Development of corpus callosum in preterm infants is affected by the prematurity: in vivo assessment of diffusion tensor imaging at term-equivalent age

scientific article published on 01 March 2011

Development of corpus callosum in preterm infants is affected by the prematurity: in vivo assessment of diffusion tensor imaging at term-equivalent age is …
instance of (P31):
scholarly articleQ13442814

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P6179Dimensions Publication ID1001486156
P356DOI10.1203/PDR.0B013E3182084E54
P698PubMed publication ID21131895

P2093author name stringAkira Nishimura
Hajime Hosoi
Kei Yamada
Tsunehiko Nishimura
Kenichi Isoda
Masafumi Morimoto
Tatsuji Hasegawa
Aki Murakami
Sachiko Tokuda
Takenori Tozawa
Tomohiro Chiyonobu
Shigemi Morioka
P433issue3
P921main subjectdiffusion tensor imagingQ30088257
preterm infantQ45051448
P304page(s)249-254
P577publication date2011-03-01
P1433published inPediatric ResearchQ7159215
P1476titleDevelopment of corpus callosum in preterm infants is affected by the prematurity: in vivo assessment of diffusion tensor imaging at term-equivalent age
P478volume69

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cites work (P2860)
Q48528845A comparison of microstructural maturational changes of the corpus callosum in preterm and full-term children: a diffusion tensor imaging study
Q40800604Accelerated corpus callosum development in prematurity predicts improved outcome
Q34945969Assessment of structural connectivity in the preterm brain at term equivalent age using diffusion MRI and T2 relaxometry: a network-based analysis
Q39099131Biometry of the corpus callosum assessed by 3D ultrasound and its correlation to neurodevelopmental outcome in very low birth weight infants.
Q46140490Body growth and brain development in premature babies: an MRI study
Q47367785Cerebral White Matter Maturation Patterns in Preterm Infants: An MRI T2 Relaxation Anisotropy and Diffusion Tensor Imaging Study
Q30918847Data quality in diffusion tensor imaging studies of the preterm brain: a systematic review
Q35839283Decreased and Increased Anisotropy along Major Cerebral White Matter Tracts in Preterm Children and Adolescents
Q35587682Development of the Corticospinal and Callosal Tracts from Extremely Premature Birth up to 2 Years of Age
Q58774283Diffusion MRI parameters of corpus callosum and corticospinal tract in neonates: Comparison between region-of-interest and whole tract averaged measurements
Q30661333Diffusion magnetic resonance imaging in preterm brain injury.
Q26827805Diffusion tensor imaging for understanding brain development in early life
Q48613311Effect of antenatal growth and prematurity on brain white matter: diffusion tensor study
Q45902744Effect of antenatal growth on brain white matter maturation in preterm infants at term using tract-based spatial statistics.
Q43814198Effects of chemotherapy on the brain in childhood: diffusion tensor imaging of subtle white matter damage
Q34764724Gestational age and neonatal brain microstructure in term born infants: a birth cohort study
Q60302915Hypoxia and connectivity in the developing vertebrate nervous system
Q33652493Interhemispheric temporal lobe connectivity predicts language impairment in adolescents born preterm
Q48372326Low-grade intraventricular hemorrhage disrupts cerebellar white matter in preterm infants: evidence from diffusion tensor imaging
Q55018735Postnatal Microstructural Developmental Trajectory of Corpus Callosum Subregions and Relationship to Clinical Factors in Very Preterm Infants.
Q57815907Recent advances in diffusion neuroimaging: applications in the developing preterm brain
Q38654026Social brain circuitry and social cognition in infants born preterm
Q34095435Ultrasound measurement of the corpus callosum and neural development of premature infants
Q91921177White matter microstructure and cognitive outcomes in relation to neonatal inflammation in 6-year-old children born preterm
Q38637457White matter microstructure of 6-year old children born preterm and full term
Q51814151[Quantitative evaluation of white matter development in fetus with growth restriction by diffusion tensor imaging].