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Updated: Jan 9, 2026

Influence of Step-Width Manipulation on Running Biomechanics
Published on: February 28, 2025
Experimental Evidence for the Independent Modulation of Step Frequency and Duty Factor during Endurance Running
Aurélien Patoz1,2, David Perrinjaquet2, Johan Garcia2,3,4
1Research and Development Department, Volodalen, Crissier, SWITZERLAND.
Purpose:
Running patterns have been conceptualized as a continuum defined by step frequency (SF) and duty factor (DF), two variables proposed to act as independent axes within a dual-axis framework. However, their experimental independence at a fixed speed has not yet been verified. This study aimed to directly test the independence of SF and DF during treadmill running at 11 km·h -1 using a real-time visual biofeedback system.
Methods:
Fifteen trained runners performed a preferred baseline trial followed by 16 randomized conditions in which either SF (±6%, ±12%) or DF (±8%, ±16%) was imposed while the other variable was free to vary.
Results:
SF manipulation did not significantly affect DF ( P = 0.14), with adjustments in contact and flight time occurring in parallel and preserving the ratio underlying DF. In contrast, extreme DF manipulations (±16%) significantly altered SF ( P ≤ 0.03), as opposing adjustments in contact and flight time were insufficient to stabilize step time.
Conclusions:
These findings provide the first direct experimental evidence that SF and DF can be modulated independently within a functional range, partly confirming the dual-axis model. Practically, SF and DF represent distinct levers for modifying running mechanics, offering clinicians and coaches flexible strategies for performance optimization.
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