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Rapid and coordinated processing of global motion images by local clusters of retinal ganglion cells

机译:视网膜神经节细胞局部簇对全局运动图像的快速协调处理

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摘要

Even when the body is stationary, the whole retinal image is always in motion by fixational eye movements and saccades that move the eye between fixation points. Accumulating evidence indicates that the brain is equipped with specific mechanisms for compensating for the global motion induced by these eye movements. However, it is not yet fully understood how the retina processes global motion images during eye movements. Here we show that global motion images evoke novel coordinated firing in retinal ganglion cells (GCs). We simultaneously recorded the firing of GCs in the goldfish isolated retina using a multi-electrode array, and classified each GC based on the temporal profile of its receptive field (RF). A moving target that accompanied the global motion (simulating a saccade following a period of fixational eye movements) modulated the RF properties and evoked synchronized and correlated firing among local clusters of the specific GCs. Our findings provide a novel concept for retinal information processing during eye movements.
机译:即使身体静止不动,整个视网膜图像也始终通过固定眼的移动和在固定点之间移动眼睛的扫视运动。越来越多的证据表明,大脑配备了特定的机制来补偿这些眼球运动引起的整体运动。但是,尚未完全了解视网膜在眼球运动期间如何处理全局运动图像。在这里,我们显示了全局运动图像在视网膜神经节细胞(GCs)中唤起了新颖的协同射击。我们同时使用多电极阵列记录了金鱼离体视网膜中GC的激发,并根据其感受野(RF)的时间分布对每个GC进行了分类。伴随着整体运动的移动目标(模拟了一段固定眼运动后的扫视)调制了RF特性,并引发了特定GC局部簇之间的同步触发和相关触发。我们的发现为眼球运动期间视网膜信息处理提供了一个新颖的概念。

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