人类亮度诱发瞳孔动力学的主序列。

IF 3.1 3区 医学 Q2 NEUROSCIENCES
Jonathan D Coutinho, Jeff Huang, Philippe Lefèvre, Gunnar Blohm, Douglas P Munoz
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引用次数: 0

摘要

瞳孔反应通常用于洞察视觉感知、自主控制、认知和各种脑部疾病。然而,根据瞳孔数据进行推断可能会因为瞳孔动态的非线性以及个体内部和个体之间的可变性而变得复杂,这挑战了常见分析方法所要求的线性或群体水平同质性的假设。在这项研究中,我们评估了年轻健康成人(n = 10, M:F = 5:5,年龄19-25岁)的亮度诱发瞳孔动态,通过识别非线性、可变性和个体之间的保守关系来提高从瞳孔数据中推断的能力。我们发现最终瞳孔直径和亮度之间存在非线性关系,通过考虑亮度的对数进行线性化。收缩响应的峰径变化和峰速是对数亮度的非线性函数,而非扩张响应。在参与者中,描述瞳孔反应的曲线拟合参数作为亮度的函数是高度可变的,但在参与者中,总体瞳孔大小和瞳孔增益(即每单位对数亮度变化的直径变化)之间存在线性相关。就参与者内部试验的可变性而言,与收缩峰直径变化作为对数亮度的函数相比,参与者在最终瞳孔大小上表现出更大的可变性。尽管参与者内部和参与者之间的刺激-反应指标存在差异,但我们发现所有参与者在峰直径变化和峰速度(与亮度无关)之间表现出高度刻板的“主序列”关系。主序列关系可以用来为瞳孔动力学的神经控制模型提供信息,并作为评估瞳孔行为变异性和异常的经验分析工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Main Sequence of Human Luminance-evoked Pupil Dynamics.

Pupil responses are commonly used to provide insight into visual perception, autonomic control, cognition, and various brain disorders. However, making inferences from pupil data can be complicated by nonlinearities in pupil dynamics and variability within and across individuals, which challenge the assumptions of linearity or group-level homogeneity required for common analysis methods. In this study, we evaluated luminance evoked pupil dynamics in young healthy adults (n = 10, M:F = 5:5, ages 19-25 years) by identifying nonlinearities, variability, and conserved relationships across individuals to improve the ability to make inferences from pupil data. We found a nonlinear relationship between final pupil diameter and luminance, linearized by considering the logarithm of luminance. Peak diameter change and peak velocity were nonlinear functions of log-luminance for constriction but not dilation responses. Across participants, curve fit parameters characterizing pupil responses as a function of luminance were highly variable, yet there was an across-participant linear correlation between overall pupil size and pupil gain (i.e., diameter change per unit log-luminance change). In terms of within-participant trial-by-trial variability, participants showed greater variability in final pupil size compared with constriction peak diameter change as a function of log-luminance. Despite the variability in stimulus-response metrics within and across participants, we found that all participants showed a highly stereotyped "main sequence" relationship between peak diameter change and peak velocity (independent of luminance). The main sequence relationship can be used to inform models of the neural control of pupil dynamics and as an empirical analysis tool to evaluate variability and abnormalities in pupil behavior.

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来源期刊
Journal of Cognitive Neuroscience
Journal of Cognitive Neuroscience 医学-神经科学
CiteScore
5.30
自引率
3.10%
发文量
151
审稿时长
3-8 weeks
期刊介绍: Journal of Cognitive Neuroscience investigates brain–behavior interaction and promotes lively interchange among the mind sciences.
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