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跑鞋纵向弯曲刚度变化对精英马拉松运动员下肢生物力学的影响。

Effects of varying longitudinal bending stiffness in running shoes on lower limb biomechanics of elite marathon runners.

作者信息

Yang Hailiang, Cai Yuhui, Li Kuang, Wang Xiangdong, Liu Tao

机构信息

School of Physical Education, Jimei University, Xiamen, Fujian, China.

Footwear Science & Technology Innovation Center, Xtep (China) Co., Ltd., Xiamen, Fujian, China.

出版信息

Front Sports Act Living. 2025 May 27;7:1608092. doi: 10.3389/fspor.2025.1608092. eCollection 2025.

Abstract

OBJECTIVE

This study examined the effect of three levels of longitudinal bending stiffness (LBS) in carbon-plated shoes on lower limb biomechanics.

METHODS

Fifteen elite male marathon runners, each with a personal best under 3 h, participated in the study. They were tested wearing shoes with three LBS levels: low (LLBS, 0.31 Nm/deg), medium (MLBS, 0.40 Nm/deg), and high (HLBS, 0.48 Nm/deg). All participants ran at a constant speed of 4.76 m/s. Kinematic and kinetic data were synchronously collected using the VICON motion capture system and three AMTI force plates. Angular parameters of the ankle, knee, hip, and metatarsophalangeal (MTP) joints were calculated using the sagittal plane coordinate system. Joint moments and joint work (positive and negative) at each lower limb joint were analyzed using the built-in inverse dynamics module in Visual3D.

RESULTS

In terms of kinematics, the maximum dorsiflexion angle of the MTP joint during the late stance phase and the range of motion during the stance phase was significantly lower in the MLBS to HLBS shoes than in the LLBS shoes. Negative work at the MTP joints was significantly higher in the LLBS shoes than in the HLBS shoes (LLBS: 0.21 ± 0.05 J/kg, MLBS: 0.16 ± 0.03 J/kg, HLBS: 0.13 ± 0.05 J/kg,  = 12.053,  = 0.001). Additionally, the maximum hip extension moment was also significantly affected by LBS (F = 6.561,  = 0.012, 2 = 0.286), with the MLBS (1.49 ± 0.27 Nm/kg) shoes showing lower values than both LLBS (1.80 ± 0.33 Nm/kg,  = 0.021) and HLBS (1.58 ± 0.32 Nm/kg,  = 0.047). The MLBS shoes significantly increased positive work at the ankle joint (LLBS: 0.66 ± 0.08 J/kg, MLBS: 0.71 ± 0.10 J/kg, HLBS: 0.69 ± 0.08 J/kg,  = 3.292,  = 0.047).

CONCLUSIONS

This study demonstrates that increasing the LBS shoes alters the lower limb biomechanical performance of elite marathon runners. Both MLBS and HLBS conditions reduced MTP joint dorsiflexion, but MLBS shoes significantly increased positive work at the ankle joint and improved joint function while maintaining lower hip joint moments. Among the three conditions, MLBS better balanced mechanical efficiency and natural joint function, suggesting it may be a more biomechanically suitable option for elite marathon runners. These findings provide valuable insights for optimizing LBS in performance shoe design, with MLBS offering a potential advantage in both biomechanical performance and injury prevention.

摘要

目的

本研究考察了碳板跑鞋的三种纵向弯曲刚度(LBS)水平对下肢生物力学的影响。

方法

15名精英男性马拉松运动员参与了本研究,他们每个人的个人最好成绩都在3小时以内。他们穿着具有三种LBS水平的鞋子进行测试:低(LLBS,0.31 Nm/deg)、中(MLBS,0.40 Nm/deg)和高(HLBS,0.48 Nm/deg)。所有参与者均以4.76 m/s的恒定速度跑步。使用VICON运动捕捉系统和三个AMTI测力台同步收集运动学和动力学数据。使用矢状面坐标系计算踝关节、膝关节、髋关节和跖趾(MTP)关节的角度参数。使用Visual3D中的内置逆动力学模块分析每个下肢关节的关节力矩和关节功(正功和负功)。

结果

在运动学方面,与LLBS鞋相比,MLBS至HLBS鞋在站立后期MTP关节的最大背屈角度和站立期的运动范围显著更低。LLBS鞋中MTP关节的负功显著高于HLBS鞋(LLBS:0.21±0.05 J/kg,MLBS:0.16±0.03 J/kg,HLBS:0.13±0.05 J/kg,F = 12.053,P = 0.001)。此外,最大髋关节伸展力矩也受到LBS的显著影响(F = 6.561,P = 0.012,η² = 0.286),MLBS(1.49±0.27 Nm/kg)鞋的值低于LLBS(1.80±0.33 Nm/kg,P = 0.021)和HLBS(1.58±0.32 Nm/kg,P = 0.047)鞋。MLBS鞋显著增加了踝关节的正功(LLBS:0.66±0.08 J/kg,MLBS:0.71±0.10 J/kg,HLBS:0.69±0.08 J/kg,F = 3.292,P = 0.047)。

结论

本研究表明,增加LBS鞋会改变精英马拉松运动员的下肢生物力学性能。MLBS和HLBS条件均降低了MTP关节背屈,但MLBS鞋显著增加了踝关节正功并改善了关节功能,同时保持较低的髋关节力矩。在这三种条件中,MLBS更好地平衡了机械效率和自然关节功能,表明它可能是精英马拉松运动员在生物力学方面更合适的选择。这些发现为优化性能鞋设计中的LBS提供了有价值的见解,MLBS在生物力学性能和预防损伤方面均具有潜在优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/862a/12149568/e44c7e6b7e66/fspor-07-1608092-g001.jpg

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