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Filter Applied: multiple sclerosis (Click to remove)

Tumefactive Multiple Sclerosis
www.medlink.com, JUne, Bunyan, R.F. and Lucchinetti, C.F., 2010

Functional Outcomes After Gamma Knife Thalamotomy for Essential Tremor and MS-Related Tremor
Neurol 55:443-446, Niranjan,A. et al, 2000

Multiple Sclerosis in Children Under 6 Years of Age
Neurol 53:478-484, Ruggieri,M.,et al, 1999

The Phenotypic Spectrum of CADASIL:Clinical Findings in 102 Cases,
Ann Neurol 44:731-739,715, Dichgans,M.,et al, 1998

Prevalence and Prognosis of Epilepsy in Patients with Multiple Sclerosis
Epilepsia 27:729-733, Kinnunen,E. &Wikstrom,J., 1986

Clinical Correlations of Periodic Lateralized Epileptiform Discharges
Clin Electroenceph 8:191-202, Porecha,H.P.&Reilly,E.L., 1977

Herpes Simplex & the Human Nervous System
Milit Med 140:765, Finelli,P.F., 1975

Progress Toward Mitigating Disability Progression in Multiple Sclerosis
NEJM 392:1966-1968, Calabresi,P.A., 2025

Tumefactive Demyelination in MOG Ab-Associated Disease, Multiple Sclerosis, and AQP-4-IgG-Positive Neuromyelitis Optica Spectrum Disorder
Neurol 100:e1418-e1432, Cacciaguerra, L.,et al, 2023

Association of Very Early treatment Initiation with the Risk of Long-Term Disability in Patients with a First Demyelinating Event
Neurol 101:e1280-e1292, 549, Cobo-Calvo,A.,et al, 2023

Overlapping Anti-NMDAR Encephalitis and Multiple Sclerosis: A Case Report and Literature Review
Front Immunol doi:10.3389/Fimmun.2023.1088801, Liu,P.,et al, 2023

Clinical and Radiologic Features, Pathology, and Treatment of Balo Concentric Sclerosis
Neurol 97:e414-e422, Jolliffe, E.A.,et al, 2021

Telemedicine in Neurology
Neurol 94:30-38,16, Hatcher-Martin, J.M.,et al, 2020

Initial Highly Effective Therapy for MS
Neurol 95:1114-1116, Wallin, M.T., 2020

Association of Initial Disease-Modifying Therapy with Later Conversion to Secondary Progressive Multiple Sclerosis
JAMA 32:175-187, Brown, J.W.L.,et al, 2019

Effect of Nonmyeloablative Hematopoietic Stem Cell Transplantation vs Continued Disease-Modifying Therapy on Disease Progression in Patients with Relapsing-Remitting Multiple Sclerosis
JAMA 32:165-174,153, Burt, R.K.,et al, 2019

Maternal and Fetal Risks of Natalizumab Exposure in Utero
Neurol 90:443-444, Marrie, R.A.,et al, 2018

Acute acalculous cholecystitis
Neurol 90:e1548-e1552, Croteau, D.,et al, 2018

Drug Reaction with Eosinophilia and Systemic Symptoms after Daclizamub Therapy
Neurol 91:e359-e363, Rauer,S.,et al, 2018

Trial of Fingolimod Versus Interferon Beta-1a in Pediatric Multiple Sclerosis
NEJM 379:1017-1027, Chitnis, T.,et al, 2018

Ocrelizumab versus Interferon Beta-1a in Relapsing Multiple Sclerosis
NEJM 376:221-234,280, Hauser, S.L.,et al, 2017

Natalizumab-Associated PML
Neurol 88:1197-1205, Schwab, N.,et al, 2017

Long-Term Outcomes after Autologous Hematopoietic Stem Cell Transplantation for Multiple Sclerosis
JAMA Neurol 74:459-469,392, Muraro, P.A.,et al, 2017

Alemtuzumab CARE-MS I 5-year follow-up
Neurol 89:1107-1116, Havrdova, E.,et al, 2017

Alemtuzumab CARE-MS II 5-year follow-up
Neurol 89:1117-1126, Coles, A.J.,et al, 2017

The Useless Hand of Oppenheim
Pract Neurol 17:464-468, Wiblin, L. & Guadagno, J., 2017

A 34-Year-Old Man with Headache, Diploplia, and Hemiparesis
Neurol 86:e28, Lincoln, M.R.,et al, 2016

Superior MRI Outcomes with Alemtuzumab Compared with Subcutaneous Interferon �-1a in MS
Neurol 87:1464-1472, Arnold, D.L.,et al, 2016

Acute Cholecystitis During Treatment with Alemtuzumab in 3 Patients with RRMS
Neurol 87:2380-2381, Pfeuffer, S.,et al, 2016

Acute Idiopathic Transverse Myelitis in Children
Neurol 84:341-349,332, Deiva, K.,et al, 2015

Relapse in Multiple Sclerosis
BMJ 350:h1765, Galea, I.,et al, 2015

Oral Versus Intravenous High-Dose Methylprednisolone for Treatment of Relapses in Patients with Multiple Sclerosis (COPOUSEP):A Randomised, Controlled, Double-Blind,Non-Inferiority Trial
Lancet 386:974-981, LePage,E.,et al, 2015

Daclizumab HYP versus Interferon Beta-1a in Relapsing Multiple Sclerosis
NEJM 373:1418-1428, Kappos, L.,et al, 2015

Cardiovascular Dysfunction in Multiple Sclerosis
Neurologist 20:108-114, Kaplan, T.B.,et al, 2015

Safety and Efficacy of Ofatumumab in Relapsing-Remitting Multiple Sclerosis
Neurol 82:573-581, Sorensen, P.S.,et al, 2014

Relapsing-Remitting Tumefactive Demyelination
JAMA Neurol 71:366-367, Brandao, E.,et al, 2014

Intensive Care Unit Admission in Multiple Sclerosis
Neurol 82:2112-2119, Marrie, R.A.,et al, 2014

Balos Concentric Sclerosis
Lancet Neurol 13:740-746, Hardy, T.A. & Miller, D.H., 2014

Treatment of Relapsing-Remitting Multiple Sclerosis After 24 Doses of Natalizumab
JAMA Neurol 71:954-960, Clerico, M.,et al, 2014

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

Spinal Cord Lesions in Patients with Clinically Isolated Syndrome
Neurol 80:69-75, Sombekke, M.,et al, 2013

Interferon beta for Secondary Progressive Multiple Sclerosis: A Systematic Review
JNNP 84:420-426, La Mantia, L.,et al, 2013

Disability in Multiple Sclerosis
Neurol 80:1018-1024, Kister, I.,et al, 2013

Daclizumab High-Yield Process in Relapsing-Remitting Multiple Sclerosis (SELECT): A Randomised, Double-Blind, Placebo-Controlled Trial
Lancet 381:190-194, Gold, R.,et al, 2013

Daclizumab High-Yield Process in Relapsing-Remitting Multiple Sclerosis (SELECT): A Randomised, Double-Blind, Placebo-Controlled Trial
Lancet 381:2167-2175, Gold, R.,et al, 2013

Three Times Weekly Glatiramer Acetate in Relapsing-Remitting Multiple Sclerosis
Ann Neurol 73:705-713, Khan, O.,et al, 2013

Tumefactive MS Lesions under Fingolimod
Neurol 81:1654-1658, Pilz, G.,et al, 2013

Cortical Pathology in Multiple Sclerosis Patients with Epilepsy: A 3 Year Longitudinal Study
JNNP 83:49-54, Calabrese, M.,et al, 2012

Association Between Immediate Initiation of Intramuscular Interferon Beta-1a at the Time of a Clinically Isolated Syndrome and Long-term Outcomes
Arch Neurol 69:183-190, Kinkel,R.P.,et al, 2012



Showing articles 0 to 50 of 282 Next >>