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Intra-individual stability of neuromotor tasks from 6 to 18 years: a longitudinal study.

机译:6至18年内神经运动任务的个体内稳定性:一项纵向研究。

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This study investigates the intra-individual stability of the speed of several motor tasks and the intensity of associated movements in 256 children (131 girls, 125 boys) from the Zurich generational study using the Zurich neuromotor assessment battery (ZNA) over a 12-year period from the age of 6 to 18 years. The stability was assessed by correlograms of standard deviation scores calculated from age- and gender-adjusted normative values and compared with standing height and full scale intelligence quotient (IQ). While motor tasks of hand, finger and foot (HFT) and contralateral associated movements (CAM) exhibited a moderate stability (summary measure as correlation coefficients between two measurements made 4 years apart: .61 and .60), other tasks (dynamic balance, static balance and pegboard) were only weakly stable (.46, .47 and .49). IQ and height were more stable than neuromotor components (.72 and .86). We conclude that the moderately stable HFT and CAM may reflect "motor traits", while the stability of the pegboard and balance tasks is weaker because these skills are more experience related and state-dependent.
机译:这项研究使用苏黎世神经运动评估电池(ZNA),在12年的时间里调查了来自苏黎世世代研究的256名儿童(131名女孩,125名男孩)中若干运动任务的速度以及相关运动强度的个体内稳定性。年龄从6到18岁。通过根据年龄和性别调整后的标准值计算出的标准偏差评分的相关图来评估稳定性,并与站立身高和全面智能商(IQ)进行比较。虽然手,手指和脚(HFT)的运动任务以及对侧相关运动(CAM)表现出中等的稳定性(摘要度量为两次间隔4年的相关系数之间的相关系数:.61和.60),其他任务(动态平衡,静态平衡和钉板)只是微弱的稳定(.46,.47和.49)。智商和身高比神经运动成分更稳定(.72和.86)。我们得出的结论是,中等稳定的HFT和CAM可能反映“运动特质”,而钉板和平衡任务的稳定性较弱,因为这些技能与经验相关且与状态有关。

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