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一个单一的系统解释了人类的速度感知。

A single system explains human speed perception.

作者信息

van Boxtel Jeroen J A, van Ee Raymond, Erkelens Casper J

机构信息

Department Physics of Man, Helmholtz Institute, Utrecht University, The Netherlands.

出版信息

J Cogn Neurosci. 2006 Nov;18(11):1808-19. doi: 10.1162/jocn.2006.18.11.1808.

Abstract

Motion is fully described by a direction and a speed. The processing of direction information by the visual system has been extensively studied; much less is known, however, about the processing of speed. Although it is generally accepted that the direction of motion is processed by a single motion system, no such consensus exists for speed. Psychophysical data from humans suggest two separate systems processing luminance-based fast and slow speeds, whereas neurophysiological recordings in monkeys generally show continuous speed representation, hinting at a single system. Although the neurophysiological findings hint at a single system, they remain inconclusive as only a limited amount of cells can be measured per study and, possibly, the putative different motion systems are anatomically separate. In three psychophysical motion adaptation experiments, we show that predictions on the basis of the two-motion system hypothesis are not met. Instead, concurrent modeling showed that both here-presented and previous data are consistent with a single system subserving human speed perception. These findings have important implications for computational models of motion processing and the low-level organization of the process.

摘要

运动可通过方向和速度得到完整描述。视觉系统对方向信息的处理已得到广泛研究;然而,对于速度的处理了解却少得多。尽管人们普遍认为运动方向由单一运动系统处理,但对于速度却不存在这样的共识。来自人类的心理物理学数据表明,存在两个独立系统分别处理基于亮度的快速和慢速,而猴子的神经生理学记录通常显示速度的连续表征,这暗示着单一系统。尽管神经生理学研究结果暗示存在单一系统,但这些结果仍无定论,因为每项研究只能测量有限数量的细胞,而且可能假定的不同运动系统在解剖学上是分开的。在三项心理物理学运动适应实验中,我们表明基于双运动系统假说的预测未得到证实。相反,并行建模表明,此处呈现的数据和先前的数据均与服务于人类速度感知的单一系统一致。这些发现对运动处理的计算模型和该过程的低级组织具有重要意义。

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