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Spatiotemporal receptive field structures in retinogeniculate connections of cat

机译:猫视网膜发生连接的时空感受野结构

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摘要

The spatial structure of the receptive field (RF) of cat lateral geniculate nucleus (LGN) neurons is significantly elliptical, which may provide a basis for the orientation tuning of LGN neurons, especially at high spatial frequency stimuli. However, the input mechanisms generating this elliptical RF structure are poorly defined. We therefore compared the spatiotemporal RF structures of pairs of retinal ganglion cells (RGCs) and LGN neurons that form monosynaptic connections based on the cross-correlation analysis of their firing activities. We found that the spatial RF structure of both RGCs and LGN neurons were comparably elliptical and oriented in a direction toward the area centralis. Additionally, the spatial RF structures of pairs with the same response sign were often overlapped and similarly oriented. We also found there was a small population of pairs with RF structures that had the opposite response sign and were spatially displaced and independently oriented. Finally, the temporal RF structure of an RGC was tightly correlated with that of its target LGN neuron, though the response duration of the LGN neuron was significantly longer. Our results suggest that the elliptical RF structure of an LGN neuron is mainly inherited from the primary projecting RGC and is affected by convergent inputs from multiple RGCs. We discuss how the convergent inputs may enhance the stimulus feature sensitivity of LGN neurons.
机译:猫外侧膝状核(LGN)神经元的感受野(RF)的空间结构显着为椭圆形,这可能为LGN神经元的方向调整提供了基础,尤其是在高空间频率刺激下。但是,生成这种椭圆形RF结构的输入机制定义不清。因此,我们比较了成对的视网膜神经节细胞(RGCs)和LGN神经元的时空RF结构,这些结构基于其放电活动的互相关分析形成单突触连接。我们发现,RGC和LGN神经元的空间RF结构都为椭圆形,并朝着中央区域的方向定向。另外,具有相同响应符号的线对的空间RF结构经常重叠且方向相似。我们还发现,有一小撮具有RF结构的对,它们的响应符号相反,并且在空间上错位且独立定向。最后,尽管LGN神经元的响应时间明显更长,但RGC的时间RF结构与其目标LGN神经元紧密相关。我们的研究结果表明,LGN神经元的椭圆RF结构主要从主要投射的RGC继承,并受到来自多个RGC的收敛输入的影响。我们讨论了收敛性输入如何增强LGN神经元的刺激特征敏感性。

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