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Shannon entropy of brain functional complex networks under the influence of the psychedelic Ayahuasca

机译:迷幻Ayahuasca影响下的大脑功能复杂网络的香农熵

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摘要

The entropic brain hypothesis holds that the key facts concerning psychedelics are partially explained in terms of increased entropy of the brain’s functional connectivity. Ayahuasca is a psychedelic beverage of Amazonian indigenous origin with legal status in Brazil in religious and scientific settings. In this context, we use tools and concepts from the theory of complex networks to analyze resting state fMRI data of the brains of human subjects under two distinct conditions: (i) under ordinary waking state and (ii) in an altered state of consciousness induced by ingestion of Ayahuasca. We report an increase in the Shannon entropy of the degree distribution of the networks subsequent to Ayahuasca ingestion. We also find increased local and decreased global network integration. Our results are broadly consistent with the entropic brain hypothesis. Finally, we discuss our findings in the context of descriptions of “mind-expansion” frequently seen in self-reports of users of psychedelic drugs.
机译:熵脑假说认为,有关迷幻的关键事实部分是通过增加大脑功能连接的熵来解释的。 Ayahuasca是一种亚马逊土著迷幻饮料,在巴西的宗教和科学环境中具有合法地位。在这种情况下,我们使用复杂网络理论中的工具和概念来分析人类在两种不同条件下大脑的静息状态fMRI数据:(i)处于普通清醒状态;(ii)意识状态发生改变。通过摄入阿育吠陀。我们报告了网络吞噬阿阿华斯卡后网络度分布的香农熵的增加。我们还发现本地网络集成增加,而全球网络集成减少。我们的结果与熵脑假说大致一致。最后,我们在描述迷幻药使用者自我报告中经常出现的“思维扩展”的背景下讨论我们的发现。

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