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Relationships between variance in electroencephalography relative power and developmental status in infants with typical development and at risk for developmental disability: An observational study

机译:一项观察性研究:典型发育并有发育障碍风险的婴儿的脑电图相对功率方差与发育状况之间的关系

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摘要

>Background: Electroencephalography (EEG) is a non-invasive tool that has the potential to identify and quantify atypical brain development. We introduce a new measure here, variance of relative power of resting-state EEG. We sought to assess whether variance of relative power of resting-state EEG could predict i) classification of infants as typical development (TD) or at risk (AR) for developmental disability, and ii) Bayley developmental scores at the same visit or future visits. >Methods: A total of 22 infants with TD participated, aged between 38 and 203 days. In addition, 11 infants broadly at risk participated (6 high-risk pre-term, 4 low-risk pre-term, 1 high-risk full-term), aged between 40 and 225 days of age (adjusted for prematurity). We used EEG to measure resting-state brain function across months. We calculated variance of relative power as the standard deviation of the relative power across each of the 32 EEG electrodes. The Bayley Scales of Infant Development (3 rd edition) was used to measure developmental level. Infants were measured 1-6 times each, with 1 month between measurements. >Results: Our main findings were: i) variance of relative power of resting state EEG can predict classification of infants as TD or AR, and ii) variance of relative power of resting state EEG can predict Bayley developmental scores at the same visit (Bayley raw fine motor, Bayley raw cognitive, Bayley total raw score, Bayley motor composite score) and at a future visit (Bayley raw fine motor). >Conclusions: This was a preliminary, exploratory, small study. Our results support variance of relative power of resting state EEG as an area of interest for future study as a biomarker of neurodevelopmental status and as a potential outcome measure for early intervention.
机译:>背景:脑电图(EEG)是一种非侵入性工具,具有识别和量化非典型大脑发育的潜力。我们在这里介绍一种新的测量方法,即静止状态脑电图的相对功率方差。我们试图评估静息状态脑电图的相对功率方差是否可以预测i)将婴儿分类为典型发育(TD)或处于发育障碍风险(AR),以及ii)在同一次就诊或以后就诊中的Bayley发育评分。 >方法:共有22例TD婴儿参加,年龄在38至203天之间。此外,年龄在40至225天之间(根据早产情况进行了调整)的11名广泛处于危险中的婴儿参加了研究(6例高危早产儿,4例低危早产儿,1例高危足月儿)。我们使用脑电图来测量整个月的静息状态脑功能。我们将相对功率的方差计算为32个EEG电极之间相对功率的标准偏差。使用贝利婴儿发育量表(第3版)来衡量发育水平。每次对婴儿进行1-6次测量,两次测量之间间隔1个月。 >结果:我们的主要发现是:i)静止状态EEG相对功率的方差可以预测婴儿的TD或AR分类; ii)静止状态EEG相对功率的方差可以预测Bayley发育评分在同一次访问中(Bayley原始精细运动,Bayley原始认知,Bayley总原始评分,Bayley运动综合评分)和将来的访问(Bayley原始精细运动)。 >结论:这是一项初步的探索性小型研究。我们的结果支持静息状态脑电图的相对功率方差,作为神经发育状态的生物标志物以及作为早期干预的潜在结果指标,值得将来研究。

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