View clinical trials related to Intracerebral Hemorrhage.
Filter by:Though TTM is ubiquitously used in the neuro-intensive care unit, there is limited experience with the use of TTM after intracerebral hemorrhage (ICH), the most devastating type of stroke. TTM may be a an intervention to improve patient outcomes. This trial addresses the safety and tolerability of a protocol of ultra-early TTM after ICH/IPH and may be the basis for future larger clinical trials.
Approximately 12% of strokes in the United States are hemorrhagic.1 Hemorrhagic stroke can lead to multiple complications including fever that is not infectious. Identifying the cause of fever can help physicians choose the best care for the patient to try and prevent further damage to the already injured brain. Bacterial infection is one possible cause of fever in the stroke patient; however an incorrect diagnosis of infection can lead to unnecessary antibiotic use. Better screening tools for infection are being developed to help fight the problem of antibiotic resistance and unnecessary antibiotic use. Unnecessary use of antibiotics in patients increases the risk of adverse events and overall healthcare costs. Procalcitonin (PCT) is one such screening tool which has been used previously to help tell apart bacterial and nonbacterial causes of infection in other disease states; however, PCT has not been studied in hemorrhagic stroke patients. The purpose of this study is to understand the progress of PCT in hemorrhagic stroke patients in order to see whether PCT can be a useful marker for infection in these patients.
Patients with severe ischemic and hemorrhagic strokes, who require mechanical ventilation, have a particularly bad prognosis. If they require long-term ventilation, their orotracheal tube needs to be, like in any other intensive care patient, replaced by a shorter tracheal tube below the larynx. This so called tracheostomy might be associated with advantages such as less demand of narcotics and pain killers, less lesions in mouth and larynx, better mouth hygiene, safer airway, more patient comfort and earlier mobilisation. The best timepoint for tracheostomy in stroke, however, is not known. This study investigates the potential benefits of early tracheostomy in ventilated critically ill patients with ischemic or hemorrhagic stroke.
The purpose of this study is to find risk factors for hemorrhagic stroke, specifically intracerebral hemorrhage (ICH), among Caucasians, African Americans, and Hispanics.
The specific aims of this study are to: 1. Definitively determine the therapeutic benefit of the intensive treatment relative to the standard treatment in the proportion of patients with death and disability (mRS 4-6) at 3 months among subjects with ICH who are treated within 4.5 hours of symptom onset. 2. Evaluate the therapeutic benefit of the intensive treatment relative to the standard treatment in the subjects' quality of life as measured by EuroQol at 3 months. 3. Evaluate the therapeutic benefit of the intensive treatment relative to the standard treatment in the proportion of hematoma expansion (defined as increase from baseline hematoma volume of > 33%) and in the change from baseline peri-hematoma volume at 24 hours on the serial computed tomographic (CT) scans. 4. Assess the safety of the intensive treatment relative to the standard treatment in the proportion of subjects with treatment-related serious adverse events (SAEs) within 72 hours.
Background: One third of all ICH patients require intubation and mechanical ventilation and 1/3 of all ventilated patients require tracheostomy (i.e.≈10% of all ICH patients require tracheostomy). As shown previously, predisposing factors for tracheostomy are hematoma volume, hemorrhage location, presence of intraventricular hemorrhage (IVH), and occlusive hydrocephalus as well as presence of COPD (Huttner HB et al 2006 CVD). Sustained restricted vigilance and impaired consciousness after ICH is likely to result in failure of extubation, raise in incidence of ventilator-associated pneumonia, increased amount of sedative drugs and prolonged duration of neurocritical care. Hence an early tracheostomy may be beneficial in terms of reduced duration of mechanical ventilation. Basic hypothesis: Compared to patients with conventional ("late") tracheostomy between day 12 - 14, patients with "early" tracheostomy within 72h after admission will have: - shorter cumulative time of mechanical ventilation - less incidence of ventilator-associated pneumonia - less consumption of sedative drugs - shorter duration of stay in neurocritical care unit Randomization: Consecutive eligible patients are randomly assigned to Either "early" tracheostomy within 72h after hospital admission Or "late" tracheostomy (= control group; undergoing conventional tracheostomy between day 12 - 14 if extubation fails) Both groups receive plastic tracheostomy
In Patients with minor head injury measurement of protein S100 will be introduced to the emergency departement as another tool to rule out intracerebral bleeding.
The purpose of this study is to determine if usage of early lumbar drainage leads to less shunt surgery and less catheter associated complications in patients with communicating hydrocephalus after intracerebral hemorrhage with severe ventricular involvement.
The purpose of this study is to find out what effects, good and bad, the medication Albumin has on subjects who have experienced a type of stroke known as an intracerebral hemorrhage (ICH). An ICH is when spontaneous bleeding into the brain occurs due to fragile blood vessels. This research is being done because currently there is no effective treatment for ICH. However, study investigators believe that Albumin, the medication being tested in this study, is safe and may help improve patient recovery from ICH over time. Subjects will be enrolled in the study for a total of 90 days. Following enrollment, subjects will be randomized to receive 3 daily injections of either Albumin or Placebo (liquid with no drug), and will receive 3 brain MRI scans (with and without contrast), as described below. All subjects will be monitored continuously through 96 hours after enrollment (5 days) in the Georgetown ICU. Blood tests and clinical evaluations of neurological status, consisting of questions about subjects' functional abilities and medical history, will occur in the Georgetown ICU once every 24 hours through post-enrollment Day 5. Additionally, subjects will receive daily chest x-rays, and daily EKGs (exams that monitor how your heart is doing by placing electrodes, or small monitors, on your skin in specific locations). Similar clinical evaluations will occur at Day 30 and Day 90. Should subjects be discharged at these time points, day 30 assessments will occur over the phone, and day 90 assessments will occur in-person at Georgetown University Medical Center.
Rationale: Management of blood pressure (BP) in the acute phase of intracerebral hemorrhage (ICH) remains controversial. Although it has been established that there is a transient moderate reduction of perihematoma cerebral blood flow (CBF) in acute ICH, the effect of BP treatment is unknown. The potential for exacerbation of CBF has precluded routine aggressive BP reduction. Aim and Hypothesis: The primary study aim is to demonstrate the feasibility and safety of acute BP reduction to < 150 mmHg systolic using a standardized protocol in ICH patients. It is hypothesized that CTP will not demonstrate evidence of perihematoma ischemia following acute BP reduction. Design: ICH ADAPT is a randomized blinded endpoint trial. Acutely hypertensive ICH patients are randomized to a target systolic BP of < 150 mmHg or < 180 mmHg. Patients are treated with intravenous (IV) labetalol/hydralazine/enalapril. Study Outcomes: The primary outcome is cerebral blood flow in the perihematoma region, measured with CT perfusion, 2 hours after randomization. Secondary outcomes include the difference in BP at 1 and 2 hours post-randomization in the two treatment groups and hematoma expansion rates at 24 hours. Discussion: ICH ADAPT is the only randomized trial designed specifically to identify any hemodynamic changes in the perihematoma region secondary to aggressive BP management. The results of this trial will facilitate ongoing and future studies aimed at determining the efficacy of rapid BP reduction in acute ICH.