State-dependent memory retrieval: insights from neural dynamics and behavioral perspectives
作者:Fei Wang, Xu Chen, Binshi Bo, Tianfu Zhang, Kaiyuan Liu, Jun Jiang, Yonggang Wang, Hong Xie, Zhifeng Liang, Ji‐Song Guan · 发表于:Learning & Memory · 年份:2023 · DOI:10.1101/lm.053893.123 · 被引用次数:5 · 研究领域:Memory and Neural Mechanisms、Neural dynamics and brain function、Neuroscience and Neuropharmacology Research
Memory retrieval is strikingly susceptible to external states (environment) and internal states (mood states and alcohol), yet we know little about the underlying mechanisms. We examined how internally generated states influence successful memory retrieval using the functional magnetic resonance imaging (fMRI) of laboratory mice during memory retrieval. Mice exhibited a strong tendency to perform memory retrieval correctly only in the reinstated mammillary body-inhibited state, in which mice were trained to discriminate auditory stimuli in go/no-go tasks. fMRI revealed that distinct auditory cues engaged differential brain regions, which were primed by internal state. Specifically, a cue associated with a reward activated the lateral amygdala, while a cue signaling no reward predominantly activated the postsubiculum. Modifying these internal states significantly altered the neural activity balance between these regions. Optogenetic inhibition of those regions in the precue period blocked the retrieval of type-specific memories. Our findings suggest that memory retrieval is under the control of two interrelated neural circuits underlying the neural basis of state-dependent memory retrieval.