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Filter Applied: MRI,serial (Click to remove)

Clinical Reasoning: A 33-year-old Woman with Severe Postpartum Occipital Headaches
Neurol 78:366-369, Maalouf,N. and Harik,S.I., 2012

Primary Angiitis of the Central Nervous System: Emerging Variants
Q J Med 98:643-654, Maclaren,K.,et al, 2005

Early Ischemic Lesion Recurrence Within a Week After Acute Ischemic Stroke
Ann Neurol 54:66-74, Kang,D.,et al, 2003

Evolution of Cerebral Infarct Volume Assessed by Diffusion-Weighted Magnetic Resonance Imaging
Arch Neurol 58:613-617, Lansberg,M.,G.,et al, 2001

Magnetic Resonance Imaging of Cerebral Microbleeds
Current Opinion in Neurology 13:69-73, Roob,G.&Fazekas,F., 2000

MRI Detection of New Hemorrhages:Potential Marker of Progression in Cerebral Amyloid Angiopathy
Neurol 53:1135-1138, Greenberg,S.M.,et al, 1999

Cerebral Amyloid Angiopathy:Propsects for Clinical Diagnosis and Treatment
Neurol 52:690-694, Greenberg,S.M., 1998

Clinicopath Conf,Syndrome of Mitochondrial Encephalopathy,Lactic Acidosis,and Stroke-Like Episodes (MELAS),Case 39-1998
NEJM 339:1914-1923, , 1998

Magnetic Resonance Imaging of Cerebral Lesions in Pts with the Sjogren Syndrome
Ann Int Med 108:815-823, Alexander,E.L.,et al, 1988

A Case-Based Review of Cerebral Venous Infarcts with Perfusion Imaging and Comparision to Arterial Ischemic Stroke
Front Radiol 1:687045, Li, A.Y.,et al, 2021

A 71-year-old Man Receiving Treatment for Cryptococcal Meningitis, Developing New-Onset Lethargy
Neurol 92:815-820, Peng, T.J.,et al, 2019

Imaging Findings After Mechanical Thrombectomy in Acute Ischemic Stroke
Stroke 50:1618-1625, Puntonet, J.,et al, 2019

Evolution of DWI lesions in Cerebral Amyloid Angiopathy
Neurol 89:2136-2142, Van Veluw, S.J.,et al, 2017

Magnetic Resonance Imaging of Cerebral Aspergillosis: Imaging and Pathological Correlations
PLoS ONE 11:DOI:10.1371/Journal.pone.0152474, Marzoif, G.,et al, 2016

Value of MRI of the Brain in Patients with Systemic Lupus Erythematosus and Neurologic Disturbance
Neuroradiol 46:15-21, Jennings, J.E.,et al, 2014

Cavitation of Deep Lacunar Infarcts in Patients with First-Ever Lacunar Stroke
Stroke 43:2245-2247, Loos, C.M.J.,et al, 2012

Serial MRI and CSF Biomarkers in Normal Aging, MCI, and AD
Neurol 75:143-151, Vemuri,P., et al, 2010

Hemorrhagic Manifestations of Reversible Cerebral Vasoconstriction Syndrome: Frequency, Features, and Risk Factors
Stroke 41:2505-2511, 2455, Ducros,A.,et al, 2010

Serial Diffusion Imaging in a Case of Mitochondrial Encephalomyopathy, Lactic Acidosis, and Stroke-Like Episodes
Stroke 40:e15-e17, Tzoulis,C. &Bindoff,L.A., 2009

Magnetic Resonance Imaging Predictors of Conversion to Multiple Sclerosis in the BENEFIT Study
Arch Neurol 66:1345-1352, Moraal,B.,et al, 2009

Unexpected Multiple Sclerosis: Follow-Up of 30 Patients With Magnetic Resonance Imaging and Clinical Conversion Profile
JNNP 79:195-198,112, Lebrun,C.,et al, 2008

Clinical Spectrum of Reversible Posterior Leukoencephalopathy Syndrome
Arch Neurol 65:205-210,175, Lee,V.H.,et al, 2008

When to Expect Negative Diffusion-Weighted Images in Stroke and Transient Ischemic Attack
Stroke 39:1898-1900, Sylaja,P.N.,et al, 2008

Optimal Diffusion-Weighted Imaging Protocol for Lesion Detection in Transient Global Amnesia
AJNR 29:1324-1328, Weon, Y.C.,et al, 2008

MRI Outcomes in a Placebo-Controlled Trial of Natalizumab in Relapsing MS
Neurol 68:1390-1401, Miller,D.H.,et al, 2007

Natalizumab Plus Interferon Beta -1a for Relapsing Multiple Sclerosis
NEJM 354:911-923,965, Rudick,R.A.,et al, 2006

A Randomized, Placebo-Controlled Trial of Natalizumab for Relapsing Multiple Sclerosis
NEJM 354:899-910,965, Polman,C.H.,et al, 2006

Magnetic Resonance Imaging as a Surrogate Outcome Measure of Disability in Multiple Sclerosis: Have We Been Overly Harsh in Our Assessment?
Ann Neurol 59:597-605, Goodin,D.S., 2006

Persistent Infarct Hyperintensity on Diffusion-Weighted Imaging Late After Stroke Indicates Heterogeneous, Delayed, Infarct Evolution
Stroke 37:1418-1423, Rivers,C.S.,et al, 2006

Progression of White Matter Lesions and Hemorrhages in Cerebral Amyloid Angiopathy
Neurol 67:83-87, Chen,Y.W.,et al, 2006

Significance of T2 Lesions in Multiple Sclerosis: A 13-Year Longitudinal Study
Ann Neurol 60:236-242, Rudick,R.A.,et al, 2006

Oral Fingolimod (FTY720) for Relapsing Multiple Sclerosis
NEJM 355:1124-1140, Kappos,L.,et al, 2006

Management of Acute Cerebellar Stroke
Arch Neurol 62:537-544, Jensen,M.B. &St. Louis,E.K., 2005

Long-Term Brain Magnetic Resonance Imaging Changes After Optic Neuritis in Patients Without Clinically Definite Multiple Sclerosis
Arch Neurol 61:1538-1541, Optic Neuritis Study Group, 2004

Intravenous Immunoglobulin Treatment Following the First Demyelinating Event Suggestive of Multiple Sclerosis
Archn Neurol 61:1515-1520, Achiron,A.,et al, 2004

A Controlled Trial of Natalizumab for Relapsing Multiple Sclerosis
NEJM 348:14-23, Miller,D.H.,et al, 2003

Rasmussen's Encephalitis
Neurol 60:422-425, Granata,T.,et al, 2003

A Longitudinal Study of Brain Volume Changes in Normal Aging Using Serial Registered Magnetic Resonance Imaging
Arch Neurol 60:989-994, Scahill,R.I.,et al, 2003

Cortical Laminar Necrosis in Brain Infarcts: Serial MRI
Neuroradiology 45:283-288, Siskas, N.,et al, 2003

Progressive Ventricular Enlargement in Patients with Clinically Isolated Syndromes is Associated with the Early Development of Multiple Sclerosis
JNNP 73:141-147, Dalton,C.M.,et al, 2002

Benefit of Interferon B-1a on MSFC Progression in Secondary Progressive MS
Neurol 59:679-687, Cohen,J.A.,et al, 2002

Copaxone's Effect on MRI-Monitored Disease in Relapsing MS is Reproducible and Sustained
Neurol 59:1284-1286, Wolinsky,J.S.,et al, 2002

Multiple Sclerosis and Magnetic Resonance Imaging
Arch Neurol 58:35-36, Racke,M.K.,et al, 2001

Evolution of MR Contrast Enhancement Patterns During the First Week after Acute Ischemic Stroke
AJNR 22:103-111, Karonen,J.O.,et al, 2001

Assessing the Risk of Early Multiple Sclerosis in Patients with Clinically Isolated Syndromes: the Role of a Follow Up MRI
JNNP 70:390-393, Brex,P.A.,et al, 2001

European/Canadian Multicenter, Double-Blind, Randomized, Placebo-Controlled Study of the Effects of Glatiramer Acetate on Magnetic Resonance Imaging-Measured Disease Activity and Burden in Patients wi
Ann Neurol 49:290-297, Comi,G.,et al, 2001

Spontaneous Dissection of the Carotid and Vertebral Arteries
NEJM 344:898-906, Schievink,W.I., 2001

Evolution of Apparent Diffusion Coefficient, Diffusion-weighted, and T2-weighted Signal Intensity of Acute Stroke
AJNR 22:637-644, Lansberg,M.G.,et al, 2001

Stroke Magnetic Resonance Imaging Within 6 Hours After Onset of Hyperacute Cerebral Ischemia
Ann Neurol 49:460-469, Schellinger,P.D.,et al, 2001



Showing articles 0 to 50 of 101 Next >>