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◇ bioRxiv2026-09-03· neuroscience

Sensory cortical disinhibition is required for long-term fear memory in humans

J. A. Brown, Y. Ma, Y. Wang, J. J. Massa, P. K.-H. Cheng, C. Chen, M. Ding, N. B. Schmidt, M. R. Milad, J. C. Soares, R. J. Dolan, C. You, W. Li

原始摘要(英文原文)· Original abstract
The transformation of transient threats into enduring memories is fundamental to survival, yet how the human brain constructs long-term fear memory remains elusive. Early sensory cortex, traditionally viewed as a passive feature analyzer, is increasingly recognized as an active participant in fear processing. Here, using a multimodal approach combining high-definition -frequency transcranial alternating current stimulation (HD -tACS) with simultaneous EEG-fMRI and transformer-based neural decoding, we tracked fear memory development across early formation, consolidation, and long-term retention stages (assessed at 15 min, 24 h, and 7 days post-conditioning). Spatiotemporal memory representations were evident at all three time points, beginning at an early sensory stage (40-60 ms post-stimulus). Conditioning potentiated occipital -oscillation desynchronization (a marker of visual cortical disinhibition), which predicted the strength of subsequent long-term memory traces. Critically, targeted -tACS over early visual cortex induced V1/V2 inhibition, abolished conditioning-potentiated desynchronization, and selectively disrupted fear-memory consolidation and retention while leaving initial acquisition intact. These findings establish sensory cortical disinhibition as a necessary mechanism for long-term fear memory in humans and identify early sensory cortex as a causal node for interventions targeting persistent maladaptive fear.
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Sensory cortical disinhibition is required for long-term fear memory in humans — 科研速览 Science Skim