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Different Types of Temporal Correlations Obtained in Pairs of Thalamic Visual Neurons Suggest Different Functional Patterns of Connectivity

机译:在成对的丘脑视觉神经元中获得的不同类型的时间相关性提示连接的不同功能模式

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The traditional view of the dorsal lateral geniculate nucleus is that of a mere relay nucleus, faithfully transmitting retinal visual information to the visual cortex. More recent studies have pointed to a more complex role in the processing of this information, with inputs from cortex and sub-cortical structures modulating the form and strength of the relayed visualinformation. Nevertheless, the vast majority of studies assume that this processing within the geniculate is compartmentalised such that there is no cross-talk between geniculate relay cells, each dssentially crrying out a completely separate analysis of its extrageniculate input. Here we Provide preliminary data suggesting a much greater level of communication between geniculate relay cells, each essentially carrying out a completely separate analysis of its extrageniculate input. Here we provide preliminary data suggesting a much greater level of communication between geniculate relay cells, with information shared over a modest local area, but between radically different cell types. We suggest that models of visual processing should include intrageniculate circuitry allowing passage of information between different streams (originally first thought to occur at the level of the cortex) to be a component of thalamic analysis of visual information.
机译:背外侧膝状核的传统观点是单纯的中继核,忠实地将视网膜视觉信息传递到视觉皮层。最近的研究指出,在处理这些信息中,更为复杂的作用是来自皮层和皮层下层结构的输入,可调节中继视觉信息的形式和强度。然而,绝大多数研究假设在膝状体中进行这种处理是分隔开的,从而使得膝状体中继细胞之间不存在串扰,每个细胞都强烈地要求对其膝状体输入进行完全独立的分析。在这里,我们提供的初步数据表明,膝状中继细胞之间的交流水平更高,每个中继细胞基本上都对其胞外输入进行了完全独立的分析。在这里,我们提供的初步数据表明,膝状中继细胞之间的交流水平更高,在适度的局部区域共享信息,但是在根本不同的细胞类型之间共享信息。我们建议视觉处理模型应包括内部微粒电路,以允许信息在不同流之间传递(最初认为是在皮层水平发生),是视觉信息的丘脑分析的一部分。

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