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ON-OFF receptive fields in auditory cortex diverge during development and contribute to directional sweep selectivity

机译:听觉皮层中的ON-OFF感受野在发育过程中发散并有助于定向扫掠选择性

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摘要

Neurons in the auditory cortex exhibit distinct frequency tuning to the onset and offset of sounds, but the cause and significance of ON and OFF receptive field (RF) organisation are not understood. Here we demonstrate that distinct ON and OFF frequency tuning is largely absent in immature mouse auditory cortex and is thus a consequence of cortical development. Simulations using a novel implementation of a standard Hebbian plasticity model show that the natural alternation of sound onset and offset is sufficient for the formation of non-overlapping adjacent ON and OFF RFs in cortical neurons. Our model predicts that ON/OFF RF arrangement contributes towards direction selectivity to frequency-modulated tone sweeps, which we confirm by neuronal recordings. These data reveal that a simple and universally accepted learning rule can explain the organisation of ON and OFF RFs and direction selectivity in the developing auditory cortex.
机译:听觉皮层中的神经元对声音的发生和偏移表现出截然不同的频率调谐,但尚不清楚ON和OFF接收场(RF)组织的原因和重要性。在这里我们证明未成熟的老鼠听觉皮层中不存在明显的ON和OFF频率调谐,因此是皮层发育的结果。使用标准的Hebbian可塑性模型的新颖实现方式进行的仿真显示,声音开始和偏移的自然交替足以在皮质神经元中形成不重叠的相邻ON和OFF RF。我们的模型预测,开/关RF排列有助于频率调制的音调扫描的方向选择性,我们通过神经元录音证实了这一点。这些数据表明,一个简单且普遍接受的学习规则可以解释发育中的听觉皮层中ON和OFF RF的组织和方向选择性。

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