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Stiles J, Jernigan TL. The basics of brain development. Neuropsychol Rev 2010; 20: 327–48. doi: 10.1007/s11065-010-9148-4 StilesJ JerniganTL The basics of brain development Neuropsychol Rev 2010 20 327 48 10.1007/s11065-010-9148-4 Open DOISearch in Google Scholar

Gilles FH. Myelination in the neonatal brain. Hum Pathol 1976; 7: 244–8. doi: 10.1016/s0046-8177(76)80035-4 GillesFH Myelination in the neonatal brain Hum Pathol 1976 7 244 8 10.1016/s0046-8177(76)80035-4 Open DOISearch in Google Scholar

Keene MF. Some observations on myelination in the human central nervous system. J Anat 1931; 66: 1–13. PMID: 17104349 KeeneMF Some observations on myelination in the human central nervous system J Anat 1931 66 1 13 PMID: 17104349 Search in Google Scholar

Huppi PS, Inder TE. Magnetic resonance techniques in the evaluation of the perinatal brain: recent advances and future directions. Semin Neonatol 2001; 6: 195–210. doi: 10.1053/siny.2001.0039 HuppiPS InderTE Magnetic resonance techniques in the evaluation of the perinatal brain: recent advances and future directions Semin Neonatol 2001 6 195 210 10.1053/siny.2001.0039 Open DOISearch in Google Scholar

Baumann N, Pham-Dinh D. Biology of oligodendrocyte and myelin in the mammalian central nervous system. Physiol Rev 2001; 81: 871–927. doi: 10.1152/physrev.2001.81.2.871 BaumannN Pham-DinhD Biology of oligodendrocyte and myelin in the mammalian central nervous system Physiol Rev 2001 81 871 927 10.1152/physrev.2001.81.2.871 Open DOISearch in Google Scholar

Kinney HC, Brody BA, Kloman AS, Gilles FH. Sequence of central nervous system myelination in human infancy: II. patterns of myelination in autopsied infants. J Neuropathol Exp Neurol 1988; 47: 217–34. doi: 10.1097/00005072-198805000-00003 KinneyHC BrodyBA KlomanAS GillesFH Sequence of central nervous system myelination in human infancy: II. patterns of myelination in autopsied infants J Neuropathol Exp Neurol 1988 47 217 34 10.1097/00005072-198805000-00003 Open DOISearch in Google Scholar

Joseph VJ. Neurology of the newborn. Philadelphia: Saunders/Elsevier; 2008. JosephVJ Neurology of the newborn Philadelphia Saunders/Elsevier 2008 Search in Google Scholar

Deoni SCL, Mercure E, Blasi A, Gasston D, Thomson A, Johnson M, et al. Mapping infant brain myelination with magnetic resonance imaging. J Neurosci 2011; 31: 784–91. doi: 10.1523/JNEUROSCI.2106-10.2011 DeoniSCL MercureE BlasiA GasstonD ThomsonA JohnsonM Mapping infant brain myelination with magnetic resonance imaging J Neurosci 2011 31 784 91 10.1523/JNEUROSCI.2106-10.2011 Open DOISearch in Google Scholar

Bregant T. [Development, growth and maturation of the brain]. [Slovenian]. Psihološka obzorja 2012; 21: 51–60. doi: 10.20419/2012.21.363 BregantT [Development, growth and maturation of the brain]. [Slovenian] Psihološka obzorja 2012 21 51 60 10.20419/2012.21.363 Open DOISearch in Google Scholar

Woodward LJ, Anderson PJ, Austin NC, Howard K, Inder TE. Neonatal MRI to predict neurodevelopmental outcomes in preterm infants. N Engl J Med 2006; 355: 685–94. doi: 10.1056/NEJMoa053792 WoodwardLJ AndersonPJ AustinNC HowardK InderTE Neonatal MRI to predict neurodevelopmental outcomes in preterm infants N Engl J Med 2006 355 685 94 10.1056/NEJMoa053792 Open DOISearch in Google Scholar

Valk J, van der Knaap MS. The significance of MRI in myelin disorders. MAGMA 2 1994; 191–201. doi: 10.1007/BF01705240 ValkJ van der KnaapMS The significance of MRI in myelin disorders MAGMA 2 1994 191 201 10.1007/BF01705240 Open DOISearch in Google Scholar

Duncan ID, Radcliff AB. Inherited and acquired disorders of myelin: the underlying myelin pathology. Exp Neurol 2016; 283: 452–75. doi: 10.1016/j.expneurol.2016.04.002 DuncanID RadcliffAB Inherited and acquired disorders of myelin: the underlying myelin pathology Exp Neurol 2016 283 452 75 10.1016/j.expneurol.2016.04.002 Open DOISearch in Google Scholar

Matsumae M, Kurita D, Atsumi H, Haida M, Sato O, Tsugane R. Sequential changes in MR water proton relaxation time detect the process of rat brain myelination during maturation. Mech Ageing Dev 2001; 122: 1281–91. doi: 10.1016/s0047-6374(01)00265-2 MatsumaeM KuritaD AtsumiH HaidaM SatoO TsuganeR Sequential changes in MR water proton relaxation time detect the process of rat brain myelination during maturation Mech Ageing Dev 2001 122 1281 91 10.1016/s0047-6374(01)00265-2 Open DOISearch in Google Scholar

McArdle CB, Richardson CJ, Nicholas DA, Mirfakhraee M, Hayden CK, Amparo EK. Developmental features of the neonatal brain: MR imaging. Part I. Gray-white matter differentiation and myelination. Radiology 1987; 162: 223–9. doi: 10.1148/radiology.162.1.3786767 McArdleCB RichardsonCJ NicholasDA MirfakhraeeM HaydenCK AmparoEK Developmental features of the neonatal brain: MR imaging. Part I. Gray-white matter differentiation and myelination Radiology 1987 162 223 9 10.1148/radiology.162.1.3786767 Open DOISearch in Google Scholar

Lorenzo AV, Keasley W, Conner S, Black P, Dorval V. Change in the water and electrolyte pattern of the brain and of the intracranial pressure during development in rabbits. Z Kinderchir 1981; 34: 410–15. doi: 10.1055/s-2008-1063384 LorenzoAV KeasleyW ConnerS BlackP DorvalV Change in the water and electrolyte pattern of the brain and of the intracranial pressure during development in rabbits Z Kinderchir 1981 34 410 15 10.1055/s-2008-1063384 Open DOISearch in Google Scholar

Donaldson HH. On the percentage of water in the brain and in the spinal cord of the albino rat. J Comp Neurol Psychol 2004; 20: 119–44. doi: 10.1002/cne.920200203 DonaldsonHH On the percentage of water in the brain and in the spinal cord of the albino rat J Comp Neurol Psychol 2004 20 119 44 10.1002/cne.920200203 Open DOISearch in Google Scholar

Agrawal HC, Davis MJ, Himwich WA. Developmental changes in mouse brain: weight, water content and free amino acids. J Neurochem 1968; 15: 917–23. doi: 10.1111/j.1471-4159.1968.tb11633.x AgrawalHC DavisMJ HimwichWA Developmental changes in mouse brain: weight, water content and free amino acids J Neurochem 1968 15 917 23 10.1111/j.1471-4159.1968.tb11633.x Open DOISearch in Google Scholar

Cowan FM, Pennock JM, Hanrahan JD, Manji KP, Edwards AD. Early detection of cerebral infarction and hypoxic isehemic encephalopathy in neonates using diffusion-weighted magnetic resonance imaging. Neuropediatr 1994; 25: 172–5. doi: 10.1055/s-2008-1073018 CowanFM PennockJM HanrahanJD ManjiKP EdwardsAD Early detection of cerebral infarction and hypoxic isehemic encephalopathy in neonates using diffusion-weighted magnetic resonance imaging Neuropediatr 1994 25 172 5 10.1055/s-2008-1073018 Open DOISearch in Google Scholar

Johnson AJ, Lee BCP, Lin W. Echoplanar diffusion-weighted imaging in neonates and infants with suspected hypoxic-ishemic injury: correlation with patient outcome. AJR Am J Roenrgenol 1999; 172: 219–26. doi: 10.2214/ajr.172.1.9888771 JohnsonAJ LeeBCP LinW Echoplanar diffusion-weighted imaging in neonates and infants with suspected hypoxic-ishemic injury: correlation with patient outcome AJR Am J Roenrgenol 1999 172 219 26 10.2214/ajr.172.1.9888771 Open DOISearch in Google Scholar

Robertson RL, Ben-Sira L, Barnes PD, Mulkern RV, Robson CD, Maier SE. MR Line-scan diffusion-weighted imaging of term neonates with perinatal brain ischemia. AJNR Am J Neuroradiol 1999; 20: 1658–70. PMID: 10543637 RobertsonRL Ben-SiraL BarnesPD MulkernRV RobsonCD MaierSE MR Line-scan diffusion-weighted imaging of term neonates with perinatal brain ischemia AJNR Am J Neuroradiol 1999 20 1658 70 PMID: 10543637 Search in Google Scholar

Janet SS, Richard LR, Tzika AA, du Plessis AJ, Volpe JJ. Time course of changes in diffusion-weighted magnetic resonance imaging in a case of neonatal encephalopathy with defined onset and duration of hypoxic-ishemic insult. Pediatrics 2015; 108: 1211–14. doi: 10.1542/peds.108.5.1211 JanetSS RichardLR TzikaAA du PlessisAJ VolpeJJ Time course of changes in diffusion-weighted magnetic resonance imaging in a case of neonatal encephalopathy with defined onset and duration of hypoxic-ishemic insult Pediatrics 2015 108 1211 14 10.1542/peds.108.5.1211 Open DOISearch in Google Scholar

Toft PB, Leth H, Peitersen B, Lou HC, Thomsen C. The apparent diffusion coefficient of water in gray and white matter of the infant brain. J Comput Assist Tomogr 1996; 20: 1006–11. doi: 10.1097/00004728-199611000-00029 ToftPB LethH PeitersenB LouHC ThomsenC The apparent diffusion coefficient of water in gray and white matter of the infant brain J Comput Assist Tomogr 1996 20 1006 11 10.1097/00004728-199611000-00029 Open DOISearch in Google Scholar

Forbes KPN, Pipe JG, Bird CR. Changes in brain water diffusion during the 1st year of life. Radiol 2002; 222: 405–9. doi: 10.1148/radiol.2222010179 ForbesKPN PipeJG BirdCR Changes in brain water diffusion during the 1st year of life Radiol 2002 222 405 9 10.1148/radiol.2222010179 Open DOISearch in Google Scholar

Ouyang M, Dubois J, Yu Q, Mukherjee P, Huang H. Delineation of early brain development from fetuses to infants with diffusion MRI and beyond. Neuroimage 2019; 185: 836–50. doi: 10.1016/j.neuroimage.2018.04.017 OuyangM DuboisJ YuQ MukherjeeP HuangH Delineation of early brain development from fetuses to infants with diffusion MRI and beyond Neuroimage 2019 185 836 50 10.1016/j.neuroimage.2018.04.017 Open DOISearch in Google Scholar

Schneider MM, Berman JI, Baumer FM, Glass HC, Jeng S, Jeremy RJ, et al. Normative apparent diffusion coefficient values in the developing fetal brain. Am J Neuroradiol 2009; 30: 1799–803. doi: 10.3174/ajnr.A1661 SchneiderMM BermanJI BaumerFM GlassHC JengS JeremyRJ Normative apparent diffusion coefficient values in the developing fetal brain Am J Neuroradiol 2009 30 1799 803 10.3174/ajnr.A1661 Open DOISearch in Google Scholar

Di Trani MG, Manganaro L, Antonelli A, Guerreri M, De Feo R, Catalano C, et al. Apparent diffusion coefficient assessment of brain development in normal fetuses and ventriculomegaly. Front Physics 2019; 7: 1–9. doi: 10.3389/fphy.2019.00160 Di TraniMG ManganaroL AntonelliA GuerreriM De FeoR CatalanoC Apparent diffusion coefficient assessment of brain development in normal fetuses and ventriculomegaly Front Physics 2019 7 1 9 10.3389/fphy.2019.00160 Open DOISearch in Google Scholar

Cannie M, de Keyzer F, Meersschaert J, Jani J, Lewi L, Deprest J, et al. A diffusion-weighted template for gestational age-related apparent diffusion coefficient values in the developing fetal brain. Ultrasound Ob Gyn 2007; 30: 318–24. doi: 0.1002/uog.4078 CannieM de KeyzerF MeersschaertJ JaniJ LewiL DeprestJ A diffusion-weighted template for gestational age-related apparent diffusion coefficient values in the developing fetal brain Ultrasound Ob Gyn 2007 30 318 24 10.1002/uog.4078 Open DOISearch in Google Scholar

Righini A, Bianchini E, Parazzini C, Gementi P, Ramenghi L, Baldoli C, et al. Apparent diffusion coefficient determination in normal fetal brain: a prenatal MR imaging study. Am J Neuroradiol 2003; 24: 799–804. RighiniA BianchiniE ParazziniC GementiP RamenghiL BaldoliC Apparent diffusion coefficient determination in normal fetal brain: a prenatal MR imaging study Am J Neuroradiol 2003 24 799 804 Search in Google Scholar

Han R, Huang L, Sun Z, Zhang D, Chen X, Yang X, et al. Assessment of apparent diffusion coefficient of normal fetal brain development from gestational age week 24 up to term age: a preliminary study. Fetal Diagnosis Therapy 2014; 37: 102–7. doi: 10.1159/000363650 HanR HuangL SunZ ZhangD ChenX YangX Assessment of apparent diffusion coefficient of normal fetal brain development from gestational age week 24 up to term age: a preliminary study Fetal Diagnosis Therapy 2014 37 102 7 10.1159/000363650 Open DOISearch in Google Scholar

Hoffmann C, Weisz B, Lipitz S, Yaniv G, Katorza E, Bergmann D, et al. Regional apparent diffusion coefficient values in 3rd trimester fetal brain. Neuroradiol 2014; 56: 561–7. doi: 10.1007/s00234-014-1359-6 HoffmannC WeiszB LipitzS YanivG KatorzaE BergmannD Regional apparent diffusion coefficient values in 3rd trimester fetal brain Neuroradiol 2014 56 561 7 10.1007/s00234-014-1359-6 Open DOISearch in Google Scholar

Schneider JF, Confort-Gouny S, le Fur Y, Viout P, Bennathan B, Chapon F, et al. Diffusion-weighted imaging in normal fetal brain maturation. European Radiol 2007; 17: 2422–9. doi: 10.1007/s00330-007-0634-x SchneiderJF Confort-GounyS le FurY VioutP BennathanB ChaponF Diffusion-weighted imaging in normal fetal brain maturation European Radiol 2007 17 2422 9 10.1007/s00330-007-0634-x Open DOISearch in Google Scholar

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