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88 Chapter 5 20. de Groot M, IkramMA, Akoudad S, Krestin GP, Hofman A, van der Lugt A et al. Tract-specific white matter degeneration in aging: the Rotterdam Study. Alzheimers Dement 2015;11:321-30. 21. Muetzel RL, Mous SE, van der Ende J, Blanken LM, van der Lugt A, Jaddoe VW et al. White matter integrity and cognitive performance in school-age children: A population-based neuroimaging study. Neuroimage 2015;119:119-28. 22. Team RC. R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. 2020. 23. Schneider JF, Il ’yasov KA, Hennig J , Martin E. Fast quantitative diffusion-tensor imaging of cerebral white matter from the neonatal period to adolescence. Neuroradiology 2004;46:258-66. 24. Yoshida S, Oishi K, Faria AV , Mori S. Diffusion tensor imaging of normal brain development. Pediatr Radiol 2013;43:15-27. 25. Provenzale JM, Liang L, DeLong D , White LE. Diffusion tensor imaging assessment of brain white matter maturation during the first postnatal year. AJR Am J Roentgenol 2007;189:47686. 26. Dubois J, Hertz-Pannier L, Dehaene-Lambertz G, Cointepas Y , Le Bihan D. Assessment of the early organization and maturation of infants’ cerebral white matter fiber bundles: a feasibility study using quantitative diffusion tensor imaging and tractography. Neuroimage 2006;30:1121-32. 27. Cascio CJ, Gerig G , Piven J. Diffusion tensor imaging: Application to the study of the developing brain. J Am Acad Child Adolesc Psychiatry 2007;46:213-23. 28. Walker L, Chang LC, Nayak A, Irfanoglu MO, Botteron KN, McCracken J et al. The diffusion tensor imaging (DTI) component of the NIH MRI study of normal brain development (PedsDTI). Neuroimage 2016;124:1125-30. 29. Speltz ML, Collett BR, Wallace ER, Starr JR, Cradock MM, Buono L et al. Intellectual and academic functioning of school-age children with single-suture craniosynostosis. Pediatrics 2015;135:e615-23. 30. Speltz ML, Collett BR, Wallace ER , Kapp-Simon K. Behavioral Adjustment of School-Age Children with and without Single-Suture Craniosynostosis. Plast Reconstr Surg 2016;138:43545. 31. Bellew M , Chumas P. Long-term developmental follow-up in children with nonsyndromic craniosynostosis. J Neurosurg Pediatr 2015;16:445-51. 32. Janjic T, Pereverzyev S, Jr., Hammerl M, Neubauer V, Lerchner H, Wallner V et al. Feed-forward neural networks using cerebral MR spectroscopy and DTI might predict neurodevelopmental outcome in preterm neonates. Eur Radiol 2020;30:6441-51.

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