JAMA psychiatry
June 1, 2025
Lorenz Mueller, Joyce Santos de Jesus, Yasmin Schmid et al.
14 citations
Repeated low doses of LSD (20 μg twice weekly for six weeks) did not reduce ADHD symptoms more than placebo in adults with moderate-to-severe ADHD. In a double-blind randomized trial with 53 participants, the LSD group showed an average 7.1-point improvement on the ADHD symptom scale, while the placebo group improved by 8.9 points—a difference that was not statistically significant. The treatment was physically safe and psychologically well tolerated. The findings suggest that microdosing LSD, despite popular interest, offers no advantage over placebo for ADHD symptom relief.
Neuropsychopharmacology
December 19, 2024
Livio Erne, Severin B Vogt, Lorenz Müller et al.
14 citations
Continuous intravenous infusions of DMT produce dose-dependent subjective effects that plateau after 30 minutes, with a ceiling effect for good drug effect at 1.8 mg/min. The highest dose tested (2.4 mg/min) caused greater anxious ego dissolution and significant anxiety compared to placebo. DMT showed dose-proportional pharmacokinetics and moderate acute tolerance. When participants could self-titrate their dose, they chose moderate to strong psychedelic effects comparable to the 1.8 mg/min rate. These findings can guide dose selection in future DMT research and show that subjective effects can be rapidly adjusted through dose titration.
medRxiv
January 16, 2026
Kristian Larsen, Patrick M Fisher, Drummond E. Mcculloch et al.
1 citation
Classical psychedelics such as LSD, psilocybin, and mescaline produce distinct changes in brain complexity and entropy that are not seen with stimulants like MDMA or d-Amphetamine. Using resting-state fMRI data from three placebo-controlled crossover trials with 79 participants across 255 sessions, the study found that psychedelics specifically increased meta-state complexity, short-timescale multiscale entropy, and dynamic conditional correlation entropy. Both drug classes increased Lempel-Ziv and spatial complexity and decreased absolute modularity, but only psychedelics showed these unique complexity and entropy increases. These findings suggest that psychedelic-specific brain signal changes may help distinguish the acute psychedelic state from other psychoactive drug effects and could be relevant to understanding their therapeutic potential.