Adapting and facilitating responses in mouse somatosensory cortex are dynamic and shaped by experience

生物 体感系统 感觉系统 神经科学 人口 刺激(心理学) 刺激 感觉刺激疗法 钙显像 筒状皮质 感受野 心理学 认知心理学 化学 钙 社会学 人口学 有机化学
作者
Zoë Dobler,Anand Suresh,Trishala Chari,Supriya A. Mula,Anne Tran,Dean V. Buonomano,Carlos Portera‐Cailliau
出处
期刊:Current Biology [Elsevier BV]
卷期号:34 (15): 3506-3521.e5
标识
DOI:10.1016/j.cub.2024.06.070
摘要

Sensory adaptation is the process whereby brain circuits adjust neuronal activity in response to redundant sensory stimuli. Although sensory adaptation has been extensively studied for individual neurons on timescales of tens of milliseconds to a few seconds, little is known about it over longer timescales or at the population level. We investigated population-level adaptation in the barrel field of the mouse somatosensory cortex (S1BF) using in vivo two-photon calcium imaging and Neuropixels recordings in awake mice. Among stimulus-responsive neurons, we found both adapting and facilitating neurons, which decreased or increased their firing, respectively, with repetitive whisker stimulation. The former outnumbered the latter by 2:1 in layers 2/3 and 4; hence, the overall population response of mouse S1BF was slightly adapting. We also discovered that population adaptation to one stimulus frequency (5 Hz) does not necessarily generalize to a different frequency (12.5 Hz). Moreover, responses of individual neurons to repeated rounds of stimulation over tens of minutes were strikingly heterogeneous and stochastic, such that their adapting or facilitating response profiles were not stable across time. Such representational drift was particularly striking when recording longitudinally across 8-9 days, as adaptation profiles of most whisker-responsive neurons changed drastically from one day to the next. Remarkably, repeated exposure to a familiar stimulus paradoxically shifted the population away from strong adaptation and toward facilitation. Thus, the adapting vs. facilitating response profile of S1BF neurons is not a fixed property of neurons but rather a highly dynamic feature that is shaped by sensory experience across days.

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