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Network mechanisms of grid cells

机译:网格单元的网络机制

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One of the major breakthroughs in neuroscience is the emerging understanding of how signals from the external environment are extracted and represented in the primary sensory cortices of the mammalian brain. The operational principles of the rest of the cortex, however, have essentially remained in the dark. The discovery of grid cells, and their functional organization, opens the door to some of the first insights into the workings of the association cortices, at a stage of neural processing where firing properties are shaped not primarily by the nature of incoming sensory signals but rather by internal selforganizing principles. Grid cells are place-modulated neurons whose firing locations define a periodic triangular array overlaid on the entire space available to a moving animal. The unclouded firing pattern of these cells is rare within the association cortices. In this paper, we shall review recent advances in our understanding of the mechanisms of grid-cell formation which suggest that the pattern originates by competitive network interactions, and we shall relate these ideas to new insights regarding the organization of grid cells into functionally segregated modules.
机译:神经科学的重大突破之一是对如何从外部环境中提取信号并在哺乳动物大脑的主要感觉皮层中表现出新的理解。然而,其余皮质的操作原理基本上仍然处于黑暗中。网格细胞的发现及其功能组织,为在大脑加工阶段神经特性并不主要取决于传入的感觉信号的性质而决定其发芽特性的阶段中,对结皮层工作的一些初步见解打开了大门。通过内部自组织原则。网格细胞是位置调制的神经元,其发射位置定义了一个周期性三角形阵列,该三角形阵列覆盖在运动动物可利用的整个空间上。这些细胞的无云射击模式在缔合皮层中很少见。在本文中,我们将回顾我们对网格单元形成机制的理解的最新进展,这些进展表明模式是由竞争性网络交互作用产生的,并将这些思想与关于将网格单元组织成功能隔离的模块的新见解联系起来。 。

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