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Increased Entropic Brain Dynamics during DeepDream-Induced Altered Perceptual Phenomenology

机译:深液诱导过程中熵脑动力学增加了改变的感知现象学

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摘要

In recent years, the use of psychedelic drugs to study brain dynamics has flourished due to the unique opportunity they offer to investigate the neural mechanisms of conscious perception. Unfortunately, there are many difficulties to conduct experiments on pharmacologically-induced hallucinations, especially regarding ethical and legal issues. In addition, it is difficult to isolate the neural effects of psychedelic states from other physiological effects elicited by the drug ingestion. Here, we used the DeepDream algorithm to create visual stimuli that mimic the perception of hallucinatory states. Participants were first exposed to a regular video, followed by its modified version, while recording electroencephalography (EEG). Results showed that the frontal region’s activity was characterized by a higher entropy and lower complexity during the modified video, with respect to the regular one, at different time scales. Moreover, we found an increased undirected connectivity and a greater level of entropy in functional connectivity networks elicited by the modified video. These findings suggest that DeepDream and psychedelic drugs induced similar altered brain patterns and demonstrate the potential of adopting this method to study altered perceptual phenomenology in neuroimaging research.
机译:近年来,由于他们提供了探讨了意识感知的神经机制,使用迷幻药物致力于研究脑动力学的蓬勃发展。不幸的是,对药理学诱导的幻觉进行实验有很多困难,特别是关于道德和法律问题。此外,难以将荧光状态的神经效应与药物摄入引起的其他生理效果隔离。在这里,我们利用DeweDream算法创建了视觉刺激,模仿对幻觉状态的看法。参与者首先暴露于常规视频,其次是其修改的版本,而录制脑电图(EEG)。结果表明,正面区域的活动的特征在于,在不同的时间尺度上,在修改的视频期间,在修改的视频期间更高的熵和更低的复杂性。此外,我们发现由修改的视频引发的功能连接网络中增加的无向连接性和更大水平的熵。这些研究结果表明,Deepdeam和迷幻药物诱导了类似的改变的脑模式,并证明了采用这种研究的潜力研究神经影像学研究中的改变感性现象学。

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