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Resistance Training for Cyclists: Scientific Evidence and Practical Recommendations.

de Pablos R, Sánchez-Redondo IR, Alejo LB, Pallarés JG, Barranco-Gil D, Valenzuela PL. · Scandinavian journal of medicine & science in sports · 2026

This review examines how resistance training affects cycling performance, body composition, and bone health, finding that 1-2 weekly sessions of moderate-to-heavy strength work with compound lower-body exercises improves key cycling indicators without causing unwanted muscle gain. The study also suggests resistance training may help address low bone density in competitive cyclists, though the benefits depend heavily on proper programming and timing relative to endurance work.
Takeaway: Add 1-2 weekly resistance training sessions using moderate-to-heavy loads (60-85% of your max) on compound lower-body movements to improve cycling performance without excessive muscle gain.
Abstract (source)

Growing evidence supports strength or resistance training (RT) as an effective

Method: for enhancing cycling performance, but many cyclists remain reluctant to incorporate it due to perceived detrimental effects, such as excessive residual fatigue and unwanted hypertrophy. Furthermore, controversy persists regarding optimal training methodologies. This narrative review

Aims: to summarize current evidence on the effects of RT on cycling performance, as well as to address its potential impact on body composition and bone health. We also provide evidence-based recommendations on best practices for RT implementation. Overall, the addition of 1-2 weekly sessions of RT with moderate-to-high loads (60%-85% 1RM), 2-4 sets per exercise across 3-5 compound lower-body movements, and limited intra-set fatigue (10%-20% velocity loss) has proven beneficial for improving key cycling performance indicators. Recent evidence also suggests that high-load on-bike torque training may serve as an effective strategy when conventional RT is not feasible. When implemented as described, RT does not appear to negatively affect performance through unwanted hypertrophy. Although further research is warranted, RT also emerges as a potentially effective strategy to counteract the low bone mineral density commonly observed in competitive cyclists. However, the magnitude of these benefits largely depends on precise programming, particularly intensity, proximity to failure, and temporal separation from endurance training sessions. In summary, current evidence supports the role of RT for improving both health and performance in cyclists, but further research is warranted to determine the optimal training parameters to maximize its benefits.

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