The brief repeatable battery of neuropsychological tests (BRB-N) version a: update of Italian normative data from the Italian Neuroimaging Network Initiative (INNI)

Amato M, Morra V, Falautano M, Ghezzi A, Goretti B, Patti F, Riccardi A, Mattioli F (2018) Cognitive assessment in multiple sclerosis-an Italian consensus. Neurol Sci 39:1317–1324

Article  PubMed  Google Scholar 

Amato MP, Portaccio E, Goretti B, Zipoli V, Ricchiu L, De Caro MF, Patti F, Vecchio R, Sorbi S, Trojano M (2006) The Rao’s Brief Repeatable Battery and Stroop test: normative values with age, education and gender corrections in an Italian population. Mult Scler 12:787–793

Article  CAS  PubMed  Google Scholar 

Barbizet JCE (1968) Clinical and psychometrical study of a patient with memory disturbances. Int J Neurol Neurother 7:44–54

CAS  Google Scholar 

Belsley DAKE, Welsch RE (1980) Regression diagnostics: identifying influential data and sources of collinearity. Wiley

Book  Google Scholar 

Benedict RHB, Amato MP, DeLuca J, Geurt JJG (2020) Cognitive impairment in multiple sclerosis: clinical management, MRI, and therapeutic avenues. Lancet Neurol 19:860–871

Article  PubMed  PubMed Central  Google Scholar 

Benedict RHB, Fischer JS, Archibald CJ, Arnett PA, Beatty WW, Bobholz J, Chelune GJ, Fisk JD, Langdon DW, Caruso L, Foley F, LaRocca NG, Vowels L, Weinstein A, DeLuca J, Rao SM, Munschauer F (2002) Minimal neuropsychological assessment of MS patients: A consensus approach. Clin Neuropsychol 16:381–397

Article  PubMed  Google Scholar 

Berrigan LI, Fisk JD, Walker LAS, Wojtowicz M, Rees LM, Freedman MS, Marrie RA (2014) Reliability of regression-based normative data for the oral symbol digit modalities test: an evaluation of demographic influences, construct validity, and impairment classification rates in multiple sclerosis samples. Clin Neuropsychol 28:281–299

Article  PubMed  Google Scholar 

Buschke HF, PA (1974) Evaluating storage, retention, and retrieval in disordered memory and learning. Neurology 24

De Rosa AP, Esposito F, Valsasina P, d’Ambrosio A, Bisecco A, Rocca MA, Tommasin S, Marzi C, De Stefano N, Battaglini M, Pantano P, Cirillo M, Tedeschi G, Filippi M, Gallo A, Network I (2023) Resting-state functional MRI in multicenter studies on multiple sclerosis: a report on raw data quality and functional connectivity features from the Italian Neuroimaging Network Initiative. J Neurol 270:1047–1066

Article  PubMed  Google Scholar 

Dusankova JB, Kalincik T, Havrdova E, Benedict RHB (2012) Validation of brief international cognitive assessment for multiple sclerosis (BICAMS). J Neurol 259:S193–S193

Google Scholar 

Filippi M, Tedeschi G, Pantano P, De Stefano N, Zaratin P, Rocca MA, Network I (2017) The Italian Neuroimaging Network Initiative (INNI): enabling the use of advanced MRI techniques in patients with MS. Neurol Sci 38:1029–1038

Article  CAS  PubMed  Google Scholar 

Frndak SE, Kordovski VM, Cookfair D, Rodgers JD, Weinstock-Guttman B, Benedict RHB (2015) Disclosure of disease status among employed multiple sclerosis patients: association with negative work events and accommodations. Mult Scler J 21:225–234

Article  Google Scholar 

Goretti B, Niccolai C, Hakiki B, Sturchio A, Falautano M, Minacapelli E, Martinelli V, Incerti C, Nocentini U, Murgia M, Fenu G, Cocco E, Marrosu MG, Garofalo E, Ambra FI, Maddestra M, Consalvo M, Viterbo RG, Trojano M, Losignore NA, Zimatore GB, Pietrolongo E, Lugaresi A, Langdon D, Portaccio E, Amato MP (2014) The brief international cognitive assessment for multiple sclerosis (BICAMS): normative values with gender, age and education corrections in the Italian population. Bmc Neurol 14

Goretti B, Patti F, Cilia S, Mattioli F, Stampatori C, Scarpazza C, Amato MP, Portaccio E (2014) The Rao’s Brief Repeatable Battery version B: normative values with age, education and gender corrections in an Italian population. Neurol Sci 35:79–82

Article  CAS  PubMed  Google Scholar 

Gronwall DM (1977) Paced Auditory Serial-addition Task: a measure of recovery from concussion. Percept Mot Skills 44:367–373

Article  CAS  PubMed  Google Scholar 

Grossi P, Portaccio E, Bellomi F, Bianchi V, Cilia S, Falautano M, Goretti B, Pietrolongo E, Viterbo RG, Uccelli MM (2020) The minimal neuropsychological assessment of MS patients (MACFIMS): normative data of the Italian population. Neurol Sci 41:1489–1496

Article  PubMed  Google Scholar 

Guilloton L, Camdessanche JP, Latombe D, Neuschwander P, Cantalloube S, Thomas-Anterion C, Mercier B, Roggerone S, Maucort-Boulch D, Roche S, Jacquin-Courtois S, Cognition MSgotR-AMSn, (2020) A clinical screening tool for objective and subjective cognitive disorders in multiple sclerosis. Ann Phys Rehabil Med 63:116–122

Article  PubMed  Google Scholar 

Hawley CJ, Gale TM, Sivakumaran T, Grp HNR (2002) Defining remission by cut off score on the MADRS: selecting the optimal value. J Affect Disorders 72:177–184

Article  CAS  PubMed  Google Scholar 

Hubacher M, Calabrese P, Bassetti C, Carota A, Stöcklin M, Penner IK (2012) Assessment of post-stroke fatigue: the fatigue scale for motor and cognitive functions. Eur Neurol 67:377–384

Article  PubMed  Google Scholar 

ISTAT (2021) Report Livelli Di Istruzione 2020.

Kutner MHN, NeterLi CJJW (2005) Applied linear statistical models. McGraw Hill, New York

Google Scholar 

Moghadasi AN, Mirmosayyeb O, Mohammadi A, Sahraian MA, Ghajarzadeh M (2021) The prevalence of cognitive impairment in patients with neuromyelitis optica spectrum disorders (NMOSD): a systematic review and meta-analysis. Mult Scler Relat Disord 49:102757

Article  PubMed  Google Scholar 

Noseworthy J, Paty D, Wonnacott T, Feasby T, Ebers G (1983) Multiple-sclerosis after age 50. Neurology 33:1537–1544

Article  CAS  PubMed  Google Scholar 

Pagani E, Storelli L, Pantano P, Petsas N, Tedeschi G, Gallo A, De Stefano N, Battaglini M, Rocca MA, Filippi M, Network I (2023) Multicenter data harmonization for regional brain atrophy and application in multiple sclerosis. J Neurol 270:446–459

Article  PubMed  Google Scholar 

Pagnotti RB, Hua LH, Miller JB (2022) Cognition and disease characteristics in adult onset versus late onset multiple sclerosis. Mult Scler J 28:933–941

Article  Google Scholar 

Parmenter BA, Testa SM, Schretlen DJ, Weinstock-Guttman B, Benedict RHB (2010) The utility of regression-based norms in interpreting the minimal assessment of cognitive function in multiple sclerosis (MACFIMS). J Int Neuropsych Soc 16:6–16

Article  Google Scholar 

Polliack ML, Barak Y, Achiron A (2001) Late-onset multiple sclerosis. J Am Geriatr Soc 49:168–171

Article  CAS  PubMed  Google Scholar 

Raimo S, Trojano L, Siciliano M, Cuoco S, D’Iorio A, Santangelo F, Abbamonte L, Grossi D, Santangelo G (2016) Psychometric properties of the Italian version of the multifactorial memory questionnaire for adults and the elderly. Neurol Sci 37:681–691

Article  CAS  PubMed  Google Scholar 

Rao SM (1990) A manual for the brief repeatable battery of neuropsychological test in multiple sclerosis. Medical College of Wisconsin, Milwaukee

Google Scholar 

Rocca MA, Amato MP, De Stefano N, Enzinger C, Geurts JJ, Penner IK, Rovira A, Sumowski JF, Valsasina P, Filippi M, Group MS (2015) Clinical and imaging assessment of cognitive dysfunction in multiple sclerosis. Lancet Neurol 14:302–317

Article  PubMed  Google Scholar 

Roth AK, Denney DR, Burns JM, Lynch SG (2018) Cognition in older patients with multiple sclerosis compared to patients with amnestic mild cognitive impairment and healthy older adults. Neuropsychology 32:654–663

Article  PubMed  PubMed Central  Google Scholar 

Salthouse T (2005) Developmental influences on adult intelligence: the Seattle Longitudinal Study. Intelligence 33:551–554

Article  Google Scholar 

Salthouse TA (2010) Influence of age on practice effects in longitudinal neurocognitive change. Neuropsychology 24:563–572

Article  PubMed  PubMed Central  Google Scholar 

Salthouse TA (2010) Selective review of cognitive aging. J Int Neuropsych Soc 16:754–760

Article  Google Scholar 

Salthouse TA, Ferrer-Caja E (2003) What needs to be explained to account for age-related effects on multiple cognitive variables? Psychol Aging 18:91–110

Article  PubMed  Google Scholar 

Smith A (1991) Symbol digit modalities test: manual. Western Psychological Services, Los Angeles

Google Scholar 

Storelli L, Rocca MA, Pantano P, Pagani E, De Stefano N, Tedeschi G, Zaratin P, Filippi M, Network I (2019) MRI quality control for the Italian Neuroimaging Network Initiative: moving towards big data in multiple sclerosis. J Neurol 266:2848–2858

Article  PubMed  Google Scholar 

Strober L, Chiaravalloti N, Moore N, DeLuca J (2014) Unemployment in multiple sclerosis (MS): utility of the MS Functional Composite and cognitive testing. Mult Scler J 20:112–115

Article  Google Scholar 

Strober L, Englert J, Munschauer F, Weinstock-Guttman B, Rao S, Benedict RHB (2009) Sensitivity of conventional memory tests in multiple sclerosis: comparing the Rao Brief Repeatable Neuropsychological Battery and the Minimal Assessment of Cognitive Function in MS. Mult Scler J 15:1077–1084

Article  CAS  Google Scholar 

Sumowski JF, Benedict RHB, Enzinger C, Filippi M, Geurts JJ, Hamalainen P, Hulst HE, Inglese M, Leavitt VM, Rocca MA, Rosti-Otajarvi EM, Rao S (2018) Cognition in multiple sclerosis. Neurology 90:278–288

Article  PubMed  PubMed Central  Google Scholar 

Templeton GF (2011) A Two-step approach for transforming continuous variables to normal: implications and recommendations for IS research. Commun Assoc Inform Syst 28

Vaughn CB, Jakimovski D, Kavak KS, Ramanathan M, Benedict RHB, Zivadinov R, Weinstock-Guttman B (2019) Epidemiology and treatment of multiple sclerosis in elderly populations. Nat Rev Neurol 15:329–342

Article  PubMed  Google Scholar 

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