期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
疾跑时股后肌群的生物力学特征——对拉伤危险时相的分析 被引量:3
1
作者 万祥林 曲峰 +1 位作者 刘卉 于冰 《中国体育科技》 CSSCI 北大核心 2019年第2期70-75,共6页
目的:旨在通过分析疾跑过程中下肢和股后肌群的生物力学特征参数,探讨股后肌群拉伤的危险时相,进一步深入了解疾跑时股后肌群拉伤的机制。方法:有短跑训练经历的大学生男、女各20名,采集受试者疾跑时的运动学、地面反作用力和肌电数据以... 目的:旨在通过分析疾跑过程中下肢和股后肌群的生物力学特征参数,探讨股后肌群拉伤的危险时相,进一步深入了解疾跑时股后肌群拉伤的机制。方法:有短跑训练经历的大学生男、女各20名,采集受试者疾跑时的运动学、地面反作用力和肌电数据以及10°/s的等速向心屈膝练习时的力矩和运动学数据,进而获得下肢的关节角度、净力矩、关节功率、股后肌群肌肉应变和激活特征等参数。结果:疾跑时股后肌群3块双关节肌的应变峰值出现在步态周期的90%左右。性别对疾跑时肌肉最大应变影响的主效应不显著(P=0.387),股二头肌长头(P=0.002)和半腱肌(P=0.029)的最大应变大于半膜肌。结论:疾跑时股后肌群最大应变出现在摆动阶段末期,提示,股后肌群拉伤更易发生于疾跑摆动末期。疾跑时股后肌群最大应变无性别差异。疾跑时股后肌群各肌肉最大应变不同,这可能是疾跑时各肌肉拉伤率不同的原因之一。 展开更多
关键词 肌肉拉伤 损伤机制 肌肉生物力学 肌肉应变 骨骼肌肉模型
下载PDF
Biocompatible liquid metal coated stretchable electrospinning film for strain sensors monitoring system 被引量:2
2
作者 Xiaofeng Wang Jiang Liu +4 位作者 Yiqiang Zheng Bao Shi Aibing Chen Lili Wang Guozhen Shen 《Science China Materials》 SCIE EI CAS CSCD 2022年第8期2235-2243,共9页
Liquid metals(LMs)are potential inorganic materials which could be applied in flexible and deformable electronics owing to their fluidity,low viscosity,high metallic conductivity,and low toxicity.However,recently repo... Liquid metals(LMs)are potential inorganic materials which could be applied in flexible and deformable electronics owing to their fluidity,low viscosity,high metallic conductivity,and low toxicity.However,recently reported sensing devices based on LMs required complex processes with high cost.Herein,a flexible three-dimensional(3 D)conductive network was prepared by coating LM droplets onto an electrospun thermoplastic polyurethane(TPU)fiber film.The LM is suspended between the TPU fibers and self-coalesces into a vertically buckled and laterally mesh-like structure,which provides good biocompatibility,conductivity,and stretchability simultaneously.The LM-TPU composite-filmbased flexible device demonstrates a multitude of desired features,such as a widely workable stretching range(0%-200%),sufficient sensitivity under stretching strain(gauge factor(GF)of 0.2 at 200%strain),and outstanding stability and durability(9000 cycles).In vitro biocompatibility experiments show that the LM-TPU composite film directly attached to the skin has excellent biocompatibility.Such strain sensorbased integrated monitoring systems could monitor human body motions in real time,such as muscle movement and joint motion,revealing application prospects in healthcare and human-machine interfacing. 展开更多
关键词 liquid metal flexible strain sensor BIOCOMPATIBILITY high stability body motion monitoring
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部