PsyArXiv
June 10, 2026
Theo Tobel, Aidan Cone, Emily Choquette et al.
preprint
Floatation-REST (Reduced Environmental Stimulation Therapy) systematically alters sensory and bodily input by combining neutral buoyancy, thermal and proprioceptive neutrality, attenuation of exteroceptive stimulation, and enhancement of cardiorespiratory signaling to the brain. Here we examined whether this non-pharmacological sensory perturbation induces altered states of consciousness and...
Journal of Psychedelic Studies
May 17, 2025
Daria Dikovskaya, Bhargav Srinivasa Desikan, Joel Frohlich et al.
2 citations
Abstract Background and aims Altered states of consciousness (ASC) represent acute and marked deviations from normal waking consciousness. Investigations into ASC are significant to problems in medicine, science, and philosophy, including the structure of conscious experience. Here, we conducted a preliminary investigation into the structure of ASC while addressing the role of psychedelics,...
Acta paediatrica (Oslo, Norway : 1992)
February 1, 2025
Joel Frohlich, Tim Bayne
3 citations
As recently as the 1980s, it was not uncommon for paediatric surgeons to operate on infants without anaesthesia. Today, the same omission would be considered criminal malpractice, and there is an increased concern with the possibility of consciousness in the earliest stage of human infancy. This concern reflects a more general trend that has characterised science since the early 1990s of taking...
Neuropsychopharmacology : official publication of the American College of Neuropsychopharmacology
June 1, 2024
Conor H. Murray, Joel Frohlich, Connor J Haggarty et al.
30 citations
Neural complexity correlates with one's level of consciousness. During coma, anesthesia, and sleep, complexity is reduced. During altered states, including after lysergic acid diethylamide (LSD), complexity is increased. In the present analysis, we examined whether low doses of LSD (13 and 26 µg) were sufficient to increase neural complexity in the absence of altered states of consciousness. In...
bioRxiv Preprint Server
October 25, 2023
Joel Frohlich, Ninette Simonian, Grant Hanada et al.
preprint
Stroboscopic or “flicker” stimulation is a form of periodic visual stimulation that induces geometric hallucinations through closed eyelids. While the visual effects of this form of sensory stimulation have received considerable attention, few studies have investigated the neural entrainment effects of periodic visual stimulation. Here, we introduce two variants of the classic flicker paradigm...
Trends in Cognitive Sciences
October 1, 2023
Tim Bayne, Joel Frohlich, Rhodri Cusack et al.
Highlights The study of infant (and fetal) consciousness is emerging as a distinctive research focus in the science of consciousness. Converging evidence from studies of functional network connectivity, attention, multimodal integration, and cortical responses to global oddballs suggests that consciousness is likely to be in place in early infancy and may even occur before birth. Recent...
Communications Biology
June 20, 2023
Joel Frohlich, Pedro A. M. Mediano, Francesco Bavato et al.
16 citations
Abstract Low-frequency (<4 Hz) neural activity, particularly in the delta band, is generally indicative of loss of consciousness and cortical down states, particularly when it is diffuse and high amplitude. Remarkably, however, drug challenge studies of several diverse classes of pharmacological agents—including drugs which treat epilepsy, activate GABA B receptors, block acetylcholine...
Neuroimage
June 1, 2023
Joel Frohlich, Tim Bayne, Julia S Crone et al.
When does the mind begin? Infant psychology is mysterious in part because we cannot remember our first months of life, nor can we directly communicate with infants. Even more speculative is the possibility of mental life prior to birth. The question of when consciousness, or subjective experience, begins in human development thus remains incompletely answered, though boundaries can be set using...
Proc Natl Acad Sci U S A
February 1, 2022
Daniel Toker, Ioannis Pappas, Janna D. Lendner et al.
148 citations
Mounting evidence suggests that during conscious states, the electrodynamics of the cortex are poised near a critical point or phase transition and that this near-critical behavior supports the vast flow of information through cortical networks during conscious states. Here, we empirically identify a mathematically specific critical point near which waking cortical oscillatory dynamics operate,...
bioRxiv
June 11, 2021
Daniel Toker, Ioannis Pappas, Janna D. Lendner et al.
3 citations
preprint
Mounting evidence suggests that during conscious states, the electrodynamics of the cortex are poised near a critical point or phase transition, and that this near-critical behavior supports the vast flow of information through cortical networks during conscious states. Here, for the first time, we empirically identify the specific critical point near which conscious cortical dynamics operate...
Brain
March 6, 2021
Joel Frohlich, Daniel Toker, Martin M. Monti
204 citations
Abstract A common observation in EEG research is that consciousness vanishes with the appearance of delta (1–4 Hz) waves, particularly when those waves are high amplitude. High amplitude delta oscillations are frequently observed in states of diminished consciousness, including slow wave sleep, anaesthesia, generalized epileptic seizures, and disorders of consciousness, such as coma and the...
bioRxiv Preprint Server
July 10, 2019
Joel Frohlich, Lynne M. Bird, John Dell’italia et al.
preprint
Numerous theories link consciousness to informationally rich, complex neural dynamics. This idea is challenged by the observation that children with Angelman syndrome (AS), while fully conscious, display a hypersynchronous electroencephalogram (EEG) phenotype typical of information-poor dynamics associated with unconsciousness. If informational complexity theories are correct, then sufficiently...
Journal of Psychopharmacology
November 20, 2013
Joel Frohlich, John D Van Horn
310 citations
The observation that antagonists of the N-methyl-D-aspartate receptor (NMDAR), such as phencyclidine (PCP) and ketamine, transiently induce symptoms of acute schizophrenia had led to a paradigm shift from dopaminergic to glutamatergic dysfunction in pharmacological models of schizophrenia. The glutamate hypothesis can explain negative and cognitive symptoms of schizophrenia better than the...