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行为可变性对表象漂移的贡献。

Contribution of behavioural variability to representational drift.

机构信息

Department of Bioengineering, Imperial College London, London, United Kingdom.

出版信息

Elife. 2022 Aug 30;11:e77907. doi: 10.7554/eLife.77907.

Abstract

Neuronal responses to similar stimuli change dynamically over time, raising the question of how internal representations can provide a stable substrate for neural coding. Recent work has suggested a large degree of drift in neural representations even in sensory cortices, which are believed to store stable representations of the external world. While the drift of these representations is mostly characterized in relation to external stimuli, the behavioural state of the animal (for instance, the level of arousal) is also known to strongly modulate the neural activity. We therefore asked how the variability of such modulatory mechanisms can contribute to representational changes. We analysed large-scale recording of neural activity from the Allen Brain Observatory, which was used before to document representational drift in the mouse visual cortex. We found that, within these datasets, behavioural variability significantly contributes to representational changes. This effect was broadcasted across various cortical areas in the mouse, including the primary visual cortex, higher order visual areas, and even regions not primarily linked to vision like hippocampus. Our computational modelling suggests that these results are consistent with independent modulation of neural activity by behaviour over slower timescales. Importantly, our analysis suggests that reliable but variable modulation of neural representations by behaviour can be misinterpreted as representational drift if neuronal representations are only characterized in the stimulus space and marginalized over behavioural parameters.

摘要

神经元对相似刺激的反应会随时间动态变化,这就提出了一个问题,即内部表示如何为神经编码提供稳定的基础。最近的研究表明,即使在被认为存储外部世界稳定表示的感觉皮层中,神经表示也会发生很大程度的漂移。虽然这些表示的漂移主要与外部刺激有关,但动物的行为状态(例如,觉醒水平)也被认为强烈调节神经活动。因此,我们想知道这种调节机制的可变性如何有助于表示的变化。我们分析了来自艾伦脑观测站的大规模神经活动记录,这些记录以前曾用于记录小鼠视觉皮层中的表示漂移。我们发现,在这些数据集内,行为变异性显著促进了表示的变化。这种效应在小鼠的各种皮层区域中传播,包括初级视觉皮层、高级视觉区域,甚至像海马体这样与视觉没有直接联系的区域。我们的计算模型表明,这些结果与行为在较慢时间尺度上对神经活动的独立调节一致。重要的是,我们的分析表明,如果仅在刺激空间中描述神经元表示并边缘化行为参数,那么行为对神经表示的可靠但可变的调制可能会被误解为表示漂移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6183/9481246/b9075c2e5492/elife-77907-fig1.jpg

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