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Kathryn DeRoche & Marilyn Welsh. (2008) Twenty-Five Years of Research on Neurocognitive Outcomes in Early-Treated Phenylketonuria: Intelligence and Executive Function. Developmental Neuropsychology 33:4, pages 474-504.
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PeterJ. Anderson, StephenJ. Wood, DorothyE. Francis, Lee Coleman, Vicki Anderson & Avihu Boneh. (2007) Are Neuropsychological Impairments in Children with Early-Treated Phenylketonuria (PKU) Related to White Matter Abnormalities or Elevated Phenylalanine Levels?. Developmental Neuropsychology 32:2, pages 645-668.
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Stephan Huijbregts, Leo de Sonneville, Rob Licht, Joseph Sergeant & Francjan van Spronsen. (2002) Inhibition of Prepotent Responding and Attentional Flexibility in Treated Phenylketonuria. Developmental Neuropsychology 22:2, pages 481-499.
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Articles from other publishers (22)

Cristina Romani, Andrew Olson, Lynne Aitkenhead, Lucy Baker, Dhanesha Patel, Francjan Van Spronsen, Anita MacDonald, Annemiek van Wegberg & Stephan Huijbregts. (2022) Meta-analyses of cognitive functions in early-treated adults with phenylketonuria. Neuroscience & Biobehavioral Reviews 143, pages 104925.
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Marie Canton, Didier Le Gall, François Feillet, Chrystele Bonnemains & Arnaud Roy. (2019) Neuropsychological Profile of Children with Early and Continuously Treated Phenylketonuria: Systematic Review and Future Approaches. Journal of the International Neuropsychological Society 25:6, pages 624-643.
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Zachary A. Monge & David J. Madden. (2016) Linking cognitive and visual perceptual decline in healthy aging: The information degradation hypothesis. Neuroscience & Biobehavioral Reviews 69, pages 166-173.
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M. Stevenson & N. McNaughton. (2013) A comparison of phenylketonuria with attention deficit hyperactivity disorder: Do markedly different aetiologies deliver common phenotypes?. Brain Research Bulletin 99, pages 63-83.
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Leo M. J. de Sonneville, Stephan C. J. Huijbregts, Robert Licht, Joseph A. Sergeant & Francjan J. van Spronsen. (2011) Pre-attentive processing in children with early and continuously-treated PKU. Effects of concurrent Phe level and lifetime dietary control. Journal of Inherited Metabolic Disease 34:4, pages 953-962.
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JAUME CAMPISTOL, ROSA GASSIÓ, RAFAEL ARTUCH & Ma ANTONIA VILASECA. (2011) Neurocognitive function in mild hyperphenylalaninemia. Developmental Medicine & Child Neurology 53:5, pages 405-408.
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Miroslaw Bik-Multanowski, Jacek J. Pietrzyk & Renata Mozrzymas. (2011) Routine use of CANTAB system for detection of neuropsychological deficits in patients with PKU. Molecular Genetics and Metabolism 102:2, pages 210-213.
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Bahare Azadi, Arshia Seddigh, Mehdi Tehrani-Doost, Javad Alaghband-Rad & Mahmoud Reza Ashrafi. (2009) Executive dysfunction in treated phenylketonuric patients. European Child & Adolescent Psychiatry 18:6, pages 360-368.
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Julia Albrecht, Sven F. Garbade & Peter Burgard. (2009) Neuropsychological speed tests and blood phenylalanine levels in patients with phenylketonuria: A meta-analysis. Neuroscience & Biobehavioral Reviews 33:3, pages 414-421.
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A. Diamond. (2007) Consequences of Variations in Genes that affect Dopamine in Prefrontal Cortex. Cerebral Cortex 17:suppl 1, pages i161-i170.
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J. J. Moyle, A. M. Fox, M. Arthur, M. Bynevelt & J. R. Burnett. (2007) Meta-Analysis of Neuropsychological Symptoms of Adolescents and Adults with PKU. Neuropsychology Review 17:2, pages 91-101.
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M. Bik-Multanowski, R. Mozrzymas, M. Nowacka, U. Borawska-Kowalczyk, A. Lange, E. Starostecka, B. Didycz, L. Kaluzny, M. Gizewska, E. Szynaka & A. Szymczakiewicz-Multanowska. (2005) Use of handheld computers for assessment of prefrontal cortex function in patients with phenylketonuria. Molecular Genetics and Metabolism 86, pages 142-144.
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J. R. Wiersema, J. J. van der Meere & H. Roeyers. (2005) State regulation and response inhibition in children with ADHD and children with early- and continuously treated phenylketonuria: An event-related potential comparison. Journal of Inherited Metabolic Disease 28:6, pages 831-843.
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Shelley Channon, Caroline Mockler & Philip Lee. (2005) Executive Functioning and Speed of Processing in Phenylketonuria.. Neuropsychology 19:5, pages 679-686.
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M. R. Crone, F. J. van Spronsen, K. Oudshoorn, J. Bekhof, G. van Rijn & P. H. Verkerk. (2005) Behavioural factors related to metabolic control in patients with phenylketonuria. Journal of Inherited Metabolic Disease 28:5, pages 627-637.
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Rosa Gassió, Rafael Artuch, Maria Antonia Vilaseca, Eugenia Fusté, Cristina Boix, Anna Sans & Jaume Campistol. (2007) Cognitive functions in classic phenylketonuria and mild hyperphenyl-alaninaemia: experience in a paediatric population. Developmental Medicine & Child Neurology 47:7, pages 443-448.
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Peter Griffiths, Peter Robinson, Rhiannon Davies, Kate Hayward, Karen Lewis, Karen Livingstone & Stephanie Plews. (2005) Speed of decision-making and set-switching: Subtle executive deficits in children with treated phenylketonuria. Educational and Child Psychology 22:2, pages 81-89.
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Mark M. Span, K. Richard Ridderinkhof & Maurits W. van der Molen. (2004) Age-related changes in the efficiency of cognitive processing across the life span. Acta Psychologica 117:2, pages 155-183.
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Peter J Anderson, Stephen J Wood, Dorothy E Francis, Lee Coleman, Linda Warwick, Sue Casanelia, Vicki A Anderson & Avihu Boneh MD. (2007) Neuropsychological functioning in children with early-treated phenylketonuria: impact of white matter abnormalities. Developmental Medicine & Child Neurology 46:4, pages 230-238.
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G. L. Arnold, C. J. Vladutiu, C. C. Orlowski, E. M. Blakely & J. DeLuca. (2004) Prevalence of stimulant use for attentional dysfunction in children with phenylketonuria. Journal of Inherited Metabolic Disease 27:2, pages 137-143.
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S. C. J. Huijbregts, L. M. J. De Sonneville, R. Licht, F. J. Van Spronsen & J. A. Sergeant. (2002) Short-term dietary interventions in children and adolescents with treated phenylketonuria: Effects on neuropsychological outcome of a well-controlled population. Journal of Inherited Metabolic Disease 25:6, pages 419-430.
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S.C.J Huijbregts, L.M.J de Sonneville, F.J van Spronsen, R Licht & J.A Sergeant. (2002) The neuropsychological profile of early and continuously treated phenylketonuria: orienting, vigilance, and maintenance versus manipulation-functions of working memory. Neuroscience & Biobehavioral Reviews 26:6, pages 697-712.
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