Psychopharmacology
July 1, 2023
Iga Adamska, Karolina Finc
8 citations
Lysergic acid diethylamide (LSD) and music together alter brain state dynamics, particularly in task-positive networks. In 15 participants, functional MRI scans under LSD and placebo conditions included resting-state runs before and after music listening. K-Means clustering identified repetitive brain activity patterns. The interaction of music and LSD changed the time-varying activity of the task-positive state. LSD alone affected states combining the default mode, somatomotor, and visual networks. Music itself may have a lasting influence on resting-state activity, especially in task-positive networks. These findings suggest music is a crucial element of the 'setting' in psychedelic experiences, though replication with larger samples is needed.
bioRxiv (Cold Spring Harbor Laboratory)
Iga Adamska, Karolina Finc
1 citation
preprint
Listening to music while under the influence of LSD alters the brain's moment-to-moment patterns of activity, particularly in networks linked to attention and task performance. In a study of 15 participants who underwent functional MRI scans after taking LSD or a placebo, the combination of music and LSD changed how long the brain stayed in a task-positive state. LSD alone, regardless of music, affected the dynamics of a state involving the default mode, somatomotor, and visual networks. Music itself appeared to have a lingering effect on resting-state brain activity, especially on networks associated with tasks. These findings suggest that music, as part of the setting, can shape the psychedelic experience at a neural level.
Consciousness and cognition
October 1, 2017
Marek Binder, Krzysztof Gociewicz, Bert Windey et al.
Transitions from unconscious to conscious perception may be more gradual for low-level visual features and more dichotomous for high-level features. In an fMRI study using backward masking, participants reported a target digit's magnitude (high-level) or its color (low-level) and rated visibility. Intermediate visibility was reported more often in the low-level task, supporting the levels-of-processing hypothesis. Visible targets activated insulo-fronto-parietal regions in both tasks, while visual areas showed higher activity in the low-level task across all visibility levels. The findings suggest that attentional modulation of feature-representing brain regions mediates how processing level shapes conscious perception.