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裸盖菇素降低了小鼠后扣带回皮层神经元的功能相关性和空间信息编码。

Psilocybin reduces functional correlation and the encoding of spatial information by neurons in mouse retrosplenial cortex.

机构信息

Canadian Center for Behavioural Neuroscience, Department of Neuroscience, University of Lethbridge, Lethbridge, Alberta, Canada.

Douglas Research Centre, Department of Psychiatry, McGill University, Montreal, Canada.

出版信息

Eur J Neurosci. 2024 Nov;60(10):6395-6407. doi: 10.1111/ejn.16558. Epub 2024 Oct 4.

Abstract

Psychedelic drugs have profound effects on perception, cognition and mood. How psychedelics affect neural signaling to produce these effects remains poorly understood. We investigated the effect of the classic psychedelic psilocybin on neural activity patterns and spatial encoding in the retrosplenial cortex of head-fixed mice navigating on a treadmill. The place specificity of neurons to distinct locations along the belt was reduced by psilocybin. Moreover, the stability of place-related activity across trials decreased. Psilocybin also reduced the functional correlation among simultaneously recorded neurons. The 5-HTR (serotonin 2A receptor) antagonist ketanserin blocked these effects. These data are consistent with proposals that psychedelics increase the entropy of neural signaling and provide a potential neural mechanism contributing to disorientation frequently reported by humans after taking psychedelics.

摘要

致幻剂对感知、认知和情绪有深远的影响。然而,致幻剂如何影响神经信号传递以产生这些效果,目前仍知之甚少。我们研究了经典致幻剂裸盖菇素对头部固定在跑步机上运动的小鼠后扣带回皮层神经活动模式和空间编码的影响。裸盖菇素降低了神经元对沿腰带不同位置的特异性。此外,位置相关活动在试验中的稳定性也降低了。裸盖菇素还降低了同时记录的神经元之间的功能相关性。5-HTR(血清素 2A 受体)拮抗剂氯氮平阻断了这些作用。这些数据与以下观点一致,即致幻剂会增加神经信号传递的熵,并为人类服用致幻剂后经常报告的迷失方向提供了潜在的神经机制。

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