SUMMARYResearchers at Monash University studied 62 people who had never taken psychedelics and gave them 19 milligrams of psilocybin before scanning their brains. Using AI to compare drugged and sober scans, they found the brain activity was not simply chaotic and random, challenging a common explanation for how psychedelics affect neural networks. The work offers a new framework for understanding how psilocybin may produce meaningful experiences and psychological change.

One with the world? A new look at brains transformed by psychedelics.
Tashi-Delek
arstechnica.com

For about a decade, the mainstream understanding has been that psychedelics cause chaos in the brain. Brain networks—the stable patterns of communication that handle vision, attention, or our sense of self, and more—loosen and start talking to each other all at once. EEG traces get noisier and more complex. “Think of the networks of the brain as highways,” says Devon Stoliker, a neuroscientist at Monash University. “Under psychedelics, these highways break down into many different directions.”

In a recent Nature study, Stoliker’s team designed an experiment to test whether these directions are truly chaotic and random. Researchers gathered 62 people who had never taken a psychedelic before, gave them 19 milligrams of psilocybin, a common psychedelic found in certain fungi, and scanned their brains. Then, they used AI to analyze the drugged and sober brain scans. What emerged was not exactly chaos.

An uninterrupted trip

Stoliker thinks chaos is not a satisfactory explanation for psychedelics’ effect on the brain. “It never really explained why an individual would have a meaningful experience, why they might have insight, why they might experience clarity, and why these might translate into positive psychological changes,” Stoliker says. To investigate if there are other explanations, he and his colleagues designed a study called PsiConnect.

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