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对人类快速和慢速眼跳中曲率的分析。

An analysis of curvature in fast and slow human saccades.

作者信息

Smit A C, Van Gisbergen J A

机构信息

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

出版信息

Exp Brain Res. 1990;81(2):335-45. doi: 10.1007/BF00228124.

Abstract

In order to study the cooperation of peripheral motor subsystems, the degree of curvature of human saccades along cardinal (right, up, left, down) and oblique directions was computed from an extensive set of experimental data. Our curvature measure allows comparison of fast and slow saccade trajectories elicited in different experimental conditions, independent of the speed of execution. Although we found clear and consistent subject-specific differences, the most common pattern in oblique visually-guided (i.e., fast) saccades reflected early dominance of the horizontal velocity signal as expressed in saccade trajectories curving away from the horizontal axis. Plots of curvature against direction yielded consistent idiosyncratic patterns with periodical increases and decreases in saccade curvature which were largely independent of saccade amplitude. At the cardinal axes, mean saccade curvature was generally less, but rarely entirely absent, and fitted smoothly into the curvature pattern of neighbouring quadrants. Memory-guided saccades, which have been shown earlier to be considerably slower than visually-guided saccades and to be more variable in their dynamic properties, showed a strikingly similar dependence of curvature on saccade direction, although some small but consistent differences were noticed. This finding suggests that saccade curvature is determined by mechanisms residing in the final common pathway for both saccade types. The curvature data were compared with quantitative predictions from three different models for the generation of oblique saccades. By quantifying the curvature of human saccades and thereby revealing the shortcomings of these models, the present paper documents new constraints with which future models of the saccadic system must comply and allows certain suggestions on how these might be developed.

摘要

为了研究外周运动子系统的协作情况,我们从大量实验数据中计算了人类扫视沿基本方向(右、上、左、下)和倾斜方向的曲率程度。我们的曲率测量方法能够比较在不同实验条件下诱发的快速和慢速扫视轨迹,而与执行速度无关。尽管我们发现了清晰且一致的个体差异,但在倾斜视觉引导(即快速)扫视中最常见的模式反映出水平速度信号的早期主导地位,这在远离水平轴弯曲的扫视轨迹中表现出来。曲率相对于方向的曲线图产生了一致的独特模式,扫视曲率呈现周期性增减,且在很大程度上与扫视幅度无关。在基本轴上,平均扫视曲率通常较小,但很少完全没有,并且能平滑地融入相邻象限的曲率模式。记忆引导扫视先前已被证明比视觉引导扫视要慢得多,并且其动态特性更具变化性,尽管注意到了一些微小但一致的差异,但它在曲率对扫视方向的依赖关系上表现出惊人的相似性。这一发现表明,扫视曲率是由两种扫视类型的最终共同通路中的机制决定的。将曲率数据与三种不同的倾斜扫视生成模型的定量预测进行了比较。通过量化人类扫视的曲率,从而揭示这些模型的缺点,本文记录了眼跳系统未来模型必须遵循的新约束条件,并就如何发展这些模型提出了一些建议。

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