Skip to main content

Research Repository

Advanced Search

All Outputs (4)

Gait adaptability (2018)
Journal Article
Weerdesteyn, V., Hollands, K., & Hollands, M. (2018). Gait adaptability. Handbook of clinical neurology (Print), 159(8), 135-146. https://doi.org/10.1016/B978-0-444-63916-5.00008-2

Our activities of daily living inherently involve interacting with the physical environment. This interaction involves both reactive (feedback) and proactive (feedforward) gait adaptations. Reactive adaptations involve responses to mechanical perturb... Read More about Gait adaptability.

Validation of gait event detection by centre of pressure during target stepping in healthy and paretic gait (2018)
Journal Article
Van der veen, S., Hammerbeck, U., Baker, R., & Hollands, K. (2018). Validation of gait event detection by centre of pressure during target stepping in healthy and paretic gait. Journal of Biomechanics, 79, 218-222. https://doi.org/10.1016/j.jbiomech.2018.07.039

Background: Target-stepping paradigms are increasingly used to assess and train gait adaptability. Accurate gait-event detection (GED) is key to locating targets relative to the ongoing step cycle as well as measuring foot-placement error. In the cur... Read More about Validation of gait event detection by centre of pressure during target stepping in healthy and paretic gait.

Estimation of muscle activation during different walking speeds with two mathematical approaches compared to surface EMG (2018)
Journal Article
Trinler, U., Leboeuf, F., Hollands, K., Jones, R., & Baker, R. (2018). Estimation of muscle activation during different walking speeds with two mathematical approaches compared to surface EMG. Gait & Posture, 64, 266-273. https://doi.org/10.1016/j.gaitpost.2018.06.115

Background Muscle force estimation could improve clinical gait analysis by enhancing insight into causes of impairments and informing targeted treatments. However, it is not currently standard practice to use muscle force models to augment clinic... Read More about Estimation of muscle activation during different walking speeds with two mathematical approaches compared to surface EMG.

A systematic review of approaches to modelling lower limb muscle forces during gait : applicability to clinical gait analyses (2018)
Journal Article
Trinler, U., Hollands, K., Jones, R., & Baker, R. (2018). A systematic review of approaches to modelling lower limb muscle forces during gait : applicability to clinical gait analyses. Gait & Posture, 61, 353-361. https://doi.org/10.1016/j.gaitpost.2018.02.005

Computational methods to estimate muscle forces during walking are becoming more common in biomechanical research but not yet in clinical gait analysis. This systematic review aims to identify the current state-of-the-art, examine the differences bet... Read More about A systematic review of approaches to modelling lower limb muscle forces during gait : applicability to clinical gait analyses.