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Architectural constraints are a major factor reducing path integration accuracy in the rat head direction cell system

机译:架构限制是降低大鼠头部方向细胞系统中路径整合精度的主要因素

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摘要

Head direction cells fire to signal the direction in which an animal's head is pointing. They are able to track head direction using only internally-derived information (path integration)In this simulation study we investigate the factors that affect path integration accuracy. Specifically, two major limiting factors are identified: rise time, the time after stimulation it takes for a neuron to start firing, and the presence of symmetric non-offset within-layer recurrent collateral connectivity. On the basis of the latter, the important prediction is made that head direction cell regions directly involved in path integration will not contain this type of connectivity; giving a theoretical explanation for architectural observations. Increased neuronal rise time is found to slow path integration, and the slowing effect for a given rise time is found to be more severe in the context of short conduction delays. Further work is suggested on the basis of our findings, which represent a valuable contribution to understanding of the head direction cell system.
机译:头部方向细胞发射信号,以指示动物头部指向的方向。他们仅使用内部信息(路径积分)就能跟踪头部方向。在此仿真研究中,我们研究了影响路径积分精度的因素。具体来说,确定了两个主要限制因素:上升时间,刺激后神经元开始放电所需的时间以及存在对称的非偏移层内复发性侧支连接性。在后者的基础上,做出了重要的预测,即直接参与路径集成的头部细胞区域将不包含这种类型的连接;为建筑观察提供理论解释。发现增加的神经元上升时间会减慢路径整合,并且在短传导延迟的情况下,发现给定上升时间的减慢作用更为严重。根据我们的发现,建议进一步的工作,这对理解头部方向细胞系统做出了宝贵的贡献。

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