Article Synopsis

  • There has been a notable increase in female participation in endurance running, with differences between sexes extending beyond maximal oxygen uptake (VO) to biomechanics, economy, and fatigue responses.
  • While males and females generally exhibit similar running endurance, females have distinct biomechanical traits (like greater hip and knee motion) and muscle characteristics (like higher type I fiber area) that can provide advantages during prolonged exercise.
  • The review emphasizes the advantages females may have in ultra-endurance performance but also points out other factors, such as lower oxygen carrying capacity and higher body fat percentage, that can counterbalance these benefits; it also notes a lack of research on sex differences in running biomechanics under fatigue.

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Article Abstract

In recent years, there has been a significant expansion in female participation in endurance (road and trail) running. The often reported sex differences in maximal oxygen uptake (VO) are not the only differences between sexes during prolonged running. The aim of this narrative review was thus to discuss sex differences in running biomechanics, economy (both in fatigue and non-fatigue conditions), substrate utilization, muscle tissue characteristics (including ultrastructural muscle damage), neuromuscular fatigue, thermoregulation and pacing strategies. Although males and females do not differ in terms of running economy or endurance (i.e. percentage VO sustained), sex-specificities exist in running biomechanics (e.g. females have greater non-sagittal hip and knee joint motion compared to males) that can be partly explained by anatomical (e.g. wider pelvis, larger femur-tibia angle, shorter lower limb length relative to total height in females) differences. Compared to males, females also show greater proportional area of type I fibres, are more able to use fatty acids and preserve carbohydrates during prolonged exercise, demonstrate a more even pacing strategy and less fatigue following endurance running exercise. These differences confer an advantage to females in ultra-endurance performance, but other factors (e.g. lower O carrying capacity, greater body fat percentage) counterbalance these potential advantages, making females outperforming males a rare exception. The present literature review also highlights the lack of sex comparison in studies investigating running biomechanics in fatigue conditions and during the recovery process.

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http://dx.doi.org/10.1007/s40279-022-01651-wDOI Listing

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