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QUANTIFICATION OF TOY SWORD KINEMATICS WITH MALE PEDIATRIC VOLUNTEERS

机译:男性小儿志愿者对玩具剑运动学的量化

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摘要

While extensive research in toy safety has been performed, data is unavailable with regard to the kinematics of toy swords. To improve upon design criteria, knowledge of a child's physical capacity is essential. The purpose of this study was to quantify the linear and angular velocities generated by children swinging toy swords. A total of 36 male subjects, ages 4-14 years old, each participated in one trial. Subjects were instructed to swing a toy sword as fast and hard as possible for ~10 seconds. A Vicon motion analysis system was used to capture subject and sword kinematics. Peak linear and angular sword velocities were calculated. A strong correlation was identified between age and velocity. The 8-14 year old males were not significantly different. The 4 year old males generated significantly lower velocities than the 8-14 year old males. The 6 year old males produced significantly lower velocities than the 10-14 year old males. It was concluded that age had a significant effect on the linear and angular velocities generated by children. The trends observed within this study likely result from typical pediatric and adolescent development. By accounting for the physical capabilities of a specific population, toys can be designed with decreased inherent risks of injury.
机译:尽管已对玩具安全性进行了广泛的研究,但尚无有关玩具剑运动学的数据。为了改善设计标准,必须了解孩子的身体能力。这项研究的目的是量化由儿童挥动玩具剑产生的线速度和角速度。共有36位年龄在4至14岁之间的男性受试者参加了一项试验。指示受试者尽可能快而坚硬地挥动玩具剑约10秒钟。 Vicon运动分析系统用于捕获主体和剑的运动学。计算峰值线性和角剑速度。年龄和速度之间存在很强的相关性。 8-14岁的男性无显着差异。 4岁男性的速度明显低于8-14岁男性。 6岁男性的速度明显低于10-14岁男性。结论是,年龄对儿童产生的线速度和角速度有重大影响。本研究中观察到的趋势可能是典型的儿科和青少年发育所致。通过考虑特定人群的身体能力,可以设计具有降低的固有伤害风险的玩具。

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