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【Research Review】Biomechanical and Physiological Analysis of the Effects of Carbon-Plated Running Shoe Bending Stiffness on Running Economy (RE): An International Scientific Literature Compilation and Review Report (No. 898)

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【Research Review】Biomechanical Analysis of the Effects of Carbon-Plated Running Shoe Bending Stiffness on Running Economy (RE): International Scientific Literature Compilation and Review Report (No. 898)

Reference Journal Source: Journal of Biomechanics • International Scientific Research Findings Review Series

This article explores the biomechanical effects of the longitudinal bending stiffness of carbon-plated running shoes on running economy (RE).

How Bending Stiffness Affects Running Economy

When a carbon fiber plate is embedded in the midsole, it restricts excessive bending of the metatarsophalangeal (MTP) joint (the joint at the base of the big toe) during the propulsion phase. Through a mechanism similar to a “lever effect,” it reduces the mechanical work that the calf and foot muscles need to actively output during propulsion, with part of the propulsive energy instead provided by the elastic return of the plate. Research generally shows that carbon-plated running shoes with appropriate stiffness can lower oxygen uptake demands at the same pace, thereby improving running economy.

Stiffness Is Not Always Better: The Individualized Optimal Range

The relationship between bending stiffness and running economy is not linearly increasing. Excessive stiffness restricts the natural range of motion of the MTP joint, which instead increases the compensatory effort required from the calf and plantar muscles to stabilize the foot, offsetting some of the energy return benefits. Multiple studies indicate that the optimal stiffness range is related to individual body weight, foot strike pattern (forefoot/midfoot/rearfoot), and pace—there is no single universal optimal value.

Comparison of Different Stiffness Ranges and Suitable Populations (Illustrative)

Stiffness Range Characteristics Suitable Population Tendency
Low-to-moderate stiffness Greater preservation of MTP joint range of motion Runners with varied foot strike patterns and lighter body weight
Moderate-to-high stiffness More pronounced lever effect Forefoot strikers and faster-paced runners
Extremely high stiffness Requires stronger ankle stability to coordinate Highly trained competitive runners

Core Scientific Conclusions and Practical Recommendations

  • Gradual adaptation period: When transitioning from regular running shoes to carbon-plated shoes, a 2–4 week gradual adaptation period is recommended to allow the calf and plantar muscles to progressively adapt to the new mechanical pattern, avoiding discomfort related to the Achilles tendon or metatarsals
  • Pace-specific selection: The energy return benefits of carbon-plated shoes are more pronounced at faster paces (e.g., race pace); at slower training paces, the benefits are relatively limited—choose whether to wear them based on training objectives
  • Last and foot shape matching: The carbon plate structure restricts the natural flex of the sole; if the shoe last does not match the individual’s foot shape, it may amplify discomfort or increase the risk of compensatory injuries—it is recommended to test-run before deciding
  • Integration with training plans: The benefits of carbon-plated shoes should be viewed as an auxiliary tool in training and race strategy, rather than a replacement for foundational running technique training and strength training

Common Research Q&A (FAQ)

Q: Are carbon-plated shoes suitable for beginners?

A: Beginners’ running technique and ankle strength are still in the developmental stage. Wearing high-stiffness carbon-plated shoes too early may increase compensatory load. It is recommended to build foundational running capacity first before evaluating when to introduce them.

Q: Are carbon-plated shoes necessarily faster than regular shoes?

A: For most runners with a certain training foundation, carbon-plated shoes with appropriate stiffness do have the potential to improve running economy, but the actual benefit varies from person to person and is highly correlated with pace and running form—wearing them does not guarantee being faster.

References and Academic Citations

  1. Journal of Biomechanics — Research on carbon fiber plate bending stiffness and metatarsophalangeal joint mechanics.
  2. Sports Medicine — Literature on running economy and individualized fitting of carbon-plated running shoes.
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