Skip to content

The Administration of Ketamine Is Associated with Dose-Dependent Stabilization of Cortical Dynamics in Humans.

Diego G Dávila, Andrew McKinstry-Wu, Max B Kelz, Alex Proekt

The Journal of neuroscience : the official journal of the Society for Neuroscience May 14, 2025 DOI: 10.1523/JNEUROSCI.1545-24.2025 via PubMed

Summary

AI-generated from the abstract

During wakefulness, people respond to external stimuli, while in dreams or drug-induced dissociated states, vivid internal experiences occur with reduced perception of the outside world. The brain's activity near a critical point between damped and exploding oscillations is linked to conscious experience, and this signature appears in both normal wakefulness and dissociative states but not in dreamless sleep or anesthesia. Using high-density EEG in human male volunteers given escalating ketamine doses, activity became progressively more stable, especially at higher frequencies, as dissociative symptoms increased. This stabilization correlated with reduced ability to perceive external stimuli, not with conscious experience itself. Combining statistical and dynamical measures of criticality may help distinguish wakefulness, dissociation, and unconsciousness.

Study at a glance

Characteristics Experimental study Peer reviewed
Population Human male volunteers
Intervention Ketamine
Dose escalating doses
Topics Ketamine
Keywords EEG Dissociated state Dynamics Neuroscience
Citations 5
Key finding Stabilization of cortical dynamics, especially at higher frequencies, correlates with decreased ability to perceive external stimuli during ketamine-induced dissociation, rather than with the capacity for conscious experience.

Abstract

During wakefulness, external stimuli elicit conscious experiences. In contrast, dreams and drug-induced dissociated states are characterized by vivid internally generated conscious experiences and reduced ability to perceive external stimuli. Understanding the physiological distinctions between normal wakefulness and dissociated states may therefore disambiguate signatures of responsiveness to external stimuli from those that underlie conscious experience. The hypothesis that conscious experiences are associated with brain criticality has received considerable theoretical and experimental support. Consistent with this hypothesis, statistical signatures of criticality are similar in normal wakefulness and dissociative states but are abolished in dreamless sleep and under anesthesia. Thus, while statistical measures of criticality are associated with the ability to have conscious experience, they do not readily distinguish between perception of the external world from internally generated percepts. Here, we investigate distinct, dynamical, signatures of criticality during escalating ketamine doses in high-density EEG in human male volunteers. We show that during normal wakefulness, EEG is found at a critical point between damped and exploding oscillations. With increasing doses of ketamine, as dissociative symptoms intensify, activity is progressively stabilized-most prominently at higher frequencies. We also show that stabilization is a more reliable marker of the effects of ketamine than conventional measures such as power spectra. These findings suggest that stabilization of cortical dynamics correlates with decreased ability to respond to and perceive external stimuli rather than the ability to have conscious experiences per se. Altogether, these results suggest that combining statistical and dynamical criticality measures may distinguish wakefulness, dissociation, and unconsciousness.

Explore topics

Comments

No comments yet.

Log in to comment