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G. Mashour

9 papers in the library · 13 citations · publishing 2007-2024

Papers

From LSD to the IRB: Henry Beecher's Psychedelic Research and the Foundation of Clinical Ethics

International Anesthesiology Clinics January 1, 2007 G. Mashour 13 citations

The development of anesthesia in the mid-19th century transformed surgery from a desperate, agonizing ordeal into a controlled, humane procedure. This historical account traces the early use of ether and chloroform, highlighting key figures such as William T.G. Morton and John Snow, and the rapid adoption of anesthesia in both America and Europe. It describes the initial skepticism and ethical debates surrounding pain relief, as well as the profound impact on surgical practice, patient outcomes, and the professionalization of anesthesiology. The narrative also examines the social and cultural shifts that accompanied the acceptance of anesthesia, including changes in patient expectations and the role of the anesthesiologist.

Measuring the dynamic balance of integration and segregation underlying consciousness, anesthesia, and sleep

bioRxiv April 15, 2024 Hyunwoo Jang, G. Mashour, A. Hudetz et al. preprint

A dynamic balance between integration and segregation in functional brain networks is necessary for consciousness. A new fMRI-based measure, the integration-segregation difference (ISD), was developed to capture both aspects. Using this metric, changes from conscious wakefulness to loss of responsiveness induced by the anesthetic propofol showed a profound shift toward segregation in the whole brain and all subnetworks during anesthesia. Brain networks displayed similar sequences of disintegration and subsequent reintegration during loss and return of responsiveness. Machine learning models identified awake versus unresponsive states and their transitions with up to 93% accuracy. Metastability was more closely linked with integration, while complexity was linked with segregation. Analysis of a sleep dataset revealed similar findings, demonstrating that the integration-segregation balance can differentiate among various conscious and unconscious states.

Functional geometry of the cortex encodes dimensions of consciousness

Nature Communications January 5, 2023 Zirui Huang, G. Mashour, A. Hudetz

Dimensions of consciousness such as wakefulness and awareness are encoded in multiple neurofunctional dimensions of the brain's cortical geometry. Disruptions of consciousness from pharmacological, neuropathological, or psychiatric causes degrade one or more major cortical gradients depending on the condition. Network-specific reconfigurations within this multidimensional gradient space are associated with behavioral unresponsiveness across various etiologies, and these spatial reconfigurations correlate with a temporal disruption of structured transitions of dynamic brain states. The work provides a unifying neurofunctional framework for multiple dimensions of human consciousness in both health and disease.

Differential classification of states of consciousness using envelope- and phase-based functional connectivity

Neuroimage May 14, 2021 C. Duclos, C. Maschke, Yacine Mahdid et al.

Amplitude-based (AEC) and phase-based (wPLI) measures of functional connectivity yield different patterns of brain network activity across states of consciousness. In nine healthy participants undergoing propofol and isoflurane anesthesia, AEC showed strongest connectivity during deep unconsciousness, while wPLI showed strongest connectivity during full consciousness. AEC outperformed wPLI in classifying anesthetic-induced unconsciousness from baseline (83.7% accuracy), distinguishing deep from light unconsciousness (66.3% vs. 56.2%), and separating responsiveness from unresponsiveness (76.0% vs. 63.6%). Combining both measures did not improve accuracy over AEC alone. The authors conclude that envelope-based measures better detect alterations in brain connectivity across levels of anesthetic-induced unconsciousness.

Consciousness, Anesthesia, and Acetylcholine

Anesthesiology February 26, 2021 D. Pal, G. Mashour

Cortical acetylcholine concentration tracks with the capacity for conscious experience: high during wakefulness, low during slow-wave sleep, and high again during REM sleep when dreaming occurs. General anesthetics produce parallel changes—GABAergic drugs like propofol and sevoflurane lower acetylcholine and reduce the probability of experience, while non-GABAergic drugs like ketamine and nitrous oxide raise acetylcholine and increase the likelihood of dreams or hallucinations. Interventions that raise brain acetylcholine reverse anesthetic traits or reduce potency in humans and rodents, whereas lesions of cholinergic neurons in the basal forebrain reduce anesthetic requirements for isoflurane and propofol.

Temporal circuit of macroscale dynamic brain activity supports human consciousness

Science Advances March 1, 2020 Zirui Huang, Jun Zhang, Jinsong Wu et al.

Consciousness depends on frequent access between two key brain networks: the default mode network and the dorsal attention network, which normally alternate their activity in an anticorrelated manner. A 'temporal circuit' of dynamic brain activity trajectories regulates transitions between these networks. Balanced reciprocal accessibility of brain states within this circuit characterizes consciousness, while isolation of the networks from the temporal circuit is associated with unresponsiveness from various causes. These findings advance understanding of how anticorrelated brain systems support consciousness.

Relationship of critical dynamics, functional connectivity, and states of consciousness in large‐scale human brain networks

Neuroimage March 1, 2019 Heonsoo Lee, D. Golkowski, D. Jordan et al.

Large-scale brain networks function near a critical state, and partial phase locking—a network science concept—shapes the characteristic functional connectivity and asymmetric anterior-posterior phase lag entropy (PLE) topography at this critical state, with low PLE for high-degree nodes and high PLE for low-degree nodes. Comparing PLE topography at criticality with electroencephalogram data from baseline consciousness, isoflurane anesthesia, ketamine anesthesia, vegetative state/unresponsive wakefulness syndrome, and minimally conscious state shows that topographical similarity and strength of PLE differentiate these pharmacologic and pathologic states of consciousness. This provides a theory-based metric to quantify how far a perturbed brain network deviates from criticality, rather than merely determining critical or non-critical state.

Opportunities and challenges for a maturing science of consciousness

Nature Human Behaviour February 1, 2019 M. Michel, Diane M Beck, N. Block et al.

Advancing scientific research on consciousness is important for addressing clinical and ethical issues in neurology and mental health. To support this field, funding priorities must be set carefully, and challenges such as job creation and media misrepresentation need to be addressed.

Estimating the Integrated Information Measure Phi from High-Density Electroencephalography during States of Consciousness in Humans

Frontiers in Human Neuroscience February 16, 2018 Hyoungkyu Kim, A. Hudetz, Joseph W Y Lee et al.

A practical method estimates integrated information (Φ), a measure proposed by integrated information theory to be related to consciousness, from 128-channel EEG. The method alone cannot distinguish certain anesthetic states, but combining Φ with four EEG connectivity parameters—power, frequency, functional connectivity, and modularity—differentiates all states of consciousness. The association of Φ with EEG connectivity during anesthesia offers a new approach to applying the theory, potentially useful for characterizing consciousness in sleep, anesthesia, and coma.