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神经元个体内变异性掩盖了注意力缺陷多动障碍亚型之间的反应选择差异——需要转变观点。

Neuronal Intra-Individual Variability Masks Response Selection Differences between ADHD Subtypes-A Need to Change Perspectives.

作者信息

Bluschke Annet, Chmielewski Witold X, Mückschel Moritz, Roessner Veit, Beste Christian

机构信息

Cognitive Neurophysiology, Department of Child and Adolescent Psychiatry, Faculty of Medicine, Technische Universität DresdenDresden, Germany.

Experimental Neurobiology, National Institute of Mental HealthKlecany, Czechia.

出版信息

Front Hum Neurosci. 2017 Jun 28;11:329. doi: 10.3389/fnhum.2017.00329. eCollection 2017.

Abstract

Due to the high intra-individual variability in attention deficit/hyperactivity disorder (ADHD), there may be considerable bias in knowledge about altered neurophysiological processes underlying executive dysfunctions in patients with different ADHD subtypes. When aiming to establish dimensional cognitive-neurophysiological constructs representing symptoms of ADHD as suggested by the initiative for Research Domain Criteria, it is crucial to consider such processes independent of variability. We examined patients with the predominantly inattentive subtype (attention deficit disorder, ADD) and the combined subtype of ADHD (ADHD-C) in a flanker task measuring conflict control. Groups were matched for task performance. Besides using classic event-related potential (ERP) techniques and source localization, neurophysiological data was also analyzed using residue iteration decomposition (RIDE) to statistically account for intra-individual variability and S-LORETA to estimate the sources of the activations. The analysis of classic ERPs related to conflict monitoring revealed no differences between patients with ADD and ADHD-C. When individual variability was accounted for, clear differences became apparent in the RIDE C-cluster (analog to the P3 ERP-component). While patients with ADD distinguished between compatible and incompatible flanker trials early on, patients with ADHD-C seemed to employ more cognitive resources overall. These differences are reflected in inferior parietal areas. The study demonstrates differences in neuronal mechanisms related to response selection processes between ADD and ADHD-C which, according to source localization, arise from the inferior parietal cortex. Importantly, these differences could only be detected when accounting for intra-individual variability. The results imply that it is very likely that differences in neurophysiological processes between ADHD subtypes are underestimated and have not been recognized because intra-individual variability in neurophysiological data has not sufficiently been taken into account.

摘要

由于注意力缺陷多动障碍(ADHD)患者个体内部存在高度变异性,对于不同ADHD亚型患者执行功能障碍背后神经生理过程改变的认识可能存在相当大的偏差。当按照研究领域标准倡议的建议,旨在建立代表ADHD症状的维度认知神经生理结构时,独立于变异性来考虑此类过程至关重要。我们在一项测量冲突控制的侧翼任务中检查了以注意力不集中为主型(注意力缺陷障碍,ADD)和ADHD混合型(ADHD-C)的患者。两组在任务表现上进行了匹配。除了使用经典的事件相关电位(ERP)技术和源定位外,还使用残差迭代分解(RIDE)分析神经生理数据以统计个体内部变异性,并使用S-LORETA估计激活源。对与冲突监测相关的经典ERP的分析显示,ADD患者和ADHD-C患者之间没有差异。当考虑个体变异性时,RIDE C簇(类似于P3 ERP成分)中出现了明显差异。虽然ADD患者在早期就能区分相容和不相容的侧翼试验,但ADHD-C患者总体上似乎使用了更多的认知资源。这些差异反映在顶叶下部区域。该研究表明,ADD和ADHD-C在与反应选择过程相关的神经元机制上存在差异,根据源定位,这种差异源于顶叶下部皮质。重要的是,只有在考虑个体内部变异性时才能检测到这些差异。结果表明,很可能ADHD亚型之间神经生理过程的差异被低估了,并且尚未被认识到,因为神经生理数据中的个体内部变异性没有得到充分考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81f7/5487395/1e3ffa102359/fnhum-11-00329-g0001.jpg

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