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脉冲式证据积累过程中皮质感觉反应的幅度调制。

Amplitude modulations of cortical sensory responses in pulsatile evidence accumulation.

机构信息

Princeton Neuroscience Institute, Princeton University, Princeton, United States.

Bezos Center for Neural Circuit Dynamics, Princeton University, Princeton, United States.

出版信息

Elife. 2020 Dec 2;9:e60628. doi: 10.7554/eLife.60628.

Abstract

How does the brain internally represent a sequence of sensory information that jointly drives a decision-making behavior? Studies of perceptual decision-making have often assumed that sensory cortices provide noisy but otherwise veridical sensory inputs to downstream processes that accumulate and drive decisions. However, sensory processing in even the earliest sensory cortices can be systematically modified by various external and internal contexts. We recorded from neuronal populations across posterior cortex as mice performed a navigational decision-making task based on accumulating randomly timed pulses of visual evidence. Even in V1, only a small fraction of active neurons had sensory-like responses time-locked to each pulse. Here, we focus on how these 'cue-locked' neurons exhibited a variety of amplitude modulations from sensory to cognitive, notably by choice and accumulated evidence. These task-related modulations affected a large fraction of cue-locked neurons across posterior cortex, suggesting that future models of behavior should account for such influences.

摘要

大脑如何内部表示共同驱动决策行为的一系列感觉信息?感知决策的研究通常假设,感觉皮层为下游过程提供嘈杂但真实的感觉输入,这些过程会累积并驱动决策。然而,即使是在最早的感觉皮层中,感觉处理也可以被各种外部和内部的上下文有系统地修改。当老鼠根据累积的随机时间视觉证据脉冲执行导航决策任务时,我们在老鼠的后皮层中记录了神经元群体的活动。即使在 V1 中,只有一小部分活跃神经元具有与每个脉冲时间锁定的感觉样反应。在这里,我们关注的是这些“线索锁定”神经元如何表现出从感觉到认知的各种幅度调制,特别是通过选择和累积的证据。这些与任务相关的调制影响了后皮层中很大一部分线索锁定神经元,这表明未来的行为模型应该考虑到这些影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3849/7811404/9eaccf883e10/elife-60628-fig1.jpg

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