View clinical trials related to Cerebral Hemorrhage.
Filter by: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.
Evaluation of blood pressure variability in the acute phase of intraparenchimal cerebral haemorrhage and its consequences to clinical outcome
Study of heterogeneity in associations between heart rate and the initial presentation of 12 cardiovascular diseases.
Study of heterogeneity in associations between social deprivation and the initial presentation of 12 cardiovascular diseases.
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).
This pilot study will examine the safety and the clinical outcomes after minimally invasive surgery (using a parafascicular technique guided by diffusion-tensor imaging) for intracerebral hemorrhage in patients selected according to evidence-based criteria. The investigators will compare 30 day and 90 day outcomes of patients who have surgery to that predicted by previously reported models for recovery after ICH, and will also describe any surgical complications related to the procedure. The investigators hypothesize that this technique will have the same mortality rate and function outcome, if not better, when compared to the outcomes predicted by previous models.
In order to investigate the time window of acute intracerebral hemorrhage(AICH) by "Blood Activating and Stasis Dispersing" therapy and to verify traditional methods if it would influence or enlarge the brain hematoma, test is made by random double-blind controlled. Patients are classified to (0-6h)and (6-72h) teams. Herbs is separated too. The period of the therapy lasts two weeks, and the follow up should last three months. The main indexes are mortality rate, disability rate and the brain hematoma situation. The review is made by the reference to (NIHSS),(GCS) and so on. So, the window time is determined through this test.
Dense array EEG and EIT (electrical impedence tomography) are new technologies that can add to information needed to diagnose neurological problems in infants - both preterm and term. The investigators propose a method to test these technologies in the preterm population to determine its safety and ease of use. The investigators will test on preterm infants of 30-34 weeks gestation, starting first with the older infants (32-34 weeks) then moving down to the smaller population (30-32 weeks). In both groups the investigators will start with a short time period and gradually extend the time as safety is established. All studies will be conducted at Shands Teaching Hospital at the University of Florida.
Premature babies can be very sick and have bleeding in the brain. Giving babies more blood before cutting the umbilical cord by delayed cord clamping or umbilical cord milking has been shown to reduce the risk of bleeding in the brain. This may be related to improving perfusion to the brain. However, some studies suggest that delayed cord clamping may not increase hemoglobin or blood volume in babies delivered by cesarean section. Milking the umbilical cord may give more blood in babies delivered by Cesarean Section may improve perfusion and reduce bleeding in the brain.
Early hematoma growth (HG) after spontaneous intra-cerebral/intra-parenchymal hemorrhage (IPH) is common and associated with neurological deterioration and poor clinical outcome. Temperature modulation to hypothermia (Temperature, 32-34°C) has been associated with reduction or improvement of physiopathologic processes associated with inflammatory activation and degradation of blood-brain barrier after all types of brain injury. In this sense, we believe that the initiation of an ultra-early protocol of active temperature modulation or Targeted Temperature Management (TTM) to mild induced hypothermia (MIH, 32-34°C) may be associated with good safety and tolerability profile, less HG and cerebral edema after IPH by modulation of systemic and local inflammatory responses, so we hypothesize that TTM to MIH will be a safe/tolerable and effective therapy to limit HG and cerebral edema after IPH.