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Footwear Cushioning: Relating Objective and Subjective Measurements

机译:鞋垫缓冲:与客观和主观测量相关

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摘要

Footwear cushioning was evaluated objectively using an impact tester and relat- ed to perceived levels of cushioning (PLC). To evaluate the perceived levels of cushioning during standing, walking, and running, 3 experiments were conduct- ed with 20 participants in each experiment. A 7-point subjective rating scale was used to rate the perceived levels of cushioning. At the end of the experiment, the subjective perceptions of cushioning were also recorded. During standing and running, the perceived level of cushioning can be predicted from the time to peak deceleration and/or stiffness (or compression). During walking, however, the magnitude of the peak deceleration on the impact tester appears to be a good predictor of PLC. Impact characterizations can reveal important differ- ences between materials and how they are perceived during activity In addition, the results seem to explain and link the differences that exist in the ergonomics and biomechanics literature on cushioning. Applications of this research include the design and selection of materials for footwear, floor mats, and other support- ing surfaces.
机译:使用冲击测试仪客观地评估了鞋类的缓冲性能,并与所感知的缓冲水平(PLC)有关。为了评估站立,行走和跑步过程中感觉到的缓冲水平,每个实验中有20名参与者进行了3个实验。使用7点主观评分量表对所感知的缓冲水平进行评分。在实验结束时,还记录了缓冲的主观感受。在站立和跑步过程中,可以从峰值减速和/或刚度(或压缩)的时间预测感知到的缓冲水平。但是,在行走过程中,冲击测试仪上峰值减速度的大小似乎是PLC的良好预测指标。冲击特性可以揭示材料之间的重要差异以及在活动过程中它们如何被感知。此外,结果似乎可以解释并联系人体工程学和生物力学文献中关于缓冲的差异。这项研究的应用包括鞋类,地板垫和其他支撑表面的材料设计和选择。

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