View clinical trials related to Ischemic Stroke.
Filter by:The purpose of this study is the evaluation and comparison of blood pressure variability indices and ambulatory arterial stiffness index obtained by ambulatory blood pressure monitoring as prognostic indicators in the functional outcome of acute ischemic stroke.
Stroke is the leading case of neurologic swallow dysfunction, or dysphagia. Post stroke dysphagia is associated with approximately 50% increase in the rate of pneumonia diagnoses; aspiration pneumonia is the most common respiratory complication in all stroke deaths, accounting for a three-fold increase in the 30-day post stroke death rate. The long-term goal of this systematic line of research is to decrease the morbidity, mortality, and health care costs associated with disordered airway protection following stroke. The overall hypothesis central to this proposal is that the ability to protect the airway is dependent upon a continuum of multiple behaviors, including swallowing and cough. Safe, efficient swallowing prevents material from entering the larynx and lower airway, and effective cough ejects aspirate or mucus material. Currently, only one end of the continuum, swallowing, is rigorously assessed in stroke patients. However, ineffective or disordered cough is indicative of the inability to eject aspirate material or clear mucus and secretions from the lower airway. Ineffective clearance and subsequent accumulation of material in the lower airway increases the risk of chest infection. Hence, patients at the greatest risk for chest infection would not only have disordered swallowing (dysphagia) but also disordered cough (dystussia), meaning they are more likely to aspirate material and then cannot effectively eject the aspirate from the airway. There is a high likelihood that swallowing and cough are simultaneously disordered following stroke. To date, there is a treatment that targets both swallowing and cough function in stroke patients. Expiratory muscle strength training (EMST) increases expiratory muscle strength (Baker et al., 2005) and there is evidence that supports its use to improve both swallow and cough functions in patients with Parkinson's disease (Troche et al., in press). This cross-system, device-driven approach to rehabilitating multiple contributors to airway protection deficits is highly desirable in the stroke population due to the likelihood of the co-occurrence of both swallow and cough disorders. To date, EMST has not been tested in stroke patients. We propose that by including cough in the screening, evaluation and treatment processes for disorders of airway protection, we will be able to better identify and treat patients most at risk for airway compromise and associated sequelae.
Stroke is accompanied by local inflammatory response and systemic immunosuppression. Immunosuppression markers are associated with the occurrence of medical complications (infections), whereas inflammatory markers are associated with worse functional prognosis. This prospective study tries to validate in acute stroke patients the prognostic usefulness of a panel of immune biomarkers that have previously been associated with various clinical outcomes. The identification of beneficial and harmful immune responses in cerebral ischemia will allow the prediction of the clinical course of the patients and will be helpful in designing immunomodulatory therapeutic strategies for acute stroke.
The primary objective of the study is to assess the safety and effectiveness of SPG stimulation with the ISS in a 24 hour window, in patients with an acute ischemic stroke in the anterior circulation, who received Mechanical Thrombectomy and/or IV-rtPA and Standard of Care.
The purpose of this study is to evaluate whether general anesthesia or sedation technique is preferable during embolectomy for stroke, measured in terms of three months neurological impairment. In addition we study if there is any difference between the methods regarding complication frequency.
Limited access is a major hurdle in the treatment of AIS; many hospitals, especially rural hospitals, do not have the infrastructure or medical support to effectively treat AIS patients.5 Failure to recognize the signs and symptoms of stroke by the patient and/or emergency medical services (EMS) is another barrier to the timely treatment of AIS. Several studies, including the Paul Coverdell National Acute Stroke Registry (PCNASR), have reported low rates of adherence to stroke care guidelines, suggesting that many AIS patients do not receive proper treatment according to established guidelines. Thus, there remains an increasing need to assess and address the barriers that prevent patient access to proper AIS treatment. Annually, approximately 20,000 patients are discharged from Wisconsin hospitals with the diagnosis of stroke and an estimated 4,000 patients die from stroke each year in WI. To date, there have been no statewide studies initiated in Wisconsin to assess the regional barriers to the treatment of AIS patients with thrombolytic or endovascular therapy, and many hospitals do not routinely collect and analyze AIS patient data. The goal of the Improving Patient Access to Stroke Therapy (IMPACT) pilot study is to engage community hospitals statewide to identify the regional barriers to AIS therapy in WI.
This pilot trial will be the first step toward direct comparison of delivery of endovascular reperfusion therapy to intravenous rt-PA in a time-to-treatment framework shown as most effective by the NINDS rt-PA Stroke Trial. A randomized trial is justified for the following reasons: 1) The high rate of death and disability associated with ischemic stroke despite treatment with intravenous rt-PA mandates critical analysis of alternate therapies with therapeutic potential, 2) endovascular treatment for acute ischemic stroke is expanding in North America without compelling evidence of safety and efficacy from well-designed clinical trials, 3) critical cost-effectiveness analysis cannot be done without acquiring pertinent outcomes data from controlled studies.
This study is a French multicenter prospective study including 5 stroke units with available MRI and F-MISO PET for patients with acute ischemic stroke. Background and Purpose: 18F-Fluoromisonidazole (FMISO) PET has been used to identify hypoxic tissues in animals and stroke patients. While MRI has become the gold standard acute stroke imaging, no published study has compared FMISO PET and MRI. The aim of this prospective study is to identify hypoxic tissues in 40 patients with acute ischemic stroke with F-MISO PET and to compare the location and the outcome of these hypoxic cells with MRI datas (weighted diffusion and FLAIR) and to clinical outcome.
Despite abundant evident supporting the use of acute reperfusion therapy in the setting of acute ischemic stroke (AIS), adoption of this practice in routine clinical care is poor. We hypothesize that a significant barrier is the difficulty in weighing the benefits and risks of rt-PA treatment in the care of an individual patient, a problem compounded by the time urgency of decision-making and clinical fears that weigh risks of treatment more heavily than benefits. The goal of this Quality Improvement (QI) study is to leverage an IT solution that we have developed, ePRISM, that executes multivariable risk models with patient-specific data so that a personalized estimate of an individual's outcomes (both risks and benefits) with and without rt-PA, can be generated so support safer, more effective clinical care. Through an earlier project, we will have programmed ePRISM with the best available risk-stratification models and developed a clinically useful format for presenting the data to support clinical decision-making in AIS. Through QI, we propose to identify the optimal mechanism for integrating the tool within the routine flow of patient care in preparation for more definitive studies, or dissemination strategies, to improve the treatment of patients with AIS.
Primary purpose of the trial is to demonstrate the arisen of focal cortical atrophy, localized in the ipsilateral primary motor area, measured in mm, three months after infarction of internal capsule. The patient is compared to himself between day zero to ten and three months. The study hypotheses are: - A focal cortical atrophy of the ipsilesional primary motor area occurs after cerebral infarction of the internal capsule. It is measurable accurately and reproducibly by MRI at three months. Other brain areas within the voluntary motor system will also be explored (supplementary motor area, pre motor area). - This atrophy is correlated with achievement of pyramidal tract, assessed by the fractional anisotropy of its fibers. - This atrophy is correlated with disability at three months, assessed by Rankin score.