Dynamic medial parietal and hippocampal deactivations under DMT relate to sympathetic output and altered sense of time, space, and the self.
Lorenzo Pasquini, Alexander J Simon, Courtney L Gallen, Hannes Kettner, Leor Roseman, Adam Gazzaley, Robin L Carhart-Harris, Christopher Timmermann
bioRxiv : the preprint server for biology August 12, 2024 preprint DOI: 10.1101/2024.02.14.580356 via PubMed
Summary
AI-generated from the abstractThe psychedelic DMT rapidly alters consciousness, producing physical transcendence, vivid auditory distortions, and visual imagery. Using simultaneous fMRI and EKG data from 14 healthy volunteers before, during, and after intravenous DMT (versus placebo), a brain substate emerged immediately after injection characterized by deactivations in the hippocampus and medial parietal cortex alongside increased superior temporal lobe activity. Hippocampal and medial parietal deactivations correlated with disruptions in the sense of time, space, and self-referential processes, reflecting a deconstruction of ordinary consciousness. Superior temporal lobe activations correlated with audio/visual hallucinations and the experience of "entities.
Study at a glance
| Characteristics | Within-subjects experimental study with placebo control |
|---|---|
| Sample size | 14 |
| Population | Healthy volunteers |
| Interventions | N N-Dimethyltryptamine (DMT) |
| Duration | Prior to, during, and after intravenous administration of DMT |
| Topics | DMT |
| Keywords | Dynamic brain states Resting-State FMRI Self-referential processes Psychedelics hallucinogens |
| Citations | 4 |
| Key finding | DMT induces a brain substate with hippocampal and medial parietal deactivations linked to disruptions in self-referential processes and time/space perception, and superior temporal lobe activations linked to hallucinations and entity experiences, with heart rate changes correlating with these neural and subjective effects. |
Abstract
N,N-Dimethyltryptamine (DMT) is a serotonergic psychedelic, known to rapidly induce short-lasting alterations in conscious experience, characterized by a profound and immersive sense of physical transcendence alongside rich and vivid auditory distortions and visual imagery. Multimodal neuroimaging data paired with dynamic analysis techniques offer a valuable approach for identifying unique signatures of brain activity - and linked autonomic physiology - naturally unfolding during the altered state of consciousness induced by DMT. We leveraged simultaneous fMRI and EKG data acquired in 14 healthy volunteers prior to, during, and after intravenous administration of DMT, and, separately, placebo. fMRI data was preprocessed to derive individual dynamic activity matrices, reflecting the similarity of brain activity in time, and community detection algorithms were applied on these matrices to identify brain activity substates; EKG data was used to derive continuous heart rate. We identified a brain substate occurring immediately after DMT injection, characterized by hippocampal and medial parietal deactivations and increased superior temporal lobe activity under DMT. Deactivations in the hippocampus and medial parietal cortex correlated with alterations in the usual sense of time, space and self-referential processes, reflecting a deconstruction of essential features of ordinary consciousness. Superior lobe activations instead correlated with audio/visual hallucinations and experience of "entities", reflecting the emergence of altered sensory experiences under DMT. Finally, increased heart rate under DMT correlated positively with hippocampus/medial parietal deactivation and the experience of "entities", and negatively with altered self-referential processes. These results suggest a chain of influence linking sympathetic regulation to hippocampal and medial parietal deactivations under DMT, which combined, may contribute to positive mental health outcomes related to self-referential processing following psychedelic administration.