Corrigendum to "Genetic and environmental influences on pubertal hormones in human hair across development" [Psychoneuroendocrinology 90 (2018) 76-84].
Corrigendum to "Genetic and environmental influences on pubertal hormones in human hair across development" [Psychoneuroendocrinology 90 (2018) 76-84].
复制标题
“遗传和环境对人类毛发发育过程中青春期激素的影响”的勘误表 [Psychoneuroendocrinology 90 (2018) 76-84]。
DOI:
10.1016/j.psyneuen.2018.08.011
复制
发表时间:
2018
影响因子:
3.7
通讯作者:
PaigeHarden,K
中科院分区:
文献类型:
--
作者:
Grotzinger,AndrewD;Briley,DanielA;Engelhardt,LauraE;Mann,FrankD;Patterson,MeganW;Tackett,JenniferL;Tucker-Drob,ElliotM;PaigeHarden,K
Reports an error in" Genetic and Environmental Influences on Pubertal Hormones in Human Hair Across Development" by AD Grotzinger, DA Briley, LE Engelhardt, FD Mann, MW Patterson, JL Tackett, EM Tucker-Drob and K. Paige Harden (Psychoneuroendocrinology, 2018 [Apr], Vol 90, 76-84). In the original article, the units of measurement reported for the hair hormones was incorrect. We originally write on page. 78 of the Method section, and in the Online Supplement, that the lower limit of detection for hair hormones was 0.1 pg/ml. This should have read that the lower limit of detection was 0.1 pg/mg.(The following abstract of the original article appeared in record 2018-12356-011). Puberty is a complex biopsychosocial process that can affect an array of psychiatric and medical disorders emerging in adolescence. Although the pubertal process is driven by neuroendocrine changes, few quantitative genetic studies have directly measured puberty-relevant hormones. Hair samples can now be assayed for accumulation of hormones over several months. In contrast to more conventional salivary measures, hair measures are not confounded by diurnal variation or hormonal reactivity. In an ethnically and socioeconomically diverse sample of 1286 child and adolescent twins and multiples from 672 unique families, we estimated genetic and environmental influences on hair concentrations of testosterone, DHEA, and progesterone across the period of 8–18 years of age. On average, male DHEA and testosterone were highly heritable, whereas female DHEA, progesterone, and puberty were largely influenced by environmental components. We identified sex-specific developmental windows of maximal heritability in each hormone. Peak heritability for DHEA occurred at approximately 10 years of age for males and females. Peak heritability for testosterone occurred at age 12.5 and 15.2 years for males and females, respectively. Peak heritability for male progesterone occurred at 11.2 years, while the heritability of female progesterone remained uniformly low. The identification of specific developmental windows when genetic signals for hormones are maximized has critical implications for well-informed models of hormone-behavior associations in childhood and adolescence.(PsycINFO Database Record (c) 2018 APA, all rights reserved)