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Brain Communications|March 11, 2026
Tau biomarkers in Special Operations Forces with repeated blast exposure: a cross-sectional studyChieh-En Jane Tseng, Jennifer Guo, Natalie Gilmore, et al.
Neurology. Clinical Practice|October 30, 2024
Clinical Implementation of fMRI and EEG to Detect Cognitive Motor Dissociation: Lessons Learned in an Acute Care HospitalYelena G Bodien, Matteo Fecchio, Holly J Freeman, et al.
Medrxiv : the Preprint Server for Health Sciences|June 12, 2026
Contusion Volume is a Cross-cohort Predictor of Delayed Seizures after Traumatic Brain InjuryAjitesh Nanda, Xiaoying Sun, Frederic L W V J Schaper, et al.
Journal of Neurotrauma|April 15, 2011
Interaction between brain chemistry and physiology after traumatic brain injury: impact of autoregulation and microdialysis catheter locationIvan Timofeev, Marek Czosnyka, Keri L H Carpenter, et al.
Nature Neuroscience|May 26, 2022
A synergistic core for human brain evolution and cognitionAndrea I Luppi, Pedro A M Mediano, Fernando E Rosas, et al.
Critical Care (London, England)|February 24, 2021
Use and impact of high intensity treatments in patients with traumatic brain injury across Europe: a CENTER-TBI analysisJilske A Huijben, Abhishek Dixit, Nino Stocchetti, et al.
Annals of Neurology|October 5, 2012
A role for the default mode network in the bases of disorders of consciousnessDavinia Fernández-Espejo, Andrea Soddu, Damian Cruse, et al.
Scientific Reports|January 2, 2025
TILTomorrow today: dynamic factors predicting changes in intracranial pressure treatment intensity after traumatic brain injuryShubhayu Bhattacharyay, Florian D van Leeuwen, Erta Beqiri, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|June 20, 2008
Individual differences in psychotic effects of ketamine are predicted by brain function measured under placeboGarry D Honey, Philip R Corlett, Anthony R Absalom, et al.
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