莫纳什大学神经科学家德文·斯托利克领导的研究团队在《自然》杂志发表了一项名为"PsiConnect"的新研究1。研究人员向62名从未接触过迷幻药的受试者注射了19毫克裸盖菇素,并利用人工智能技术分析脑部扫描图像1。研究发现,迷幻药对大脑的影响并非传统理论所认为的简单混乱,而可能存在更复杂的机制1。
斯托利克用形象的比喻阐释了这一发现1。他表示,"把大脑的网络想象成高速公路,在迷幻药的作用下,这些高速公路会分解成许多不同的方向"1。这一观察有助于解释使用者报告的有意义体验和心理变化1。
Researchers at Monash University have published findings that challenge conventional understanding of how psychedelics affect the brain. Led by neuroscientist Devon Stoliker, the team administered 19 milligrams of psilocybin to 62 participants who had never previously used psychedelics and analyzed the resulting brain scans using artificial intelligence 1. Rather than confirming the prevailing theory that psychedelics simply disrupt brain function chaotically, the research, published in Nature under the project name PsiConnect, suggests a more intricate mechanism may underlie the meaningful experiences and psychological shifts people report 1.
Stoliker described the brain's networks as resembling highways that, under the influence of psychedelics, "break apart and go in many different directions" 1. This reframing of how neural connections reconfigure during psychedelic states provides new insight into the neurological basis of the profound subjective effects documented in psychedelic research 1.
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