Mechanics and energetics of human feet: a contemporary perspective for understanding mobility impairments in older adults.

Biomechanics (Basel, Switzerland) Pub Date : 2022-12-01 Epub Date: 2022-09-23 DOI:10.3390/biomechanics2040038
Kota Z Takahashi, Rebecca L Krupenevich, Amy L Lenz, Luke A Kelly, Michael J Rainbow, Jason R Franz
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Abstract

Much of our current understanding of age-related declines in mobility has been aided by decades of investigations on the role of muscle-tendon units spanning major lower extremity joints (e.g., hip, knee and ankle) for powering locomotion. Yet, mechanical contributions from foot structures are often neglected. This is despite the emerging evidence for their critical importance in youthful locomotion. With rapid growth in the field of human foot biomechanics over the last decade, our theoretical knowledge of young asymptomatic feet has transformed, from long-held views of a stiff lever and a shock-absorber to a versatile system that can modulate mechanical power and energy output to accommodate various locomotor task demands. In this perspective review, we predict that the next set of impactful discoveries related to locomotion in older adults will emerge by integrating the novel tools and approaches that are currently transforming the field of human foot biomechanics. By illuminating the functions of feet in older adults, we envision that future investigations will refine our mechanistic understanding of mobility deficits affecting our aging population, which may ultimately inspire targeted interventions to rejuvenate the mechanics and energetics of locomotion.

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人足的力学和能量学:理解老年人行动障碍的当代视角
几十年来,我们对跨越主要下肢关节(如髋关节、膝关节和踝关节)的肌肉-肌腱单元在推动运动中的作用进行了研究,这在很大程度上帮助了我们目前对与年龄相关的行动能力下降的理解。然而,足部结构的机械贡献往往被忽视。尽管有新的证据表明它们对年轻人的运动至关重要。在过去的十年里,随着人类足部生物力学领域的快速发展,我们对年轻无症状足部的理论知识已经从长期以来将足部视为刚性杠杆和减震器的观点转变为一种多功能系统,该系统可以调节机械功率和能量输出,以适应各种运动任务的需求。在这篇前瞻性综述中,我们预测,通过整合目前正在改变人类足部生物力学领域的新工具和方法,下一组与老年人运动相关的有影响力的发现将出现。通过阐明老年人脚部的功能,我们设想未来的研究将完善我们对影响老龄化人口的行动能力缺陷的机制理解,这可能最终激发有针对性的干预措施,以振兴运动的力学和能量学。
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