ArticleJournal of the Royal Society, Interface2022
Walking with increasing acceleration is achieved by tuning ankle torque onset timing and rate of torque development.
Article in Journal of the Royal Society, Interface, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 5 papers.
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Who cites it
5 citing papers in PubMed.
- Practical assessment of motor preparation-execution coupling during active ankle dorsiflexion in post-stroke gait: A pilot study.Clinical neurophysiology practice · 2026Article
- A time-efficient continuous ramp protocol for data-driven walking energy expenditure estimation across multiple speeds.Journal of neuroengineering and rehabilitation · 2025Article
- Effects of Motor Preparation on Walking Ability in Active Ankle Dorsiflexion.Neurology international · 2025Article
- Changes in acceleration and deceleration factors associated with active gait speed adjustment.Journal of physical therapy science · 2024Article
- Walking with increasing acceleration is achieved by tuning ankle torque onset timing and rate of torque development.Journal of the Royal Society, Interface · 2022Article
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Authors and funding
3 authors.
Funding
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Abstract
Understanding the mechanics of torque production about the ankle during accelerative gait is key to designing effective clinical and rehabilitation practices, along with developing functional robotics and wearable assistive technologies. We aimed to explore how torque and work about the ankle is produced as walking acceleration increases from 0 to 100% maximal acceleration. We hypothesized that as acceleration increased, greater work about the ankle would not be solely due to ramping up plantar flexor torque, and instead would be a product of adjustments to relative timing of ankle torque and angular displacement. Fifteen healthy participants performed walking without acceleration (constant speed), as well as low, moderate and maximal accelerations, while motion capture and ground reaction force data were recorded. We employed vector coding in a novel application to overcome limitations of previously employed evaluation methods. As walking acceleration increased, there was reduced negative work and increased positive work about the ankle. Furthermore, early stance dorsiflexion had reducing plantar flexor torque due to delayed plantar flexor torque onset as acceleration increased, while mid-stance ankle plantar flexor torque was substantially increased with minimal ankle dorsiflexion, irrespective of acceleration magnitude. Assistive devices need to account for these changes during accelerative walking to facilitate functional gait.
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Registered trials
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