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瞳孔对光反射中的水平依赖性信号传导。II. 对正弦光刺激的反应相速度。

Level dependent signal flow in the light pupil reflex. II. Phase velocity of responses to sinusoidal light stimuli.

作者信息

Myers G A, Gannon J A, Stark L W

机构信息

University of Iowa, College of Engineering, Department of Biomedical Engineering, Iowa City, 52242.

出版信息

Biol Cybern. 1993;68(3):235-40. doi: 10.1007/BF00224857.

Abstract

Pupillary responses to sinusoidal light stimuli were measured over a range of light levels and frequencies. The phase lag and equivalent time delay of these responses were reduced in an approximately log-linear fashion with increasing mean light level (slope = -60 ms/log unit). The magnitude of this level dependence is reduced at higher frequencies, and at higher light levels. This nonlinear level dependent signal flow (LDSF) effect is shown to be essentially independent of target distance (accommodative stimulus) which influences pupil size, and of pupil size itself. Thus most of the level dependence probably resides in the afferent path of the light-pupil reflex arc, before the accommodation signal joins the light signal in the Edinger-West-phal nucleus. A systems model is presented to the LDSF effect described here and in the companion papers (Myers and Stark 1993a, b). When parameters of the model are adjusted to fit pupillary responses to transient light stimuli over a range of light levels, the model simulates reduced phase lag in response to increased mean light level, and the reduction in this LDSF effect with increased mean light level or increasing stimulus frequency without further changes in parameters. This latter reduction explains the relatively small level dependence seen in latency data (-34 ms/log unit). These data will be shown (Myers and Stark 1990b) to be commensurate with reduction in pupil cycle time (increased frequency of oscillation) observed in high gain oscillation experiments as mean brightness increases.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在一系列光照水平和频率下测量了瞳孔对正弦光刺激的反应。随着平均光照水平的增加,这些反应的相位滞后和等效时间延迟以近似对数线性方式减小(斜率 = -60 毫秒/对数单位)。这种水平依赖性的幅度在较高频率和较高光照水平下会降低。这种非线性的水平依赖性信号流(LDSF)效应被证明基本上与影响瞳孔大小的目标距离(调节刺激)以及瞳孔大小本身无关。因此,大部分水平依赖性可能存在于光 - 瞳孔反射弧的传入路径中,即在调节信号与动眼神经核中的光信号合并之前。本文以及相关论文(迈尔斯和斯塔克,1993a,b)中描述的 LDSF 效应提出了一个系统模型。当调整模型参数以拟合在一系列光照水平下对瞬时光刺激的瞳孔反应时,该模型模拟了随着平均光照水平增加相位滞后的减小,以及随着平均光照水平增加或刺激频率增加而 LDSF 效应的减小,且无需进一步改变参数。后一种减小解释了在潜伏期数据中看到的相对较小的水平依赖性(-34 毫秒/对数单位)。这些数据(迈尔斯和斯塔克,1990b)将被证明与在高增益振荡实验中随着平均亮度增加观察到的瞳孔周期时间的减小(振荡频率增加)是一致的。(摘要截取自 250 字)

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