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Brain Injuries, Traumatic clinical trials

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NCT ID: NCT04063215 Active, not recruiting - Clinical trials for Traumatic Brain Injury

A Clinical Trial to Determine the Safety and Efficacy of Hope Biosciences Autologous Mesenchymal Stem Cell Therapy for the Treatment of Traumatic Brain Injury and Hypoxic-Ischemic Encephalopathy

Start date: January 1, 2020
Phase: Phase 1/Phase 2
Study type: Interventional

This study aims to determine the safety of HB-adMSC infusion and treatment effects of HB-adMSC infusion on brain structure, neurocognitive/functional outcomes, and neuroinflammation after subacute and chronic neurological injury in adults.

NCT ID: NCT04058379 Active, not recruiting - Trauma, Brain Clinical Trials

Artificial Intelligence Analysis of Initial Scan Evolution of Traumatic Brain Injured Patient to Predict Neurological Outcome

RADIOMIC-TBI
Start date: January 1, 2020
Phase: N/A
Study type: Interventional

We assume that an early iterative automatic CT scan analysis (D0, D1 and D3) by different AI approaches will allow an early differentiation of the tissues evolution after TBI. Our objective is to couple theses scan profiles to a neurological evolution, measured by therapeutic intensity.

NCT ID: NCT03995173 Active, not recruiting - Clinical trials for Alcohol Use Disorder

Pilot rTMS for AUD+mTBI

TMS_AUD+mTBI
Start date: March 21, 2019
Phase: Phase 2
Study type: Interventional

This is a pilot randomized controlled trial (RCT) for Veteran participants with alcohol use disorder co-occurring with mild traumatic brain injury and/or post-traumatic stress disorder. The treatment intervention is repetitive Transcranial Magnetic Stimulation (rTMS) and the goal is to reduce alcohol craving with this treatment. The study will enroll 20 Veteran participants. Half of these participants will receive real rTMS and half of the participants will receive placebo rTMS. rTMS treatment will be provided over 10 sessions that will occur once every weekday for 2 weeks. Veteran participants will then complete follow-up phone calls to further evaluate alcohol craving and other symptoms.

NCT ID: NCT03965611 Active, not recruiting - Clinical trials for Traumatic Brain Injury

Evolution of Oropharyngeal and Rectal Microbiota After Severe Traumatic Brain Injury

BBAX
Start date: April 21, 2019
Phase:
Study type: Observational

Modifications of the human gut microbiota have been associated with different pathological conditions such as obesity, inflammatory bowel diseases and neurodegenerative diseases. Recently the " Brain-Gut Axis ", a bidirectional communication axis between brain and gut, has been described. In recent animal studies, an acute brain injury was associated with rapid modifications of the gut microbiota. In humans, traumatic brain injury (TBI) is a leading cause of death and disability. The patterns of gut and oropharyngeal microbiota following TBI are unknown. The primary purpose of this study is to characterize gut and oropharyngeal microbiota of patients with severe TBI.

NCT ID: NCT03905031 Active, not recruiting - Clinical trials for Traumatic Brain Injury

Defining the Operating Characteristics of NIRS in the Diagnosis of Pediatric Traumatic Intracranial Hemorrhage

Start date: April 15, 2019
Phase: N/A
Study type: Interventional

In this study, investigators look at a different type of technology that might help to avoid having to perform CT scans in certain patients suspected of having a head injury. Near-infrared spectroscopy (NIRS) uses a specific light wavelength to determine if there is bleeding into the head as a result of trauma. Investigators will study NIRS, using a device called the Infrascanner model 2000, to determine if it is as good at detecting bleeding in the head as CT scan, which is the current gold standard. Investigators will try to determine if NIRS can rule in or rule out bleeding into the head, and perhaps this can help to avoid subjecting these youth to the potentially harmful effects of radiation. Investigators will also study how easy it is to use NIRS so that it might become a standard part of the workup for children with suspected head injury.

NCT ID: NCT03892291 Active, not recruiting - Clinical trials for Mild Traumatic Brain Injury

Objective Dual-task Turning Measures for Return-to-duty Assessments

reTURN
Start date: September 1, 2018
Phase:
Study type: Observational

The overall objective is to evaluate objective dual-task turning measures for use as rehabilitative outcomes and as tools for return-to-duty assessments in individuals with mild traumatic brain injury (mTBI).This project consists of three goals examining the I) Diagnostic Accuracy, II) Predictive Capacity, and III) Responsiveness to Intervention of dual task turning measures in individuals with mTBI. The investigators hypothesize that objective measures of dual-task turning will have high diagnostic accuracy, predictive capacity, and responsiveness to intervention in people with mTBI.

NCT ID: NCT03887962 Active, not recruiting - Stroke Clinical Trials

Virtual Environment Rehabilitation for Patients With Motor Neglect Trial

VERMONT
Start date: May 1, 2017
Phase: N/A
Study type: Interventional

Motor neglect describes a loss of function without a loss of strength, reflexes or sensation. Motor neglect has been described in patients with traumatic brain injury, stroke and chronic pain conditions, e.g. complex regional pain syndrome. These conditions affect hundreds of thousands of patients in the UK each year and motor neglect is a significant obstacle in their rehabilitation towards a good outcome. By focussing on improving motor neglect, outcomes including function and quality of life for these groups of patients may significantly improve. Motor neglect is potentially reversible. Rehabilitation using repetition, feedback and motivation are beneficial for optimal outcome. Current protocols use face-to-face physical therapies which can not optimise intensity due to a lack of resources. Furthermore, engagement with exercise is recognised to be poor, in part, due to a lack of attention. Innovative technologies may well improve engagement. Furthermore, telemedicine, or remote delivery of healthcare, offer opportunities in resource management, which can be delivered through the use of such innovative technologies. Virtual reality systems have been designed and utilised in rehabilitation in various conditions, e.g post-stroke, cerebral palsy and Parkinson's disease. Studies demonstrate improved function in both upper and lower limbs. Potentially more effective treatments for motor neglect utilising such technology are therefore available but need more formal evaluation. This protocol describes a Phase II randomised controlled trial for both in-patients and out-patients requiring rehabilitation with motor neglect from neurological causes (stroke, traumatic brain injury) and chronic pain conditions (Complex Regional Pain Syndromes, chronic low back pain and referred leg pain (sciatica)). The intervention will be a novel interactive virtual reality system using established technology and tailored software used in conjunction with a treadmill. The control group will be the same screen showing random static images whilst on the treadmill. Rehabilitation for each group will be offered in 3-4 sessions per week for 2 weeks. Each session will last about 30 minutes supervised by a physiotherapist. Follow-up will be by questionnaire at weeks 2, 6 and 12 and by face-to-face consultation at weeks 2 and 12.

NCT ID: NCT03885674 Active, not recruiting - Stroke Clinical Trials

Improving Medication Self-Administration and Health After Brain Injury

Start date: July 2016
Phase: N/A
Study type: Interventional

The purpose of this research study is to assess medication self-administration (MSA) and the impact of three different interventions on improving medication adherence. The findings for this study may help develop evidence-based reminder protocols to reduce medication self-administration errors after brain injury.

NCT ID: NCT03844607 Active, not recruiting - Clinical trials for Traumatic Brain Injury

Combined tDCS and Cognitive Training to Reduce Impulsivity in Patients With Traumatic Brain Injury

Start date: January 8, 2019
Phase: N/A
Study type: Interventional

Behavioral changes following a traumatic brain injury (TBI) are one of the biggest challenges for patients, as well as their family members and others involved in their recovery. One of the most common behavioral changes following TBI is the emergence of impulsive behavior, which has been associated with destructive, suicidal, and aggressive behavior, and is related to poor rehabilitation program adherence. The primary objective of this study is to investigate the effect of a novel neuroplasticity based intervention that combines cognitive training and transcranial direct current stimulation (tDCS) to reduce impulsivity and to improve outcomes and quality of life for those who have suffered a TBI.

NCT ID: NCT03827057 Active, not recruiting - Clinical trials for Traumatic Brain Injury

RECONsolidation of Traumatic Memories to ResOLve Post Traumatic Stress Disorder (RECONTROLPTSD)

RECONTROLPTSD
Start date: June 12, 2019
Phase: Phase 2/Phase 3
Study type: Interventional

Posttraumatic Stress Disorder (PTSD) is a common cause of morbidity in combat veterans, but current treatments are often inadequate. Reconsolidation of Traumatic Memories (RTM) is a novel treatment that seeks to alter key aspects of the target memory (e.g., color, clarity, speed, distance, perspective) to make it less impactful, and reduce nightmares, flashbacks, and other features of PTSD. The memory is reviewed in the context of an imaginal movie theater, presenting a fast (~45 sec) black and white movie of the trauma memory, with further adjustment as needed so the patient can comfortably watch it. Open and waitlist studies of RTM have reported high response rates and rapid remission, setting the stage for this randomized, controlled, single-blind trial comparing RTM versus prolonged exposure (PE), the PTSD therapy with the strongest current evidence base. The investigators hypothesize that RTM will be non-inferior to PE in reducing PTSD symptom severity post-treatment and at 1-year follow up; will achieve faster remission, with fewer dropouts; will improve cognitive function; and that epigenetic markers will correlate with treatment response. The investigators will randomize 108 active or retired service members (SMs) with PTSD to ≤10 sessions of RTM or PE, affording power to test our hypotheses while allowing for ≤ 25% dropouts. The investigators will use an intent to treat analysis, and the Clinician Administered PTSD Scale for the Diagnostic and Statistical Manual of Mental Disorders, 5th Edition, or DSM5 (CAPS-5), conducted by blinded assessors, will be the primary outcome measure. Secondary measures of depression (PHQ-9), anxiety (GAD-7), sleep (PSQI), and functional status (WHOQOL-100), will be assessed pre- and post-treatment, and at 2, 6, and 12 months. ANOVA will compare symptom severity over time within and between groups. The investigators will track comorbid TBI, anticipating it will not adversely impact response. More effective therapies for PTSD, with and without TBI, must be developed and evaluated. RTM is safe and promising, but requires testing against evidence-based interventions in well-designed randomized clinical trials (RCTs). The full study can be conducted either in person or via secure video conferencing.