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A Continuous-Attractor Model of Flip Cell Phenomena

机译:翻转细胞现象的连续吸引力模型

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This paper is devoted to the problem of understanding mechanisms underlying behavioral correlates of head direction (HD) cells in the mammalian retrosplenial cortex. HD cells become active when an animal, such as rat, is facing a particular direction in its environment. The robustness of this phenomenon is usually attributed to attractor dynamics of the HD cell system. According to the standard view, a ring attractor exists in some abstract space, with HD cells symbolically allocated on the ring, so that any natural state of the system corresponds to a bump of activity on the ring. In apparent contradiction with this standard model are recent discoveries of so-called "flip cells", that constitute a minority of HD cells and can either rotate their directional tuning by 180° when an animal transitions between two environments, or interpolate between discordant cues, or demonstrate a bimodal tuning curve. Here a continuous attractor network model is described that is capable of a qualitative reproduction of these phenomena, while being consistent with the ring attractor hypothesis. The model assumes that there is more than one attractor ring in the HD system. Results of the concept-proof simulation suggest a correction to the standard view of how the internal sense of direction is formed in the rat brain.
机译:本文致力于了解哺乳动物逆血上皮质中的头部方向(HD)细胞行为相关机制的问题。当像动物如大鼠面临其环境中的特定方向时,HD细胞变得有效。这种现象的鲁棒性通常归因于高清电池系统的吸引力动态。根据标准视图,在一些抽象空间中存在环形吸引子,具有在环上分配的HD细胞,使得系统的任何自然状态对应于环上的活动凸起。在与本标准模型的明显矛盾中是最近发现所谓的“翻转单元”,这构成了少数高清细胞,并且当两种环境之间的动物过渡或不和谐的提示之间插入时,可以将它们的方向调谐旋转180°。或展示双峰调谐曲线。这里描述了一种能够进行这些现象的定性再现的连续吸引子网络模型,同时与环吸引子假设一致。该模型假定HD系统中有多个吸引圈环。概念仿真的结果表明,对如何在大鼠大脑中形成内部方向的标准观点的校正。

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