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双眼视和眼优势对视觉驱动的眼球跟踪的影响。

Effects of binocularity and eye dominance on visually-driven ocular tracking.

作者信息

Seyedmadani Kimia, Tucker Keith A, Anderson Mark R, Akay Yasemin M, Akay Metin, Stone Leland S

机构信息

Research Operations and Integration Group, Johnson Space Center, National Aeronautics and Space Administration, Houston, TX, United States.

Department of Biomedical Engineering, University of Houston, Houston, TX, United States.

出版信息

Front Neurosci. 2025 May 1;19:1504628. doi: 10.3389/fnins.2025.1504628. eCollection 2025.

Abstract

INTRODUCTION

We used 18 oculomotor performance metrics (oculometrics) to capture largely independent features of human ocular tracking. Our primary goal was to examine tracking eye movements in a healthy population under monocular and binocular viewing, as well as to examine the potential effects of line-of-sight eye dominance and spatial/directional tuning.

METHODS

We compared the ocular responses of 17 healthy well-rested participants using a radial step-ramp paradigm under three viewing conditions: both-eyes viewing, left-eye viewing, and right-eye viewing.

RESULTS

Our findings revealed that binocular viewing enhanced performance over that during monocular viewing for 11 oculometrics, with eye dominance associated with the selective enhancement of 3 oculometrics of visual motion processing. A comparison of binocular and dominant-eye viewing allowed us to segregate the direct enhancements of binocularity from those due simply to the inclusion of the dominant eye in binocular viewing and showed that viewing with two eyes is only directly responsible for the enhancement of 9 oculometrics. Our examination of spatial/directional tuning revealed largely isotropic enhancement due to binocularity, as well as several anisotropies in retinal functional processing: (1) a Nasal-Temporal asymmetry for pursuit latency and direction noise, and a Superior-Inferior asymmetry for latency, and (2) anisotropic enhancement in initial acceleration and direction noise (primarily for nasal retina) and speed noise (primarily for superior retina) when viewing through the dominant eye. We also documented Horizontal-Vertical anisotropies in initial acceleration, steady-state gain, proportion smooth, and speed responsiveness for both monocular and binocular viewing.

CONCLUSION

Our findings demonstrate that there is isotropic enhancement from binocular viewing across a wide range of visuomotor features and that important normative characteristics of visual motion processing are shaped by retinal processing non-uniformly across visual space, modulated by eye dominance and perhaps related to previously found normative structural anisotropies in retinal thickness. This constellation of findings characterizes the subtle natural non-linear variations in visuomotor performance to provide insight into the relative roles of the retina and other brain areas in shaping visuomotor performance and to enable the detection of neurological and ophthalmological impairment through comparison with properly matched baselines in support of future research and clinical applications.

摘要

引言

我们使用了18种眼动性能指标(眼动测量法)来获取人类眼球追踪中基本独立的特征。我们的主要目标是研究健康人群在单眼和双眼观看条件下的追踪眼动,以及研究视线眼优势和空间/方向调谐的潜在影响。

方法

我们使用径向阶梯斜坡范式,在三种观看条件下比较了17名充分休息的健康参与者的眼部反应:双眼观看、左眼观看和右眼观看。

结果

我们的研究结果表明,对于11种眼动测量指标,双眼观看比单眼观看时的表现有所提高,眼优势与视觉运动处理的3种眼动测量指标的选择性增强有关。双眼观看和优势眼观看的比较使我们能够区分双眼性的直接增强与仅仅因为在双眼观看中包含优势眼而导致的增强,并表明用双眼观看仅直接导致9种眼动测量指标的增强。我们对空间/方向调谐的研究揭示了由于双眼性导致的大致各向同性增强,以及视网膜功能处理中的几种各向异性:(1)追踪潜伏期和方向噪声的鼻颞不对称,以及潜伏期的上下不对称,(2)通过优势眼观看时,初始加速度和方向噪声(主要针对鼻侧视网膜)以及速度噪声(主要针对上侧视网膜)的各向异性增强。我们还记录了单眼和双眼观看时初始加速度、稳态增益、平滑比例和速度反应性方面的水平垂直各向异性。

结论

我们的研究结果表明,双眼观看在广泛的视觉运动特征范围内存在各向同性增强,并且视觉运动处理的重要规范特征是由视网膜在视觉空间中不均匀的处理所塑造的,受眼优势调节,可能与先前发现的视网膜厚度的规范结构各向异性有关。这一系列研究结果表征了视觉运动性能中微妙的自然非线性变化,以深入了解视网膜和其他脑区在塑造视觉运动性能中的相对作用,并通过与适当匹配的基线进行比较来检测神经和眼科损伤,以支持未来的研究和临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c589/12078213/428a253df9f5/fnins-19-1504628-g001.jpg

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