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Development of ADHD symptoms in preschool children: Genetic and environmental contributions

Published online by Cambridge University Press:  24 September 2018

Espen Moen Eilertsen*
Affiliation:
Norwegian Institute of Public Health
Line C. Gjerde
Affiliation:
Norwegian Institute of Public Health University of Oslo
Kenneth S. Kendler
Affiliation:
Virginia Commonwealth University
Espen Røysamb
Affiliation:
Norwegian Institute of Public Health University of Oslo
Steven H. Aggen
Affiliation:
Virginia Commonwealth University
Kristin Gustavson
Affiliation:
Norwegian Institute of Public Health University of Oslo
Ted Reichborn-Kjennerud
Affiliation:
Norwegian Institute of Public Health University of Oslo
Eivind Ystrom
Affiliation:
Norwegian Institute of Public Health University of Oslo
*
Author for correspondence: Espen Moen Eilertsen, Box 4404, Nydalen, N-0403 Oslo, Norway; E-mail: espenmoen.eilertsen@fhi.no.

Abstract

We examined genetic and environmental contributions to the development of symptoms of attention-deficit/hyperactivity disorder (ADHD) in preschool children. ADHD symptoms in siblings at 1.5, 3, and 5 years of age were investigated in a population-based sample from the prospective Norwegian Mother and Child Cohort Study. The longitudinal contributions of additive genetic, shared, twin-specific, and unique environmental influences were estimated using biometric structural equation models. Heritability of ADHD symptoms ranged from 54% to 70%. There was evidence of partially new genetic influences at successive ages, with genetic correlations ranging from .58 to .89. Contributions from shared environmental factors and twin-specific factors were minor. The importance of unique environmental effects appeared to increase across ages, and was mostly specific to a given age. There was no evidence suggesting that this pattern differs across males and females. Symptoms of ADHD are highly heritability in young children from as early as 1.5 years of age. Longitudinal stability of ADHD symptoms is mainly attributable to genetic influences, but there is also some evidence for age-specific genetic influences. These findings contribute to our understanding of development of ADHD early in life, and can guide future molecular genetics studies.

Type
Regular Articles
Copyright
Copyright © Cambridge University Press 2018 

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References

Achenbach, T. M., & Rescorla, L. A. (2001). Manual for the ASEBA Preschool Forms and Profiles. Burlington, VT: University of Vermont, Department of Psychiatry.Google Scholar
American Psychiatric Association. (2013). Diagnostic and statistical manual of mental disorders (DSM-5). Washington, DC: Author.Google Scholar
Burt, S. A. (2009). Rethinking environmental contributions to child and adolescent psychopathology: A meta-analysis of shared environmental influences. Psychological Bulletin, 135, 608. doi:10.1037/a0015702Google Scholar
Carey, G. (1986). Sibling imitation and contrast effects. Behavior Genetics, 16, 319341. doi:10.1007/BF01071314Google Scholar
Faraone, S. V., Biederman, J., & Milberger, S. (1995). How reliable are maternal reports of their children's psychopathology? One-year recall of psychiatric diagnoses of ADHD children. Journal of the American Academy of Child & Adolescent Psychiatry, 34, 10011008. doi:10.1097/00004583-199508000-00009Google Scholar
Kessler, R. C., Amminger, G. P., Aguilar-Gaxiola, S., Alonso, J., Lee, S., & Ustun, T. B. (2007). Age of onset of mental disorders: A review of recent literature. Current Opinions in Psychiatry, 20, 359364. doi:10.1097/YCO.0b013e32816ebc8cGoogle Scholar
Kuntsi, J., Rijsdijk, F., Ronald, A., Asherson, P., & Plomin, R. (2005). Genetic influences on the stability of attention-deficit/hyperactivity disorder symptoms from early to middle childhood. Biological Psychiatry, 57, 647654. doi:10.1016/j.biopsych.2004.12.032Google Scholar
Magnus, P., Berg, K., & Nance, W. (1983). Predicting zygosity in Norwegian twin pairs born 1915–1960. Clinical Genetics, 24, 103112. doi:10.1111/j.1399-0004.1983.tb02220.xGoogle Scholar
Magnus, P., Birke, C., Vejrup, K., Haugan, A., Alsaker, E., Daltveit, A., … Knudsen, G. (2016). Cohort profile update: The Norwegian Mother and Child Cohort Study (MoBa). International Journal of Epidemiology, 45, 382388. doi:10.1093/ije/dyw029Google Scholar
Markon, K. E., Chmielewski, M., & Miller, C. J. (2011). The reliability and validity of discrete and continuous measures of psychopathology: A quantitative review. Psychological Bulletin, 137, 856. doi:10.1037/a0023678Google Scholar
Markon, K. E., & Krueger, R. F. (2004). An empirical comparison of information—Theoretic selection criteria for multivariate behavior genetic models. Behavior Genetics, 34, 593610. doi:10.1007/s10519-004-5587-0Google Scholar
Nakamura, B. J., Ebesutani, C., Bernstein, A., & Chorpita, B. F. (2009). A psychometric analysis of the child behavior checklist DSM-oriented scales. Journal of Psychopathology and Behavioral Assessment, 31, 178189. doi:10.1007/s10862-008-9119-8Google Scholar
Neale, M. C., & Cardon, L. (2013). Methodology for genetic studies of twins and families (Vol. 67). Dordrecht: Springer Science & Business Media.Google Scholar
Neale, M. C., Hunter, M. D., Pritikin, J. N., Zahery, M., Brick, T. R., Kirkpatrick, R. M., … Boker, S. M. (2016). OpenMx 2.0: Extended structural equation and statistical modeling. Psychometrika, 81, 535549. doi:10.1007/s11336-014-9435-8Google Scholar
Polanczyk, G., de Lima, M., Horta, B., Biederman, J., & Rohde, L. (2007). The worldwide prevalence of ADHD: A systematic review and metaregression analysis. American Journal of Psychiatry, 164, 942.Google Scholar
Polderman, T. J., Benyamin, B., De Leeuw, C. A., Sullivan, P. F., Van Bochoven, A., Visscher, P. M., & Posthuma, D. (2015). Meta-analysis of the heritability of human traits based on fifty years of twin studies. Nature Genetics, 47, 702. doi:10.1038/ng.3285Google Scholar
Price, T. S., Simonoff, E., Asherson, P., Curran, S., Kuntsi, J., Waldman, I., & Plomin, R. (2005). Continuity and change in preschool ADHD symptoms: Longitudinal genetic analysis with contrast effects. Behavior Genetics, 35, 121132. doi:10.1007/s10519-004-1013-xGoogle Scholar
Rietveld, M. J., Hudziak, J. J., Bartels, M., van Beijsterveldt, C., & Boomsma, D. I. (2004). Heritability of attention problems in children: Longitudinal results from a study of twins, age 3 to 12. Journal of Child Psychology and Psychiatry, 45, 577588. doi:10.1111/j.1469-7610.2004.00247.xGoogle Scholar
Rietveld, M. J., Posthuma, D., Dolan, C., & Boomsma, D. (2003). ADHD: Sibling interaction or dominance: An evaluation of statistical power. Behavior Genetics, 33, 247255. doi:10.1023/A:1023490307170Google Scholar
Simonoff, E., Pickles, A., Hervas, A., Silberg, J., Rutter, M., & Eaves, L. (1998). Genetic influences on childhood hyperactivity: Contrast effects imply parental rating bias, not sibling interaction. Psychological Medicine, 28, 825837.Google Scholar
Thapar, A., Cooper, M., Eyre, O., & Langley, K. (2013). Practitioner review: What have we learnt about the causes of ADHD? Journal of Child Psychology and Psychiatry, 54, 316. doi:10.1111/j.1469-7610.2012.02611.xGoogle Scholar
Van den Berg, S. M., Glas, C. A., & Boomsma, D. I. (2007). Variance decomposition using an IRT measurement model. Behavior Genetics, 37, 604616. doi:10.1007/s10519-007-9156-1Google Scholar
Wesseldijk, L. W., Fedko, I. O., Bartels, M., Nivard, M. G., van Beijsterveldt, C. E., Boomsma, D. I., & Middeldorp, C. M. (2017). Psychopathology in 7-year-old children: Differences in maternal and paternal ratings and the genetic epidemiology. American Journal of Medical Genetics Part B: Neuropsychiatric Genetics, 174, 251260. doi:10.1002/ajmg.b.32500Google Scholar
Willoughby, M. T. (2003). Developmental course of ADHD symptomatology during the transition from childhood to adolescence: A review with recommendations. Journal of Child Psychology and Psychiatry, 44, 88106. doi:10.1111/1469-7610.t01-1-00104Google Scholar
World Health Organization. (1993). The ICD-10 classification of mental and behavioural disorders: Diagnostic criteria for research (Vol. 2). Geneva: Author.Google Scholar
Zyphur, M. J., Zhang, Z., Barsky, A. P., & Li, W.-D. (2013). An ACE in the hole: Twin family models for applied behavioral genetics research. Leadership Quarterly, 24, 572594. doi:10.1016/j.leaqua.2013.04.001Google Scholar
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