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Karolina Finc

3 papers in the library · 9 citations · publishing 2017-2023

Papers

Effect of LSD and music on the time-varying brain dynamics.

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.

Effect of LSD and music on the time-varying brain dynamics

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.

The levels of perceptual processing and the neural correlates of increasing subjective visibility.

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.