Science Advances
February 1, 2019
Athena Demertzi, Enzo Tagliazucchi, Stanislas Dehaene et al.
545 citations
Consciousness depends on the brain's ability to sustain rich, dynamic patterns of signal coordination. Using functional magnetic resonance imaging, a complex pattern of coordinated and anticoordinated signals characterized healthy individuals and minimally conscious patients. Unresponsive patients showed low interareal phase coherence mainly mediated by structural connectivity, with fewer transitions between patterns. This complex pattern was also seen in patients with covert cognition who could perform mental imagery tasks, validating its link to consciousness. Anesthesia increased the probability of the less complex pattern to levels seen in unresponsive patients, confirming its role in unconsciousness. These results establish generalizable fingerprints of conscious and unconscious states after brain damage.
Science Advances
November 17, 2021
Marcus W. Meinhardt, Simone Pfarr, Grégory Fouquet et al.
92 citations
Psilocybin restores deficits in the metabotropic glutamate receptor 2 (mGluR2) caused by alcohol, which leads to the reversal of pathological behaviors associated with alcoholism.
Science Advances
May 20, 2022
Tammi R. A. Kral, Kaley Davis, Cole Korponay et al.
67 citations
A large, rigorously controlled study failed to find evidence that an 8-week mindfulness-based stress reduction (MBSR) course changes brain structure. Combining data from two randomized controlled trials with 218 meditation-naïve participants, the study compared MBSR to an active control and a waitlist group. Using structural MRI scans before and after the intervention, researchers assessed gray matter volume, gray matter density, and cortical thickness. No neuroplastic changes were observed in the MBSR group compared to either control group, either across the whole brain or in regions previously reported to change. This contradicts widely referenced earlier claims that MBSR alters brain structure.
Science Advances
June 14, 2023
Leor Roseman, Christopher Timmermann, Daniel Golkowski et al.
65 citations
The effects of mind-altering drugs on brain function arise from complex interactions with multiple neurotransmitter systems, not just one. By linking the distribution of 19 neurotransmitter receptors and transporters (measured with PET) to changes in functional connectivity (measured with fMRI) caused by 10 drugs—anesthetics (propofol, sevoflurane, ketamine), psychedelics (LSD, psilocybin, DMT, ayahuasca), and others (MDMA, modafinil, methylphenidate)—the work shows a many-to-many mapping between drug effects and neurotransmitter systems. The drugs' impacts follow hierarchical gradients of brain structure and function, and regional susceptibility to drug-induced changes mirrors susceptibility to structural alterations from brain disorders.
Science Advances
April 1, 2026
Paula Berman, Janka Höfer, Herschel Mehlman et al.
1 citation
A biosynthetic pathway for dimethyltryptamine (DMT) was reconstructed in a plant assay, along with the full pathways of five natural psychedelics: psilocin, psilocybin, DMT, bufotenin, and 5-methoxy-DMT. Halogenated analogs of these molecules, which do not occur naturally and may have therapeutic potential for psychiatric conditions, were also engineered. By blending catalytic functions from different organisms and using rational protein design to create mutant enzymes, the production of indolethylamine components in plants became substantially more efficient. This platform enables concurrent biosynthesis and diversification of psychoactive indolethylamines.
Science Advances
May 8, 2026
Max Levinson, Alice Waitt, Katharina Duecker et al.
Transitions in conscious visual perception involve two distinct neural mechanisms: boundary fading in visual cortex, marked by increased excitability and reduced alpha-band activity indicating a shift in excitation-inhibition balance, and higher-order perceptual monitoring in motor cortex, reflected by decreased high-alpha and beta-band activity. Microsaccadic eye movements, which delay the illusion, selectively reset both processes. These findings support a hierarchical framework where visual and motor systems jointly shape changes in conscious experience.
Science Advances
March 1, 2020
Zirui Huang, Jun Zhang, Jinsong Wu et al.
Consciousness depends on frequent access between two key brain networks: the default mode network and the dorsal attention network, which normally alternate their activity in an anticorrelated manner. A 'temporal circuit' of dynamic brain activity trajectories regulates transitions between these networks. Balanced reciprocal accessibility of brain states within this circuit characterizes consciousness, while isolation of the networks from the temporal circuit is associated with unresponsiveness from various causes. These findings advance understanding of how anticorrelated brain systems support consciousness.