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Computing by modulating spontaneous cortical activity patterns as a mechanism of active visual processing

机译:通过调节自发皮层活动模式作为主动视觉处理的机制进行计算

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摘要

Cortical populations produce complex spatiotemporal activity spontaneously without sensory inputs. However, the fundamental computational roles of such spontaneous activity remain unclear. Here, we propose a new neural computation mechanism for understanding how spontaneous activity is actively involved in cortical processing: Computing by Modulating Spontaneous Activity (CMSA). Using biophysically plausible circuit models, we demonstrate that spontaneous activity patterns with dynamical properties, as found in empirical observations, are modulated or redistributed by external stimuli to give rise to neural responses. We find that this CMSA mechanism of generating neural responses provides profound computational advantages, such as actively speeding up cortical processing. We further reveal that the CMSA mechanism provides a unifying explanation for many experimental findings at both the single-neuron and circuit levels, and that CMSA in response to natural stimuli such as face images is the underlying neurophysiological mechanism of perceptual “bubbles” as found in psychophysical studies.
机译:皮质种群自发地产生复杂的时空活动,而没有感觉输入。但是,这种自发活动的基本计算作用仍不清楚。在这里,我们提出了一种新的神经计算机制,用于了解自发活动如何积极参与皮层处理:通过调节自发活动(CMSA)进行计算。使用生物物理学上可行的电路模型,我们证明了具有动态特性的自发活动模式(如在经验观察中发现)受到外部刺激的调节或重新分布,从而引起神经反应。我们发现,这种产生神经反应的CMSA机制提供了深刻的计算优势,例如积极地加快了皮层处理的速度。我们进一步揭示,CMSA机制为单神经元和回路水平上的许多实验发现提供了统一的解释,而CMSA对自然刺激(例如面部图像)的响应是知觉“气泡”的潜在神经生理机制,如心理物理研究。

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