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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Theta phase precession of grid and place cell firing in open environments
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Theta phase precession of grid and place cell firing in open environments

机译:在开放环境中栅格和位置单元点火的θ相进动

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Place and grid cells in the rodent hippocampal formation tend to fire spikes at successively earlier phases relative to the local field potential theta rhythm as the animal runs through the cell's firing field on a linear track. However, this 'phase precession' effect is less well characterized during foraging in twodimensional open field environments. Here, we mapped runs through the firing fields onto a unit circle to pool data from multiple runs. We asked which of seven behavioural and physiological variables show the best circular- linear correlation with the theta phase of spikes from place cells in hippocampal area CA1 and from grid cells from superficial layers of medial entorhinal cortex. The best correlate was the distance to the firing field peak projected onto the animal's current running direction. This was significantly stronger than other correlates, such as instantaneous firing rate and time-infield, but similar in strength to correlates with other measures of distance travelled through the firing field. Phase precession was stronger in place cells than grid cells overall, and robust phase precession was seen in traversals through firing field peripheries (although somewhat less than in traversals through the centre), consistent with phase coding of displacement along the current direction. This type of phase coding, of place field distance ahead of or behind the animal, may be useful for allowing calculation of goal directions during navigation.
机译:当动物在线性轨道上穿过细胞的发射场时,在啮齿类动物海马结构中的放置和网格细胞往往会在相对于局部场电势theta节奏连续更早的阶段发射尖峰。但是,这种“相位进动”效应在二维开放野外环境中觅食的过程中表征得不太好。在这里,我们将通过发射场的运行映射到一个单位圆上,以汇总来自多个运行的数据。我们询问了七个行为和生理变量中哪一个与海马区CA1的位置细胞和内侧内嗅皮层表层的网格细胞的峰值的θ相具有最佳的线性相关性。最好的相关性是投影到动物当前行进方向上的发射场峰值的距离。这比其他关联(例如瞬时发射速率和时场)强得多,但强度与通过发射场的其他距离度量相关。位置单元的相位进动比整体网格单元更强,并且在通过发射场外围的遍历中可以看到鲁棒的相位进动(尽管比通过中心的遍历少一些),这与沿当前方向的位移的相位编码一致。这种在动物前面或后面的位置场距离的相位编码对于在导航期间计算目标方向可能很有用。

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