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首页> 外文期刊>Biological Cybernetics >A neural mechanism for coordinate transformation predicts pre-saccadic remapping
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A neural mechanism for coordinate transformation predicts pre-saccadic remapping

机译:坐标变换的神经机制可预测acc前重映射

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摘要

Whenever we shift our gaze, any location information encoded in the retinocentric reference frame that is predominant in the visual system is obliterated. How is spatial memory retained across gaze changes? Two different explanations have been proposed: Retinocentric information may be transformed into a gaze-invariant representation through a mechanism consistent with gain fields observed in parietal cortex, or retinocentric information may be updated in anticipation of the shift expected with every gaze change, a proposal consistent with neural observations in LIP. The explanations were considered incompatible with each other, because retinocentric update is observed before the gaze shift has terminated. Here, we show that a neural dynamic mechanism for coordinate transformation can also account for retinocentric updating. Our model postulates an extended mechanism of reference frame transformation that is based on bidirectional mapping between a retinocentric and a body-centered representation and that enables transforming multiple object locations in parallel. The dynamic coupling between the two reference frames generates a shift of the retinocentric representation for every gaze change. We account for the predictive nature of the observed remapping activity by using the same kind of neural mechanism to generate an internal representation of gaze direction that is predictively updated based on corollary discharge signals. We provide evidence for the model by accounting for a series of behavioral and neural experimental observations.
机译:每当我们移开视线时,在视觉系统中占主导地位的视网膜中心参考框架中编码的任何位置信息都将消失。如何在注视变化中保留空间记忆?已经提出了两种不同的解释:视网膜中心信息可以通过与顶叶皮层中观察到的增益场一致的机制转换为注视不变的表示,或者可以预期每一次注视变化时预期的移动来更新视网膜中心信息,这是一个一致的建议LIP中的神经观察。这些解释被认为是彼此不兼容的,因为在凝视移动终止之前观察到了视网膜中心更新。在这里,我们显示了用于坐标转换的神经动力学机制也可以解释视网膜中心更新。我们的模型提出了参考帧变换的扩展机制,该机制基于视网膜中心和以身体为中心的表示之间的双向映射,并且可以并行变换多个对象位置。对于每个注视变化,两个参考系之间的动态耦合都会产生视网膜中心代表的移动。我们通过使用相同类型的神经机制来生成凝视方向的内部表示,从而根据所产生的推算信号预测性地更新了所观察到的重新映射活动的预测性质。我们通过考虑一系列的行为和神经实验观察为模型提供证据。

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