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Active clinical trials for "Brain Injuries, Traumatic"

Results 231-240 of 1495

Inhaled Nitric Oxide for Microvascular Dysfunction in Traumatic Brain Injury

Traumatic Brain Injury

Traumatic brain injury (TBI) causes acute deficits in cerebral perfusion which may lead to secondary injury and worse outcomes. Inhaled nitric oxide (iNO) is a vasodilator that increases cerebral blood flow and is clinically used for hypoxic respiratory failure in neonates and adults. The investigators will perform a randomized controlled trial of iNO treatment in TBI patients acutely after injury. The investigators will then assess perfusion changes with optic neuromonitoring, blood biomarkers, and 6 month clinical outcomes.

Not yet recruiting16 enrollment criteria

Baricitinib for Moderate and Severe Traumatic Intracerebral Hemorrhage/Contusions

Traumatic Brain Injury

The purpose of the present study is to study the effect of baricitinib administration on outcome of participants with moderate and severe traumatic intracerebral hemorrhage/contusions. A multi-center randomized control trial will be conducted. Participants with a radiological diagnosis of traumatic intracerebral hemorrhage/contusions and an initial GCS score of 5-12 will be screened and enrolled in the first 24 hours after traumatic brain injury.

Not yet recruiting23 enrollment criteria

Brain Stimulation for Concussion

Transcranial Magnetic StimulationMagnetic Resonance Imaging3 more

The goal of this clinical trial is to test a new type of magnetic brain stimulation in patients with persistent post-concussive symptoms. Participants will undergo detailed MRI scans before and after 30 treatment sessions (of 3-10 minutes each). The main questions the study aims to answer are: Will this new type of treatment result in fewer symptoms and better daily functioning? What are the effects of this treatment on brain functioning?

Not yet recruiting6 enrollment criteria

External Lumbar Drainage to Reduce ICP in Severe TBI: a Phase 1 Clinical Trial

Severe Traumatic Brain InjuryIntracranial Hypertension

The goal of this phase 1 randomized controlled safety and feasibility clinical trial are to determine the safety of external lumbar drainage (ELD) in select patients with severe Traumatic Brain Injury (TBI). The main questions it aims to answer are (i) if ELD is feasible and (ii) safe to perform in severe TBI patients who have radiological evidence of patent basal cisterns and midline shift <5mm without increasing the risk of neurological worsening or cerebral herniation. All participants will receive routine usual care. The study group will additionally have ELD for cerebrospinal fluid (CSF) drainage. A comparison will be made between the usual treatment plus ELD (interventional) groups, and the usual treatment (control) groups on incidence rate of neurological worsening or cerebral herniation events, and whether total hours with raised intracranial pressure (ICP) are different.

Not yet recruiting20 enrollment criteria

Autologous Adipose Derived Mesenchymal Stem Cells for Chronic Traumatic Brain Injury

Traumatic Brain Injury

The global objective of this study is to establish the safety and investigate the potential treatment effect of an intravenous infusion of HB-adMSCs (Hope Biosciences adipose-derived mesenchymal stem cells) on brain structure, neurocognitive/functional outcomes, and neuroinflammation after traumatic brain injury and/or hypoxic-ischemic encephalopathy in adults.

Not yet recruiting16 enrollment criteria

Clinical Significance of circMETTL9 Gene in Traumatic Brain Injury

TBI (Traumatic Brain Injury)

Objective: The relevance of circMETTL9 to the degree of injury, disturbance of consciousness, cognitive function and prognosis in patients with moderate to severe traumatic brain injury (TBI) remains unknown. The purpose of this study was to investigate the effect of circMETTL9 on the degree of injury, disturbance of consciousness, cognitive function and prognosis after TBI.

Recruiting7 enrollment criteria

Long-term Follow-up in Severe Traumatic Brain Injury

Traumatic Brain InjuryNeurodegenerative Diseases1 more

The underlying pathophysiology following traumatic brain injury (TBI) in how different neurodegenerative conditions are developed are still unknown. Different neuroinflammatory and neurodegenerative pathways have been suggested. The goal of this study is to follow-up patients that have been treated for TBI at the neurosurgical department about 10-15 years after their initial injury, in order to analyze fluid biomarkers of inflammation, injury and degeneration and associate these with structural imaging and long-term functional outcome. The investigators aim to invite about 100 patients back and perform advanced magnetic resonance imaging protocols, sample cerebrospinal fluid and blood for different bio- and inflammatory markers, study genetic modifications and associate it with outcomes being assessed through questionnaires. The investigators' hypothesis is that patients with ongoing inflammatory processes will present with more fluid biomarkers of neurodegeneration, worse clinical presentation and also more structural/atrophic signs on imaging. This will result in an increased understanding of the interplay between neuroinflammation and neurodegeneration in chronic TBI, as well as a panel of tentative biomarkers that could be used to assess level of disability following TBI and chronic traumatic encephalopathy (CTE).

Recruiting3 enrollment criteria

Effects of Nurse-Guided BBTi for Improving Insomnia : in Patients at the Recovery Following Traumatic...

InsomniaTraumatic Brain Injury

nsomnia is a frequent complaint reported by patients with TBI, and exacerbates their ability to return to productive activity, which subsequently elevate related healthcare costs and burden. Existing literatures found that effects of CBTi, first-line therapy for insomnia, on post-traumatic insomnia is still debated, indicating that developing an alternative nonpharmacological therapy for alleviating insomnia following TBI is required. Besides, digital health is one of strategies to achieve precision health. Thus far, knowledge regarding whether mobile-delivered BBTi has non-inferiority effects as BBTi in treating insomnia is still lacking. Therefore, a RCT with a large sample size to examine the immediate and lasting effects of BBTi and mobile-delivered BBTi on insomnia, mood disturbances, and cognitive dysfunctions in patients following TBI at the recovery stage compared with the control participants.

Not yet recruiting11 enrollment criteria

BRAINI-2 Elderly Mild TBI European Study

Mild Traumatic Brain Injury

Mild traumatic brain injury (mTBI) is one of the most frequent emergencies in the elderly population. Despite most mTBI are managed with cranial computed tomography (CT), only 10% of CTs show lesions, determining CT overuse. The use of serum glial fibrillary acidic protein (GFAP) and Ubiquitin C-terminal Hydrolase-L1 (UCH-L1) have shown potential for ruling out the need for cranial CT. However evidence on biomarker use in mild TBI were not based on studies that included aged participants and patients with comorbidities for which biomarker levels could vary. This is why there is a need for a prospective study that assesses the predictive performance of these two biomarkers in the elderly population, both in elderly patients suffering mild TBI and in a reference population, including patients and participants with and without comorbidities.

Recruiting22 enrollment criteria

Epigenetic Effects on Traumatic Brain Injury Recovery

Traumatic Brain InjuryOrthopedic Injury

Methylation of the brain-derived neurotrophic factor (BDNF) gene is involved in both the biological encoding of childhood adversity and neuroplasticity following traumatic brain injury (TBI). This research will characterize BDNF methylation during recovery from TBI in children and investigate this novel biomarker as a potential biological mechanism underlying the known association between childhood adversity and poorer neurobehavioral outcomes following TBI in childhood. Findings from this research will contribute to an improved understanding of why some children display good recovery following TBI, whereas many others suffer from chronic neurobehavioral impairments.

Recruiting9 enrollment criteria
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