to the reflexive saccade task. Furthermore, we found evidence for a greater contribution from extraretinal sources of feedback in programming the secondary "corrective" saccades in the antisaccade task. Nonetheless, secondary saccades were more corrective for the remaining antisaccade amplitude error in the presence of visual feedback of the target. Taken together, our results reveal a distinctive online error control strategy through an extension of the deceleration interval in the antisaccade task. Target feedback does not improve online control, rather it improves the accuracy of secondary saccades in the antisaccade task.

摘要

眼球运动中的错误可以在进行中的扫视过程中通过飞行中修正(即在线控制)进行纠正,或者通过编程进行二次眼动(即离线控制)。在反射性扫视任务中,眼动系统可以使用视网膜外信息(即传出副本)在线纠正初级扫视中的错误,并使用视网膜离线信息生成二次校正扫视。本研究旨在研究反扫视任务中的错误校正机制。通过在反扫视的空间目标呈现视觉反馈,研究了视网膜外和视网膜反馈在维持眼球运动准确性方面的作用。我们发现,反扫视的在线控制不受视觉反馈的影响;也就是说,无论是否存在视觉反馈,减速间隔的持续时间都会延长,并与减少反扫视终点误差显著相关。我们假设,在自愿性扫视中,减速时间的延长是在线控制的一个特征,旨在提高其终点准确性。我们发现,与反射性扫视任务相比,反扫视任务中生成的二次扫视更为频繁。此外,我们发现,在反扫视任务中,来自视网膜外反馈源的信息在编程二次“校正”扫视方面的贡献更大。尽管如此,在目标的视觉反馈存在的情况下,二次扫视对剩余的反扫视幅度误差的校正效果更好。总之,我们的研究结果揭示了一种独特的在线错误控制策略,即在反扫视任务中通过延长减速间隔来实现。目标反馈并不能改善在线控制,而是提高了反扫视任务中二次扫视的准确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38e8/3735558/d1a6e032ea29/pone.0068613.g001.jpg

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