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发育性协调障碍和注意力缺陷多动障碍中的脑电图频谱功率:一项初步研究。

EEG spectral power in developmental coordination disorder and attention-deficit/hyperactivity disorder: a pilot study.

作者信息

Meachon Emily J, Kundlacz Marlene, Wilmut Kate, Alpers Georg W

机构信息

School of Social Sciences, University of Mannheim, Mannheim, Germany.

Faculty of Psychology, University of Basel, Basel, Switzerland.

出版信息

Front Psychol. 2024 May 3;15:1330385. doi: 10.3389/fpsyg.2024.1330385. eCollection 2024.

Abstract

Developmental coordination disorder (DCD) and attention-deficit/hyperactivity disorder (ADHD) overlap in symptoms and often co-occur. Differentiation of DCD and ADHD is crucial for a better understanding of the conditions and targeted support. Measuring electrical brain activity with EEG may help to discern and better understand the conditions given that it can objectively capture changes and potential differences in brain activity related to externally measurable symptoms beneficial for targeted interventions. Therefore, a pilot study was conducted to exploratorily examine neurophysiological differences between adults with DCD and/or ADHD at rest. A total of  = 46 adults with DCD ( = 12), ADHD ( = 9), both DCD + ADHD ( = 8), or typical development ( = 17) completed 2 min of rest with eyes-closed and eyes-open while their EEG was recorded. Spectral power was calculated for frequency bands: delta (0.5-3 Hz), theta (3.5-7 Hz), alpha (7.5-12.5 Hz), beta (13-25 Hz), mu (8-13 Hz), gamma (low: 30-40 Hz; high: 40-50 Hz). Within-participants, spectral power in a majority of waveforms significantly increased from eyes-open to eyes-closed conditions. Groups differed significantly in occipital beta power during the eyes-open condition, driven by the DCD versus typically developing group comparison. However, other group comparisons reached only marginal significance, including whole brain alpha and mu power with eyes-open, and frontal beta and occipital high gamma power during eyes-closed. While no strong markers could be determined to differentiate DCD versus ADHD, we theorize that several patterns in beta activity were indicative of potential motor maintenance differences in DCD at rest. Therefore, larger studies comparing EEG spectral power may be useful to identify neurological mechanisms of DCD and continued differentiation of DCD and ADHD.

摘要

发育协调障碍(DCD)与注意力缺陷多动障碍(ADHD)在症状上存在重叠,且常常同时出现。区分DCD和ADHD对于更好地理解这些病症以及提供针对性支持至关重要。鉴于脑电图(EEG)能够客观地捕捉与外部可测量症状相关的大脑活动变化及潜在差异,这对针对性干预有益,所以通过EEG测量大脑电活动可能有助于辨别和更好地理解这些病症。因此,开展了一项试点研究,以探索性地检查患有DCD和/或ADHD的成年人在静息状态下的神经生理差异。共有46名成年人参与,其中患有DCD的有12人,患有ADHD的有9人,同时患有DCD + ADHD的有8人,发育正常的有17人。他们在闭眼和睁眼状态下分别进行了2分钟的静息,期间记录其EEG。计算了各频段的频谱功率:δ波(0.5 - 3Hz)、θ波(3.5 - 7Hz)、α波(7.5 - 12.5Hz)、β波(13 - 25Hz)、μ波(8 - 13Hz)、γ波(低频:30 - 40Hz;高频:40 - 50Hz)。在参与者内部,大多数波形的频谱功率从睁眼状态到闭眼状态显著增加。在睁眼状态下,枕叶β波功率在DCD组与发育正常组的比较中,各小组存在显著差异。然而,其他组间比较仅达到边缘显著性,包括睁眼时全脑α波和μ波功率,以及闭眼时额叶β波和枕叶高频γ波功率。虽然无法确定强有力的标志物来区分DCD和ADHD,但我们推测β波活动的几种模式表明了DCD患者在静息状态下潜在的运动维持差异。因此,开展更大规模的比较EEG频谱功率的研究可能有助于确定DCD的神经机制,并持续区分DCD和ADHD。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93dc/11099285/d9cf459590c1/fpsyg-15-1330385-g001.jpg

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