Traumatic brain injury affects 69 million people every year. One of the main limitations in managing TBI patients is the lack of univocal diagnostic criteria, including the absence of standardized assessment methods and guidelines. Computerized axial tomography is the first-choice examination, despite the limited prevalence of positivity; moreover, its performance is undesirable due to the risk of radiological exposure, prolonged stay in emergency departments, inefficient use of resources, high cost, and complexity. Furthermore, immediacy and accuracy in diagnosis and management of TBIs are critically unmet medical needs. Especially in the context of sports-associated TBI, there is a strong need for prognostic indicators to help diagnose and identify at-risk subjects to avoid their returning to play while the brain is still highly vulnerable. Fluid biomarkers may emerge as new prognostic indicators to develop more accurate prediction models, improving risk stratification and clinical decision making. This review describes the current understanding of the cellular sources, temporal profile, and potential utility of leading and emerging blood-based protein biomarkers of TBI; its focus is on biomarkers that could improve the management of mild TBI cases and can be measured readily and directly in the field, as in the case of sports-related contexts.
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http://dx.doi.org/10.3390/jcm12072563 | DOI Listing |
PLoS One
January 2025
TBI Network, Auckland University of Technology, Northcote, Auckland, New Zealand.
Psychological interventions may make a valuable contribution to recovery following a mild traumatic brain injury (mTBI) and have been advocated for in treatment consensus guidelines. Acceptance and Commitment Therapy (ACT) is a more recently developed therapeutic option that may offer an effective approach. Consequently, we developed ACTion mTBI, a 5-session ACT-informed intervention protocol.
View Article and Find Full Text PDFAge Ageing
January 2025
North Bristol NHS Trust - Geriatric Medicine, Southmead Hospital, Southmead Road, Bristol BS10 5NB, UK.
Chronic subdural haematoma (cSDH) is a common subtype of traumatic brain injury, typically affecting older people living with frailty and multimorbidity. Until now, no published guideline has existed internationally to guide management, perhaps explaining why the care of the older cSDH patient varies between neurosurgical centres. The Improving Care in Elderly Neurosurgery Initiative guideline is the first guideline dedicated to the care of patients with cSDH across the entire patient pathway, from initial presentation through to rehabilitation and discharge after surgery.
View Article and Find Full Text PDFBrain Impair
January 2025
Faculty of Medicine and Health, The University of Sydney, Sydney, NSW, Australia.
Background Cognitive-communication disorders are highly prevalent after traumatic brain injury and have significant impacts on rehabilitation outcomes. TBIBank Grand Rounds was developed as an online multimedia resource to support clinical education about cognitive-communication disorders. The objective of this study was to survey speech pathology educators to establish their views towards TBIBank Grand Rounds.
View Article and Find Full Text PDFBrain Impair
January 2025
Department of Neuroscience, School of Translational Medicine, Monash University, Melbourne, Vic, Australia.
Background Many people with traumatic brain injury (TBI) report problems with social functioning that can have immediate and enduring impacts. We aimed to explore perceptions of social functioning after TBI and understand attitudes towards medication that could improve long-term social outcomes. Method A qualitative descriptive approach using interview methods was conducted in Victoria, Australia.
View Article and Find Full Text PDFNeurochem Res
January 2025
Department of Orthopaedics, Tianjin Hospital, Tianjin University, Tianjin, China.
Neuropathic pain (NP) imposes a significant burden on individuals, manifesting as nociceptive anaphylaxis, hypersensitivity, and spontaneous pain. Previous studies have shown that traumatic stress in the nervous system can lead to excessive production of hydrogen sulfide (HS) in the gut. As a toxic gas, it can damage the nervous system through the gut-brain axis.
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