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分离联合性和分离性眼球运动的触发。

Dissociate triggering of conjunctive and disjunctive eye movements.

作者信息

Caziot Baptiste, Bremmer Frank

机构信息

Applied Physics and Neurophysics, Philipps-Universität Marburg, Karl-von-Frisch Straße 8a, 35043, Marburg, Germany.

Center for Mind, Brain and Behavior, Universities of Marburg, Giessen and Darmstadt, Hans-Meerwein-Straße 6, 35032, Marburg, Germany.

出版信息

Sci Rep. 2025 Aug 11;15(1):29355. doi: 10.1038/s41598-025-12031-5.

Abstract

In natural behavior, our eyes must coordinate two types of movements when looking between points in space: conjunctive movements (where both eyes move together) and disjunctive movements (where the eyes move in opposite direction to change their convergence angle). Here we investigate how the initiation of these 2 different types of eye-movements is coordinated. We used the Size-Latency effect to modulate saccadic latencies. To elicit combined saccadic and vergence eye-movements, we displayed large ring targets at different vertical offsets and disparities relative to fixation. This allowed us to easily dissociate version and vergence eye-movements. We found that saccadic latencies were strongly modulated by the eccentricity of the targets as well as their hemifield, but not by the disparity of the targets. The opposite was true for vergence: vergence latencies were modulated by the disparity sign and amplitude of the targets, but not by their eccentricity or hemifield. We found a complete lack of correlation between saccadic and vergence latencies, both across and within conditions. Finally, we found that distributions of vergence latencies have a markedly reduced skewness as compared to distributions of saccadic latencies, a hallmark of evidence accumulation. Overall, our results demonstrate that the initiation mechanisms for these two types of eye-movements operate independently.

摘要

在自然行为中,当我们的眼睛在空间中的点之间移动时,必须协调两种类型的运动:联合运动(双眼一起移动)和分离运动(眼睛向相反方向移动以改变它们的集合角度)。在这里,我们研究这两种不同类型的眼动的启动是如何协调的。我们利用大小-潜伏期效应来调节扫视潜伏期。为了引发联合的扫视和聚散眼动,我们在相对于注视点的不同垂直偏移和视差处显示大的环形目标。这使我们能够轻松地区分平移和聚散眼动。我们发现,扫视潜伏期受到目标的偏心度及其半视野的强烈调节,但不受目标视差的调节。聚散情况则相反:聚散潜伏期受到目标视差符号和幅度的调节,但不受其偏心度或半视野的调节。我们发现在不同条件之间和条件内部,扫视潜伏期和聚散潜伏期之间完全缺乏相关性。最后,我们发现与扫视潜伏期的分布相比,聚散潜伏期的分布具有明显减小的偏度,这是证据积累的一个标志。总体而言,我们的结果表明这两种类型的眼动的启动机制是独立运作的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25ab/12339721/0649ad6e7449/41598_2025_12031_Fig1_HTML.jpg

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