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皮质处理与感知时间

Cortical processing and perceived timing.

作者信息

Arnold Derek H, Wilcock Paul

机构信息

School of Psychology, The University of Queensland, St Lucia, Queensland 4072, Australia.

出版信息

Proc Biol Sci. 2007 Sep 22;274(1623):2331-6. doi: 10.1098/rspb.2007.0576.

Abstract

As of yet, it is unclear how we determine relative perceived timing. One controversial suggestion is that timing perception might be related to when analyses are completed in the cortex of the brain. An alternate proposal suggests that perceived timing is instead related to the point in time at which cortical analyses commence. Accordingly, timing illusions should not occur owing to cortical analyses, but they could occur if there were differential delays between signals reaching cortex. Resolution of this controversy therefore requires that the contributions of cortical processing be isolated from the influence of subcortical activity. Here, we have done this by using binocular disparity changes, which are known to be detected via analyses that originate in cortex. We find that observers require longer stimulus exposures to detect small, relative to larger, disparity changes; observers are slower to react to smaller disparity changes and observers misperceive smaller disparity changes as being perceptually delayed. Interestingly, disparity magnitude influenced perceived timing more dramatically than it did stimulus change detection. Our data therefore suggest that perceived timing is both influenced by cortical processing and is shaped by sensory analyses subsequent to those that are minimally necessary for stimulus change perception.

摘要

到目前为止,我们尚不清楚如何确定相对感知时间。一个有争议的观点是,时间感知可能与大脑皮层中分析完成的时间有关。另一种观点则认为,感知时间反而与皮层分析开始的时间点有关。因此,由于皮层分析,时间错觉不应出现,但如果到达皮层的信号之间存在不同的延迟,那么时间错觉就可能发生。因此,要解决这一争议,就需要将皮层处理的贡献与皮层下活动的影响区分开来。在这里,我们通过使用双眼视差变化做到了这一点,已知双眼视差变化是通过起源于皮层的分析来检测的。我们发现,相对于较大的视差变化,观察者检测小视差变化需要更长的刺激暴露时间;观察者对较小视差变化的反应较慢,并且会将较小视差变化误感知为在感知上有延迟。有趣的是,视差大小对感知时间的影响比对刺激变化检测的影响更为显著。因此,我们的数据表明,感知时间既受皮层处理的影响,也由刺激变化感知所需最少的那些分析之后的感觉分析所塑造。

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