Byrne Patrick A, Cappadocia David C, Crawford J Douglas
Centre for Vision Research, York University, Toronto, Canada.
Vision Res. 2010 Dec;50(24):2661-70. doi: 10.1016/j.visres.2010.08.038. Epub 2010 Sep 15.
Numerous studies have investigated the phenomenon of egocentric spatial updating in gaze-centered coordinates, and some have studied the use of allocentric cues in visually-guided movement, but it is not known how these two mechanisms interact. Here, we tested whether gaze-centered and allocentric information combine at the time of viewing the target, or if the brain waits until the last possible moment. To do this, we took advantage of the well-known fact that pointing and reaching movements show gaze-centered 'retinal magnification' errors (RME) that update across saccades. During gaze fixation, we found that visual landmarks, and hence allocentric information, reduces RME for targets in the left visual hemifield but not in the right. When a saccade was made between viewing and reaching, this landmark-induced reduction in RME only depended on gaze at reach, not at encoding. Based on this finding, we argue that egocentric-allocentric combination occurs after the intervening saccade. This is consistent with previous findings in healthy and brain damaged subjects suggesting that the brain updates early spatial representations during eye movement and combines them at the time of action.
许多研究调查了以注视为中心的坐标中的自我中心空间更新现象,一些研究探讨了在视觉引导运动中使用非自我中心线索的情况,但这两种机制如何相互作用尚不清楚。在这里,我们测试了以注视为中心的信息和非自我中心信息是在查看目标时结合,还是大脑会等到最后可能的时刻。为此,我们利用了一个众所周知的事实,即指向和伸手动作会表现出以注视为中心的“视网膜放大率”误差(RME),这种误差会在扫视过程中更新。在注视固定期间,我们发现视觉地标,即非自我中心信息,会减少左半视野中目标的RME,但右半视野中则不会。当在查看和伸手之间进行扫视时,这种由地标引起的RME减少仅取决于伸手时的注视,而不是编码时的注视。基于这一发现,我们认为自我中心 - 非自我中心的结合发生在中间扫视之后。这与之前在健康和脑损伤受试者中的发现一致,表明大脑在眼球运动期间更新早期空间表征,并在行动时将它们结合起来。