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Mark Olchanyi

3 papers in the library · 39 citations · publishing 2023-2025

Papers

Multimodal MRI reveals brainstem connections that sustain wakefulness in human consciousness.

Science translational medicine May 1, 2024 Brian L Edlow, Mark Olchanyi, Holly J Freeman et al. 39 citations

A proposed subcortical arousal network, crucial for wakefulness, has been mapped in the human brain, revealing connections between key areas like the brainstem and hypothalamus. Utilizing data from three neurologically normal individuals' brains and advanced imaging techniques, this study identified pathways linking the default ascending arousal network with the cortical default mode network. Notably, the dopaminergic ventral tegmental area emerged as a central hub connecting these networks. This work enhances our understanding of how arousal and awareness integrate in human consciousness.

REcovery from DEXmedetomidine-Induced Unresponsiveness (REDEX): A Study Protocol for a Single Center, Parallel Arm, Non-Randomized, Controlled Pilot Trial in Healthy Volunteers.

Nature and science of sleep January 1, 2025 David R Schreier, Matteo Fecchio, Christian S Guay et al.

Dexmedetomidine (DEX) is a sedative that produces a sleep-like state and offers a way to study shifts in consciousness using behavior, EEG, and TMS-evoked EEG responses. Little is known about how repeated DEX exposure affects recovery. This pilot trial plans to sedate 12 healthy volunteers twice, one week apart, monitoring responsiveness with an auditory click task. It will compare time to return of responsiveness between visits, explore sex differences, and assess state transitions via EEG signatures, TMS-evoked complexity, and cognitive tests. The study also evaluates the feasibility of TMS-EEG during DEX sedation and reports on sleep quality and experiences.

Sustaining wakefulness: Brainstem connectivity in human consciousness

bioRxiv Preprint Server July 13, 2023 Brian L. Edlow, Mark Olchanyi, Holly J. Freeman et al. preprint

Consciousness depends on both arousal (wakefulness) and awareness. While cortical networks for awareness are well studied, the subcortical networks supporting arousal are less understood. By combining ex vivo diffusion MRI, immunohistochemistry, and in vivo 7 Tesla functional MRI in three human brain specimens, the authors identified a default ascending arousal network (dAAN) in the brainstem, hypothalamus, thalamus, and basal forebrain. They mapped connections within the dAAN and between the dAAN and the cortical default mode network (DMN), suggesting a structural basis for integrating arousal and awareness. The data and methods are released to aid further mapping of human consciousness.