Health & Medicinearticle2026-08-14

Advanced footwear technology improves sprinting mechanics and performance

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Abstract

Sprint running performances have improved with the use of advanced footwear technology, but the mechanisms responsible are unknown. Here, we tested two hypothesized mechanisms: 1) faster maximal speeds resulting from greater ground force application, and 2) associated contact time decreases, and step length increases that could enable faster late-race velocities. Ten track and five soccer athletes (N=15) completed randomized, linear 130-meter sprint trials in conventional and prototype footwear. The prototypes were highly compliant and resilient in cushioning and stiff in forefoot bending. Instantaneous velocities were recorded with a radar device; contact and aerial times were acquired from ankle-mounted accelerometers throughout; split and final times (60, 100, 130 m) were recorded with dual-beam laser timing gates. Contact times were also determined from 960 Hz video acquired from 10-meter zones between 45 and 80 meters. Performance times for the 130-meter trials were 1.7% shorter in the prototype vs. the conventional spike. Footwear condition differences in velocity were distance-dependent, increasing from a minimum of 0.1% in the first 10 meters, to a maximum of 3.9% at the 130-meter finish line. Video capture zone contact periods were shorter (-1.9%), and estimated stance-averaged ground forces were greater (+1.6%) in the prototype vs. conventional footwear. Progressive gait and velocity effects resulted in relatively large prototype vs. conventional condition differences in the final 30-meter segment for: contact times (-2.5%), aerial times (+6.0%), step lengths (+2.0%), and velocities (+3.0%). We conclude that the prototype footwear enabled gait mechanics that increased both maximal and late-trial sprinting velocities.

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View paper (DOI)OpenAlexJournal of Applied PhysiologyPublished 2026-08-14

Authors: Sunil K. Prajapati, Lance C. Brooks, Emily M. Farina, Peter G. Weyand

Institutions: Bridgewater State University, Texas Christian University