Division of Biokinesiology and Physical Therapy, University of Southern California, Los Angeles, California, USA.
Department of Biomechanics, University of Nebraska Omaha, Omaha, Nebraska, USA.
Infancy. 2023 May;28(3):650-666. doi: 10.1111/infa.12537. Epub 2023 Mar 15.
Traditional methods do not capture the multidimensional domains and dynamic nature of infant behavioral patterns. We aim to compare full-day, in-home leg movement data between infants with typical development (TD) and infants at risk of developmental disabilities (AR) using barcoding and nonlinear analysis. Eleven infants with TD (2-10 months) and nine infants AR (adjusted age: 2-14 months) wore a sensor on each ankle for 7 days. We calculated the standard deviation for linear variability and sample entropy (SampEn) of leg acceleration and angular velocity for nonlinear variability. Movements were also categorized into 16 barcoding states, and we calculated the SampEn and proportions of the barcoding. All variables were compared between the two groups using independent-samples t-test or Mann-Whitney U test. The AR group had larger linear variability compared to the TD group. SampEn was lower in the AR group compared to TD group for both acceleration and angular velocity. Two barcoding states' proportions were significantly different between the two groups. The results showed that nonlinear analysis and barcoding could be used to identify the difference of dynamic multidimensional movement patterns between infants AR and infants with TD. This information may help early diagnosis of developmental disabilities in the future.
传统方法无法捕捉婴儿行为模式的多维领域和动态特性。我们旨在使用条形码和非线性分析比较具有典型发育(TD)和发育障碍风险(AR)的婴儿全天、在家中的腿部运动数据。11 名 TD 婴儿(2-10 个月)和 9 名 AR 婴儿(校正年龄:2-14 个月)在每个脚踝上佩戴传感器 7 天。我们计算了腿部加速度和角速度线性可变性的标准偏差和样本熵(SampEn),以及非线性可变性的样本熵。运动也被分类为 16 个条形码状态,我们计算了条形码的 SampEn 和比例。使用独立样本 t 检验或曼-惠特尼 U 检验比较两组之间的所有变量。与 TD 组相比,AR 组的线性可变性更大。与 TD 组相比,AR 组的加速度和角速度的 SampEn 均较低。两组之间有两个条形码状态的比例有显著差异。结果表明,非线性分析和条形码可用于识别 AR 婴儿和 TD 婴儿之间动态多维运动模式的差异。这些信息可能有助于未来对发育障碍进行早期诊断。