Running Economy Assessment at 90% of 5-km Pace Is More Informative Than Lower Intensities Among Women's NCAA Division I Cross-Country Competitors

Abstract O’Neal, EK, Knight, SN, Bowling, LR, Scudamore, EM, Scudamore, V, and Waldman, HS. Running economy assessment at 90% of 5-km pace is more informative than lower intensities among women's NCAA Division I cross-country competitors. J Strength Cond Res XX(X): 000–000, 2026—National Collegiate Athletics Association (NCAA) women's cross-country (XC) runners compete at distances of 5–6 km producing respiratory exchange ratios (RER) > 0.99 at race pace. This prevents calculation of the most sensitive unit of running economy (RE) metabolic cost (MC). This study first established the steady-state characteristics of V̇ o 2 and RER using 60-s sampling intervals during the last 2-minute of 5-minute RE bouts at individual 5-km race pace (5RP) and 70, 80, and 90% 5RP of 13 NCAA Division I Women's XC runners. After confirming steady state was not compromised by intensity, the relationship of V̇ o 2 and RER between 100% 5RP and submaximal paces were explored. Min-4 and min-5 Cohen's d effect sizes were <0.07 for V̇ o 2 at all submaximal velocities, and RER at lowest (70%; d = 0.25) and highest (90%; d = 0.29) intensities were similar. Strong relationships ( r ≥ 0.89; p < 0.001) between V̇ o 2 for 70, 80, and 90% to 5RP were exhibited. However, RER for 70% ( r = −0.10) and 80% ( r = −0.12) both produced inverse, nonsignificant relationships to 5RP. By contrast, 90% produced an r = 0.62 ( p = 0.03), and no runner's RER exceeded 0.99. For performance analysts and NCAA Women's XC coaches using RE to detect training intervention efficacy, metabolic steady state is (a) uncompromised at 90% of 5RP, (b) permits MC calculation, and (c) better reflects 5RP metabolic profile than lower intensities.

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Publication Details

Journal
The Journal of Strength and Conditioning Research
Published
2026-10-07
DOI
https://doi.org/10.1519/jsc.0000000000005708
Primary Topic
Sports Performance and Training
Type
article
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article

Running Economy Assessment at 90% of 5-km Pace Is More Informative Than Lower Intensities Among Women's NCAA Division I Cross-Country Competitors

Hunter S. Waldman, Eric M. Scudamore, Savanna N. Knight, Lynnsey R. Bowling et al.
The Journal of Strength and Conditioning Research
Sports Performance and Training
article

Running Economy Assessment at 90% of 5-km Pace Is More Informative Than Lower Intensities Among Women's NCAA Division I Cross-Country Competitors

Hunter S. Waldman, Eric M. Scudamore, Savanna N. Knight, Lynnsey R. Bowling, Eric Kyle O'Neal, Veronika Scudamore
article en

Abstract

Abstract O’Neal, EK, Knight, SN, Bowling, LR, Scudamore, EM, Scudamore, V, and Waldman, HS. Running economy assessment at 90% of 5-km pace is more informative than lower intensities among women's NCAA Division I cross-country competitors. J Strength Cond Res XX(X): 000–000, 2026—National Collegiate Athletics Association (NCAA) women's cross-country (XC) runners compete at distances of 5–6 km producing respiratory exchange ratios (RER) > 0.99 at race pace. This prevents calculation of the most sensitive unit of running economy (RE) metabolic cost (MC). This study first established the steady-state characteristics of V̇ o 2 and RER using 60-s sampling intervals during the last 2-minute of 5-minute RE bouts at individual 5-km race pace (5RP) and 70, 80, and 90% 5RP of 13 NCAA Division I Women's XC runners. After confirming steady state was not compromised by intensity, the relationship of V̇ o 2 and RER between 100% 5RP and submaximal paces were explored. Min-4 and min-5 Cohen's d effect sizes were <0.07 for V̇ o 2 at all submaximal velocities, and RER at lowest (70%; d = 0.25) and highest (90%; d = 0.29) intensities were similar. Strong relationships ( r ≥ 0.89; p < 0.001) between V̇ o 2 for 70, 80, and 90% to 5RP were exhibited. However, RER for 70% ( r = −0.10) and 80% ( r = −0.12) both produced inverse, nonsignificant relationships to 5RP. By contrast, 90% produced an r = 0.62 ( p = 0.03), and no runner's RER exceeded 0.99. For performance analysts and NCAA Women's XC coaches using RE to detect training intervention efficacy, metabolic steady state is (a) uncompromised at 90% of 5RP, (b) permits MC calculation, and (c) better reflects 5RP metabolic profile than lower intensities.

The Journal of Strength and Conditioning Research
University of Wisconsin–Eau Claire (US), Arkansas State University (US), University of North Alabama (US), Texas State University (US)
Openalex Percentile: Top 9%
Sports Performance and Training
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