The human foot and ankle system is equipped with structures that can produce mechanical work through elastic (e.g., Achilles tendon, plantar fascia) or viscoelastic (e.g., heel pad) mechanisms, or by active muscle contractions. Yet, quantifying the work distribution among various subsections of the foot and ankle can be difficult, in large part due to a lack of objective methods for partitioning the forces acting underneath the stance foot. In this study, we deconstructed the mechanical work production during barefoot walking in a segment-by-segment manner (hallux, forefoot, hindfoot, and shank). This was accomplished by isolating the forces acting within each foot segment through controlling the placement of the participants’ foot as it co...
Metabolic energy expenditure during human gait is poorly understood. Mechanical energy loss during h...
Flexor hallucis longus (FHL) is a multiarticular muscle that possesses the potential to alter foot’s...
Humans tend to value economy of locomotion, often choosing movement strategies that help minimize ho...
Measuring biomechanical work performed by humans and other animals is critical for understanding mus...
This is the final version. Available on open access from the American Physiological Society via the ...
Previous studies of human locomotion indicate that foot and ankle structures can interact in complex...
This is the final version. Available on open access from Springer Nature via the DOI in this recordT...
The foot has been considered both as an elastic mechanism that increases the efficiency of locomotio...
An objective understanding of human foot and ankle function can drive innovations of bio-inspired we...
This is the author accepted manuscript. The final version is available from American Physiological ...
The adaptable structure and function of the foot and ankle play a pivotal role in how we walk. This ...
The foot has been considered both as an elastic mechanism that increases the efficiency of locomotio...
Humans conserve energy during walking using an inverted pendulum mechanism during single-limb suppor...
The ankle and foot system is a combination of flexible and adaptable structures. which are analogous...
Metabolic energy expenditure during human gait is poorly understood. Mechanical energy loss during h...
Metabolic energy expenditure during human gait is poorly understood. Mechanical energy loss during h...
Flexor hallucis longus (FHL) is a multiarticular muscle that possesses the potential to alter foot’s...
Humans tend to value economy of locomotion, often choosing movement strategies that help minimize ho...
Measuring biomechanical work performed by humans and other animals is critical for understanding mus...
This is the final version. Available on open access from the American Physiological Society via the ...
Previous studies of human locomotion indicate that foot and ankle structures can interact in complex...
This is the final version. Available on open access from Springer Nature via the DOI in this recordT...
The foot has been considered both as an elastic mechanism that increases the efficiency of locomotio...
An objective understanding of human foot and ankle function can drive innovations of bio-inspired we...
This is the author accepted manuscript. The final version is available from American Physiological ...
The adaptable structure and function of the foot and ankle play a pivotal role in how we walk. This ...
The foot has been considered both as an elastic mechanism that increases the efficiency of locomotio...
Humans conserve energy during walking using an inverted pendulum mechanism during single-limb suppor...
The ankle and foot system is a combination of flexible and adaptable structures. which are analogous...
Metabolic energy expenditure during human gait is poorly understood. Mechanical energy loss during h...
Metabolic energy expenditure during human gait is poorly understood. Mechanical energy loss during h...
Flexor hallucis longus (FHL) is a multiarticular muscle that possesses the potential to alter foot’s...
Humans tend to value economy of locomotion, often choosing movement strategies that help minimize ho...