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Identification of heel strike under a slippery condition

机译:在湿滑状态下识别脚后跟罢工

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摘要

Kinematics at heel strike instant (HSI) has been used to quantify slip severity. However, methods to identify HSI remain ambiguous and have not been evaluated under slippery conditions. A glass force plate was used to observe the contact interface between shoe and floor under slippery conditions. HSIs identified from the video captured beneath the force plate and from the force plate and kinematics were compared. The results showed that HSIs identified with the video were closer to those identified with the normal force threshold (NFT) (9.0 ms +/- 5.5 ms) than were most of those identified with kinematics. Slips with a longer distance travelled between NFT HSI and video HSI had a larger heel horizontal velocity (>0.8 m/s) and a smaller foot angular velocity (<100deg/s) at the NFT instant, and were still part of the forward swing. The results show that improved methods are needed over NFT to identify HSI, especially under slippery conditions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:脚跟罢工即时(HSI)的运动学已被用于量化滑动严重程度。 但是,识别HSI的方法仍然存在暧昧,并且在滑动条件下尚未进行评估。 使用玻璃力板在滑湿条件下观察鞋和地板之间的接触界面。 比较了从力板下方捕获的视频和力板和运动学识别的HSIS。 结果表明,用视频鉴定的HSIS更接近具有正常力阈值(NFT)(9.0ms +/- 5.5ms)的那些,而不是具有运动学的大多数人。 NFT HSI和Video HSI之间的距离较长的距离具有更大的鞋跟水平速度(> 0.8米/秒),NFT瞬发的脚角速度(<100deg / s),并且仍然是前向摆动的一部分 。 结果表明,NFT需要改进的方法以识别HSI,尤其是在滑动条件下。 (c)2017 Elsevier Ltd.保留所有权利。

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