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扫视指标和丘脑中运动图谱特性的离散情况。

Scatter in the metrics of saccades and properties of the collicular motor map.

作者信息

van Opstal A J, van Gisbergen J A

机构信息

Department of Medical Physics and Biophysics, University of Nijmegen, The Netherlands.

出版信息

Vision Res. 1989;29(9):1183-96. doi: 10.1016/0042-6989(89)90064-3.

Abstract

Saccades, elicited by an identical visual stimulus in repeated trials, exhibit a certain amount of amplitude and direction scatter. The present paper illustrates how this scatter may be used to discern various properties of the subsystem that determines the metrics of a saccade. It is found in humans that scatter along the eccentricity axis is consistently more pronounced than along the direction axis. The ratio of amplitude scatter and direction scatter is approximately constant for all target positions tested. In addition, the absolute amount of scatter increases roughly linearly with target eccentricity but does not depend on target direction. We have explored whether these findings may reflect noisy variations in the neural representation of the saccade vector at the level of the collicular motor map. There are good reasons to assume that the motor map, at least in the monkey, (1) is organized in polar coordinates, (2) has a nonhomogeneous (roughly logarithmic) representation of saccade amplitude and (3) is anisotropic in nature (Robinson, 1972; Ottes, Van Gisbergen & Eggermont, 1986; Van Gisbergen, Van Opstal & Tax, 1987). To account for the intertrial variability in saccades, we have slightly extended an existing model for the collicular role in the coding of saccade metrics (Van Gisbergen et al., 1987) by allowing small variations in both the total amount and the location of the collicular population activity. We discuss how such noisy variations at the level of the motor map would be expressed in the metrics of saccadic responses and consider alternative models which could explain our data.

摘要

在重复试验中,由相同视觉刺激引发的眼跳会表现出一定程度的幅度和方向离散。本文阐述了如何利用这种离散来辨别决定眼跳指标的子系统的各种特性。研究发现,在人类中,沿离心率轴的离散始终比沿方向轴的离散更明显。对于所有测试的目标位置,幅度离散与方向离散的比率大致恒定。此外,离散的绝对量大致随目标离心率呈线性增加,但不依赖于目标方向。我们探讨了这些发现是否可能反映了在丘系运动图谱水平上眼跳向量神经表征中的噪声变化。有充分理由假设,至少在猴子中,运动图谱(1)以极坐标组织,(2)对眼跳幅度具有非均匀(大致对数)表征,(3)本质上是各向异性的(罗宾逊,1972;奥茨、范吉斯伯根和埃格蒙特,1986;范吉斯伯根、范奥普斯塔尔和塔克斯,1987)。为了解释眼跳的试验间变异性,我们通过允许丘系群体活动的总量和位置存在小的变化,对现有的关于丘系在眼跳指标编码中作用的模型(范吉斯伯根等人,1987)进行了轻微扩展。我们讨论了运动图谱水平上的这种噪声变化将如何在眼跳反应指标中体现,并考虑了可以解释我们数据的替代模型。

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