View clinical trials related to Cerebral Hemorrhage.
Filter by:Through this study, the investigators are to prove that Cilostazol effectively prevent cardiovascular events in ischemic stroke patients with high risk of cerebral hemorrhage, along with no significant increase in the risk of occurrence of hemorrhagic side effects. The primary hypothesis of this study is; Cilostazol alone or with probucol will reduce the risk of cerebral hemorrhage without increase of cardiovascular events compared to aspirin in the ischemic stroke patients with symptomatic or asymptomatic old cerebral hemorrhage. This study will prove the superiority of cilostazol on the prevention of cerebral hemorrhagic events without increasing the cardiovascular events against aspirin and the superiority of probucol on the prevention of overall cardiovascular events.
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.
The investigators intend to show that DDAVP improves platelet activity from baseline to 60 minutes after treatment start.
Intraventricular hemorrhage and its resultant post-hemorrhagic hydrocephalus are significant risk factors for the development of neurodevelopmental delays in preterm infants. The purpose of this study is to determine 1) the incidence of progressive post-hemorrhagic ventricular dilatation (PHVD) in infants with severe intraventricular hemorrhage (IVH), 2) the effect of ventricular dilatation on brain status (cerebral oxygenation, electrical activity, and biomarkers of cerebral damage and repair), and 3) if using ventricular measurements, derived from cranial ultrasound to guide removal of cerebral-spinal fluid through an Omaya reservoir, will help resolve ventricular dilatation and decrease the need for ventriculo-peritoneal (VP) shunt insertion. The hypothesis of this research project is that, by using ventricular measurements to guide the frequency of CSF removal, the rate of VP shunt insertion will be decreased in preterm infants with severe IVH and PHVD. The investigators further hypothesize that cerebral injury, as measured by cerebrospinal fluid (CSF) concentration of biomarkers of neuronal and glial damage and inflammation, will decrease over time with resolution of PHVD.
Head trauma and severe cerebral hemorrhage are major risk factors for development of ventilator-associated pneumonia. In a previous open labelled, single center study the investigators showed that repeated oropharyngeal decontamination with povidone-iodine may be an effective strategy to decrease the prevalence of ventilator-associated pneumonia in patients with head trauma. The present study aims to confirm these results in a multicenter, double blind study including patients suffering from head trauma or cerebral hemorrhage.
The purpose of this study is to evaluate the superiority of effect of the modified micro-invasive aspiration and drainage and conservative medical therapy in the treatment of ICH spontaneously hypertensive scientifically.
Intracerebral haemorrhage (ICH) is the most feared complication in patients on vitamin K antagonists (VKA). VKA related ICH occurs 8-10 times more frequently and the mortality is 2 times higher than in non-anticoagulated patients. Mortality may rise up to 67%. The higher mortality rate may in part be due to the higher rate of haematoma expansion (HE) over a longer period after symptom onset. International guidelines recommend treatment of VKA-ICH with prothrombin complex (PCC) or fresh-frozen plasma (FFP) both in combination with Vitamin-K. But these recommendations are not based on randomized controlled trials. It is known that these drugs lower the INR, and thus it is assumed that normalization of coagulopathy may lead to haemostasis and reduction of HE. Safety and efficacy of these treatments have never been studied in a prospective controlled trial. The investigators' questions are: How potent are PCC and FFP in normalization of the INR? What is the safety profile of each of these drugs?
Context: A major lack of organ donors is a serious public health problem. It determines a prolonged delay before a transplant can be performed and thus a significant number of deaths of patients waiting for transplantation. The aim of this project is to reduce the delay of the diagnosis of brain death, and also to improve its diagnosis in the Intensive Care Unit. The diagnosis of brain death is strictly defined by the law and relies either on two consecutive flat electroencephalograms recorded at an interval of four hours, or on the lack of cerebral circulation during a brain angiography performed after suspecting brain death on the clinical exam. However, in usual practice, it is difficult to have all the needed clinical arguments, and their interpretation can be difficult in the pathological context. This may participate in the delay and the lack of patients potentially donors. Pre-study: In a pilot study, fifty subjects with severe cerebral lesions, had a continuous ECG recording. The investigators could find that a decrease in autonomic nervous system activity, as measured through the ECG, was correlated to the transition to brain death assessed by cerebral angiography. The loss of cardiac variability was always observed between two cerebral angiographies, one before and the second after brain death. This study allowed the investigators to calculate the threshold values of sympathetic and parasympathetic activities to confirm brain death.
Periventricular leukomalacia (PVL) is one of the most common brain injuries that occur in preterm infants. Inflammation, hypoxia-ischemia, free oxygen radical formation and excitotoxicity are all known pathogenic mechanisms that mediate this injury. Erythropoietin (EPO) has been shown to be protective against hypoxic-ischemic and inflammatory injuries. During the past decade, recombinant human Epo (rhEpo) has been widely used in preterm infants to prevent or treat the anemia of prematurity, in general, rhEpo has been considered to be safe and well tolerated in preterm infants. EPO was considered not capable of passing through blood-brain-barrier at low dose. Evidence from animal experiments reveals that rhEpo must be given in high doses at the beginning or within a short (up to 6 hours), critical time period after the onset of brain injury to achieve a significant neuroprotective effect. A recent study using high-dose rhEpo (3000 U rhEpo/kg body weight at birth) for neuroprotection in very preterm infants revealed that no signs of adverse effects of early high-dose rhEpo treatment in very preterm infants were identified. Contrary to this, a recent study in PVL of a rat model revealed that using a low dose rhEpo (50-100 U/kg) was effective in the treatment of brain damage induced by hypoxia-ischemia and did not affect normal oligodendrocyte maturity. On this basis, the researchers intent to investigate (1) whether low-dose rhEpo (100 U/kg) or high-dose rhEpo (3,000 U/kg) given to very preterm infants (gestation age < 32 weeks) immediately after birth and subsequently during the first 2 days is safe and possesses neuroprotective properties;(2) whether there are gender differences in response to the hypoxia-ischemic insult and EPO treatment; (3)the pharmacokinetics of low dose and high dose rhEPO. Very preterm infants with gestational age of < 32 weeks and admitted to the NICU are eligible for enrollment.