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Showing articles 0 to 44 of 44

Filter Applied: safety (Click to remove)

MR Myelography for Identification of Spinal CSF Leak in Spontaneous Intracranial Hypotension
AJNR 35:2007-2012, Chazen, J.L.,et al, 2014

Iodinated Contrast Media and Cerebral Hemorrhage After Intravenous Thrombolysis
Stroke 42:2170-2174, MacDougall, N.J.J.,et al, 2011

Functional Contrast-Enhanced CT for Evaluation of Acute Ischemic Stroke Does not Increase the Risk of Contrast-Induced Nephropathy
AJNR 31:817-821, Lima,F.O., et al, 2010

Safety of Performing CT Angiography in Stroke Patients Treated With Intravenous Thrombolysis
JNNP 81:783-787, Aulick�,P., et al, 2010

Renal Safety of CT Angiography and Perfusion Imaging in the Emergency Evaluation of Acute Stroke
AJNR 29:1826-1829, Hopyan,J.J.,et al, 2008

Tenecteplase for Stroke - Opening the Window?
NEJM 390:760-761, Leifer,D.,, 2024

Noncontrast Computed Tomography vs Computed Tomography Perfusion or Magnetic Resonance Imaging Selection in Late Presentation of Stroke with Large-Vessel Occlusion
JAMA Neurol 79:22-31, Nguyen, T.N.,et al, 2022

Thrombolysis for Acute Ischemic Stroke in the Unwitnessed or Extended Therapeutic Time Window
Neurol 94:e1241-e1248, Tsivgoulis, G.,et al, 2020

Intravenous Alteplase for Stroke with Unknown Time of Onset Guided by Advanced Imaging:Systematic Review and Meta-Analysis of Individual Patient Data
Lancet 396:1574-1585, Thomalla,G.,et al, 2020

Multimodal CT or MRI for IV thrombolysis in ischemic stroke with unknown time of onset
Neurol 95:e2954-e2964, Macha, K.,et al, 2020

Thrombolysis Guided by Perfusion Imaging up to 9 Hours after Onset of Stroke
NEJM 380:1795-1803,1865, Ma, H.,et al, 2019

Thrombectomy 6 to 24 Hours after Stroke with a Mismatch between Deficit and Infarct
NEJM 378:11-22,81, Nogueira, R.G.,et al, 2018

MRI-Guided Thrombolysis for Stroke with Unknown Time of Onset
NEJM 379:611-622, 682, Thomalla, G.,et al, 2018

Intravenous Thrombolysis in Unwitnessed Stroke Onset: MR WITNESS Trial Results
Ann Neurol 83:980-993, Schwamm, L.H.,et al, 2018

Introduction of a Dedicated Emergency Department MR Imaging Scanner at the Barrow Neurological Institute
AJNR 38:1480-1485, Buller, M. & Karis, JP, 2017

DAWN: Thrombectomy Effective Up to 24 Hours after Stroke
Medscape May, Hughes, S., 2017

Computed Tomographic Perfusion to Predict Response to Recanalization in Ischemic Stroke
Ann Neurol 81:849-856, Lansberg, M.G.,et al, 2017

Favorable Bridging Therapy Based on DWI-FLAIR Mismatch in Patients with Unclear-Onset Stroke
AJNR 37:88-93, Mourand, I.,et al, 2016

Effects of Golden Hour Thrombolysis
JAMA Neurol 72:25-30,9, Ebinger, M.,et al, 2015

Endovascular Therapy for Ischemic Stroke with Perfusion-Imaging Selection
NEJM 372:1009-1018, Campbell, B.C.V.,et al, 2015

Randomized Assessment of Rapid Endovascular Treatment of Ischemic Stroke
NEJM 372:1019-1030, Goyal, M.,et al, 2015

Stent-Retriever Thrombectomy after Intravenous t-PA vs. t-PA Alone in Stroke
NEJM 372:2285-2295,2347, Saver, J.L.,et al, 2015

Thrombectomy within 8 hours after Symptom Onset in Ischemic Stroke
NEJM 372:2296-2306,2347, Jovin, T.G.,et al, 2015

Multimodal Diagnostic Imaging for Hyperacute Stroke
AJNR 36:2206-2213, Vo, K.D.,et al, 2015

Endovascular Therapy after Intravenous t-PA versus t-PA Alone for Stroke
NEJM 368:893-903,952, Broderick, J.P.,et al, 2013

Thrombolysis Despite Recent Stroke
Stroke 44:1736-1738, Alhazzaa, M.,et al, 2013

Efficacy and Safety of Combination Antiplatelet Therapies in Patients with Symptomatic Intracranial Atherosclerotic Stenosis
Stroke 42:2883-2890, Kwon, S.U.,et al, 2011

Endovascular Treatment of Acute Ischemic Stroke May Be Safely Performed With No Time Window Limit in Appropriately Selected Patients
Stroke 41:1996-2000, Abou-Chebl,A.,et al, 2010

MRI-Based and CT-Based Thrombolytic Therapy in Acute Stroke Within and Beyond Established Time Windows
Stroke 38:2640-2645, Schellinger,P.D.,et al, 2007

Neurological Complications With Acute Sphenoid Sinusitis a Surgical Emergency?
Neurocrit Care 7:169-171, Poulopoulos,M. &Finelli,P.F., 2007

The Desmoteplase in Acute Ischemic Stroke Trial (DIAS): A Phase II MRI-Based 9-Hour Window Acute Stroke Thrombolysis Trial With Intravenous Desmoteplase
Stroke 36:66-73, Hacke,W.,et al, 2005

Inhibition of CD40L with Frexalimab in Multiple Sclerosis
NEJM 390:589-600, 662, Vermersch,P.,et al, 2024

Development of High Signal Intensity within the Globus Pallidus and Dentate Nucleus following Multiple Adminstrations of Gadobenate Dimeglumine
AJNR 39:415-420, Bolles, G.M.,et al, 2018

High Signal Intensity in the Dentate Nucleus and Globus Pallidus on Unenhanced T1-Weighted MR Images: Comparison between Gadobutrol and Linear Gadolinium-Based Contrast Agents
AJNR 39:421-426, Moser, F.G.,et al, 2018

Association Between MRI Exposure During Pregnancy and Fetal and Childhood Outcomes
JAMA 316:952-961, Ray, J.G.,et al, 2016

CD49d Antisense Drug ATL1102 Reduces Disease Activity in Patients with Relapsing-Remitting MS
Neurol 83:1780-1788, Limmroth, V.,et al, 2014

Diagnostic Yield of Double-Dose Gadobutrol in the Detection of Brain Metastasis: Intraindividual Comparison With Double-Dose Gadopentetate Dimeglumine
AJNR 31:1055-1058, Kim,E.S., et al, 2010

Oral Fingolimod (FTY720) in Multiple Sclerosis: Two-Year Results of a Phase II Extension Study
Neurol 72:73-79, OConnor,P.,et al, 2009

Gadolinium-Enhanced MR Cisternography to Evaluate Dural Leaks in Intracranial Hypotension Syndrome
AJNR 29:116-121, Albayram,S.,et al, 2008

B-Cell Depletion with Rituximab in Relapsing-Remitting Multiple Sclerosis
NEJM 358:676-688, Hauser,S.L.,et al, 2008

Effect of Laquinimod on MRI-Monitored Disease Activity in Patients With Relapsing-Remitting Multiple Sclerosis: A Multicentre, Randomised, Double-Blind, Placebo-Controlled Phase IIb Study
Lancet 371:2085-2092,2059, Comi,G.,etc., 2008

Reduction of Disease Activity and Disability With High-Dose Cyclophosphamide in Patients With Aggressive Multiple Sclerosis
Arch Neurol 65:1044-1051, Krishnan,C.,et al., 2008

Efficacy and Safety of Oral Fumarate in Patients with Relapsing-Remitting Multiple Sclerosis: A Multicentre, Randomised, Double-Blind, Placebo-Controlled Phase LLB Study
Lancet 372:1463-1472, Kappos,L.,et al, 2008

Gadolinium-Based MR Contrast Agents and Nephrogenic Systemic Fibrosis
Radiology 242:647-649, Kuo,P.H.,et al, 2007



Showing articles 0 to 44 of 44