[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-studies-list:{\"conditionNormalized\":\"intracranial-atherosclerotic-stenosis-icas\",\"overallStatus\":[\"RECRUITING\",\"AVAILABLE\",\"NOT_YET_RECRUITING\"],\"orderBy\":\"LastUpdateSubmitDate:desc\",\"size\":25,\"offset\":0}":3,"health-study-condition:intracranial-atherosclerotic-stenosis-icas":25},{"pageToken":4,"total":5,"offset":6,"count":5,"results":7},null,3,0,[8,42,70],{"id":9,"slug":10,"hasResults":11,"nctId":12,"briefTitle":13,"officialTitle":13,"acronym":14,"eligibilityCriteria":15,"healthyVolunteers":11,"sex":16,"minAge":17,"maxAge":4,"enrollmentInfo":18,"targetDuration":4,"studyType":21,"phases":4,"briefSummary":22,"conditions":23,"keywords":26,"overallStatus":29,"whyStopped":4,"lastUpdateSubmitDate":30,"lastUpdatePostDateStruct":31,"startDateStruct":34,"completionDateStruct":36,"leadSponsor":38,"locationsCount":41},"100508992","comparison-of-anti-coagulation-and-anti-platelet-therapies-for-intracranial-vascular-atherostenosis--magnetic-resonance-imaging-100508992",false,"NCT05907629","Comparison of Anti-coagulation and Anti-Platelet Therapies for Intracranial Vascular Atherostenosis- Magnetic Resonance Imaging","CAPTIVA-MRI","Inclusion Criteria:\n\n* Enrollment in the CAPTIVA trial: nondisabling symptomatic ischemic infarct stroke within 30 days secondary to 70-99% stenosis of the intracranial ICA, MCA, BA or VA\n* Ability to obtain baseline study MRI within 14 days of CAPTIVA enrollmen\n\nExclusion Criteria:\n\n* Unable or unwilling to undergo MRI, including pacemaker or other MRI contraindications per American College of Radiology guidelines62\n* Gadolinium contrast allergy or acute or chronic kidney disease with eGFR\\\u003C30 ml\u002Fmin\u002F1.73m2","ALL","18 Years",{"count":19,"type":20},300,"ESTIMATED","OBSERVATIONAL","CAPTIVA-MRI is an observational multimodal MR imaging study that is ancillary to the CAPTIVA trial \\[a 3-arm, double-blind Phase III trial conducted at approximately 115 StrokeNet sites randomizing patients with stroke attributed to 70-99% intracranial atherosclerotic stenosis (ICAS) to aspirin plus ticagrelor, clopidogrel, or rivaroxaban.\\] The primary goal of this ancillary study is to determine if MRI biomarkers can potentially identify ICAS patients who fail best medical management. The CAPTIVA-MRI study leverages the CAPTIVA trial design and implementation to capture information that will inform and facilitate the next generation of ICAS trials and the management of patients with ICAS.",[24,25],"Stroke","Intracranial Atherosclerotic Stenosis (ICAS)",[27,24,28],"MRI","intracranial atherosclerotic stenosis (ICAS)","RECRUITING","2025-08-26",{"date":32,"type":33},"2025-08-27","ACTUAL",{"date":35,"type":33},"2024-06-24",{"date":37,"type":20},"2029-03-31",{"name":39,"class":40},"Yale University","OTHER",13,{"id":43,"slug":44,"hasResults":11,"nctId":45,"briefTitle":46,"officialTitle":47,"acronym":4,"eligibilityCriteria":48,"healthyVolunteers":11,"sex":16,"minAge":17,"maxAge":49,"enrollmentInfo":50,"targetDuration":4,"studyType":52,"phases":53,"briefSummary":55,"conditions":56,"keywords":4,"overallStatus":29,"whyStopped":4,"lastUpdateSubmitDate":60,"lastUpdatePostDateStruct":61,"startDateStruct":63,"completionDateStruct":65,"leadSponsor":67,"locationsCount":69},"100574105","imaging-of-intracranial-and-extracranial-arterial-atherosclerotic-plaques-using-different-field-strength-mris-100574105","NCT06754956","Imaging of Intracranial and Extracranial Arterial Atherosclerotic Plaques Using Different Field Strength MRIs","Imaging Study of Intracranial and Extracranial Arterial Atherosclerotic Plaques Using 3.0T and 5.0T MRI: A Prospective Self-Controlled Study","Inclusion Criteria:\n\n* Age ≥ 18 years;\n* Moderate to severe intracranial or extracranial arterial stenosis (stenosis degree: 50% to 99%, confirmed by CTA, MRA, or DSA);\n* Written informed consent signed by the patient or their legal representative.\n\nExclusion Criteria:\n\n* Non-atherosclerotic intracranial arterial stenosis, such as dissection or moyamoya disease;\n* Contraindications to MRI, such as claustrophobia or presence of a cardiac pacemaker;\n* Allergy to gadolinium-based contrast agents;\n* Poor MRI image quality preventing analysis;\n* Abnormal liver or kidney function;\n* History of any prior endovascular treatment;\n* Presence of implants posing potential safety risks in 5.0T MRI, such as non-removable metallic dental prostheses, stents, or other metallic implants.","95 Years",{"count":51,"type":20},100,"INTERVENTIONAL",[54],"NA","Atherosclerotic stenosis of the carotid and intracranial arteries is one of the leading causes of ischemic cerebrovascular events worldwide. Among these, intracranial atherosclerotic stenosis has an incidence rate of up to 46.6% in patients with ischemic stroke or transient ischemic attack (TIA) in China. The continuous advancement of high-resolution vascular wall imaging (HR-VWI) technology has enabled multi-dimensional imaging of the arterial walls of both intracranial and extracranial vessels. By suppressing intravascular flow, this technique allows clear visualization of the vascular wall morphology and signal characteristics, as well as the identification of plaque composition and assessment of vulnerable plaque features. However, due to the smaller size of intracranial atherosclerotic plaques, the image quality and effectiveness of current 3.0T high-resolution magnetic resonance imaging (MRI) are influenced by hardware and software limitations, as well as imaging parameters, making it difficult to accurately perform qualitative and quantitative analysis of intracranial and extracranial plaques. The advent of ultra-high field 5.0T MRI overcomes the limitations of 3.0T MRI in imaging, significantly improving the signal-to-noise ratio and allowing for clearer visualization of the signal characteristics of the arteria.",[57,58,59],"High Resolution Vessel Wall Imaging","Intracranial Atherosclerotic Stenosis, ICAS","Arteriosclerosis","2025-06-26",{"date":62,"type":33},"2025-06-29",{"date":64,"type":33},"2025-01-10",{"date":66,"type":20},"2027-12-23",{"name":68,"class":40},"Shanghai Jiao Tong University Affiliated Sixth People's Hospital",1,{"id":71,"slug":72,"hasResults":11,"nctId":73,"briefTitle":74,"officialTitle":74,"acronym":75,"eligibilityCriteria":76,"healthyVolunteers":11,"sex":16,"minAge":17,"maxAge":77,"enrollmentInfo":78,"targetDuration":80,"studyType":21,"phases":4,"briefSummary":81,"conditions":82,"keywords":83,"overallStatus":89,"whyStopped":4,"lastUpdateSubmitDate":90,"lastUpdatePostDateStruct":91,"startDateStruct":93,"completionDateStruct":95,"leadSponsor":97,"locationsCount":69},"100572995","the-new-clinical-registration-trial-of-interventional-treatment-for-patients-with-symptomatic-intracranial-artery-stenosis-100572995","NCT06740513","The New Clinical Registration Trial of Interventional Treatment for Patients with Symptomatic Intracranial Artery Stenosis","CRTICAS-2","Inclusion Criteria:\n\n(1)18-80 years old; (2)Received endovascular therapy during hospitalization; (3) Intracranial arterial stenosis related to the following non-atherosclerotic factors will be not be considered: arterial dissection, moya-moya disease; vasculitic disease; herpes zoster, varicella zoster or other viral vasculopathy; neurosyphilis; any other intracranial infection; any intracranial stenosis associated with cerebrospinal fluid pleocytosis; radiation-induced vasculopathy; fibromuscular dysplasia; sickle cell disease; neurofibromatosis; benign angiopathy of central nervous system; postpartum angiopathy; suspected vasospastic process, and suspected recanalized embolus; (4) Symptomatic intracranial stenosis: presented with transient ischemic stroke (TIA) or stroke within the past 12 months attributed to 70%-99% stenosis of a major intracranial artery (ICA, MCA \\[M1\\], vertebral artery, or basilar artery \\[BA\\]); (5) Degree of stenosis: 70%-99%; stenosis degree must be consistent with the criteria of endovascular treatment ; (6) No massive cerebral infarction (\\>1\u002F2 MCA territory), intracranial hemorrhage, epidural or sub-dural hemorrhage, and intracranial brain tumor on CT or MRI scan; (7) Patient is willing and able to return for all follow-up visits required by the protocol; (8) Patient understands the purpose and requirements of the study, can make him\u002Fherself understood, and has signed informed consent.\n\nExclusion Criteria:\n\n1. Patients had cerebrovascular diseases, e.g., intracranial aneurysm or vascular malformation, and intracranial tumors;\n2. History of life-threatening allergy to contrast medium. If not life threatening and can be effectively pre-treated, patient can be enrolled at physicians' discretion;\n3. Active bleeding diathesis or coagulopathy; active peptic ulcer disease, major systemic hemorrhage within 30 days, active bleeding diathesis, platelets count \\\u003C125,000, hematocrit \\\u003C30, Hgb \\\u003C10g\u002FdL, uncorrected INR \\>1.5, bleeding time \\>1 minute beyond upper limit normal, or heparin-associated thrombocytopenia that increases the risk of bleeding, uncontrolled severe hypertension (systolic BP\\>180mmHg or diastolic BP\\>115mmHg), severe liver impairment (AST or ALT \\>3 times normal, cirrhosis), creatinine \\>265.2 mmol\u002FL (unless on dialysis).\n4. Major surgery (including open femoral, aortic, or carotid surgery) within previous 30 days or planned in the next 90 days after enrollment;\n5. Severe dementia or psychiatric problems that prevent the patients from following an outpatient program reliably;\n6. Pregnancy or of childbearing potential and unwilling to use contraception for the duration of this study.","80 Years",{"count":79,"type":20},1000,"3 Years","Background:\n\nIntracranial atherosclerotic stenosis (ICAS) is a major etiology of stroke worldwide, especially in East and South Asia, accounting for up to 50% of all ischemic stroke. Previous three randomized clinical trials did not demonstrate the superiority of intracranial stenting over aggressive medical management for symptomatic intracranial atherosclerotic stenosis (sICAS). The SAMMPRIS and VISSIT trials demonstrated that aggressive medical management was superior to self-expanding stenting and balloon-expanding stenting for sICAS. The CASSISS trial showed no significant difference in the risk of stroke or death between self-expanding stenting and aggressive medical management for sICAS. But recent BASIS trial demonstrated that balloon angioplasty plus aggressive medical management, compared with aggressive medical management alone, lowered the risk of a composite outcome.\n\nCRTICAS was a prospective, real-world registry with 26 participating centres. It demonstrated a lower complication rate in treating patients with symptomatic ICAS with endovascular therapy in a real-world context, compared with the preceding RCTs. Uneven development in endovascular technology, institutional experience and patient selection in different volumes of centres may have an impact on overall safety of this treatment. The patients were screened from December 2013 to December 2015, which was almost 10 years ago. In consideration of the development of imaging evaluation and interventional devices, the CRTICAS-2 aims to figure out the effect and safety of endovascular treatment plus medical management for sICAS patients nowadays.\n\nMethods:\n\nAs a multicenter and prospective cohort study, it starts in December 2024, the observation is scheduled to be completed by December 2028, with a total of at least 1000 sICAS patients recruited. The information on clinical, radiological, and laboratory practices will be recorded objectively. All of the patients will be monitored until death or 12 months after the occurrence of symptomatic stroke.\n\nStudy Design:\n\nIn this study, an observational cohort will be set up. The primary outcome is the effect of endovascular treatment, which is subject to assessment using the total mortality and symptomatic stroke. The second outcome is the safety of endovascular treatment, with the postoperative ischemic complication. Based on the observation of the characteristics and outcome of sICAS patients, the ischemic events after surgery will be further addressed, and the function assessment system for operated sICAS patients will be established. We will detailedly collect the clinical data of all patients registered for the study includes medical record data; imaging examination; laboratory examination; hemodynamic evaluation and cognitive function evaluation. The imaging examination includes Magnetic Resonance Imaging(MRI), High-Resolution Magnetic Resonance Imaging(HRMRI), Computed Tomography Angiography(CTA), Magnetoencephalography (MEG) , Ultrasound and so on. The hemodynamic evaluation includes Optical CoherenceTomography (OCT), noninvasive FFR estimated from Phase Contrast Magnetic Resonance Angiography (PC-MRA) and so on. The cognitive function evaluation includes cognitive domains of verbal episodic memory, semantic verbal fluency, confrontation naming, mental processing speed-attention, executive function-cognitive flexibility and so on.\n\nObjective:\n\nTo observe the effect of endovascular treatment plus medical therapy in patients with symptomatic intracranial atherosclerotic stenosis.",[25,24],[84,85,86,87,88],"Intracranial atherosclerotic stenosis","clinical registration trial","interventional treatment","Medical Therapy plus Stent\u002FBalloon Angioplasty","Endovascular Treatment","NOT_YET_RECRUITING","2024-12-13",{"date":92,"type":33},"2024-12-18",{"date":94,"type":20},"2025-01-01",{"date":96,"type":20},"2028-12-31",{"name":98,"class":40},"Xuanwu Hospital, Beijing"]