View clinical trials related to Intracerebral Hemorrhage.
Filter by:The Addressing Real-world Anticoagulant Management Issues in Stroke (ARAMIS) registry is designed to provide important and timely insight into the management of acute stroke patients who are on novel oral anticoagulants in community practice.
The main purpose of this study is to determine whether deferoxamine and xingnaojing injection is effective and safe as a treatment for intracerebral hemorrhage.
The purpose of this study is to 1. Early identify patients based on clinical manifestation, imaging, gene and histology, explore diagnostic tools 2. get gene repertoire of Chinese 3. Build a cerebral amyloid angiopathy (CAA) prospective cohorts, observing the disease history, and exploring prognostic factors of hemorrhage in CAA patients
There were lack of data and analysis about medical management, etiology, and long-term outcome of Intracerebral Hemorrhage (ICH) in Beijing. In this study the investigators do acute CT angiography, a non-invasive imaging method to explore etiology and prognostic risk factors of ICH. Further the investigators will aim to develop and validate a risk score for predicting 1-year functional outcome after ICH.
The vast majority of intracerebral hemorrhage (ICH) patients present with elevated blood pressure(BP). Management of BP is controversial with two competing rationales. There is some evidence that hyperacute treatment may improve outcomes by reducing the rate of hematoma expansion. Physicians have been reluctant to reduce BP early after ICH onset, fearing reduced cerebral blood flow (CBF) will increase ischemia and increase the risk of further damage. Other confounding mediators to further ischemic injury following ICH include increased platelet activity, withdrawal of antithrombotic therapy, endothelial dysfunction, inflammation and hypercoagulability. This study is phase II of the ICH-ADAPT study. The investigators hypothesize that aggressive antihypertensive therapy will alter the natural history of heamatoma growth, improving outcomes after Intracranial Hemorrhage (ICH). The previous phase I ICH-ADAPT study has established the safety of early BP treatment. The investigators have designed a phase II study in which ICH patients are randomized to aggressive versus conservative BP treatment using a deferred consent procedure. An adaptive randomization will be used to treat BP to < 140 mmHg SBP or < 180 mmHg SBP. Treatment must be implemented as soon as possible after radiological confirmation of diagnosis. Antihypertensive therapy must begin within 6 hours of symptom onset. The patient will be re-imaged 24 hours later. The patient will have continuous non-invasive BP and heart rate(HR) monitoring for a minimum of 24 hours. Antihypertensive drug use and dosage will be recorded with BP and HR. Patients will be monitored regularly until study completion. MRI's will be done at 48 hours, day 7 and day 30. This imaging will help to detect ischemic changes that may occur. Blood will be collected at the same time as the MRI. Blood analysis will be done to possibly identify biomarkers that may be putative mediators of ischemic injury in ICH patients.
The investigators hypothesize that treatment with the iron chelator, Deferoxamine Mesylate, improves the outcome of patients with brain hemorrhage. The purpose of this study is to determine whether treatment with Deferoxamine Mesylate is of sufficient promise to improve outcome before pursuing a larger clinical trial to examine its effectiveness as a treatment for intracerebral hemorrhage.
Patients with a supratentorial intracerebral hemorrhage will be randomly assigned to either the experimental group which will keep them at a normal body temperature or the standard of care group. The investigators propose to test the hypothesis that prophylactic forced normothermia in patients with ICH leads to less systemic inflammation and decreased perihematomal edema.
Intracerebral hemorrhage is bleeding into the brain and is a major cause of stroke and other complications. Brain injury from intracerebral hemorrhage occurs in two phases. The early phase involves the mechanical compression of brain tissue by the expanding hematoma. In a later phase, brain swelling develops causing further compression that may lead to brain herniation and death. This study investigates the neuroprotective role of haptoglobin, in minimizing the development of brain swelling following intracerebral hemorrhage.
This study is determining the clinical outcomes, based on neurological testing, for the parafascicular minimally invasive clot evacuation technique. We will collect data from the time of surgery up until 90 days post procedure. We will also be looking at financial data as well. - H(0): there is no economic benefit to the system with early surgical intervention for ICH - Alternative Hypothesis:H(1) Assuming clinical equipoise, i.e., no benefit in clinical outcome with early surgical intervention (null hypotheses) H(0) is correct), the ability to accelerate the patients care from the entry point to the exit point will result in a significant economic advantage to the system through cost reduction.
The purpose of this study is to determine if cooling the neck of patients with ICH decreases brain temperature. In addition, the investigators will determine if the device improves the delivery of oxygen to the brain. A third goal is to determine if cooling the neck lowers intracranial pressure (which is often times high in patients after ICH).