首页> 外文期刊>Journal of Biomechanics >Trunk kinematic, kinetic, and neuro-muscular response to foot center of pressure translation along the medio-lateral foot axis during gait
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Trunk kinematic, kinetic, and neuro-muscular response to foot center of pressure translation along the medio-lateral foot axis during gait

机译:沿着地区侧侧脚轴线的压力平移脚压平移,动力学和神经肌肉响应

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Footwear devices that shift foot center of pressure (COP), thereby impacting lower-limb biomechanics to produce clinical benefit, have been studied regarding degenerative diseases of knee and hip joints, exhibiting evidence of clinical success. Ability to purposefully affect trunk biomechanics has not been investigated for this type of footwear. Fifteen healthy young male subjects underwent gait and electromyography analysis using a biomechanical device that shifts COP via moveable convex elements attached to the shoe sole. Analyses were performed in three COP configurations for pairwise comparison: (1) neutral (control) (2) laterally deviated, and (3) medially deviated. Sagittal and frontal-plane pelvis and spine kinematics, external oblique activity, and frontal and transverse-plane lumbar moments were affected by medio-lateral COP shift. Transverse-plane trunk kinematics, activity of the lumbar longissimus, latissimus dorsi, rectus abdominus, and quadratus lumborum, and sagittal-plane lumbar moment, were not significantly impacted. Two linear mixed effects models assessed predictive impact of (I) COP location, and (II) trunk kinematics and neuromuscular activity, on the significant lumbar moment parameters. The COP was a significant predictor of all modeled frontal and transverse-plane lumbar moment parameters, while pelvic and spine rotation, and lumbar longissimus activity were significant predictors of one frontal-plane lumbar moment parameter. Model results suggest that, although trunk biomechanics and muscle activity were altered by COP shift, COP offset influences lumbar kinetics directly, or via lower-limb changes not assessed in this study, but not by means of alteration of trunk kinematics or muscle activity. Further study may reveal implications in treatment of low back pain. (C) 2019 Elsevier Ltd. All rights reserved.
机译:鞋类装置转移压力(COP),从而影响低肢体生物力学产生临床效益,研究了膝关节和髋关节的退行性疾病,表现出临床成功的证据。有目的地影响树干生物力学的能力尚未对这种鞋类进行调查。使用生物力学装置进行十五次健康的年轻男性受试者,使用鞋底可移动凸元素移动COP的生物力学装置。分析在三个COP配置中进行成对比较:(1)中性(控制)(2)横向偏离,(3)内部偏离。矢状和脊柱运动学,外部倾斜活动和额外的横向平面腰腰椎间弹性受到Medio-横向警察的影响。横向平面躯干运动学,腰镰刀菌,Latissimus dorsi,肠胃腹肌和Quadratus leumorum,以及矢状平面腰腰矩,并没有显着影响。两种线性混合效果模型评估(i)Cop位置的预测影响,(ii)躯干运动学和神经肌肉活性,在显着的腰椎矩参数上。 COP是所有建模的正面和横向平面腰腰动矩参数的重要预测因子,而盆腔和脊柱旋转,腰部旋转和腰部旋转活动是一个前平面腰腰矩参数的显着预测因子。模型结果表明,尽管由CO​​P转移改变了躯干生物力学和肌肉活动,但COP偏移直接影响腰部动力学,或者通过本研究中未评估的低肢变化,但不是通过改变树干运动学或肌肉活动的改变。进一步的研究可能揭示治疗腰痛的影响。 (c)2019年elestvier有限公司保留所有权利。

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