View clinical trials related to Cerebral Hemorrhage.
Filter by: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
A randomized, multicenter study comparing two strategies: 1 / standard management of systolic blood pressure according to international recommendations (systolic blood pressure <185 mm Hg) versus 2 / intensive blood pressure management Systolic with a target <130 mm Hg.
The purpose of this study is to assess the ability of the Fluids Monitor to detect hemispheric bioimpedance asymmetry associated with acute brain pathology in patients presenting with suspected Acute Ischemic Stroke (AIS).
Spontaneous non-traumatic intracerebral hemorrhage (ICH) is a common symptom in clinical practice and is the most serious among all types of stroke.Recently, as a relatively mainstream and recognized INTERACT2 (five well-known international studies in the cerebrovascular field: IMS-III, MR RESCUE, SYNTHESIS EXPANSION, INTERACT2, CHANCE) studies have shown that in patients with standard systolic blood pressure Early intensive antihypertensive therapy does not increase the incidence of death or serious adverse events. The above studies confirm the safety and efficacy of early potent depression.In 2017, Anesthesiology published a META analysis of intraoperative hypotension and blood pressure versus baseline fluctuations. The final outcome showed that 20% of blood pressure in the study was similar to MAP <65 mmHg, regardless of the duration of the duration There will be postoperative myocardial and renal damage. Ischemia is a very important cause of organ damage. Myocardial injury is closely related to the level of mean arterial pressure, while ischemia and ischemic reperfusion injury are closely related to postoperative acute renal injury.There is no targeted guideline for ICH perioperative blood pressure management, especially intraoperative blood pressure management, and no previous studies have studied most of the studies involving ICH patients with conservative treatment, ICH patients with surgical treatment There are few reports on blood pressure control during surgery.
Rationale: Approximately 10% of neonates admitted to neonatal intensive care units develop a major hemorrhage. In an attempt to avert this severe complication various preventive measures have been implemented. One of these is the transfusion of platelets to premature neonates with low platelet counts. However, this practice is not supported by scientific evidence. Most neonates with low platelet counts never experience a major bleeding and platelet transfusions may carry risks of volume overload or infection. Therefore, it is important to treat only those patients that truly benefit from this intervention. We urgently need a scientifically based tool to predict which premature neonates are at risk for major bleeding. A few prediction models do exist, but these only allow assessment of bleeding risk at baseline, and do not correct for changes in clinical status during the admission period. We believe that adding this feature to our prediction model will significantly improve our ability to predict bleeding. The prediction model will also be helpful in developing individualized transfusion guidelines as it helps us to predict which neonates would benefit from prophylactic platelet transfusions. Main objective: to develop a dynamic prediction model for bleeding in preterm neonates with low platelet counts. Study design: retrospective observational cohort study. Study population: neonates with a gestational age at birth of < 34 weeks admitted to a neonatal intensive care unit (NICU), with a thrombocyte count of less than 50x109/L will be included. Assessments: only data generated through standard care will be collected. This includes platelet counts, cerebral ultrasounds, information about bleeding and transfusions, and multiple clinical variables. Main study endpoint: major bleeding during admission Statistical analyses: dynamic prediction model using landmarking.
Intracerebral hemorrhage [ICH] is the most feared complication of oral anticoagulation [OAC], yet therapeutic strategies are limited reflected by overall weak guideline recommendations. Studies investigating acute interventions especially in patients with ICH taking non-vitamin-K-oral-anticoagulants [NOAC] remain inconclusive. Further, acute management issues in OAC-ICH patients (hematoma evacuation surgery, prevention of acute thromboembolic events, intraventricular fibrinolysis) still need to be investigated. Therefore, this observational study (RETRACE-II) represents the follow-up investigation to RETRACE (German-wide Multicenter Analysis of Oral Anticoagulant-associated Intracerebral Hemorrhage, study-period 2006-2010, NCT01829581), now spanning a study-period from 2011 until 2015 with 19 participating tertiary care centers nation-wide in Germany. Data pooling of the two RETRACE studies, altogether including more than 2500 patients treated at 22 centers over a 10 year period will allow statistically appropriate analyses of different outcomes.
This is a multicenter, randomized, sham-controlled, patient- and assessor-blinded, and parallel trial to explore the effectiveness and safety of electroacupuncture (EA) therapy, compared with sham EA, for poststroke shoulder pain.
The Chongqing intracerebral hemorrhage study is a multi-center, prospective, observational study led by professor Qi Li from Chongqing Medical University. Professor Peng Xie will be the senior consultant for the study. The Chongqing intracerebral hemorrhage study will focus on the epidemiology, natural history, pathogenesis, laboratory, radiological aspects, clinical outcomes and the effects of treatment in patients with intracerebral hemorrhage. The clinical, laboratory, imaging, genetic and outcome data of patients diagnosed with acute intracerebral hemorrhage will be prospectively collected. The prognosis of patients with intracerebral hemorrhage will be assessed by using several outcome measure scales at different time points.
This study aims to explore the effectiveness of tranexamic acid (also known as trans amine or TXA) in reducing hematoma expansion in patients with hemorrhagic stroke when given in the acute phase. METHODOLOGY This will be a Phase III, parallel-group double-blind randomised placebo control trial. Patients allocated to the control group will receive standard care for hemorrhagic stroke according to the 2015 American Heart Association guidelines. Patients allocated to the intervention group will receive, in addition to standard care, a loading dose of intravenous TXA 1gm within 3 hours of symptom onset followed by a 1gm maintenance dose over 8 hours. Timing and dosing are in accordance to previous established study protocols. Patients in the intervention group will only receive a single treatment course of TXA. Study subjects will be identified by either the on-duty clinicians from the Department of Neurosurgery of this institution or by the study investigators. Should the patient meet study eligibility criteria consent will be obtained either from the patient or from his/her next of kin. 1:1 block randomization will be performed by a remote internet randomization service by accessing a website. Patients allocated to the intervention arm will have 1gm of TXA added to 100ml of normal saline (0.9%) infused over 10 minutes as a loading dose. This is then followed by a maintenance dose of 1gm of TXA in 500ml of intravenous isotonic solution infused at 120mg/hour (60ml/hour) for 8 hours. Patient's allocated to the control arm will have an equal volume of normal saline (0.9%) infused as a placebo. The patient and the outcome assessor will be blinded to study group allocation. The primary endpoint of this study will be to assess the percentage change in brain blood clot volume by computed tomography brain scans on admission, 6 hours later, at 24 hours and at 1 week.
To date, no neuroprotective drugs have demonstrated clinical efficacy in intracerebral hemorrhage (ICH). This study will use intravenous (IV) minocycline in ICH to evaluate for (1) safety/ tolerability and (2) evaluate for clinical efficacy