激素
白质
睾酮(贴片)
心理学
颞顶交界
神经科学
脑岛
性早熟
脑形态计量学
内科学
雄激素
神经可塑性
大脑定位
脱氢表雄酮
单卵双胞胎
内分泌学
认知
大脑结构与功能
前额叶皮质
神经影像学
运动前皮质
大脑发育
发展心理学
脑功能
性别特征
年轻人
人脑
静息状态功能磁共振成像
睡眠剥夺对认知功能的影响
大脑大小
雌激素
灰质
青少年发展
FLNA公司
类固醇激素
性腺类固醇激素
硫酸脱氢表雄酮
作者
Muskan Khetan,Nandita Vijayakumar,Ye Tian,Megan M. Herting,Michele Ann O'Connell,Marc L Seal,Sarah Whittle
摘要
ABSTRACT Puberty is a critical developmental process that is associated with changes in pubertal (or steroid) hormone levels, which are believed to influence adolescent behaviour via their effects on the developing brain. So far, there are limited and inconsistent findings regarding the relationship between steroid hormones and brain structure and function in adolescent females, with many existing studies employing small sample sizes. Thus, in this study, we explored the association between oestradiol (E2), testosterone (Tes), and dehydroepiandrosterone (DHEA) and brain structure (gray matter volume, sulcal depth, cortical thickness, and white matter microstructure) and function (resting‐state connectivity, emotional n‐back task‐related function) in 3024 adolescent females (age 8.92–13.33 years, mean age (SD) = 10.37 (0.94) years) from the Adolescent Brain Cognitive Development SM (ABCD) Study. We used elastic‐net regression with cross‐validation to investigate associations between hormones and brain phenotypes derived from multiple imaging modalities. We found that structural brain features, including cortical thickness, sulcal depth, and white matter microstructure, and resting state connectivity between cortical networks and subcortical regions, were important features associated with hormones. E2 was most strongly associated with prefrontal and premotor regions involved in working memory and emotion processing, while Tes and DHEA were most strongly associated with parietal and occipital regions involved in visuospatial functioning. All three hormones were also associated with prefrontal, temporoparietal junction, and insula cortices. Thus, using an advanced methodological approach, this study suggests both unique and overlapping neural correlates of pubertal hormones in adolescent females and sheds light on the mechanisms by which puberty influences adolescent development and behaviour.
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