Biomechanical Effects of Sandal Strap Design on Gait Kinematics and Electromyographic Activation Patterns: A Speed-Dependent Analysis.

IF 0.6 4区 计算机科学 Q3 ENGINEERING, BIOMEDICAL
Applied Bionics and Biomechanics Pub Date : 2025-08-07 eCollection Date: 2025-01-01 DOI:10.1155/abb/8802614
Bojie Xuan, Dong Sun, Dongxu Wang, Diwei Chen, Fengping Li, Yang Song, Xuanzhen Cen, Gusztáv Fekete, Monèm Jemni, Yaodong Gu
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引用次数: 0

Abstract

Background: Sandals are widely favored for their comfort; however, their open design may reduce foot support and compromise gait stability. Objective: This study examined the effects of various sandal strap configurations and walking speeds on spatiotemporal gait parameters and the integrated electromyographic (iEMG) activity of lower limb muscles. Methods: Twenty-four healthy adult males (age: 25.00 ± 1.22 years; mass: 71.50 ± 11.84 kg; height: 173.50 ± 3.50 cm) participated in this study. A two-way repeated-measures ANOVA was performed to assess the effects of three footwear conditions (barefoot, Crocs strapped, and Crocs strapless) across three walking speeds (1.2, 1.6, and 2.0 m/s). Gait outcomes included step length, step width, step frequency, peak plantar loading duration, and iEMG activity of key lower limb muscles: gluteus maximus (GM), rectus femoris (RF), biceps femoris (BF), tibialis anterior (TA), and lateral gastrocnemius (LG). Results: Footwear condition significantly affected step width (p < 0.05) and step frequency (p < 0.001). A significant interaction between footwear and walking speed was observed for peak plantar loading duration in both the forefoot and heel regions (p < 0.05). Additionally, significant differences in RF and GM iEMG activity were found between barefoot and strapped conditions (p < 0.05). Conclusions: Strapped sandals improve plantar load distribution and gait stability by regulating step frequency and reducing lower limb muscle activation, with these effects being more pronounced at higher walking speeds, particularly during forefoot and heel loading phases.

凉鞋绑带设计对步态运动学和肌电激活模式的生物力学影响:速度依赖分析。
背景:凉鞋因其舒适而广受欢迎;然而,它们的开放式设计可能会减少足部支撑并损害步态稳定性。目的:研究不同鞋带配置和步行速度对时空步态参数和下肢肌肉综合肌电活动的影响。方法:24例健康成年男性,年龄25.00±1.22岁,体重71.50±11.84 kg,身高173.50±3.50 cm。采用双向重复测量方差分析来评估三种鞋类条件(赤脚、绑带洞洞鞋和无绑带洞洞鞋)对三种步行速度(1.2、1.6和2.0 m/s)的影响。步态结果包括步长、步宽、步频、足底峰值负荷持续时间和下肢主要肌肉的iEMG活动:臀大肌(GM)、股直肌(RF)、股二头肌(BF)、胫前肌(TA)和腓骨外侧肌(LG)。结果:鞋履条件显著影响步宽(p < 0.05)和步频(p < 0.001)。在前足和跟区,鞋履和步行速度之间存在显著的交互作用(p < 0.05)。此外,赤脚和绑带条件下RF和GM的iEMG活性显著差异(p < 0.05)。结论:绑带凉鞋通过调节步频和减少下肢肌肉激活来改善足底负荷分布和步态稳定性,这些效果在较高的步行速度下更为明显,特别是在前足和脚跟负荷阶段。
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来源期刊
Applied Bionics and Biomechanics
Applied Bionics and Biomechanics ENGINEERING, BIOMEDICAL-ROBOTICS
自引率
4.50%
发文量
338
审稿时长
>12 weeks
期刊介绍: Applied Bionics and Biomechanics publishes papers that seek to understand the mechanics of biological systems, or that use the functions of living organisms as inspiration for the design new devices. Such systems may be used as artificial replacements, or aids, for their original biological purpose, or be used in a different setting altogether.
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