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Traumatic Brain Injury clinical trials

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NCT ID: NCT02210221 Completed - Clinical trials for Traumatic Brain Injury

CENTER-TBI: Collaborative European NeuroTrauma Effectiveness Research in TBI

CENTER-TBI
Start date: December 19, 2014
Phase:
Study type: Observational [Patient Registry]

The research aims of the CENTER-TBI study are to: 1. better characterize Traumatic Brain Injury (TBI) as a disease and describe it in a European context, and 2. identify the most effective clinical interventions for managing TBI. Specific aims 1. To collect high quality clinical and epidemiological data with repositories for neuro-imaging, DNA, and serum from patients with TBI. 2. To refine and improve outcome assessment and develop health utility indices for TBI. 3. To develop multidimensional approaches to characterisation and prediction of TBI. 4. To define patient profiles which predict efficacy of specific interventions ("Precision Medicine"). 5. To develop performance indicators for quality assurance and quality improvement in TBI care. 6. To validate the common data elements (CDEs) for broader use in international settings, and to develop a user-friendly web based data entry instrument and case report form builder. 7. To develop an open database compatible with Federal Interagency Traumatic Brain Injury Research (FITBIR). 8. To intensify networking activities and international collaborations in TBI. 9. To disseminate study results and management recommendations for TBI to health care professionals, policy makers and consumers, aiming to improve health care for TBI at individual and population levels. 10. To develop a "knowledge commons" for TBI, integrating CENTER-TBI outputs into systematic reviews.

NCT ID: NCT02207803 Completed - Clinical trials for Traumatic Brain Injury

A Culturally Sensitive Intervention for TBI Caregivers in Latin America

Start date: January 2015
Phase: N/A
Study type: Interventional

Traumatic brain injury (TBI) patients in Latin America experience high levels of disability and extremely poor functional outcomes, and their informal caregivers play a key role in their rehabilitation and care. To improve TBI rehabilitation through stronger informal caregiving, the proposed study will develop and evaluate an evidence--based and culturally sensitive Transition Assistance Program for informal caregivers of patients with TBI in Latin America during the patient's transition from hospital to home. This study will generate findings that can provide empirically supported guidance to clinicians regarding the provision of culturally tailored rehabilitation services for TBI caregivers in Latin America and in the U.S.

NCT ID: NCT02203292 Completed - Clinical trials for Traumatic Brain Injury

Transfusion Requirements After Head Trauma

TRAHT
Start date: August 2014
Phase: Phase 2
Study type: Interventional

TRAHT is a pilot randomized clinical trial designed to evaluate safety and feasibility of two red blood cells transfusion thresholds in moderate or severe traumatic brain injured patients

NCT ID: NCT02189525 Completed - Clinical trials for Traumatic Brain Injury

Evaluation of Mild TBI in Collegiate Athletes

AWARE
Start date: August 2014
Phase:
Study type: Observational

The purpose of this study is to evaluate blood-based biomarkers before and after sports-induced concussion using neuroimaging and head impact sensor technology.

NCT ID: NCT02169310 Recruiting - Clinical trials for Traumatic Brain Injury

Neural Basis of Decision-Making Deficits in Traumatic Brain Injury

Start date: November 18, 2014
Phase: Phase 1
Study type: Interventional

Background: People with a traumatic brain injury (TBI) can have trouble making the best possible decisions. Researchers want to learn more about the parts of the brain that control decision making. They also want to know how these are different between people. This may help predict how people make decisions after TBI. Objective: To learn more about which parts of the brain are involved in making decisions and how decisions may be hurt after TBI. Eligibility: Adults age 18 to 60. Design: Participants will be screened with medical history and physical exam. They will also take memory, attention, concentration, and thinking tests. Participants will do up to 2 experiments. For Experiment 1, participants may have 3 scans: PET: a chemical is injected through a thin tube into an arm vein. Participants lie on a bed that slides in and out of the scanner. MRI: a strong magnetic field and radio waves take pictures of the brain. Participants lie on a table that slides in and out of a metal cylinder. It makes loud knocking noises. Participants will get earplugs. They might be asked to do a task. A coil will be placed over the head. MEG: a cone with magnetic field detectors is lowered onto participants head. After the scans, participants will perform a decision-making task. For Experiment 2, participants will perform a decision-making task before and after receiving transcranial direct current stimulation (tDCS). tDCS: wet electrode sponges are placed over participants' scalp and forehead. A current passes between the electrodes. It stimulating the brain. Participants will return 24-48 hours later to repeat the decision-making task.

NCT ID: NCT02167971 Completed - Clinical trials for Traumatic Brain Injury

Brain Stimulation for Traumatic Brain Injury

TMS/DAI
Start date: January 2014
Phase: Phase 2
Study type: Interventional

The purpose of this study is to determine whether repetitive Transcranial Magnetic Stimulation (rTMS) is effective in the cognitive rehabilitation of patients with diffuse axonal injury(DAI) after Traumatic Brain Injury(TBI).

NCT ID: NCT02152540 Completed - Clinical trials for Traumatic Brain Injury

rTMS to Improve Cognitive Function in TBI

rTMSTBI
Start date: October 1, 2014
Phase: N/A
Study type: Interventional

This project will study 40 Veterans identified with symptoms understood to characterize mild to moderate Traumatic Brain Injury (TBI) including Post Traumatic Stress Disorder (PTSD). Following screening and informed consent, Veterans will be randomly assigned to treatment with repetitive Transcranial Magnetic Stimulation (rTMS) or sham rTMS (placebo). Additional examinations will compare brain imaging (structural and functional MRI scans at rest) across participants at baseline, after acute rTMS treatment, and at 6 month followup. The VA population differs significantly from populations that have been included in prior trials of rTMS for many conditions such as depression, chronic pain, and PTSD. Many returning Operation Enduring Freedom (OEF)/Operation Iraqi Freedom (OIF) personnel and Veterans with concussion histories report cognitive problems, such as impaired attention, verbal fluency, poor planning, reduced working memory, and mental flexibility. The investigators hope to show the efficacy and durability of rTMS in treating these symptoms safely in Veterans with co-morbidities.

NCT ID: NCT02148783 Terminated - Clinical trials for Traumatic Brain Injury

Dopamine Receptor Imaging to Predict Response to Stimulant Therapy in Chronic TBI

Start date: September 2014
Phase: Phase 2
Study type: Interventional

Deficits in memory, attention, cognitive, and executive functions are the most common disabilities after traumatic brain injury (TBI). Dopamine (DA) neurotransmission is implicated in these neural functions and dopaminergic pathways are recognized to be frequently disrupted after TBI. One of the most widely used DAergic drugs is methylphenidate (Ritalin®). Methylphenidate increases synaptic DA levels by binding to presynaptic dopamine transporters (DAT) and blocking re-uptake. PET with methylphenidate challenge to measure tonic DA release provides valuable insight into the molecular basis of attention-deficit hyperactivity disorder (ADHD) and addiction, as well as practical information regarding likely effectiveness of therapy (1). The objectives of this study are to use PET imaging with [11C]-raclopride, a D2/D3 receptor ligand, before and after administering methylphenidate, to measure endogenous DA release in patients who are experiencing problems with cognition, attention and executive function in the chronic stage after TBI. In addition, we will use TMS to test short intracortical inhibition, a gamma-aminobutyric acid receptor A (GABAA) - mediated phenomenon, which is under partial DA control, as a measure of dopaminergic activity on and off methylphenidate.

NCT ID: NCT02148367 Withdrawn - Clinical trials for Traumatic Brain Injury

Effect of Recombinant Erythropoietin on Numbers of Circulating Endothelial Progenitor Cells in Subacute TBI

TBI-EPO
Start date: September 2014
Phase: Phase 2
Study type: Interventional

- Traumatic brain injury (TBI) is the leading cause of death and disability in people under age 45 in industrialized countries. Significant numbers of US veterans from the wars in Iraq and Afghanistan return with TBI. However, to date, there are no specific neuroprotective treatment options with proven clinical efficacy. - Erythropoietin (EPO) is approved by the FDA to treat anemia and has comprehensive preclinical data supporting its neuroprotective and neuroregenerative efficacy following traumatic (TBI) and a wide range of other acquired brain insults. Injury to small and medium-sized cerebral blood vessels is a well recognized consequence of TBI. EPO increases production of endothelial progenitor cells (EPCs) and promotes angiogenesis and neovascularization after TBI. EPO also promotes neurogenesis and improves functional recovery in animals after experimental stroke and TBI. Neovascularization is coupled with neurogenesis, and augmentation of both processes by EPO may result in lessened cognitive deficits. Neovascularization by EPO may prevent post-traumatic deficits in cerebrovascular reactivity (CVR), which can be measured noninvasively using magnetic resonance imaging (MRI). - This proposal is for a randomized, placebo-controlled pilot clinical trial designed to obtain data on the effects of EPO in humans with persistent post-concussive symptoms after TBI. The primary objective is to evaluate effect of 4 week administration of recombinant erythropoietin on numbers of circulating endothelial progenitor cells in patients with persistent symptoms during the subacute period after TBI. This information will guide the design of a future definitive study.

NCT ID: NCT02141360 Terminated - Clinical trials for Traumatic Brain Injury

Advanced MRI Applications for Mild Traumatic Brain Injury - UCSF

TBI-2
Start date: July 2014
Phase: N/A
Study type: Interventional

This hypothesis-generating feasibility study is being conducted to determine potential associations between a broad range of clinical neurological symptoms and MR images, data, and clinical findings involved in mild traumatic brain injury (mTBI). These associations will be examined over the acute and sub-acute period (approximately 3 months) following injury to provide information useful for optimization of MR pulse sequences for mTBI applications. The intent of this study is to broadly generate a range of potential mTBI biomarkers detectable using investigational MR pulse sequence technologies. Feasibility data attained in this study may be used for engineering program decision-making and in support of future scientific assessment, engineering development, published research databases or registries mTBI data and images, and other purposes determined by the Sponsor. The results of this study are not intended for use in regulatory submissions. Subjects will be examined on commercially available MR scanners using investigational or standard of care MR coils and a series of investigational Application Packs containing a predetermined set of MR pulse sequences optimized by GEHC.