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Visual pattern recognition based on spatio-temporal patterns of retinal ganglion cells’ activities

机译:基于视网膜神经节细胞活动的时空模式的视觉模式识别

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摘要

Neural information is processed based on integrated activities of relevant neurons. Concerted population activity is one of the important ways for retinal ganglion cells to efficiently organize and process visual information. In the present study, the spike activities of bullfrog retinal ganglion cells in response to three different visual patterns (checker-board, vertical gratings and horizontal gratings) were recorded using multi-electrode arrays. A measurement of subsequence distribution discrepancy (MSDD) was applied to identify the spatio-temporal patterns of retinal ganglion cells’ activities in response to different stimulation patterns. The results show that the population activity patterns were different in response to different stimulation patterns, such difference in activity pattern was consistently detectable even when visual adaptation occurred during repeated experimental trials. Therefore, the stimulus pattern can be reliably discriminated according to the spatio-temporal pattern of the neuronal activities calculated using the MSDD algorithm.
机译:根据相关神经元的整合活动来处理神经信息。一致的种群活动是视网膜神经节细胞有效组织和处理视觉信息的重要途径之一。在本研究中,使用多电极阵列记录了牛蛙视网膜神经节细胞对三种不同视觉模式(棋盘,垂直光栅和水平光栅)的刺突活性。通过测量子序列分布差异(MSDD)来确定视网膜神经节细胞响应不同刺激模式的活动的时空模式。结果表明,响应于不同的刺激模式,种群活动模式是不同的,即使在重复的实验试验中发生了视觉适应,这种活动模式的差异也可以被一致地检测到。因此,可以根据使用MSDD算法计算出的神经元活动的时空模式来可靠地区分刺激模式。

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