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Journal Abstract Search


341 related items for PubMed ID: 15210495

  • 1. Can the Griffiths scales predict neuromotor and perceptual-motor impairment in term infants with neonatal encephalopathy?
    Barnett AL, Guzzetta A, Mercuri E, Henderson SE, Haataja L, Cowan F, Dubowitz L.
    Arch Dis Child; 2004 Jul; 89(7):637-43. PubMed ID: 15210495
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  • 2. Predicting motor outcome at preschool age for infants tested at 7, 30, 60, and 90 days after term age using the Test of Infant Motor Performance.
    Kolobe TH, Bulanda M, Susman L.
    Phys Ther; 2004 Dec; 84(12):1144-56. PubMed ID: 15563255
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  • 3. Functional outcome at school age of preterm infants with periventricular hemorrhagic infarction.
    Roze E, Van Braeckel KN, van der Veere CN, Maathuis CG, Martijn A, Bos AF.
    Pediatrics; 2009 Jun; 123(6):1493-500. PubMed ID: 19482759
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  • 5. Motor testing at 1 year improves the prediction of motor and mental outcome at 2 years after perinatal hypoxic-ischaemic encephalopathy.
    van Schie PE, Becher JG, Dallmeijer AJ, Barkhof F, Van Weissenbruch MM, Vermeulen RJ.
    Dev Med Child Neurol; 2010 Jan; 52(1):54-9. PubMed ID: 19416322
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  • 9. International collaborative study of intracytoplasmic sperm injection-conceived, in vitro fertilization-conceived, and naturally conceived 5-year-old child outcomes: cognitive and motor assessments.
    Ponjaert-Kristoffersen I, Bonduelle M, Barnes J, Nekkebroeck J, Loft A, Wennerholm UB, Tarlatzis BC, Peters C, Hagberg BS, Berner A, Sutcliffe AG.
    Pediatrics; 2005 Mar; 115(3):e283-9. PubMed ID: 15741353
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  • 10. Approaches to neurodevelopmental assessment in congenital diaphragmatic hernia survivors.
    Chen C, Friedman S, Butler S, Jeruss S, Terrin N, Tighiouart H, Ware J, Wilson JM, Parsons SK.
    J Pediatr Surg; 2007 Jun; 42(6):1052-6; discussion 1056. PubMed ID: 17560219
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  • 11. The quality of preterm infants' spontaneous movements: an early indicator of intelligence and behaviour at school age.
    Butcher PR, van Braeckel K, Bouma A, Einspieler C, Stremmelaar EF, Bos AF.
    J Child Psychol Psychiatry; 2009 Aug; 50(8):920-30. PubMed ID: 19457048
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  • 13. Impact of visual impairment on measures of cognitive function for children with congenital toxoplasmosis: implications for compensatory intervention strategies.
    Roizen N, Kasza K, Karrison T, Mets M, Noble AG, Boyer K, Swisher C, Meier P, Remington J, Jalbrzikowski J, McLeod R, Kipp M, Rabiah P, Chamot D, Estes R, Cezar S, Mack D, Pfiffner L, Stein M, Danis B, Patel D, Hopkins J, Holfels E, Stein L, Withers S, Cameron A, Perkins J, Heydemann P.
    Pediatrics; 2006 Aug; 118(2):e379-90. PubMed ID: 16864640
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  • 14. Early identification of cerebral palsy using a profile of abnormal motor patterns.
    Morgan AM, Aldag JC.
    Pediatrics; 1996 Oct; 98(4 Pt 1):692-7. PubMed ID: 8885948
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  • 15. Predictive value of assessment of general movements for neurological development of high-risk preterm infants: comparative study.
    Seme-Ciglenecki P.
    Croat Med J; 2003 Dec; 44(6):721-7. PubMed ID: 14652886
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  • 17. The role of early fine and gross motor development on later motor and cognitive ability.
    Piek JP, Dawson L, Smith LM, Gasson N.
    Hum Mov Sci; 2008 Oct; 27(5):668-81. PubMed ID: 18242747
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  • 19. Physical growth and neurodevelopmental outcome of nonhandicapped low-risk children born preterm.
    Pietz J, Peter J, Graf R, Rauterberg-Ruland I, Rupp A, Sontheimer D, Linderkamp O.
    Early Hum Dev; 2004 Sep; 79(2):131-43. PubMed ID: 15324993
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  • 20. Developmental coordination disorder in "apparently normal" schoolchildren born extremely preterm.
    Goyen TA, Lui K.
    Arch Dis Child; 2009 Apr; 94(4):298-302. PubMed ID: 18838419
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