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首页> 外文期刊>Journal of psychiatry & neuroscience: JPN >Hippocampus and amygdala morphology in adults with attention-deficit hyperactivity disorder.
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Hippocampus and amygdala morphology in adults with attention-deficit hyperactivity disorder.

机译:注意缺陷多动障碍成年人的海马和杏仁核形态。

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OBJECTIVE: Attention-deficit hyperactivity disorder (ADHD) in adulthood is a serious health problem with a prevalence of up to 4%. Limbic structures have been implicated in the genesis of ADHD; it has been suggested that they mediate mood and cognitive disturbances in affected individuals. Recently, a large study involving children and adolescents with ADHD reported bilateral enlargement of the hippocampus and indirect evidence of amygdala volume loss in this patient sample. We sought to test the hypothesis that, like in pediatric patients, there might be hippocampus and amygdala volume abnormalities in adult patients with ADHD. METHODS: We studied 27 adult patients with ADHD and 27 group-matched healthy volunteers using a 1.5 T magnetic resonance imaging scanner. We manually obtained morphometric measurements of the regions mentioned. RESULTS: In contrast to previous findings in children and adolescents, we found no significant differences in hippocampus and amygdala volumes among adults with and without the disorder. CONCLUSION: Findings of hippocampus enlargement and amygdala volume loss are not very stable across different samples of patients with ADHD. Contradictory findings may be related to the different locations of alterations along the complex circuits responsible for the different symptoms of ADHD. Further studies involving larger samples of adult patients with ADHD and using multimodal designs are needed.
机译:目的:成年注意缺陷多动障碍(ADHD)是一种严重的健康问题,患病率高达4%。边缘结构与ADHD的发生有关。已经表明它们介导了受影响个体的情绪和认知障碍。最近,一项涉及多动症儿童和青少年的大型研究报告了该患者样本中海马的双侧增大和杏仁核体积减少的间接证据。我们试图检验这一假说,与小儿患者一样,成年多动症患者可能存在海马和杏仁核体积异常。方法:我们使用1.5 T核磁共振成像扫描仪研究了27位成人多动症的成人患者和27位组匹配的健康志愿者。我们手动获得了提到区域的形态测量值。结果:与先前在儿童和青少年中发现的结果相反,我们发现患有和未患有该疾病的成年人在海马和杏仁核体积上均无显着差异。结论:在多动症患者的不同样本中,海马增大和杏仁核体积丢失的发现不是很稳定。矛盾的发现可能与沿多动症导致多动症不同症状的复杂电路的改变的不同位置有关。需要对涉及成人多动症的较大样本并使用多模式设计的进一步研究。

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