LSD modulates effective connectivity and neural adaptation mechanisms in an auditory oddball paradigm.
Christopher Timmermann, Meg J. Spriggs, Mendel Kaelen, Robert Leech, David J. Nutt, Rosalyn J. Moran, Robin L. Carhart-Harris, Suresh D. Muthukumaraswamy
Neuropharmacology November 20, 2017 DOI: 10.1016/j.neuropharm.2017.10.039 via PubMed
Summary
AI-generated from the abstractLSD reduces the brain's automatic neural adaptation to familiar sounds and blunts the neural 'surprise' response to unexpected sounds. Using magnetoencephalography and dynamic causal modeling, the authors found that LSD modulates backward (top-down) connectivity within a fronto-temporal network and intrinsic connectivity in the primary auditory cortex. These patterns resemble those seen in schizophrenia, ketamine states, and reduced consciousness, suggesting that backward connectivity may reflect altered perceptual learning common to multiple altered states rather than a direct marker of conscious level. The findings challenge top-down hypotheses of consciousness and indicate that several altered states may share this biophysical mechanism.
Study at a glance
| Characteristics | Randomized controlled trial Peer reviewed |
|---|---|
| Sample size | 20 |
| Population | Healthy participants |
| Intervention | LSD |
| Keywords | LSD LSD Neuroscience brain Neural adaptation Brain network dynamics Unexpected sounds |
| Citations | 83 |
| Key finding | LSD reduces neural adaptation to familiar stimuli and blunts the neural surprise response to novel stimuli, and modulates backward connectivity within a fronto-temporal network. |
Abstract
Under the predictive coding framework, perceptual learning and inference are dependent on the interaction between top-down predictions and bottom-up sensory signals both between and within regions in a network. However, how such feedback and feedforward connections are modulated in the state induced by lysergic acid diethylamide (LSD) is poorly understood. In this study, an auditory oddball paradigm was presented to healthy participants (16 males, 4 female) under LSD and placebo, and brain activity was recorded using magnetoencephalography (MEG). Scalp level Event Related Fields (ERF) revealed reduced neural adaptation to familiar stimuli, and a blunted neural 'surprise' response to novel stimuli in the LSD condition. Dynamic causal modelling revealed that both the presentation of novel stimuli and LSD modulate backward extrinsic connectivity within a task-activated fronto-temporal network, as well as intrinsic connectivity in the primary auditory cortex. These findings show consistencies with those of previous studies of schizophrenia and ketamine but also studies of reduced consciousness - suggesting that rather than being a marker of conscious level per se, backward connectivity may index modulations of perceptual learning common to a variety of altered states of consciousness, perhaps united by a shared altered sensitivity to environmental stimuli. Since recent evidence suggests that the psychedelic state may correspond to a heightened 'level' of consciousness with respect to the normal waking state, our data warrant a re-examination of the top-down hypotheses of conscious level and suggest that several altered states may feature this specific biophysical effector. This article is part of the Special Issue entitled 'Psychedelics: New Doors, Altered Perceptions'.