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Differential
(Click to cross reference)
Alberta Stroke Program Early CT score
algorithm
anterior cerebral artery, occlusion of
artificial intelligence
atrial fibrillation
AURORA
bridge therapy
carotid artery occlusion, intracranial
CAT scan, abnormal
CAT scan, angiography
CAT scan, mismatch between perfusion/diffusion
CAT scan, net water uptake
CAT scan, perfusion
cerebrospinal fluid, abnormal
cerebrovascular accident
cerebrovascular accident, acute management of
cerebrovascular accident, age of lesion
cerebrovascular accident, awakening with
cerebrovascular accident, mimics
cerebrovascular accident, severity
cerebrovascular accident, surgical treatment of
cerebrovascular accident, thrombolytic agents in treatment
cerebrovascular accident, time of onset
cerebrovascular accident, time to treatment
cerebrovascular accident, unknown time of onset
cerebrovascular accident, volume
clinical mismatch
clot retrieval
collateral circulation
complications
computers, medicine and
computers, neurologic diagnosis and
DAWN stroke trial
deep learning
DEFUSE study
efficacy
encephalitis
endovascular therapy
endovascular therapy, late time window
endovascular therapy, selection criteria
endovascular therapy, time window
fibrinolytic agents
fibrinolytic therapy, selection criteria
fibrinolytic therapy, timing of administration
gastrointestinal bleeding
herpes simplex encephalitis
hyperintense vessel sign
intracerebral hemorrhage
ischemic penumbra
lumbar puncture
machine learning
middle cerebral artery, occlusion of
mimics
misdiagnosis
MR WITNESS trial
MRI
MRI, abnormal
MRI, diffusion weighted
MRI, early changes in CVA
MRI, FLAIR
MRI, FLAIR, hyperintense vessels
MRI, mismatch between DWI/FLAIR
MRI, mismatch between perfusion/diffusion
MRI, perfusion
multimodal neuroimaging
neoplasm, intracranial-incidence and epidemiology of
neurologic disease, diagnoses of
neurologic examination, focal
NIH stroke scale
old age, neurology of
patient selection
practice guidelines
prognosis
RAPID CT perfusion maps
recanalization, arterial
Red flags
reperfusion
Retriever Device
revascularization, surgical
review article
safety
screening
thrombectomy
thrombolysis, mechanical
tissue plasminogen activator, intravenous
treatment of neurologic disorder
Trevo retriever
WAKE-UP trial
Showing articles 0 to 50 of 6577 Next >>

HSV-Encephalitis Resembling Acute Cerebral Infarction in a Patient with Atrial Fibrillation, Beware of Stroke Mimics
Neurologist 27:30-33, Kargiotis,O.,et cl, 2022

Thrombectomy for Anterior Circulation Stroke Beyond 6 h from Time Last Known Well (AURORA): A Systematic Review and Individual Patient Data Meta-Analysis
Lancet 399:249-258, Jovin, T.G.,et al, 2022

Which Imaging Approach Should be Used for Stroke of Unknown Time of Onset?
Stroke 52:373-380, Simonsen, C.Z.,et al, 2021

Lesion Age Imaging in Acute Stroke: Water Uptake in CT Versus DWI-FLAIR Mismatch
Ann Neurol 88:1144-1152, Broocks, 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

Machine Learning Approach to Identify Stroke Within 4.5 Hours
Stroke 51:860-866, Lee, H.,et al, 2020

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

Artificial Intelligence Applications in Stroke
Stroke 51:2573-2579, Mouridsen, K.,et al, 2020

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

Enlightenment and Challenges Offered by DAWN Trial (DWI or CTP Assessment with Clinical Mismatch in the Triage of Wake Up and Late Presenting Strokes Undergoing Neurointervention with Trevo)
Stroke 49:498-500, Saposnik, G.,et al, 2018

Automated DWI analysis can identify patients within the thrombolysis time window of 4.5 hours
Neurol 90:e1570-e1577, Wouters, A.,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

Endovascular Stroke Therapy in the Late Time Window
Stroke 49:2559-2561, Schellinger, P.D. & Demaerschalk, B.M., 2018

Implications of the WAKE-UP Trial
Stroke 49:3115-3117, Silver, B. & Arnold, M., 2018

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

Hyperintense Vessels on FLAIR: Hemodynamic Correlates and Response to Thrombolysis
AJNR 36:1426-1430, Kufner, A.,et al, 2015

Distal Hyperintense Vessels on FLAIR: An MRI Marker for Collateral Circulation in Acute Stroke?
Neurol 72:1134-1139, Lee,K.Y.,et al, 2009

Fluid-Attenuated Inversion Recovery and Diffusion- and Perfusion-Weighted MRI Abnormalities in 117 Consecutive Patients with Stroke Symptoms
Stroke 32:2774-2781, Perkins,C.J.,et al, 2001

Automated Brain Perfusion Imaging in Acute Ischemic Stroke: Interpretation Pearls and Pitfalls
Stroke 52:3728-3738, Nicolas-Jilwan, M. & Wintermark, M., 2021

No-Cutoff Large Vessel Occlusion Stroke
Neurol 93;1014-1015, Atchaneeyasakul, K.,et al, 2019

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

Penumbra Detection in Acute Stroke with Perfusion Magnetic Resonance Imaging: Validation with 15 O-Positron Emission Tomography
Ann Neurol 85:875-886, Zaro-Weber, O.,et al, 2019

Extending Thrombolysis to 4.5-9 h and Wake-Up Stroke Using Perfusion Imaging: A Systematic Review and Meta-Analysis of Individual Patient Data
Lancet 394:139-147,97, Campbell, B.C.V.,et al, 2019

Use of Imaging to Select Patients for Late Window Endovascular Therapy
Stroke 49:2256-2260, Albers, G.W., 2018

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

Endovascular Treatment for Patients with Acute Stroke Who Have a Large Ischemic Core and Large Mismatch Imaging Profile
JAMA Neurol 74:34-40, Rebello, L.C.,et al, 2017

Diffusion-weighted MRI hyperintensity patterns differentiate CJD from other rapid dementias
Neurol 76:1711-1719, Vitali, P.,et al, 2011

Advanced Brain Imaging Studies Should Be Performed in Patients With Suspected Stroke Presenting Within 4.5 Hours of Symptom Onset
Stroke 42-2666-2667,2670, Parsons, M.W., 2011

Advanced Brain Imaging Studies Should Not Be Performed in Patients With Suspected Stroke Presenting Within 4.5 Hours of Symptom Onset
Stroke 42:2668-2669,2670, Lyden, P.D., 2011

Acute Hepatic Encephalopathy: Diffusion-Weighted and Fluid-Attenuated Inversion Recovery Findings, and Correlation With Plasma Ammonia Level and Clinical Outcome
AJNR 31:1471-1479, McKinney,A.M.,et al, 2010

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

The Ethics of Thrombolytic Trials Beyond 3 (or 4.5) Hours: Randomized Controlled Trials Are Required to Change Clinical Practice
Stroke 40:1545, Donnan,G.A. &Davis,S.M., 2009

Cost-Effectiveness of Patient Selection Using Penumbral-Based MRI for Intravenous Thrombolysis
Stroke 40:1710-1720, Earnshaw,S.R.,et al, 2009

MR Mismatch Is Useful for Patient Selection for Thrombolysis: Yes
Stroke 40:2906-2907,2910, Fiebach,J.B. &Schellinger,P.D., 2009

Recommendations for Imaging of Acute Ischemic Stroke: A Scientific Statement From the American Heart Association
Stroke 40:3646-3678, Latchaw,R.,et al, 2009

Use of MRI to Estimate the Therapeutic Window in Acute Stroke: Is Perfusion-Weighted Imaging/Diffusion-Weighted Imaging Mismatch an EPITHET for Salvageable Ischemic Brain Tissue?
Stroke 40:333-335, Toth,G. &Albers,G.W., 2009

MRI Findings Associated With Acute Liver Failure
Neurol 72:2130-2131, Fridman,V.,et al, 2009

Posterior Reversible Encephalopathy Syndrome: Incidence of Atypical Regions of Involvement and Imaging Findings
AJR 189:904-912, McKinney, A.M.,et al, 2009

MR Imaging of Familial Creutzfeldt-Jakob Disease: A Blinded and Controlled Study
AJNR 29:1638-1643, Fulbright,R.K.,et al, 2008

Quantitative Assessment of Core/Penumbra Mismatch in Acute Stroke: CT and MR Perfusion Imaging Are Strongly Correlated When Sufficient Brain Volume Is Imaged
Stroke 39:2986-2992, Schaefer,P.W.,et al, 2008

Rapid Assessment of Perfusion-Diffusion Mismatch
Stroke 39:75-81, Butcher,K.,et al, 2008

MR Imaging-Based Decision in Thrombolytic Therapy for Stroke on Awakening: Report of 2 Cases
AJRN 29:1314-1316, Iosif,C.,et al., 2008

Isolated Cortical Signal Increase on MR Imaging as a Frequent Lesion Pattern in Sporadic Creutzfeldt-Jakob Disease
AJNR 29:1519-1524, Meissner,B.,et al., 2008

Comparison of CT Perfusion and Angiography and MRI in Selecting Stroke Patients for Acute Treatment
Neurol 68:694-697, Wintermark,M.,et al, 2007

Magnetic Resonance Perfusion Diffusion Mismatch and Thrombolysis in Acute Ischaemic Stroke: A Systematic Review of the Evidence to Date
JNNP 78:485-491,443, Kane,I.,et al, 2007

Evaluation of the Clinical-Diffusion and Perfusion-Diffusion Mismatch Models in DEFUSE
Stroke 38:1826-1830,1718, Lansberg,M.G.,et al, 2007

Neuroimaging Findings in Human Prion Disease
JNNP 78:664-670, Macfarlane,R.G.,et al, 2007



Showing articles 0 to 50 of 6577 Next >>