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方向后效是由局部运动探测器的适应所驱动的。

The direction aftereffect is driven by adaptation of local motion detectors.

作者信息

Curran William, Clifford Colin W G, Benton Christopher P

机构信息

School of Psychology, Queen's University of Belfast, Belfast, BT7 1NN, UK.

出版信息

Vision Res. 2006 Nov;46(25):4270-8. doi: 10.1016/j.visres.2006.08.026. Epub 2006 Oct 10.

Abstract

The processing of motion information by the visual system can be decomposed into two general stages; point-by-point local motion extraction, followed by global motion extraction through the pooling of the local motion signals. The direction aftereffect (DAE) is a well known phenomenon in which prior adaptation to a unidirectional moving pattern results in an exaggerated perceived direction difference between the adapted direction and a subsequently viewed stimulus moving in a different direction. The experiments in this paper sought to identify where the adaptation underlying the DAE occurs within the motion processing hierarchy. We found that the DAE exhibits interocular transfer, thus demonstrating that the underlying adapted neural mechanisms are binocularly driven and must, therefore, reside in the visual cortex. The remaining experiments measured the speed tuning of the DAE, and used the derived function to test a number of local and global models of the phenomenon. Our data provide compelling evidence that the DAE is driven by the adaptation of motion-sensitive neurons at the local-processing stage of motion encoding. This is in contrast to earlier research showing that direction repulsion, which can be viewed as a simultaneous presentation counterpart to the DAE, is a global motion process. This leads us to conclude that the DAE and direction repulsion reflect interactions between motion-sensitive neural mechanisms at different levels of the motion-processing hierarchy.

摘要

视觉系统对运动信息的处理可分解为两个一般阶段

逐点局部运动提取,随后通过局部运动信号的汇总进行全局运动提取。方向后效(DAE)是一种众所周知的现象,即先前对单向运动模式的适应会导致在适应方向与随后观察到的沿不同方向移动的刺激之间产生夸张的感知方向差异。本文中的实验旨在确定DAE背后的适应在运动处理层次结构中的何处发生。我们发现DAE表现出双眼间转移,从而证明潜在的适应神经机制是由双眼驱动的,因此必然存在于视觉皮层中。其余实验测量了DAE的速度调谐,并使用导出的函数来测试该现象的一些局部和全局模型。我们的数据提供了令人信服的证据,表明DAE是由运动编码局部处理阶段的运动敏感神经元的适应所驱动的。这与早期研究形成对比,早期研究表明方向排斥(可视为DAE的同时呈现对应物)是一个全局运动过程。这使我们得出结论,DAE和方向排斥反映了运动处理层次结构不同水平上运动敏感神经机制之间的相互作用。

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