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Neuroimaging in the diagnosis of ADHD: where we are and where we are going

机译:神经影像学在多动症的诊断中:我们现在和将来

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Introduction: Attention-deficit/hyperactivity disorder (ADHD) is a highly prevalent childhood psychiatric disorder. ADHD manifests with symptoms of inattention, hyperactivity and/or impulsivity that pervade in the familiar academic and social spheres. There are serious concerns about the widespread misdiagnosis of ADHD that, together with the fast growing use of neuroimaging techniques in ADHD research, have prompted an inquiry into the feasibility of an imaging test for the diagnosis of ADHD that could aid in clinical practice. Areas covered: This article consists of a brief review of the main neuroimaging research findings in ADHD and its contributions to the current understanding of the ADHD neurobiology, highlighting aspects that could eventually be utilized as a basis for diagnostic tests. The paper then outlines and applies a multiphase approach for developing diagnostic imaging tests in psychiatry to evaluate their prospects for the diagnosis of ADHD as well as evaluating a recently proposed diagnostic imaging test. Expert opinion: It appears obvious that a diagnostic imaging test for ADHD should be based on the state-of-the-art neuroimaging techniques now available from ADHD neurobiology research. However, the deriviation of an imaging diagnostic tool from neuroimaging research is not as straightforward as it may seem, with several prerequisites that must be met in advance The author suggests that a consistent decreased volume of right caudate nucleus in ADHD samples could provide a good basis for any future diagnostic imaging test.
机译:简介:注意缺陷多动障碍(ADHD)是一种高度流行的儿童精神病。多动症表现为在熟悉的学术和社会领域普遍存在的注意力不集中,活动过度和/或冲动的症状。对多动症的广泛误诊存在严重的担忧,再加上神经影像技术在多动症研究中的快速增长,促使人们对影像学检查诊断多动症的可行性提出了疑问,该试验可有助于临床实践。涵盖领域:本文简要回顾了多动症的主要神经影像学研究发现及其对当前对多动症神经生物学的理解的贡献,并着重强调了最终可以用作诊断测试基础的方面。然后,本文概述并应用了一种多阶段方法来开发精神病学方面的诊断成像测试,以评估其在ADHD诊断方面的前景以及评估最近提出的诊断成像测试。专家意见:显然,ADHD的诊断成像测试应该基于目前可从ADHD神经生物学研究中获得的最新神经影像技术。然而,从神经影像学研究中得出影像学诊断工具并不像看起来那样简单,有一些先决条件必须事先满足。作者认为,ADHD样本中右尾状核的体积持续减少可以提供良好的基础。用于将来的任何诊断成像测试。

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