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Filter Applied: adverse drug reaction (Click to remove)

Daclizumab-Induced Adverse Events in Multiple Organ Systems in Multiple Sclerosis
Neurol 82:984-988, Oh, J.,et al, 2014

Risk Factors of Cerebral Vein and Sinus Thrombosis
Front Neurol Neurosci 23:23-54, de Freitas, G.R. & Bogousslavsky, J., 2008

Near-Fatal Heat Stroke During the 1995 Heat Wave in Chicago
Ann Int Med 129:173-181, Damatte,J.E.,et al, 1998

Inebilizumab for Treatment of IgG4-Related Disease
NEJM 392:1168-1177, Stone,J.H.,et al, 2025

Beyond Glucocorticoids for IgG4-Related Disease
NEJM 392:1232-1233, Spiera,R., 2025

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

Adverse Events Associated with Disease-Modifying Drugs for Multiple Sclerosis
Neurol 102:e208006, Ng, HS.,et al, 2024

Donanemab in Early Symptomatic Alzheimer Disease, The TRAILBLAZER-ALZ 2 Randomized Clinical Trial
JAMA 330:512-517, 510, Sims,J.R.,et al, 2023

Sweet Syndrome
Stat Pearls www.ncbi.nlm.gov, Sept, Goyal,V.P. & Holmes,H, 2022

Encephalitis Induced by Immune Checkpoint Inhibitors
JAMA Neurol 78:864-873, Velasco, R.,et al, 2021

Drug-Related Demyelinating Syndromes: Understanding Risk Factors, Pathophysiological Mechanisms and Magnetic Resonance Imaging Findings
Mult Scler Rel Dis 55:103146, Rimkus, C.M.,et al, 2021

Progressive Multifocal Leukoencephalopathy in a Patient with Progressive Multiple Sclerosis Treated With Ocrelizumab Monotherapy
JAMA Neurol 78:736-740, Patel,A.,et al, 2021

Infection Risks Among Patients with Multiple Sclerosis Treated with Fingolimod, Natalizumab, Rituximab, and Injectable Therapies
JAMA Neurol 77:184-191, Luna, G.,et al, 2020

Severe Neurological Toxicity of Immune Checkpoint Inhibitors: Growing Spectrum
Ann Neurol 87:659-669, Dubey, D.,et al, 2020

Severe Neurological Toxicity of Immune Checkpoint Inhibitors: Growing Spectrum
Ann Neurol 87:659-669, Dubey, D.,et al, 2020

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

Two Cases of Meningitis Associated with Ocrelizumab Therapy
Mult Scler Rel Dis 38:101866, Theriault, M. & Solomon, A.J., 2020

Neuromuscular Adverse Events Associated with Anti-PD-1 Monoclonal Antibodies
Neurol 92:663-674, Johansen, A.,et al, 2019

Muscular Dystrophies
Lancet 394:2025-2038, Mercuri, E.,et al, 2019

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

A 56-year-old woman with acute vertigo and diplopia
Neurol 90:748-752, Sharma, R.,et al, 2018

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

Hemophagocytic Lymphohistiocytosis in 2 patients with multiple sclerosis treated with alemtuzumab
Neurol 90:849-851, Saarela, M.,et al, 2018

Progressive multifocal leukoencephalpathy after fingolimod treatment
Neurol 90:1815-e1821, Berger, J.R.,et al, 2018

Acute coronary syndrome associated with alemtuzumab infusion in multiple sclerosis
Neruol 90:852-854, Ferraro, 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

Use of Newer Disease-Modifying Therapies in Pediatric Multiple Sclerosis in the US
Neurol 91:e1778-e1787, Krysko, K.M.,et al, 2018

Misdiagnosis of Multiple Sclerosis
Neurol 92:15-16, Brownlee, W.J., 2018

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

Ocrelizumab versus Placebo in Primary Progressive Multiple Sclerosis
NEJM 376:209-220,280, Montalban, X.,et al, 2017

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

Five Cases of Malignant Melanoma During Fingolimod Treatment in Dutch Patients with MS
Neurol 89:970-972, Killestein, J.,et al, 2017

Malignancies after Mitoxantrone for Multiple Sclerosis
Neurol 86:2203-2207, Buttmann, M.,et al, 2016

Fulminant Central Nervous System Nocardiosis in a Patient Treated with Alemtuzumab for Relapsing-Remitting Multiple Sclerosis
JAMA Neurol 73:757-759, Penkert, H.,et al, 2016

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

Neurological, Respiratory, Musculoskeletal, Cardiac and Ocular Side-Effects of Anti-PD-1 Therapy
Eur J Cancer 60:210-225, Zimmer, L.,et al, 2016

Varicella-Zoster Virus Infections in Patients Treated with Fingolimod
JAMA Neurol 72:31-39,10, Arvin, A.M.,et al, 2015

Newer Agents in the Treatment of Multiple Sclerosis
Neurologist 19:104-117, Pawate, S. & Bagnato F., 2015

Reactivation of Herpesvirus under Fingolimod: A Case of Severe Herpes Simplex Encephalitis
Neurol 84:2377-2378, Pfender, N.,et al, 2015

Ischemic Optic Neuropathies
NEJM 372:2428-2436, Biousse, V. & Newman, N.J., 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

ICU-Acquired Weakness and Recovery from Critical Illness
NEJM 370:1626-1635, Kress, J.P. & Hall, J.B., 2014

Should Doctors Prescribe Cannabinoids?
BMJ 348:g2737, Farrell, M.,et al, 2014

Systematic Review: Efficacy and Safety of Medical Marijuana in Selected Neurologic Disorders
Neurol 82:1556-1563, Koppel, B.S.,et al, 2014

Mycophenolate Mofetil in the Treatment of Neuromyelitis Optica Spectrum Disorder
JAMA Neurol 71:1372-1378, Huh, S.Y.,et al, 2014

Disorders of the Nervous System Caused by Drugs, Toxins, and Chemical Agents, Tricyclic Antidepressants
Adams & Victors Principles of Neurology Chp 43, pg 1211, Ropper, A.H.,et al, 2014

Clinical Features of Dopamine Agonist Withdrawal Syndrome in a Movement Disorders Clinic
JNNP 84:130-135, Pondal, M.,et al, 2013



Showing articles 0 to 50 of 230 Next >>