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儿童和成人注意力缺陷多动障碍患者的皮质下脑容量差异:一项横断面大型分析。

Subcortical brain volume differences in participants with attention deficit hyperactivity disorder in children and adults: a cross-sectional mega-analysis.

作者信息

Hoogman Martine, Bralten Janita, Hibar Derrek P, Mennes Maarten, Zwiers Marcel P, Schweren Lizanne S J, van Hulzen Kimm J E, Medland Sarah E, Shumskaya Elena, Jahanshad Neda, Zeeuw Patrick de, Szekely Eszter, Sudre Gustavo, Wolfers Thomas, Onnink Alberdingk M H, Dammers Janneke T, Mostert Jeanette C, Vives-Gilabert Yolanda, Kohls Gregor, Oberwelland Eileen, Seitz Jochen, Schulte-Rüther Martin, Ambrosino Sara, Doyle Alysa E, Høvik Marie F, Dramsdahl Margaretha, Tamm Leanne, van Erp Theo G M, Dale Anders, Schork Andrew, Conzelmann Annette, Zierhut Kathrin, Baur Ramona, McCarthy Hazel, Yoncheva Yuliya N, Cubillo Ana, Chantiluke Kaylita, Mehta Mitul A, Paloyelis Yannis, Hohmann Sarah, Baumeister Sarah, Bramati Ivanei, Mattos Paulo, Tovar-Moll Fernanda, Douglas Pamela, Banaschewski Tobias, Brandeis Daniel, Kuntsi Jonna, Asherson Philip, Rubia Katya, Kelly Clare, Martino Adriana Di, Milham Michael P, Castellanos Francisco X, Frodl Thomas, Zentis Mariam, Lesch Klaus-Peter, Reif Andreas, Pauli Paul, Jernigan Terry L, Haavik Jan, Plessen Kerstin J, Lundervold Astri J, Hugdahl Kenneth, Seidman Larry J, Biederman Joseph, Rommelse Nanda, Heslenfeld Dirk J, Hartman Catharina A, Hoekstra Pieter J, Oosterlaan Jaap, Polier Georg von, Konrad Kerstin, Vilarroya Oscar, Ramos-Quiroga Josep Antoni, Soliva Joan Carles, Durston Sarah, Buitelaar Jan K, Faraone Stephen V, Shaw Philip, Thompson Paul M, Franke Barbara

机构信息

Department of Human Genetics, Radboud University Medical Center, Nijmegen, Netherlands; Donders Institute for Brain, Cognition and Behaviour, Nijmegen, Netherlands.

Department of Human Genetics, Radboud University Medical Center, Nijmegen, Netherlands; Donders Institute for Brain, Cognition and Behaviour, Nijmegen, Netherlands.

出版信息

Lancet Psychiatry. 2017 Apr;4(4):310-319. doi: 10.1016/S2215-0366(17)30049-4. Epub 2017 Feb 16.

Abstract

BACKGROUND

Neuroimaging studies have shown structural alterations in several brain regions in children and adults with attention deficit hyperactivity disorder (ADHD). Through the formation of the international ENIGMA ADHD Working Group, we aimed to address weaknesses of previous imaging studies and meta-analyses, namely inadequate sample size and methodological heterogeneity. We aimed to investigate whether there are structural differences in children and adults with ADHD compared with those without this diagnosis.

METHODS

In this cross-sectional mega-analysis, we used the data from the international ENIGMA Working Group collaboration, which in the present analysis was frozen at Feb 8, 2015. Individual sites analysed structural T1-weighted MRI brain scans with harmonised protocols of individuals with ADHD compared with those who do not have this diagnosis. Our primary outcome was to assess case-control differences in subcortical structures and intracranial volume through pooling of all individual data from all cohorts in this collaboration. For this analysis, p values were significant at the false discovery rate corrected threshold of p=0·0156.

FINDINGS

Our sample comprised 1713 participants with ADHD and 1529 controls from 23 sites with a median age of 14 years (range 4-63 years). The volumes of the accumbens (Cohen's d=-0·15), amygdala (d=-0·19), caudate (d=-0·11), hippocampus (d=-0·11), putamen (d=-0·14), and intracranial volume (d=-0·10) were smaller in individuals with ADHD compared with controls in the mega-analysis. There was no difference in volume size in the pallidum (p=0·95) and thalamus (p=0·39) between people with ADHD and controls. Exploratory lifespan modelling suggested a delay of maturation and a delay of degeneration, as effect sizes were highest in most subgroups of children (<15 years) versus adults (>21 years): in the accumbens (Cohen's d=-0·19 vs -0·10), amygdala (d=-0·18 vs -0·14), caudate (d=-0·13 vs -0·07), hippocampus (d=-0·12 vs -0·06), putamen (d=-0·18 vs -0·08), and intracranial volume (d=-0·14 vs 0·01). There was no difference between children and adults for the pallidum (p=0·79) or thalamus (p=0·89). Case-control differences in adults were non-significant (all p>0·03). Psychostimulant medication use (all p>0·15) or symptom scores (all p>0·02) did not influence results, nor did the presence of comorbid psychiatric disorders (all p>0·5).

INTERPRETATION

With the largest dataset to date, we add new knowledge about bilateral amygdala, accumbens, and hippocampus reductions in ADHD. We extend the brain maturation delay theory for ADHD to include subcortical structures and refute medication effects on brain volume suggested by earlier meta-analyses. Lifespan analyses suggest that, in the absence of well powered longitudinal studies, the ENIGMA cross-sectional sample across six decades of ages provides a means to generate hypotheses about lifespan trajectories in brain phenotypes.

FUNDING

National Institutes of Health.

摘要

背景

神经影像学研究表明,患有注意力缺陷多动障碍(ADHD)的儿童和成人的几个脑区存在结构改变。通过成立国际ENIGMA ADHD工作组,我们旨在解决以往影像学研究和荟萃分析的不足之处,即样本量不足和方法学异质性。我们旨在研究与未患此病的儿童和成人相比,患有ADHD的儿童和成人是否存在结构差异。

方法

在这项横断面大型分析中,我们使用了国际ENIGMA工作组合作的数据,在本分析中,该数据截至2015年2月8日冻结。各个研究点使用统一方案对患有ADHD的个体与未患此病的个体进行了结构T1加权磁共振成像脑部扫描。我们的主要结果是通过汇总该合作中所有队列的所有个体数据,评估病例组与对照组在皮质下结构和颅内体积方面的差异。对于此分析,在错误发现率校正阈值p = 0·0156时p值具有统计学意义。

结果

我们的样本包括来自23个研究点的1713名患有ADHD的参与者和1529名对照者,中位年龄为14岁(范围4 - 63岁)。在大型分析中,与对照组相比,患有ADHD的个体的伏隔核(科恩d值 = -0·15)、杏仁核(d值 = -0·19)、尾状核(d值 = -0·11)、海马体(d值 = -0·11)、壳核(d值 = -0·14)和颅内体积(d值 = -0·10)体积较小。ADHD患者与对照组之间苍白球(p = 0·95)和丘脑(p = 0·39)的体积大小没有差异。探索性寿命模型表明存在成熟延迟和退化延迟,因为在大多数儿童亚组(<15岁)与成人亚组(>21岁)中效应量最高:伏隔核(科恩d值 = -0·19对 -0·10)、杏仁核(d值 = -0·18对 -0·14)、尾状核(d值 = -0·13对 -0·07)、海马体(d值 = -0·12对 -0·06)、壳核(d值 = -0·18对 -0·08)和颅内体积(d值 = -0·14对0·01)。儿童与成人在苍白球(p = 0·79)或丘脑(p = 0·89)方面没有差异。成人病例组与对照组之间的差异无统计学意义(所有p>0·03)。使用精神刺激药物(所有p>0·15)或症状评分(所有p>0·02)均不影响结果,合并精神疾病的存在也不影响结果(所有p>0·5)。

解读

凭借迄今为止最大的数据集,我们增加了关于ADHD患者双侧杏仁核、伏隔核和海马体体积减小的新知识。我们将ADHD的脑成熟延迟理论扩展到包括皮质下结构,并反驳了早期荟萃分析提出的药物对脑容量的影响。寿命分析表明,在缺乏有力的纵向研究的情况下,ENIGMA跨越六个年龄段的横断面样本为生成关于脑表型寿命轨迹的假设提供了一种方法。

资金来源

美国国立卫生研究院。

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