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Significance of Input Correlations in Striatal Function

机译:输入相关性在纹状体功能中的意义

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The striatum is the main input station of the basal ganglia and is strongly associated with motor and cognitive functions. Anatomical evidence suggests that individual striatal neurons are unlikely to share their inputs from the cortex. Using a biologically realistic large-scale network model of striatum and cortico-striatal projections, we provide a functional interpretation of the special anatomical structure of these projections. Specifically, we show that weak pairwise correlation within the pool of inputs to individual striatal neurons enhances the saliency of signal representation in the striatum. By contrast, correlations among the input pools of different striatal neurons render the signal representation less distinct from background activity. We suggest that for the network architecture of the striatum, there is a preferred cortico-striatal input configuration for optimal signal representation. It is further enhanced by the low-rate asynchronous background activity in striatum, supported by the balance between feedforward and feedback inhibitions in the striatal network. Thus, an appropriate combination of rates and correlations in the striatal input sets the stage for action selection presumably implemented in the basal ganglia.
机译:纹状体是基底神经节的主要输入部位,与运动和认知功能密切相关。解剖学证据表明,单个纹状体神经元不太可能共享皮质的输入。使用纹状体和皮质-纹状体投射的生物学上现实的大规模网络模型,我们提供了这些投射的特殊解剖结构的功能解释。具体来说,我们表明输入池中对各个纹状体神经元的弱成对相关性增强了纹状体中信号表示的显着性。相比之下,不同纹状体神经元的输入池之间的相关性使信号表示与背景活动的区别较小。我们建议对于纹状体的网络体系结构,存在一种用于最佳信号表示的首选皮层-纹状体输入配置。纹状体网络中前馈和反馈抑制之间的平衡支持了纹状体中的低速率异步背景活动,从而进一步增强了该功能。因此,纹状体输入中的速率和相关性的适当组合为推测在基底神经节中实施的动作选择奠定了基础。

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