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Curr Biol

ISSN 0960-9822; 1879-0445;

3 papers in the library · 892 citations · publishing 2016-2022

Papers

Increased Global Functional Connectivity Correlates with LSD-Induced Ego Dissolution.

Curr Biol April 13, 2016 Enzo Tagliazucchi, Leor Roseman, Mendel Kaelen et al. 531 citations

LSD, a potent serotonin-receptor agonist, increases global functional connectivity in the human brain, particularly in high-level association cortices and the thalamus, as shown by fMRI. These effects overlap with serotonin 2A receptor densities and correlate with subjective reports of ego dissolution. The drug also enhances communication between normally distinct brain networks, reducing the brain's modular and rich-club organization. This is the first modern human imaging study of LSD's acute effects on brain connectivity, demonstrating that LSD selectively expands global connectivity and blurs perceptual boundaries between self and environment.

Whole-Brain Multimodal Neuroimaging Model Using Serotonin Receptor Maps Explains Non-linear Functional Effects of LSD.

Curr Biol September 27, 2018 Gustavo Deco, Josephine Cruzat, Joana Cabral et al. 246 citations

A whole-brain model integrating anatomical, functional, and neurotransmitter data explains how serotonin 2A receptor stimulation with LSD alters brain dynamics. The model combines diffusion MRI, functional MRI, and PET scans of serotonin 2A receptor density to simulate resting-state activity and music listening effects. It shows that LSD's effects arise from non-linear interactions between anatomical connectivity, the brainwide distribution of 5-HT2A receptors, and neuromodulation of neuronal gain. Accounting for neuromodulatory activity in brain models can yield insights into brain function and aid drug discovery for neuropsychiatric disorders.

Psychedelics.

Curr Biol January 1, 2022 Benjamin Kelmendi, Alfred P. Kaye, Christopher Pittenger et al. 115 citations

Psychedelics are consciousness-altering compounds that act on serotonin receptors in the brain. First called 'psychedelic' in 1956, they are also known as hallucinogens, entheogens, or empathogens, reflecting their diverse subjective effects. Hundreds of such compounds exist with a range of behavioral and neurobiological impacts. Recent evidence that psychedelics can effectively treat mental illnesses has renewed scientific interest in their neural mechanisms. This Primer offers a concise overview of current scientific data for those entering the field.