Cognitive impairment in pediatric-onset multiple sclerosis is detected by the Brief International Cognitive Assessment for Multiple Sclerosis and computerized cognitive testing
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[1] L. Krupp,et al. Pediatric multiple sclerosis , 2016, Neurology.
[2] T. Chitnis,et al. Use of Disease-Modifying Therapies in Pediatric MS , 2016, Current Treatment Options in Neurology.
[3] A. Smith. Symbol Digit Modalities Test , 2016 .
[4] R. Benedict,et al. Cognitive and patient-reported outcomes in adults with pediatric-onset multiple sclerosis , 2016, Multiple sclerosis.
[5] J. Cromer,et al. The nature and rate of cognitive maturation from late childhood to adulthood , 2015, Front. Psychol..
[6] Giancarlo Zito,et al. Multiple sclerosis fatigue relief by bilateral somatosensory cortex neuromodulation , 2015, Brain Stimulation.
[7] P. Snyder,et al. Relationships between performance on the Cogstate Brief Battery, neurodegeneration, and Aβ accumulation in cognitively normal older adults and adults with MCI. , 2015, Archives of clinical neuropsychology : the official journal of the National Academy of Neuropsychologists.
[8] J. Foster,et al. Prospective associations between dietary patterns and cognitive performance during adolescence. , 2014, Journal of child psychology and psychiatry, and allied disciplines.
[9] D. Flora,et al. Age of Onset as a Moderator of Cognitive Decline in Pediatric-Onset Multiple Sclerosis , 2014, Journal of the International Neuropsychological Society.
[10] L. Krupp,et al. The Symbol Digit Modalities Test is an effective cognitive screen in pediatric onset multiple sclerosis (MS) , 2014, Journal of the Neurological Sciences.
[11] J. Foster,et al. Neurocognitive functioning in adolescents with eating disorders: A population-based study , 2013, Cognitive neuropsychiatry.
[12] A. Ghezzi,et al. International Pediatric Multiple Sclerosis Study Group criteria for pediatric multiple sclerosis and immune-mediated central nervous system demyelinating disorders: revisions to the 2007 definitions , 2013, Multiple sclerosis.
[13] D. Collins,et al. Changes in cognitive performance over a 1-year period in children and adolescents with multiple sclerosis. , 2013, Neuropsychology.
[14] C. Pozzilli,et al. The cognitive reserve theory in the setting of pediatric-onset multiple sclerosis , 2016, Multiple sclerosis.
[15] E. Waubant,et al. Cognitive Impairment Occurs in Children and Adolescents With Multiple Sclerosis , 2013, Journal of child neurology.
[16] R. Benedict,et al. Cross Cultural Validation of The Minimal Assessment of Cognitive Function in Multiple Sclerosis (MACFIMS) and The Brief International Cognitive Assessment for Multiple Sclerosis (BICAMS) , 2012, The Clinical neuropsychologist.
[17] H. Hartung,et al. Brief International Cognitive Assessment for MS (BICAMS): international standards for validation , 2012, BMC Neurology.
[18] H. Hartung,et al. Recommendations for a Brief International Cognitive Assessment for Multiple Sclerosis (BICAMS) , 2012, Multiple sclerosis.
[19] Jonathan D Rodgers,et al. Reliability and equivalence of alternate forms for the Symbol Digit Modalities Test: implications for multiple sclerosis clinical trials , 2012, Multiple sclerosis.
[20] M. Heo,et al. Effects on Cognitive Performance of Eating Compared With Omitting Breakfast in Elementary Schoolchildren , 2012, Journal of developmental and behavioral pediatrics : JDBP.
[21] E. Waubant,et al. Incidence of acquired CNS demyelinating syndromes in a multiethnic cohort of children , 2011, Neurology.
[22] R. Benedict,et al. Regression-Based Pediatric Norms for the Brief Visuospatial Memory Test – Revised and the Symbol Digit Modalities Test , 2011, The Clinical neuropsychologist.
[23] C. Pozzilli,et al. Cognitive and psychosocial features in childhood and juvenile MS , 2010, Neurology.
[24] P. Harris,et al. Research electronic data capture (REDCap) - A metadata-driven methodology and workflow process for providing translational research informatics support , 2009, J. Biomed. Informatics.
[25] P. Snyder,et al. Validity of the CogState brief battery: relationship to standardized tests and sensitivity to cognitive impairment in mild traumatic brain injury, schizophrenia, and AIDS dementia complex. , 2009, Archives of clinical neuropsychology : the official journal of the National Academy of Neuropsychologists.
[26] B. Weinstock-Guttman,et al. Repeated assessment of neuropsychological deficits in multiple sclerosis using the Symbol Digit Modalities Test and the MS Neuropsychological Screening Questionnaire , 2008, Multiple sclerosis.
[27] R Vecchio,et al. Cognitive and psychosocial features of childhood and juvenile MS , 2008, Neurology.
[28] L. Krupp,et al. Cognitive functioning in children and adolescents with multiple sclerosis , 2005, Neurology.
[29] C. Reynolds. Wide Range Achievement Test (WRAT‐R), 1984 Edition , 1986 .
[30] J. Kurtzke. Rating neurologic impairment in multiple sclerosis , 1983, Neurology.
[31] R. Meesen,et al. A single session of 1 mA anodal tDCS-supported motor training does not improve motor performance in patients with multiple sclerosis. , 2014, Restorative Neurology and Neuroscience.
[32] R. Temple,et al. Rey Auditory Verbal Learning Test (AVLT) performance in individuals with recent-onset spinal cord injury. , 2001 .