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Calibration and Cross-Validation of Accelerometery for Estimating Movement Skills in Children Aged 8–12 Years

机译:加速度的校准和交叉验证以估算8-12岁儿童运动技能的估算

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摘要

(1) Background: This study sought to calibrate triaxial accelerometery, worn on both wrists, waist and both ankles, during children’s physical activity (PA), with particular attention to object control motor skills performed at a fast and slow cadence, and to cross-validate the accelerometer cut-points derived from the calibration using an independent dataset. (2) Methods: Twenty boys (10.1 ±1.5 years) undertook seven, five-minute bouts of activity lying supine, standing, running (4.5kmph−1) instep passing a football (fast and slow cadence), dribbling a football (fast and slow cadence), whilst wearing five GENEActiv accelerometers on their non-dominant and dominant wrists and ankles and waist. VO2 was assessed concurrently using indirect calorimetry. ROC curve analysis was used to generate cut-points representing sedentary, light and moderate PA. The cut-points were then cross-validated using independent data from 30 children (9.4 ± 1.4 years), who had undertaken similar activities whilst wearing accelerometers and being assessed for VO2. (3) Results: GENEActiv monitors were able to discriminate sedentary activity to an excellent level irrespective of wear location. For moderate PA, discrimination of activity was considered good for monitors placed on the dominant wrist, waist, non-dominant and dominant ankles but fair for the non-dominant wrist. Applying the cut-points to the cross-validation sample indicated that cut-points validated in the calibration were able to successfully discriminate sedentary behaviour and moderate PA to an excellent standard and light PA to a fair standard. (4) Conclusions: Cut-points derived from this calibration demonstrate an excellent ability to discriminate children’s sedentary behaviour and moderate intensity PA comprising motor skill activity.
机译:(1)背景:本研究寻求校准三轴加速度,在儿童体育活动(PA)中穿着手腕,腰部和两个脚踝,特别注意在快速和缓慢的节奏中进行的对象控制机动技能,并交叉 - 使用独立数据集来验出从校准导出的加速度计切割点。 (2)方法:20名男孩(10.1±1.5岁)进行七,五分钟的活动躺着仰卧,站立,跑步(4.5kmph-1)脚背通过足球(快速慢慢的慢速),运球(快速和慢速的节奏),而在他们的非主导和主导手腕和脚踝和腰部穿五个Geneactiv加速度计。使用间接量热法同时评估VO2。 ROC曲线分析用于产生代表久坐不动,光和中等PA的切片。然后使用来自30名儿童(9.4±1.4岁)的独立数据进行交叉验证,他们在佩戴加速度计时进行了类似的活动并评估VO2。 (3)结果:无论磨损位置如何,Geneactiv监测器都能够区分久坐活性至优异的水平。对于中度PA,活动的歧视被认为是适用于主导手腕,腰部,非主导和主导脚踝的监视器,但为非主导手腕公平。将切割点应用于交叉验证样本表明,校准中验证的切割能够成功地区分久坐行为和中度PA,以优异的标准和光线PA到公平的标准。 (4)结论:源自该校准的切片表明了鉴别儿童久坐不动行为和中等强度PA的优异能力,包括机动技能。

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