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视觉诱发扫视眼动的潜伏期。I. 扫视潜伏期与易化模型。

Latency of visually evoked saccadic eye movements. I. Saccadic latency and the facilitation model.

作者信息

Reulen J P

出版信息

Biol Cybern. 1984;50(4):251-62. doi: 10.1007/BF00337075.

Abstract

The paper deals with the initiation of visually guided saccades, in order to break down the saccadic reaction time into functionally different periods of time. It takes into account that spatial processing of information is so basic that modelling of saccadic control properties should include spatio-temporal arrangements. The output signal of the saccadic system was measured in response to visual stimuli in which the time between the appearance of a visual stimulus in the peripheral field and the disappearance of the central fixation point was varied. The variation of the mean saccadic latency time, measured with respect to the onset of the peripheral stimulus, as a function of stimulus asynchrony was highly significant. This variation may be represented by a so-called gap-overlap curve, which is characterized here by means of five parameters. A facilitation model is introduced to fit the results of the gap-overlap experiments. The facilitation model for the initiation of visually evoked saccades incorporates a mechanism which governs the efficiency of processing of signals that arise from a stimulus presented at a particular position in space. It explains how visual information may be affected by other sensory information before it is used to command further saccades. It allows determination of saccadic system parameters, such as the peripheral and the foveal afferent processing time, the central processing time for a saccade and the degree of facilitation. These quantities were found to be characteristic for the given test subjects, and where these data could be compared with neurophysiological data, the agreement was within the experimental error.

摘要

本文探讨视觉引导扫视的启动,以便将扫视反应时间分解为功能上不同的时间段。研究考虑到信息的空间处理非常基础,因此扫视控制特性的建模应包括时空安排。扫视系统的输出信号是针对视觉刺激进行测量的,其中外周视野中视觉刺激出现与中央注视点消失之间的时间是变化的。相对于外周刺激的起始测量的平均扫视潜伏期时间随刺激异步性的变化非常显著。这种变化可以用所谓的间隙-重叠曲线来表示,这里通过五个参数对其进行表征。引入了一个促进模型来拟合间隙-重叠实验的结果。视觉诱发扫视启动的促进模型包含一种机制,该机制控制对在空间特定位置呈现的刺激所产生信号的处理效率。它解释了视觉信息在用于指挥进一步扫视之前如何受到其他感觉信息的影响。它允许确定扫视系统参数,例如外周和中央凹传入处理时间、扫视的中央处理时间以及促进程度。发现这些量对于给定的测试对象具有特征性,并且在可以将这些数据与神经生理学数据进行比较的地方,一致性在实验误差范围内。

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