[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100194894":3},{"organization":4,"armGroups":7,"interventions":19,"overallOfficials":24,"centralContacts":34,"locations":42,"responsibleParty":101,"collaborators":12,"id":104,"slug":105,"hasResults":106,"nctId":107,"briefTitle":108,"officialTitle":109,"acronym":110,"eligibilityCriteria":111,"healthyVolunteers":106,"sex":112,"minAge":113,"maxAge":114,"enrollmentInfo":115,"targetDuration":12,"studyType":118,"phases":119,"briefSummary":121,"conditions":122,"keywords":124,"overallStatus":126,"whyStopped":12,"lastUpdateSubmitDate":127,"lastUpdatePostDateStruct":128,"startDateStruct":130,"completionDateStruct":12,"leadSponsor":132,"locationsCount":133},{"fullName":5,"class":6},"Technische Universität Dresden","OTHER",[8,13],{"label":9,"type":10,"description":11,"interventionNames":12},"Control","NO_INTERVENTION","No ventilatory treatment; standard stroke care",null,{"label":14,"type":15,"description":16,"interventionNames":17},"Active","EXPERIMENTAL","Non-invasive ventilatory treatment with auto-BPAP plus standard stroke care",[18],"Device: Non-invasive ventilatory treatment with auto-BPAP",[20],{"type":21,"name":22,"description":12,"armGroupLabels":23,"otherNames":12},"DEVICE","Non-invasive ventilatory treatment with auto-BPAP",[14],[25,29,32],{"name":26,"affiliation":27,"role":28},"Andrei V. Alexandrov, MD","University of Alabama at Birmingham","PRINCIPAL_INVESTIGATOR",{"name":30,"affiliation":31,"role":28},"Ulf Bodechtel, MD","University of Technology Dresden",{"name":33,"affiliation":31,"role":28},"Jessica Kepplinger, MD",[35,39],{"name":33,"role":36,"phone":37,"phoneExt":12,"email":38},"CONTACT","+49-351-458-18515","jessica.kepplinger@uniklinikum-dresden.de",{"name":30,"role":36,"phone":40,"phoneExt":12,"email":41},"+49-351-458-3565","ulf.bodechtel@uniklinikum-dresden.de",[43,61,75,88],{"facility":44,"status":45,"city":46,"state":47,"zip":48,"country":49,"countryCode":50,"cosmosGeoPoint":51,"geoPoint":56,"contacts":57},"University of Tennessee Health Science Center, Department of Neurology","NOT_YET_RECRUITING","Memphis","Tennessee","38163","United States","US",{"type":52,"coordinates":53},"Point",[54,55],-90.04898,35.14953,{"lat":55,"lon":54},[58,59],{"name":26,"role":36,"phone":12,"phoneExt":12,"email":12},{"name":60,"role":28,"phone":12,"phoneExt":12,"email":12},"Andrei Alexandrov, MD",{"facility":62,"status":63,"city":64,"state":12,"zip":12,"country":65,"countryCode":66,"cosmosGeoPoint":67,"geoPoint":71,"contacts":72},"Department of Neurology, General Hospital Linz (AKH)","RECRUITING","Linz","Austria","AT",{"type":52,"coordinates":68},[69,70],14.28611,48.30639,{"lat":70,"lon":69},[73],{"name":74,"role":36,"phone":12,"phoneExt":12,"email":12},"Milan Vosko, MD",{"facility":76,"status":63,"city":77,"state":12,"zip":12,"country":78,"countryCode":12,"cosmosGeoPoint":79,"geoPoint":83,"contacts":84},"International Clinical Research Center, St. Anne's University Hospital Brno","Brno","Czechia",{"type":52,"coordinates":80},[81,82],16.60796,49.19522,{"lat":82,"lon":81},[85,87],{"name":86,"role":36,"phone":12,"phoneExt":12,"email":12},"Robert Mikulik, MD",{"name":86,"role":28,"phone":12,"phoneExt":12,"email":12},{"facility":89,"status":63,"city":90,"state":12,"zip":12,"country":91,"countryCode":92,"cosmosGeoPoint":93,"geoPoint":97,"contacts":98},"Dresden University Stroke Center, University of Technology Dresden,","Dresden","Germany","DE",{"type":52,"coordinates":94},[95,96],13.73832,51.05089,{"lat":96,"lon":95},[99,100],{"name":33,"role":36,"phone":37,"phoneExt":12,"email":12},{"name":33,"role":28,"phone":12,"phoneExt":12,"email":12},{"type":28,"investigatorFullName":102,"investigatorTitle":103,"investigatorAffiliation":5,"oldNameTitle":12,"oldOrganization":12},"Dr. Jessica Kepplinger","Instructor","100194894","phase-2-reversal-of-the-neurological-deficit-in-acute-stroke-with-the-signal-of-efficacy-trial-of-auto-bpap-to-limit-damage-from-suspected-sleep-apnea-100194894",false,"NCT01812993","Reversal of the Neurological Deficit in Acute Stroke With the Signal of Efficacy Trial of Auto BPAP to Limit Damage From Suspected Sleep Apnea","Reversal of the Neurological Deficit in Acute Stroke With the Signal of Efficacy Trial of Auto BPAP to Limit Damage From Suspected Sleep Apnea (Reverse-STEAL): A Multicenter Randomized Study","Reverse-STEAL","Inclusion Criteria:\n\n* Male and female patients 18 - 80 years;\n* Clinical suspicion of an AIS (measurable or fluctuating neurological deficit with a National Institutes of Health Stroke Scale \\[NIHSS\\] ≥ 4 points) within 24 hours from symptom-onset;\n* Extracranial (internal carotid artery) or intracranial (internal carotid artery; middle\u002Fanterior\u002Fposterior cerebral arteries) ≥ 50% stenosis, near-occlusion or occlusion diagnosed by ultrasound, computed tomography angiography (CTA) or magnetic resonance angiography (MRA), corresponding to acute neurological deficit;\n* High-risk of having sleep apnea (classified by the Berlin sleep apnea questionnaire); or history of known sleep apnea; or witnessed repetitive apnea episodes during sleep or somnolence during hospitalization;\n* Written informed consent by participants; alternatively by proxy or two physicians when not obtainable by patient or proxy (according to local regulations).\n\nExclusion Criteria:\n\n* Perceived course towards the malignant middle cerebral artery infarction;\n* Immediate or perceived need for intubation;\n* Known sleep apnea currently on non-invasive ventilatory treatment;\n* Standard contraindications for non-invasive ventilatory treatment;\n* Pre-morbid modified Rankin scale (mRS) score ≥ 3;\n* Severe comorbidities (i.e., severe heart failure, severe obstructive lung disease, active malignant disease, severe dementia);\n* Pregnant and breast feeding women;\n* Participation in another clinical trial other than standard-of-care registry.","ALL","18 Years","80 Years",{"count":116,"type":117},60,"ESTIMATED","INTERVENTIONAL",[120],"PHASE2","Although the negative impact of sleep apnea on the clinical course of acute ischemic stroke (AIS) is well known, data regarding non-invasive ventilation in acute patients are scarce. Several studies showed its tolerability, safety and signals-of-efficacy, yet no controlled randomized sequential phase studies currently exist that aim to establish the efficacy of early non-invasive ventilation in AIS patients. The main hypothesis for this study is that early non-invasive ventilation with automated bilevel positive airway pressure (auto-BPAP) positively affects short-term clinical outcomes in AIS patients. This is a multicenter, prospective, randomized, controlled, third rater-blinded, parallel-group trial. Patients with AIS with proximal arterial obstruction and clinically suspected sleep apnea will be randomized to standard or standard stroke care plus auto-BPAP. Auto-BPAP will be initiated within 24 hours from stroke onset and performed for a maximum of 48 hours during diurnal and nocturnal sleep. Patients will undergo cardiorespiratory polygraphy between day 3 and 5 to assess sleep apnea. The primary endpoint is any early neurological improvement on the NIHSS at 72 hours from randomization. Safety, tolerability, short-term and 3 months functional outcomes are assessed as secondary endpoints by un-blinded and blinded observers respectively. This study will provide data to power a subsequent phase III study.",[123],"Ischemic Stroke",[125],"Ischemic stroke, sleep apnea, non-invasive ventilatory treatment","UNKNOWN","2015-02-10",{"date":129,"type":117},"2015-02-12",{"date":131,"type":12},"2013-03",{"name":5,"class":6},4]