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Etemadifar et al.                                                                                                                                                           Imaging of demyelinated corpus callosum

               retrobulbar  neuritis  in  multiple  sclerosis:  are  optical  coherence   multiple sclerosis: a comparison of volumetric measurements, corpus
               tomography  and  magnetic  resonance  imaging  useful  and  necessary   callosum area and index. J Neuroimaging 2015;25:996-1001.
               follow-up parameters? Nervenarzt 2015;86:187-96.  58.  Kimura MC, Doring TM, Rueda FC, Tukamoto G, Gasparetto EL.
           42.  Rossi F, Giorgio A, Battaglini M, Stromillo ML, Portaccio E, Goretti   In vivo assessment of white matter damage in neuromyelitis optica:
               B, Federico A, Hakiki B, Amato MP, De Stefano N. Relevance of   a diffusion tensor and diffusion kurtosis MR imaging study. J Neurol
               brain lesion location to cognition in relapsing multiple sclerosis. PLoS   Sci 2014;345:172-5.
               One 2012;7:e44826.                             59.  Jeantroux J, Kremer S, Lin XZ, Collongues N, Chanson JB, Bourre
           43.  Bergendal G,  Martola J,  Stawiarz L, Kristoffersen-Wiberg M,   B, Fleury M, Blanc F, Dietemann  JL, de Seze J. Diffusion tensor
               Fredrikson S, Almkvist O. Callosal atrophy in multiple sclerosis is   imaging of normal-appearing white matter in neuromyelitis optica. J
               related to cognitive speed. Acta Neurol Scand 2013;127:281-9.  Neuroradiol 2012;39:295-300.
           44.  Harrison DM, Shiee N, Bazin PL, Newsome SD, Ratchford JN, Pham   60.  Sun H, Ye J, Liao ZY, Li CJ, You XF, Li KC, Liu YO, Duan YY. The
               D,  Calabresi  PA,  Reich  DS.  Tract-specific  quantitative  MRI  better   clinical and magnetic resonance imaging studies of brain damages in
               correlates with disability than conventional MRI in multiple sclerosis.   neuromyelitis optica. Zhonghua Nei Ke Za Zhi 2011;50:193-6.
               J Neurol 2013;260:397-406.                     61.  Harrison DM, Caffo BS, Shiee  N, Farrell  JA, Bazin  PL, Farrell
           45.  Rimkus Cde M, Junqueira Tde F, Lyra KP, Jackowski MP, Machado   SK,  Ratchford JN, Calabresi PA, Reich DS.  Longitudinal changes
               MA,  Miotto EC, Callegaro  D, Otaduy MC, Leite  Cda C. Corpus   in diffusion tensor-based quantitative  MRI in multiple  sclerosis.
               callosum microstructural changes correlate with cognitive dysfunction   Neurology 2011;76:179-86.
               in  early  stages  of  relapsing-remitting  multiple  sclerosis:  axial  and   62.  Sigirli D, Ercan I, Ozdemir ST, Taskapilioglu O, Hakyemez B, Turan
               radial diffusivities approach. Mult Scler Int 2011;2011:304875.  OF.Shape analysis of the corpus callosum and cerebellum in female
           46.  Natarajan R, Hagman S, Wu X, Hakulinen U, Raunio M, Helminen M,   MS patients with different clinical phenotypes. Anat Rec (Hoboken)
               Rossi M, Dastidar P, Elovaara I. Diffusion tensor imaging in NAWM   2012;295:1202-11.
               and NADGM in MS and CIS. Mult Scler Int 2013;2013:265259.  63.  He D, Wu Q, Chen X, Zhao D, Gong Q, Zhou H. Cognitive impairment
           47.  Zipunnikov V, Greven S, Shou H, Caffo B, Reich DS, Crainiceanu   and whole brain diffusion in patients with neuromyelitis optica after
               C. Longitudinal high-dimensional principal components analysis with   acute relapse. Brain Cogn 2011;77:80-8.
               application to diffusion tensor imaging of multiple sclerosis. Ann Appl   64.  Ciccarelli O, Werring DJ, Barker GJ, Griffin CM, Wheeler-Kingshott
               Stat 2014;8:2175-202.                             CA, Miller DH, Thompson AJ. A study of the mechanisms of normal-
           48.  Liu JG, Qiao WY, Dong QW, Zhang HL, Zheng KH, Qian HR, Qi   appearing white matter damage in multiple sclerosis using diffusion
               XK. Clinical features and neuroimaging findings of 12 patients with   tensor imaging -- evidence  of  Wallerian  degeneration.  J Neurol
               acute  disseminated  encephalomyelitis involved  in corpus callosum.   2003;250:287-92.
               Zhonghua Yi Xue Za Zhi 2012;92:3036-41.        65.  Wood ET, Ronen I,  Techawiboonwong  A, Jones CK, Barker PB,
           49.  Brass SD, Caramanos Z, Santos C, Dilenge ME, Lapierre Y, Rosenblatt   Calabresi  P,  Harrison  D,  Reich  DS.  Investigating  axonal  damage
               B. Multiple  sclerosis vs acute  disseminated  encephalomyelitis  in   in multiple  sclerosis by diffusion tensor spectroscopy.  J Neurosci
               childhood. Pediatr Neurol 2003;29:227-31.         2012;32:6665-9.
           50.  Senda J, Watanabe H, Tsuboi T, Hara K, Watanabe H, Nakamura R, Ito   66.  Zito G, Luders E, Tomasevic L, Lupoi D, Toga AW, Thompson PM,
               M, Atsuta N, Tanaka F, Naganawa S, Sobue G. MRI mean diffusivity   Rossini PM, Filippi  MM,  Tecchio  F. Inter-hemispheric  functional
               detects widespread brain degeneration in multiple sclerosis. J Neurol   connectivity changes with corpus callosum morphology in multiple
               Sci 2012;319:105-10.                              sclerosis. Neuroscience 2014;266:47-55.
           51.  Donmez FY, Aslan H, Coskun M. Evaluation of possible prognostic   67.  Saida T. Magnetic resonance imaging in multiple sclerosis. Rinsho
               factors of fulminant acute disseminated encephalomyelitis (ADEM)   Shinkeigaku 1999;39:114-5.
               on  magnetic  resonance  imaging  with  fluid-attenuated  inversion   68.  Mateen FJ, Zubkov AY, Muralidharan R, Fugate JE, Rodriguez FJ,
               recovery  (FLAIR) and diffusion-weighted  imaging.  Acta  Radiol   Winters JL, Petty GW. Susac syndrome: characteristics and treatment
               2009;50:334-9.                                    in 29 new cases. Eur J Neurol 2012;19:800-11.
           52.  Tanaka  Y, Nishida  H, Hayashi  R, Inuzuka  T, Otsuki M. Callosal   69.  Kleffner I, Deppe M, Mohammadi S, Schwindt W, Sommer J, Young
               disconnection syndrome due to acute disseminated enchephalomyelitis.   P, Ringelstein EB. Neuroimaging in Susac’s syndrome: focus on DTI.
               Rinsho Shinkeigaku 2006;46:50-4.                  J Neurol Sci 2010;299:92-6.
           53.  Petzold GC, Stiepani H, Klingebiel R, Zschenderlein R. Diffusion-  70.  Raets I, Gelin G. Susac’s syndrome: a clinical  and radiological
               weighted  magnetic resonance imaging  of acute  disseminated   challenge. JBR-BTR 2012;95:355-6.
               encephalomyelitis. Eur J Neurol 2005;12:735-6.  71.  Rennebohm R, Susac JO, Egan RA, Daroff RB. Susac’s syndrome. J
           54.  Chanson JB, Lamy J, Rousseau F, Blanc F, Collongues N, Fleury M,   Neurol Sci 2010;299:86-91.
               Armspach JP, Kremer S, de Seze J. White matter volume is decreased   72.  Zhao DD, Zhou HY, Wu QZ, Liu J, Chen XY, He D, He XF, Han
               in the brain of patients with neuromyelitis optica.  Eur J Neurol   WJ, Gong QY. Diffusion tensor imaging  characterization  of occult
               2013;20:361-7.                                    brain damage in relapsing neuromyelitis optica using 3.0T magnetic
           55.  Eshaghi  A,  Wottschel  V, Cortese R,Calabrese M, Sahraian MA,   resonance imaging techniques. Neuroimage 2012;59:3173-7.
               Thompson  AJ,  Alexander  DC,  Ciccarelli  O.  Gray  matter  MRI   73.  Star M, Gill R, Bruzzone M, De Alba F, Schneck MJ, Biller J. Do not
               differentiates  neuromyelitis  optica from multiple  sclerosis using   forget susac syndrome in patients with unexplained acute confusion. J
               random forest. Neurology 2016;87:2463-70.         Stroke Cerebrovasc Dis 2015;24:e93-5.
           56.  Kim JE, Kim SM, Ahn SW, Lim BC, Chae JH, Hong YH, Park KS,   74.  Öztürk M, Sığırcı A, Yakıncı C. MRI and MR spectroscopy findings
               Sung JJ, Lee  KW. Brain abnormalities  in neuromyelitis  optica.  J   of a case of subacute sclerosing panencephalitis affecting the corpus
               Neurol Sci 2011;302:43-8.                         callosum. BMJ Case Rep 2015;2015:bcr2015209310.
           57.  Granberg T, Bergendal G, Shams S, Aspelin P, Kristoffersen-Wiberg   75.  Belman AL, Coyle PK, Roque C, Cantos E. MRI findings in children
               M, Fredrikson S, Martola J. MRI-defined corpus callosal atrophy in   infected by borrelia burgdorferi. Pediatr Neurol 1992;8:428-31.







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