View clinical trials related to Intracerebral Hemorrhage.
Filter by:Serum uric acid level is a commonly measured biomarker. The association between serum uric acid level and the risk of developing cardiovascular diseases has been observed in some studies, while others showed controversial results. Estimation of this association may help to predict cardiovascular outcomes and may guide new treatment strategies. The hypothesis is that increased serum uric acid level is associated with a range of cardiovascular diseases.
The overall goal of this study is to develop mesenchymal stem cell therapy for treatment of acute spontaneous hemorrhagic stroke.
The primary objective of this multicenter randomized controlled study is to compare the safety and efficacy of minimally invasive hematoma evacuation with the Artemis Neuro Evacuation Device to best medical management for the treatment of intracerebral hemorrhage (ICH).
The purpose of this study is to investigate the efficacy and safety of Deproteinised Calf Blood Serum Injection in alleviating perihematomal edema (PHE) and secondary brain injury, as well as neurologic deficits in patients with acute intracerebral hemorrhage (ICH).
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.
The clinical evidence shows that patients with a first episode of intracerebral hemorrhage (ICH) are increasingly old and with greater comorbidity with a recognized impact over mortality. The prediction of the outcome of ICH is not only crucial in the emergin attention to identify those patients with favorable criteria that can benefit from possible treatments; but also after hospital discharge, in primary care where the prediction should facilitate the organization and management of a wide variety of resources: familiar, health and social welfare. Even though there are different scales that predict mortality, these are not sufficiently useful in choosing a treatment or do not provide sufficient data to the family to decide. Due to the characteristics of the population with ICH described in these works, it seems useful to propose a prognostic index (ICHCat) to identify the variables associated to its incidence and mortality and that, in addition, to make adjustments in the comparisons of the survival between different series of patients or different treatment modalities in primary care.
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.
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.
Randomised controlled trials (RCTs) demonstrate a substantial benefit from oral anticoagulant drugs for the prevention of stroke and systemic embolism in non-valvular atrial fibrillation (AF). However, these RCTs excluded patients with prior intracerebral haemorrhage (ICH). Therefore, guidelines are unable to recommend whether oral anticoagulant drugs, in particular non-vitamin K antagonist (called direct OAC) - can be used for patients with AF after an intracerebral haemorrhage. Roughly 30% of adults with ICH have AF but in 2017 it remains unclear whether they should start oral anticoagulant drugs, be treated with left atrial appendage closure (LAAC) or avoid anticoagulation and LAAC.
A multicenter, open-label phase 2a trial of CN-105 in patients with supratentorial intracerebral hemorrhage (ICH). Patients will be evaluated for eligibility within 12 hours of symptom onset. Eligible participants (approximately 60) will receive CN-105 administered intravenously (IV) for a 30-minute infusion every 6 hours for up to a maximum of 3 days (13 doses) or until discharge (if earlier than 3 days). Participants will be monitored daily throughout the Treatment phase of the study (up to a maximum of 5 days) and will receive standard-of-care treatment for the duration of the study. Additional protocol assessments will be required during the Treatment phase. After discharge from the hospital, participants will enter a 3-month Follow-up phase, with a clinic visit at 30 days and a follow-up telephone interview with telephone-validated Modified Rankin Scale (mRS) at 90 days after first dose of study agent. Funding Source - FDA OOPD