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Article

The Impact of Advanced Footwear Technology on the Performance and Running Biomechanics of Mountain Runners

by
Pedro Corbí-Santamaría
,
Marina Gil-Calvo
,
Alba Herrero-Molleda
,
Juan García-López
*,
Daniel Boullosa
and
José Vicente García-Tormo
Faculty of Physical Activity and Sports Sciences, Universidad de León, 24071 León, Spain
*
Author to whom correspondence should be addressed.
These authors contributed equally to this work.
Appl. Sci. 2025, 15(2), 531; https://doi.org/10.3390/app15020531
Submission received: 12 December 2024 / Revised: 31 December 2024 / Accepted: 3 January 2025 / Published: 8 January 2025
(This article belongs to the Special Issue Advances in Sports Training and Biomechanics)

Abstract

In recent years, advanced footwear technology (AFT) has been shown to improve performance in long-distance road running by altering biomechanics and perceived comfort. This type of footwear is now being marketed for mountain running, although its effects in such races remain unevaluated. This study aimed to examine the impact of AFT on performance, biomechanics, and perceived comfort during a simulated mountain running event. Twelve trained mountain runners participated in a 3-day experiment, with a 7-day recovery between sessions. On the first day, a maximal aerobic speed test assessed the runners’ performance levels. On the second day, participants familiarized themselves with a 5.19 km mountain circuit and comfort scale. On the third day, they completed two time trials on the same circuit, separated by 30 min of passive recovery, using conventional and AFT shoes in a randomized order. Physiological and biomechanical variables were recorded, including body mass, blood lactate, running biomechanics, vertical stiffness, shoe comfort, and rating of perceived exertion (RPE). The findings indicate that AFT does not improve performance or physiological responses during a simulated mountain race, regardless of segment (uphill, downhill, or mixed). However, AFT significantly alters running biomechanics, reducing step frequency and increasing the vertical oscillation of the center of gravity, especially in uphill and downhill sections. While overall comfort remained unchanged, specific differences were observed with AFT. Coaches and practitioners should consider these findings when using AFT in mountain running training or competition.
Keywords: trail running; carbon fiber plate; running shoes; uphill; downhill; running performance trail running; carbon fiber plate; running shoes; uphill; downhill; running performance

Share and Cite

MDPI and ACS Style

Corbí-Santamaría, P.; Gil-Calvo, M.; Herrero-Molleda, A.; García-López, J.; Boullosa, D.; García-Tormo, J.V. The Impact of Advanced Footwear Technology on the Performance and Running Biomechanics of Mountain Runners. Appl. Sci. 2025, 15, 531. https://doi.org/10.3390/app15020531

AMA Style

Corbí-Santamaría P, Gil-Calvo M, Herrero-Molleda A, García-López J, Boullosa D, García-Tormo JV. The Impact of Advanced Footwear Technology on the Performance and Running Biomechanics of Mountain Runners. Applied Sciences. 2025; 15(2):531. https://doi.org/10.3390/app15020531

Chicago/Turabian Style

Corbí-Santamaría, Pedro, Marina Gil-Calvo, Alba Herrero-Molleda, Juan García-López, Daniel Boullosa, and José Vicente García-Tormo. 2025. "The Impact of Advanced Footwear Technology on the Performance and Running Biomechanics of Mountain Runners" Applied Sciences 15, no. 2: 531. https://doi.org/10.3390/app15020531

APA Style

Corbí-Santamaría, P., Gil-Calvo, M., Herrero-Molleda, A., García-López, J., Boullosa, D., & García-Tormo, J. V. (2025). The Impact of Advanced Footwear Technology on the Performance and Running Biomechanics of Mountain Runners. Applied Sciences, 15(2), 531. https://doi.org/10.3390/app15020531

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