Dysregulation de la croissance squelettique chez des nourrissons et jeunes enfants australiens de sexe masculin atteints de trouble du spectre de l'autisme
Titre original en anglais : Skeletal Growth Dysregulation in Australian Male Infants and Toddlers With Autism Spectrum Disorder
Cette publication est incluse dans le projet « Contributions académiques de personnes autistes sur l’autisme ». un auteur·ice de cette publication est identifié·e comme autiste dans le projet.
À propos de la mention auteur·ice autisteGreen, C., Dissanayake, C., Loesch, D. Z., Bui, M., & Barbaro, J. (2018). Skeletal Growth Dysregulation in Australian Male Infants and Toddlers With Autism Spectrum Disorder. Autism Research, 11(6), 846-856. https://doi.org/10.1002/aur.1952
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Résumé
Des résultats récents suggèrent que les enfants atteints de trouble du spectre de l'autisme (TSA) présentent des dimensions plus importantes en ce qui concerne le périmètre crânien (PC), la taille et le poids que les enfants au développement typique (DT) ; toutefois, on sait peu de choses sur leur vitesse de croissance, en particulier pour la taille et le poids. La présente étude visait à : (a) confirmer et approfondir les résultats antérieurs concernant une prolifération généralisée précoce dans le TSA ; et (b) déterminer s'il existait des différences de vitesse de croissance entre les nourrissons et les jeunes enfants atteints de TSA et leurs pairs DT. Des mesures du PC, de la taille et du poids étaient disponibles pour 135 garçons atteints de TSA et 74 garçons DT, de la naissance à l'âge de 3 ans. La dimension et la vitesse de croissance du PC, de la taille et du poids ont été analysées à l'aide d'un modèle linéaire à effets mixtes. Les nourrissons atteints de TSA étaient significativement plus petits à la naissance pour le PC, la longueur corporelle et le poids que les nourrissons DT (tous P 0.05). Les résultats ont confirmé que les nourrissons et jeunes enfants de sexe masculin atteints de TSA présentent une dysrégulation de la croissance squelettique dès le début de la vie. Autism Res 2018, 11: 846–856. © 2018 International Society for Autism Research, Wiley Periodicals, Inc. Résumé grand public Des résultats récents suggèrent que les nourrissons atteints de trouble du spectre de l'autisme (TSA) sont plus petits à la naissance que les nourrissons au développement typique, mais deviennent plus grands que leurs pairs au cours de la première année. On sait peu de choses sur leur vitesse de croissance, en particulier pour la taille et le poids. Nos résultats ont confirmé que les nourrissons atteints de TSA sont plus petits à la naissance pour le périmètre crânien (PC), la taille et le poids, mais présentent une vitesse de croissance plus rapide du PC et de la taille que leurs pairs de la naissance à 3 ans.
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- 2
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- 0
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- 613
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-
Nicola H. Chapman , Alejandro Q. Nato , Raphael Bernier , Katy Ankenman , Harkirat Sohi , Jeff Munson et al. (2015). Whole exome sequencing in extended families with autism spectrum disorder implicates four candidate genes . Human Genetics, 134(10), 1055-1068. Springer Science and Business Media LLC.Crossref OpenAlex OpenCitations
-
Lilia Albores-Gallo , Laura Fritsche-García , Arturo Pabel Miranda-Aguirre , Montserrat Avila-Acosta (2017). Brief Report: Macrocephaly Phenotype and Psychiatric Comorbidity in a Clinical Sample of Mexican Children and Adolescents with Autism Spectrum Disorders . Journal of Autism and Developmental Disorders, 47(9), 2911-2917. Springer Science and Business Media LLC.Crossref OpenAlex OpenCitations
-
Janet E. Lainhart , Erin D. Bigler , Maureen Bocian , Hilary Coon , Elena Dinh , Géraldine Dawson et al. (2006). Head circumference and height in autism: A study by the collaborative program of excellence in autism . American Journal of Medical Genetics Part A, 140A(21), 2257-2274. Wiley.Crossref OpenAlex OpenCitations
-
Roberto Sacco , Stefano Gabriele , Antonio M. Persico (2015). Head circumference and brain size in autism spectrum disorder: A systematic review and meta-analysis . Psychiatry Research: Neuroimaging, 234(2), 239-251. Elsevier BV.Crossref OpenAlex OpenCitations
-
David G. Amaral , Deana Li , Lauren Libero , Marjorie Solomon , Judy Van de Water , Ann Mastergeorge et al. (2017). In pursuit of neurophenotypes: The consequences of having autism and a big brain . Autism Research, 10(5), 711-722. Wiley.Crossref OpenAlex OpenCitations
-
Lonnie Zwaigenbaum , Gregory S. Young , Wendy L. Stone , Karen Dobkins , Sally Ozonoff , Jessica Brian et al. (2014). Early Head Growth in Infants at Risk of Autism: A Baby Siblings Research Consortium Study . Journal of the American Academy of Child & Adolescent Psychiatry, 53(10), 1053-1062. Elsevier BV.Crossref OpenAlex OpenCitations
-
American Psychiatric Association (2000). Diagnostic and statistical manual of mental disorders—fourth edition—text revision (DSM-IV-TR) . American Psychiatric Association.Crossref OpenAlex OpenCitations
-
Péter Szatmári , Ann P Thompson , Ping Guo Tepper , Andrew D Paterson , Xiao-Qing Liu , Jennifer L Skaug et al. (2007). Mapping autism risk loci using genetic linkage and chromosomal rearrangements . Nature Genetics, 39(3), 319-328. Springer Science and Business Media LLC.Crossref OpenAlex OpenCitations
-
Krista D. Mraz , James Dixon , Thyde Dumont-Mathieu , Deborah Fein (2009). Accelerated Head and Body Growth in Infants Later Diagnosed With Autism Spectrum Disorders: A Comparative Study of Optimal Outcome Children . Journal of Child Neurology, 24(7), 833-845. SAGE Publications.Crossref OpenAlex OpenCitations
-
González Moreno, Andrés Santiago (2013). Diagnostic and Statistical Manual of Mental Disorders . American Psychiatric Association.Crossref OpenAlex OpenCitations
-
B W M van Bon , B P Coe , R Bernier , Cherie Green , J Gerdts , K Witherspoon et al. (2016). Disruptive de novo mutations of DYRK1A lead to a syndromic form of autism and ID . Molecular Psychiatry, 21(1), 126-132. Springer Science and Business Media LLC.Crossref OpenAlex OpenCitations
-
Josephine Barbaro *Auteur·ice autiste. En savoir plus… , Cheryl Dissanayake (2010). Prospective Identification of Autism Spectrum Disorders in Infancy and Toddlerhood Using Developmental Surveillance: The Social Attention and Communication Study . Journal of Developmental & Behavioral Pediatrics, 31(5), 376-385. Ovid Technologies (Wolters Kluwer Health).AutiHub · Contributions académiques de personnes autistes sur l’autisme Crossref OpenAlex OpenCitations
-
Shafali S. Jeste , Daniel H. Geschwind (2014). Disentangling the heterogeneity of autism spectrum disorder through genetic findings . Nature Reviews Neurology, 10(2), 74-81. Springer Science and Business Media LLC.Crossref OpenAlex OpenCitations
-
Lucy Barnard-Brak , Tracey Sulak , Julie K. Ivey Hatz (2011). Macrocephaly in Children With Autism Spectrum Disorders . Pediatric Neurology, 44(2), 97-100. Elsevier BV.Crossref OpenAlex OpenCitations
-
Géraldine Dawson , Jeff Munson , Sara Jane Webb , Theresa Nalty , Robert Abbott , Karen Toth (2007). Rate of Head Growth Decelerates and Symptoms Worsen in the Second Year of Life in Autism . Biological Psychiatry, 61(4), 458-464. Elsevier BV.Crossref OpenAlex OpenCitations
-
E. Fuller Torrey , Dawn Dhavale , John P. Lawlor , Robert H. Yolken (2004). Autism and head circumference in the first year of life . Biological Psychiatry, 56(11), 892-894. Elsevier BV.Crossref OpenAlex OpenCitations
-
M G Butler , M J Dasouki , X-P Zhou , Z Talebizadeh , M. Brown , T N Takahashi et al. (2005). Subset of individuals with autism spectrum disorders and extreme macrocephaly associated with germline PTEN tumour suppressor gene mutations . Journal of Medical Genetics, 42(4), 318-321. BMJ.Crossref OpenAlex OpenCitations
-
Armin Raznahan , Gregory L. Wallace , Ligia Antezana , Dede Greenstein , Rhoshel Lenroot , Audrey Thurm et al. (2013). Compared to What? Early Brain Overgrowth in Autism and the Perils of Population Norms . Biological Psychiatry, 74(8), 563-575. Elsevier BV.Crossref OpenAlex OpenCitations
-
Elizabeth Redcay , Eric Courchesne (2005). When Is the Brain Enlarged in Autism? A Meta-Analysis of All Brain Size Reports . Biological Psychiatry, 58(1), 1-9. Elsevier BV.Crossref OpenAlex OpenCitations
-
Centers for Disease Control , Prevention (2016). Prevalence and characteristics of autism spectrum disorder among children aged 8 years—autism and developmental disabilities monitoring network, 11 sites, United States, 2012 . Morbidity and Mortality Weekly Report, 65, 1.Type: AutreCrossref
-
N XIONG , C JI , Y LI , Z HE , H BO , Y ZHAO (2009). The physical status of children with autism in China . Research in Developmental Disabilities, 30(1), 70-76. Elsevier BV.Crossref OpenAlex OpenCitations
-
Pauline Chaste , Lambertus Klei , Stephan J. Sanders , Michael T. Murtha , Vanessa Hus , Jennifer Lowe *Auteur·ice autiste. En savoir plus… et al. (2013). Adjusting Head Circumference for Covariates in Autism: Clinical Correlates of a Highly Heritable Continuous Trait . Biological Psychiatry, 74(8), 576-584. Elsevier BV.Crossref OpenAlex OpenCitations
-
Christopher Gillberg , Linda De Souza (2002). Head circumference in autism, Asperger syndrome, and ADHD: a comparative study . Developmental Medicine & Child Neurology, 44(5), 296-300. Wiley.Type: Article DOI: 10.1111/j.1469-8749.2002.tb00814.xOpenCitations
-
E. Courchesne , C. M. Karns , H. R. Davis , R. Ziccardi , R. A. Carper , Z. D. Tigue et al. (2001). Unusual brain growth patterns in early life in patients with autistic disorder . Neurology, 57(2), 245-254. Ovid Technologies (Wolters Kluwer Health).Crossref OpenAlex OpenCitations
-
Katarzyna Chawarska (2011). Early Generalized Overgrowth in Boys With Autism . Archives of General Psychiatry, 68(10), 1021. American Medical Association (AMA).Crossref OpenAlex OpenCitations
-
Raija Vanhala , Ursula Turpeinen , Raili Riikonen (2001). Low levels of insulin-like growth factor-I in cerebrospinal fluid in children with autism . Developmental Medicine and Child Neurology, 43(09), 614. Wiley.OpenAlex OpenCitations
-
Paul Whiteley , Kalliopi Dodou , Lynda Todd , Paul Shattock (2004). Body mass index of children from the United Kingdom diagnosed with pervasive developmental disorders . Pediatrics International, 46(5), 531-533. Wiley.Crossref OpenAlex OpenCitations
-
Eric Courchesne , Kathleen Campbell , Stephanie Solso (2011). Brain growth across the life span in autism: Age-specific changes in anatomical pathology . Brain Research, 1380, 138-145. Elsevier BV.Crossref OpenAlex OpenCitations
-
Lauren E. Libero , Christine Wu Nordahl , Deana D. Li , Emilio Ferrer , Sally J. Rogers , David G. Amaral (2016). Persistence of megalencephaly in a subgroup of young boys with autism spectrum disorder . Autism Research, 9(11), 1169-1182. Wiley.Crossref OpenAlex OpenCitations
-
Eric Courchesne (2003). Evidence of Brain Overgrowth in the First Year of Life in Autism . JAMA, 290(3), 337. American Medical Association (AMA).Crossref OpenAlex OpenCitations
-
Raili Riikonen , Ismo Makkonen , Raija Vanhala , Ursula Turpeinen , Jyrki Kuikka , Hannu Kokki (2006). Cerebrospinal fluid insulin-like growth factors IGF-1 and IGF-2 in infantile autism . Developmental Medicine & Child Neurology, 48(09), 751. Wiley.OpenAlex OpenCitations
-
Jonathan M. Davis , Jonathon G. Keeney , James M. Sikela , Susan Hepburn (2013). Mode of Genetic Inheritance Modifies the Association of Head Circumference and Autism-Related Symptoms: A Cross-Sectional Study . PLoS ONE, 8(9), e74940. Public Library of Science (PLoS).Crossref OpenAlex OpenCitations
-
Ilan Dinstein , Shlomi Haar , Shir Atsmon , Hen Schtaerman (2017). No evidence of early head circumference enlargements in children later diagnosed with autism in Israel . Molecular Autism, 8(1), 15-15. Springer Science and Business Media LLC.Crossref OpenAlex OpenCitations
-
Cherie Green , Cheryl Dissanayake , Danuta Z. Loesch (2015). A review of physical growth in children and adolescents with Autism Spectrum Disorder . Developmental Review, 36, 156-178. Elsevier BV.Crossref OpenAlex OpenCitations
-
Cheryl Dissanayake , Minh Bui , RICHARD HUGGINS , Danuta Z. Loesch (2006). Growth in stature and head circumference in high-functioning autism and Asperger disorder during the first 3 years of life . Development and Psychopathology, 18(02), 381. Cambridge University Press (CUP).Crossref OpenAlex OpenCitations
-
Nanda N. J. Rommelse , Cindy T. R. Peters , Iris J. Oosterling , Janne C. Visser , Daniëlle Bons , Daphne J. van Steijn et al. (2011). A Pilot Study of Abnormal Growth in Autism Spectrum Disorders and Other Childhood Psychiatric Disorders . Journal of Autism and Developmental Disorders, 41(1), 44-54. Springer Science and Business Media LLC.Crossref OpenAlex OpenCitations
-
Aya Fukumoto , Toshiaki Hashimoto , Hiromichi Ito , Mio Nishimura , Yoshimi Tsuda , Masahito Miyazaki et al. (2008). Growth of Head Circumference in Autistic Infants During the First Year of Life . Journal of Autism and Developmental Disorders, 38(3), 411-418. Springer Science and Business Media LLC.Crossref OpenAlex OpenCitations
-
James L. Mills , Mary L. Hediger , Cynthia A. Molloy , George P. Chrousos , Patricia Manning‐Courtney , Kai F. Yu et al. (2007). Elevated levels of growth‐related hormones in autism and autism spectrum disorder . Clinical Endocrinology, 67(2), 230-237. Wiley.Crossref OpenAlex OpenCitations
-
Jennifer A. Gerdts , Raphael Bernier , Géraldine Dawson , Annette Estes (2013). The Broader Autism Phenotype in Simplex and Multiplex Families . Journal of Autism and Developmental Disorders, 43(7), 1597-1605. Springer Science and Business Media LLC.Crossref OpenAlex OpenCitations
-
Christopher Gillberg , Linda de Souza (2002). Head circumference in autism, Asperger syndrome, and ADHD: a comparative study . Developmental Medicine & Child Neurology, 44(05), 296-300. Wiley.Crossref OpenAlex OpenCitations
-
Andrew Whitehouse , Martha Hickey , Fiona J. Stanley , John P. Newnham , Craig E. Pennell (2011). Brief Report: A Preliminary Study of Fetal Head Circumference Growth in Autism Spectrum Disorder . Journal of Autism and Developmental Disorders, 41(1), 122-129. Springer Science and Business Media LLC.Crossref OpenAlex OpenCitations
-
Pål Surén , Camilla Stoltenberg , Michaeline Bresnahan , Deborah Hirtz , Kari Kveim Lie , W. Ian Lipkin et al. (2013). Early Growth Patterns in Children with Autism . Epidemiology, 24(5), 660-670. Ovid Technologies (Wolters Kluwer Health).Crossref OpenAlex OpenCitations
-
Green C. (2012). A comprehensive mixed‐longitudinal study of growth in boys with autism spectrum disorders . A comprehensive mixed‐longitudinal study of growth in boys with autism spectrum disorders.Type: AutreCrossref
-
Nan M. Laird , James H. Ware (1982). Random-Effects Models for Longitudinal Data . Biometrics, 38(4), 963. JSTOR.Crossref OpenAlex
-
Lisa M. Unwin , Murray Maybery , Anthony Murphy , Wendy Lilje , Michelle Bellesini , Anna M. Hunt et al. (2016). A Prospective Ultrasound Study of Prenatal Growth in Infant Siblings of Children With Autism . Autism Research, 9(2), 210-216. Wiley.Crossref OpenAlex OpenCitations
-
The IBIS Network , Heather Cody Hazlett , Hongbin Gu , Brent C. Munsell , Sun Hyung Kim , Martin Styner et al. (2017). Early brain development in infants at high risk for autism spectrum disorder . Nature, 542(7641), 348-351. Springer Science and Business Media LLC.Crossref OpenAlex
-
Emma van Daalen , Sophie H.N. Swinkels , Claudine Dietz , Herman van Engeland , Jan K. Buitelaar (2007). Body Length and Head Growth in the First Year of Life in Autism . Pediatric Neurology, 37(5), 324-330. Elsevier BV.Crossref OpenAlex OpenCitations
-
S. Idring , C. Magnusson , M. Lundberg , M. Ek , Dheeraj Rai , A. C. Svensson et al. (2014). Parental age and the risk of autism spectrum disorders: findings from a Swedish population-based cohort . International Journal of Epidemiology, 43(1), 107-115. Oxford University Press (OUP).Crossref OpenAlex OpenCitations
-
iPSYCH-SSI-Broad Autism Group , Elise Robinson , Beaté St Pourcain , Verneri Anttila , Jack A Kosmicki , Brendan Bulik-Sullivan et al. (2016). Genetic risk for autism spectrum disorders and neuropsychiatric variation in the general population . Nature Genetics, 48(5), 552-555. Springer Science and Business Media LLC.Type: Article DOI: 10.1038/ng.3529 10.1101/027771OpenCitations
-
Krista D. Mraz , James Green , Thyde Dumont-Mathieu , Sarah Makin , Deborah Fein (2007). Correlates of Head Circumference Growth in Infants Later Diagnosed With Autism Spectrum Disorders . Journal of Child Neurology, 22(6), 700-713. SAGE Publications.Crossref OpenAlex OpenCitations
-
Jack A Kosmicki , Kaitlin E Samocha , Daniel P Howrigan , Stephan J Sanders , Kamil Slowikowski , Monkol Lek et al. (2017). Refining the role of de novo protein-truncating variants in neurodevelopmental disorders by using population reference samples . Nature Genetics, 49(4), 504-510. Springer Science and Business Media LLC.Crossref OpenAlex OpenCitations
-
Antonio M. Persico , Thomas Bourgeron (2006). Searching for ways out of the autism maze: genetic, epigenetic and environmental clues . Trends in Neurosciences, 29(7), 349-358. Elsevier BV.Crossref OpenAlex OpenCitations
-
Raija Vanhala , Ursula Turpeinen , Raili Riikonen (2001). Low levels of insulin‐like growth factor‐I in cerebrospinal fluid in children with autism . Developmental Medicine & Child Neurology, 43(9), 614-616. Wiley.Crossref OpenAlex OpenCitations
-
Deborah L. Christensen , Jon Baio , Kim Van Naarden Braun , Deborah Bilder , Jane Charles , John N. Constantino et al. (2016). Prevalence and Characteristics of Autism Spectrum Disorder Among Children Aged 8 Years — Autism and Developmental Disabilities Monitoring Network, 11 Sites, United States, 2012 . MMWR. Surveillance Summaries, 65(3), 1-23. Centers for Disease Control MMWR Office.OpenAlex OpenCitations
-
Sara Jane Webb , Theresa Nalty , Jeff Munson , Catherine Brock , Robert Abbott , Géraldine Dawson (2007). Rate of Head Circumference Growth as a Function of Autism Diagnosis and History of Autistic Regression . Journal of Child Neurology, 22(10), 1182-1190. SAGE Publications.Crossref OpenAlex OpenCitations
-
Catherine Lord (1999). Autism diagnostic observation schedule‐generic . Autism diagnostic observation schedule‐generic.Type: AutreCrossref
-
Catherine Lord (2012). Autism diagnostic observation schedule, second edition (ADOS‐2) . Autism diagnostic observation schedule, second edition (ADOS‐2).Type: AutreCrossref
-
Pinheiro J. Bates D. DebRoy S. Sarkar D;R Core Team. (2011). Nlme: Linear and nonlinear mixed effects models. R package. (Version 3. 1–102).Type: AutreCrossref
-
R Development Core Team. (2011). R: A language and environment for statistical computing. Vienna Austria: R Foundation for Statistical Computing. http://www.r-project.org/Type: AutreCrossref
-
Raili Riikonen , Ismo Makkonen , Raija Vanhala , Ursula Turpeinen , Jyrki Kuikka , Hannu Kokki (2007). Cerebrospinal fluid insulin-like growth factors IGF-1 and IGF-2 in infantile autism . Developmental Medicine & Child Neurology, 48(9), 751-755. Wiley.Crossref OpenAlex OpenCitations
-
iPSYCH-SSI-Broad Autism Group , Elise Robinson , Beaté St Pourcain , Verneri Anttila , Jack A Kosmicki , Brendan Bulik-Sullivan et al. (2016). Genetic risk for autism spectrum disorders and neuropsychiatric variation in the general population . Nature Genetics, 48(5), 552-555. Springer Science and Business Media LLC.Crossref OpenAlex
-
Kathryn M. Curtis , Tara C. Jatlaoui , Naomi K. Tepper , Lauren B. Zapata , Leah G. Horton , Denise J. Jamieson et al. (2016). U.S. Selected Practice Recommendations for Contraceptive Use, 2016 . MMWR. Recommendations and Reports, 65(4), 1-66. Centers for Disease Control MMWR Office.OpenAlex
-
The IBIS Network , Heather Cody Hazlett , Hongbin Gu , Brent C. Munsell , Sun Hyung Kim , Martin Styner et al. (2017). Early brain development in infants at high risk for autism spectrum disorder . Nature, 542(7641), 348-351. Springer Science and Business Media LLC.Type: Article DOI: 10.1038/nature21369 10.17615/kpgb-9y78OpenCitations
-
R Core Team (2026). R: A Language and Environment for Statistical Computing . R Foundation for Statistical Computing.OpenAlex
-
Catherine Lord , M. Rutter , P. C. DiLavore , s. Risi (2016). Autism Diagnostic Observation Schedule--Generic . PsycTESTS Dataset. American Psychological Association (APA).OpenAlex
-
Saikat DebRoy (2006). nlme: Linear and nonlinear mixed effects models . Medical Entomology and Zoology.Type: Article OpenAlex: https://openalex.org/W3086315876OpenAlex