How consciousness is lost in states such as sleep or anesthesia remains a mystery. To gain insight into this phenomenon, we conducted concurrent recordings of electrophysiology signals in the anterior cingulate cortex and whole-brain functional magnetic resonance imaging (fMRI) in rats exposed to graded propofol, undergoing the transition from consciousness to unconsciousness. Our results reveal that upon the loss of consciousness (LOC), as indicated by the loss of righting reflex, there is a sharp increase in low-frequency power of the electrophysiological signal. Additionally, simultaneously measured fMRI signals exhibit a cascade of deactivation across a pathway including the hippocampus, thalamus, and medial prefrontal cortex (mPFC) surrounding the moment of LOC, followed by a broader increase in brain activity across the cortex during sustained unconsciousness. Furthermore, sliding window analysis demonstrates a temporary increase in synchrony of fMRI signals across the hippocampus-thalamus-mPFC pathway preceding LOC. These data suggest that LOC might be triggered by sequential activities in the hippocampus, thalamus and mPFC, while wide-spread activity increases in other cortical regions commonly observed during anesthesia-induced unconsciousness might be a consequence, rather than a cause of LOC. Taken together, our study identifies a cascade of neural events unfolding as the brain transitions into unconsciousness, offering critical insight into the systems-level neural mechanisms underpinning LOC.
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http://dx.doi.org/10.1101/2024.05.20.594986 | DOI Listing |
Epilepsy Behav
January 2025
Department of Neurology, Sheffield Teaching Hospitals NHS Foundation Trust, Royal Hallamshire Hospital, Glossop Road, Sheffield S10 2JF UK; Division of Neuroscience, University of Sheffield, Royal Hallamshire Hospital, Glossop Road, Sheffield S10 2JF UK.
Objectives: Previous studies have identified features in patient's history and seizure descriptions supporting a clinical diagnosis of functional / dissociative seizures (FDS). However, most studies involved patients with chronic seizure disorders. This study explores the value of reported features for a clinical diagnosis of FDS in an adult population with a first presentation of transient loss of consciousness (TLoC).
View Article and Find Full Text PDFAsian J Transfus Sci
September 2022
Department of Physiology, Mahatma Gandhi Medical College, Sri Balaji Vidyapeeth (Deemed to be University), Puducherry, India.
Vasovagal syncope (VVS) in donors is a transient loss of consciousness due to short-term global cerebral hypoperfusion, which has a rapid onset and has complete spontaneous recovery. VVS may be triggered by pain, fear, anxiety, or emotional upset and loss of blood perse. It is an exaggeration of an adaptive response meant to assist in reducing the amount of bleeding/loss of blood.
View Article and Find Full Text PDFInt J Rehabil Res
January 2025
Department of Paediatric Rehabilitation, The Edmond and Lily Safra Children's Hospital, Chain-Sheba Medical Centre, Ramat-Gan, Israel.
Mild traumatic brain injury (mTBI) can lead to lasting adverse outcomes, including post-traumatic stress disorder (PTSD) or post-traumatic stress symptoms (PTSS). This study examined whether PTSD and PTSS can occur even after mTBI and tracked the evolution of PTSD in the long term. A total of 85 youth post-mTBI (median age: 10.
View Article and Find Full Text PDFN Engl J Med
January 2025
From the Departments of Emergency Medicine (E.F.S.), Radiology (B.P.A.), Medicine (S.S.A.), and Neurology (D.J.L.), Massachusetts General Hospital, and the Departments of Emergency Medicine (E.F.S.), Radiology (B.P.A.), Medicine (S.S.A.), and Neurology (D.J.L.), Harvard Medical School - both in Boston.
J Neurol
January 2025
Morehouse School of Medicine, Neuroscience Institute, 720 Westview Drive SW, Atlanta, GA, 30310, USA.
Objectives: The ability to differentiate epileptic- and non-epileptic events is challenging due to a lack of reliable molecular seizure biomarker that provide a retrospective diagnosis. Here, we use next generation sequencing methods on whole blood samples to identify changes in RNA expression following seizures.
Methods: Blood samples were obtained from 32 patients undergoing video electroencephalogram (vEEG) monitoring.
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