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首页> 外文期刊>eLife journal >Learning place cells, grid cells and invariances with excitatory and inhibitory plasticity
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Learning place cells, grid cells and invariances with excitatory and inhibitory plasticity

机译:通过兴奋和抑制可塑性学习位置细胞,网格细胞和不变性

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Neurons in the hippocampus and adjacent brain areas show a large diversity in their tuning to location and head direction, and the underlying circuit mechanisms are not yet resolved. In particular, it is unclear why certain cell types are selective to one spatial variable, but invariant to another. For example, place cells are typically invariant to head direction. We propose that all observed spatial tuning patterns – in both their selectivity and their invariance – arise from the same mechanism: Excitatory and inhibitory synaptic plasticity driven by the spatial tuning statistics of synaptic inputs. Using simulations and a mathematical analysis, we show that combined excitatory and inhibitory plasticity can lead to localized, grid-like or invariant activity. Combinations of different input statistics along different spatial dimensions reproduce all major spatial tuning patterns observed in rodents. Our proposed model is robust to changes in parameters, develops patterns on behavioral timescales and makes distinctive experimental predictions.
机译:海马和邻近大脑区域的神经元在位置和头部方向的调节上表现出很大的差异,而潜在的回路机制尚未解决。特别是,尚不清楚为什么某些细胞类型对一个空间变量具有选择性,而对另一种空间变量却具有不变性。例如,位置单元通常对于头部方向是不变的。我们建议所有观察到的空间调节模式(无论是选择性还是不变性)都来自相同的机制:兴奋性和抑制性突触可塑性由突触输入的空间调节统计驱动。使用模拟和数学分析,我们表明,兴奋性和抑制性可塑性的组合可导致局部的,网格状或不变的活动。沿不同空间维度的不同输入统计信息的组合再现了啮齿动物中观察到的所有主要空间调整模式。我们提出的模型对参数变化具有鲁棒性,可以在行为时标上发展模式,并可以做出独特的实验预测。

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