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Adolescent Awkwardness: Alterations in Temporal Control Characteristics of Posture with Maturation and the Relation to Movement Exploration

机译:青少年的尴尬:姿势的时空控制特征随着成熟而变化及其与运动探索的关系

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摘要

A phenomenon called adolescent awkwardness is believed to alter motor control, but underlying mechanisms remain largely unclear. Since adolescents undergo neurological and anthropometrical changes during this developmental phase, we hypothesized that adolescents control their movements less tightly and use a different coordinative structure compared to adults. Moreover, we tested if emerging differences were driven by body height alterations between age groups. Using 39 reflective markers, postural movements during tandem stance with eyes open and eyes closed of 12 adolescents (height 168.1 ± 8.8 cm) and 14 adults were measured, in which 9 adults were smaller or equal than 180 cm (177.9 ± 3.0 cm) and 5 taller or equal than 190 cm (192.0 ± 2.5 cm). A principal component analysis (PCA) was used to extract the first nine principal movement components ( ). The contribution of each to the overall balancing movement was determined according to their relative variance share ( ) and tightness of motor control was examined using the number of times that the acceleration of each changed direction ( ). Results in did not show significant differences in coordinative structure between adolescents and adults, but revealed that adolescents seem to control their movements less tightly in higher-order , arguably due to slower processing times and missing automatization of postural control or potential increases in exploration. Body height was found to not cause motor control differences between age groups.
机译:人们认为一种称为青春期尴尬的现象会改变运动控制,但基本机制尚不清楚。由于青少年在这个发育阶段会经历神经学和人体测量学的变化,因此我们假设与成年人相比,青少年对运动的控制较不严格,并且使用了不同的协调结构。此外,我们测试了新出现的差异是否是由年龄组之间的身高变化引起的。使用39个反射性标记,对12位青少年(身高168.1±8.8厘米)和14位成年人的睁眼和闭眼的串联姿势期间的姿势运动进行了测量,其中9位成年人小于或等于180厘米(177.9±3.0厘米),并且5高或等于190厘米(192.0±2.5厘米)。主成分分析(PCA)用于提取前九个主要运动成分()。根据它们各自的相对方差份额()确定每个对总体平衡运动的贡献,并使用每个变化方向的加速度()的次数检查电动机控制的紧密性。的结果并未显示青少年与成人之间的协调结构有显着差异,但显示青少年似乎在较高级别上不太严格地控制自己的运动,这可能是由于处理时间较慢,缺少姿势控制的自动化机制或探索的潜在可能。发现身高不会引起年龄组之间的运动控制差异。

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