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Spatiotopic neural representations develop slowly across saccades

机译:跨视域的时空神经表征发展缓慢

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摘要

One of the long-standing unsolved mysteries of visual neuroscience is how the world remains apparently stable in the face of continuous movements of eyes, head and body. Many factors seem to contribute to this stability, including rapid updating mechanisms that temporarily remap the visual input to compensate for the impending saccade [1]. However, there is also a growing body of evidence pointing to more long-lasting spatiotopic neural representations, which remain solid in external rather than retinal coordinates 2, 3, 4, 5 and 6. In this study, we show that these spatiotopic representations take hundreds of milliseconds to build up robustly.
机译:视觉神经科学的一个长期未解之谜是,面对眼睛,头部和身体的连续运动,世界如何保持明显的稳定。许多因素似乎有助于这种稳定性,包括快速更新机制,这些机制可以临时重新映射视觉输入以补偿即将到来的扫视运动[1]。但是,也有越来越多的证据表明更长时空的空位神经表征,它们在外部而非视网膜坐标2、3、4、5和6中保持稳定。在这项研究中,我们证明了这些空位表征具有数百毫秒即可稳健建立。

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