Princeton Neuroscience Institute, Princeton University, Princeton, NJ 08544, USA.
Joseph Henry Laboratories of Physics and Lewis-Sigler Institute for Integrative Genomics, Princeton University, Princeton, NJ 08544, USA; Department of Neuroscience and Friedman Brain Institute, Icahn School of Medicine at Mount Sinai, One Gustave L. Levy Place, New York, NY 10014, USA.
Neuron. 2019 Nov 20;104(4):810-824.e9. doi: 10.1016/j.neuron.2019.08.025. Epub 2019 Sep 26.
Neural activity throughout the cortex is correlated with perceptual decisions, but inactivation studies suggest that only a small number of areas are necessary for these behaviors. Here we show that the number of required cortical areas and their dynamics vary across related tasks with different cognitive computations. In a visually guided virtual T-maze task, bilateral inactivation of only a few dorsal cortical regions impaired performance. In contrast, in tasks requiring evidence accumulation and/or post-stimulus memory, performance was impaired by inactivation of widespread cortical areas with diverse patterns of behavioral deficits across areas and tasks. Wide-field imaging revealed widespread ramps of Ca activity during the accumulation and visually guided tasks. Additionally, during accumulation, different regions had more diverse activity profiles, leading to reduced inter-area correlations. Using a modular recurrent neural network model trained to perform analogous tasks, we argue that differences in computational strategies alone could explain these findings.
大脑皮层的神经活动与知觉决策有关,但失活研究表明,这些行为只需要少数几个区域。在这里,我们表明,在具有不同认知计算的相关任务中,所需的皮层区域数量及其动态变化各不相同。在视觉引导的虚拟 T 型迷宫任务中,仅双侧失活少数几个背侧皮层区域就会损害表现。相比之下,在需要证据积累和/或刺激后记忆的任务中,广泛的皮层区域失活会导致各区域和任务之间表现出不同模式的行为缺陷。宽场成像显示在积累和视觉引导任务期间 Ca 活动的广泛斜坡。此外,在积累过程中,不同区域的活动模式更加多样化,导致区域间相关性降低。使用经过训练以执行类似任务的模块化递归神经网络模型,我们认为仅计算策略的差异就可以解释这些发现。