Clinical Trials Logo

Traumatic Brain Injury clinical trials

View clinical trials related to Traumatic Brain Injury.

Filter by:

NCT ID: NCT03260569 Completed - Clinical trials for Traumatic Brain Injury

Inhaled Nitric Oxide in Brain Injury

Start date: December 12, 2018
Phase: Phase 3
Study type: Interventional

This study will evaluate the changes in respiratory mechanics following traumatic brain injury and determine the effect of inhaled nitric oxide on gas exchange.

NCT ID: NCT03260478 Completed - Clinical trials for Traumatic Brain Injury

HEMOglobin Transfusion Threshold in Traumatic Brain Injury OptimizatioN: The HEMOTION Trial

HEMOTION
Start date: August 31, 2017
Phase: N/A
Study type: Interventional

Most trauma deaths are related to traumatic brain injury (TBI). Although the management of patients has improved, mortality remains unacceptably high, and half of survivors of moderate and severe TBI are left with major functional impairment. Current management guidelines are based on limited evidence and practice is highly variable. Most acutely ill patients with TBI will develop anemia, which may decrease oxygen delivery to a fragile brain. While clinical practice is moving towards transfusing at low hemoglobin (Hb) levels, experts have expressed concerns regarding restrictive strategies, which may adversely affect clinical outcomes in TBI. Our primary objective is to evaluate the effect of red blood cell (RBC) transfusion thresholds on neurological functional outcome. We hypothesize that a liberal transfusion strategy improves outcomes compared to a restrictive strategy.

NCT ID: NCT03257904 Completed - Clinical trials for Traumatic Brain Injury

iNtrAcranial PreSsurE in Intensive Care (ICU) (SynapseICU)

SynapseICU
Start date: March 15, 2018
Phase:
Study type: Observational

Intracranial pressure (ICP) monitoring is the most common neuromonitoring modality used in neurocritical care units (NCCU) around the world. Uncertainties remain around intracranial pressure monitoring both in traumatic and non-traumatic brain injury, and variation in clinical practice of intracranial pressure monitoring exists between neurocritical care units. The objectives of the study will explore intracranial pressure monitoring variation in practice to prioritise uncertainties in the clinical management of critical care patients with acute brain injury and support further collaborative hypotheses-based prospective studies.

NCT ID: NCT03246607 Not yet recruiting - Clinical trials for Traumatic Brain Injury

Venous and Cerebral Glucose Microdialysis in Neurocritical Care: Validation & Correlation

Start date: January 26, 2020
Phase:
Study type: Observational

This study evaluates the validity of an intravascular continuous glucose monitoring microdialysis probe, and compares the values to routinely inserted cerebral glucose microdialysis to evaluate the hypothesised relationship between intracranial and intravascular glucose levels.

NCT ID: NCT03243539 Active, not recruiting - Stroke Clinical Trials

Implementation of Neuro Lung Protective Ventilation

NEUROVENT
Start date: August 31, 2017
Phase: N/A
Study type: Interventional

Patients who experience lung injury are often placed on a ventilator to help them heal; however, if the ventilator volume settings are too high, it can cause additional lung injury. It is proven that using lower ventilator volume settings improves outcomes. In patients with acute brain injury, it is proven that maintaining a normal partial pressure of carbon dioxide in the arterial blood improves outcomes. Mechanical ventilator settings with higher volumes and higher breathing rates are sometimes required to maintain a normal partial pressure of carbon dioxide. These 2 goals of mechanical ventilation, using lower volumes to prevent additional lung injury but maintaining a normal partial pressure of carbon dioxide, are both important for patients with acute brain injury. The investigators have designed a computerized ventilator protocol in iCentra that matches the current standard of care for mechanical ventilation of patients with acute brain injury by targeting a normal partial pressure of carbon dioxide with the lowest ventilator volume required. This is a quality improvement study with the purpose of observing and measuring the effects of implementation of a standard of care mechanical ventilation protocol for patients with acute brain injury in the iCentra electronic medical record system at Intermountain Medical Center. We hypothesize that implementation of a standardized neuro lung protective ventilation protocol will be feasible, will achieve a target normal partial pressure of carbon dioxide, will decrease tidal volumes toward the target 6 mL/kg predicted body weight, and will improve outcomes.

NCT ID: NCT03233646 Recruiting - Multiple Sclerosis Clinical Trials

Retinal Imaging in Neurodegenerative Disease

Start date: July 20, 2017
Phase:
Study type: Observational

This study aims to develop and evaluate biomarkers using non-invasive optical coherence tomography (OCT) and OCT angiography (OCTA) as well as ultra-widefield (UWF) fundus photography to assess the structure and function of the retinal and choroidal microvasculature and structure in persons with mild cognitive impairment (MCI) and Alzheimer's Disease (AD), Parkinson's Disease (PD), or other neurodegenerative disease, diseases as outlined.

NCT ID: NCT03227354 Not yet recruiting - Clinical trials for Traumatic Brain Injury

Validation of Non-invasive Absolute Intracranial Pressure Monitoring

Start date: September 2017
Phase: N/A
Study type: Observational

Primary objective of this study is to assess the accuracy and precision of intracranial pressure (ICP) measurement in patients after traumatic brain injury and subarachnoid hemorrhage when using simultaneous, non-invasive measurement compared to standard, invasive, measurement. Secondary objective: is to assess the correlation of intracranial pressure (ICP) measurement in patients after traumatic brain injury and subarachnoid hemorrhage between simultaneous, non-invasive measurement and standard, invasive,measurement

NCT ID: NCT03222297 Completed - Clinical trials for Traumatic Brain Injury

Effects of Early Skull Repair With Titanium Mesh on Cerebral Blood Flow and Neurological Recovery

Start date: January 1, 2013
Phase: N/A
Study type: Observational

To evaluate the feasibility of CT perfusion technique to monitor the changes of blood perfusion in the brain tissue before and after skull repair using titanium mesh. To determine the best timing for skull repair using the three-dimensional titanium mesh; to compare the effects of early (1-3 months after decompression) and late-stage (6-12 months after decompression) skull repair on neurologic rehabilitation.

NCT ID: NCT03215771 Completed - Stroke Clinical Trials

Myoelectric Upper Limb Orthosis Use by Persons With TBI and Stroke

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

The objective of this study was to document longitudinal outcomes in persons with traumatic brain injury (TBI) or stroke using the myoelectric upper limb orthosis with powered elbow and grasp in conjunction with motor learning-based therapy using both patient centric performance and patient reported outcome measures. Longitudinal observation allowed the investigators to detect both the initial therapeutic effects as well as the later functional outcomes of orthosis use. The investigators planned to recruit 15 Veterans and non-veterans who had TBI or stroke and upper limb impairment. The study required 29 visits over 22 weeks and was divided into three parts: orthotic fitting, therapy/training (9 weeks), and home use (9 weeks). Therapeutic and functional benefits were evaluated every 2 to 3 weeks over 18 weeks using simple, short clinical tests.

NCT ID: NCT03186157 Terminated - Stroke Clinical Trials

Prevalence of Trephined Syndrome After Decompressive Craniectomy

TS
Start date: January 16, 2012
Phase:
Study type: Observational

Decompressive craniectomy is frequently used to treat increased intracranial pressure or an intracranial mass effect. Trephined Syndrome describes a neurological deterioration, which is attributed to a large craniectomy. The symptomatology is varied but includes headache, aggravation of a hemisyndrome or cognitive disorders, often has an orthostatic component and improves or disappears with cranioplasty. The incidence of Trephined Syndrome has been reported between 7% and 26%. However, it might be underestimated if the course of cognitive functions before and after cranioplasty were insufficiently documented.