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双眼视差跟踪中协调瞳孔与眼球运动的频率依赖性

Frequency dependence of coordinated pupil and eye movements for binocular disparity tracking.

作者信息

Balaban Carey D, Nayak Neil S, Williams Erin C, Kiderman Alexander, Hoffer Michael E

机构信息

Departments of Otolaryngology, Neurobiology, Communication Sciences & Disorders, Bioengineering, and Mechanical Engineering & Materials Science, University of Pittsburgh, Pittsburgh, PA, United States.

Silverstein Institute, Sarasota, FL, United States.

出版信息

Front Neurol. 2023 Jun 15;14:1081084. doi: 10.3389/fneur.2023.1081084. eCollection 2023.

Abstract

INTRODUCTION

Coordinated alignment of the eyes during gaze fixation and eye movements are an important component of normal visual function. We have previously described the coordinated behavior of convergence eye movements and pupillary responses using a 0.1  Hz binocular disparity-driven sine profile and a step profile. The goal of this publication is to further characterize ocular vergence-pupil size coordination over a wider range of frequencies of ocular disparity stimulation in normal subjects.

METHODS

Binocular disparity stimulation is generated by presentation of independent targets to each eye on a virtual reality display, while eye movements and pupil size are measured by an embedded video-oculography system. This design allows us to study two complimentary analyses of this motion relationship. First, a macroscale analysis describes the vergence angle of the eyes in response to binocular disparity target movement and pupil area as a function of the observed vergence response. Second, a microscale analysis performs a piecewise linear decomposition of the vergence angle and pupil relationship to permit more nuanced findings.

RESULTS

These analyses identified three main features of controlled coupling of pupil and convergence eye movements. First, a near response relationship operates with increasing prevalence during convergence (relative to the "baseline" angle); the coupling is higher with increased convergence in this range. Second, the prevalence of "near response"-type coupling decreases monotonically in the diverging direction; the decrease persists after the targets move (converge back) from maximum divergence toward the baseline positions, with a minimum prevalence of near response segments near the baseline target position. Third, an opposite polarity pupil response is infrequent, but tends to be more prevalent when the vergence angles are at maximum convergence or divergence for a sinusoidal binocular disparity task.

DISCUSSION

We suggest that the latter response is an exploratory "range-validation" when binocular disparity is relatively constant. In a broader sense, these findings describe operating characteristics of the near response in normal subjects and form a basis for quantitative assessments of function in conditions such as convergence insufficiency and mild traumatic brain injury.

摘要

引言

注视固定和眼球运动过程中双眼的协同对准是正常视觉功能的重要组成部分。我们之前使用0.1 Hz的双眼视差驱动正弦轮廓和阶跃轮廓描述了集合眼球运动和瞳孔反应的协同行为。本出版物的目的是在更广泛的正常受试者双眼视差刺激频率范围内,进一步表征眼集合-瞳孔大小的协调性。

方法

通过在虚拟现实显示器上向每只眼睛呈现独立目标来产生双眼视差刺激,同时通过嵌入式视频眼动图系统测量眼球运动和瞳孔大小。这种设计使我们能够对这种运动关系进行两种互补分析。首先,宏观分析描述了眼睛的集合角度对双眼视差目标运动的响应以及瞳孔面积作为观察到的集合响应的函数。其次,微观分析对集合角度和瞳孔关系进行分段线性分解,以获得更细致的结果。

结果

这些分析确定了瞳孔与集合眼球运动控制耦合的三个主要特征。首先,近反应关系在集合过程中(相对于“基线”角度)的发生率逐渐增加;在此范围内,随着集合增加,耦合更高。其次,“近反应”型耦合的发生率在散开方向上单调降低;在目标从最大散开向基线位置移动(重新集合)后,这种降低仍然存在,在基线目标位置附近近反应段的发生率最低。第三,相反极性的瞳孔反应很少见,但在正弦双眼视差任务中,当集合角度处于最大集合或散开时,往往更普遍。

讨论

我们认为后一种反应是在双眼视差相对恒定时的一种探索性“范围验证”。从更广泛的意义上讲,这些发现描述了正常受试者近反应的操作特征,并为诸如集合不足和轻度创伤性脑损伤等情况下的功能定量评估奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fde3/10311442/e2aa465d62b8/fneur-14-1081084-g001.jpg

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