Key result
Novel resistance-based walking test strongly correlates with the Bruce protocol for maximum VO2.
Why the study?
A novel resistance-based graded exercise test using horizontal resistive forces was developed and required validation against the traditional Bruce Protocol in nonimpaired individuals.
Does a resistance-based walking cardiorespiratory test simulate the work rates and physiologic responses of the Bruce Protocol in nonimpaired individuals?
Cross-Sectional (n=20)
Does a resistance-based walking cardiorespiratory test simulate the work rates and physiologic responses of the Bruce Protocol in nonimpaired individuals?
Effect estimate: r = 0.93
p-value: p=<0.001
A novel resistance-based treadmill test using horizontal resistive forces closely simulates the aerobic effort and work rates of the traditional Bruce Protocol.
May enable GXT alternatives for mobility-limited patients; leaves open prospective validation in clinical cardiovascular cohorts.
Hurt, CP, Bamman, M, Naidu, A, and Brown, DA. Comparison of resistance-based walking cardiorespiratory test to the Bruce Protocol. J Strength Cond Res 34(12): 3569-3576, 2020-Cardiorespiratory fitness is assessed through graded exercise tests that determine the maximum amount of sustained mechanical work that an individual can perform while also providing health- and fitness-related information. This article describes a novel method to perform graded exercise tests that use posteriorly directed resistive forces. The purpose of this investigation was to validate a novel resistance-based test (RBT) in comparison with a traditional speed- and incline-based test (SIBT) in a cohort of nonimpaired individuals. Twenty nonimpaired individuals, 8 men and 20 women age 28.4 ± 9.6, range 20-54 years old performed 2 maximal exercise tests. The SIBT used the Bruce Protocol and increased treadmill incline and speed every 3 minutes. The RBT used a robotic device interfaced with the treadmill that provided specified horizontal resistive forces at the center of mass calculated to match each Bruce Protocol stage while individuals walked at 1.1 m·s. Subjects obtained ∼3% higher maximum V[Combining Dot Above]O2 measure using the speed- and incline-based method (dependent t-test p = 0.08). V[Combining Dot Above]O2peaks between tests were strongly correlated (r = 0.93, p < 0.001). Peak values of secondary physiologic measures (i.e., max heart rate and respiratory exchange ratio) were within 3% between tests. We found a significant linear relationship between mass-specific work rate and measured V[Combining Dot Above]O2 stage by stage for both tests, but no significant difference between each linear fit (p = 0.84). These data suggest that horizontal resistive forces, while walking on a treadmill, can be used to increase aerobic effort in a way that closely simulates work rates of the Bruce Protocol.
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Hurt et al. (2017) conducted a cross-sectional in Nonimpaired individuals (n=20). Resistance-based test (RBT) vs. Speed- and incline-based test (SIBT) using the Bruce Protocol was evaluated on Maximum VO2 measure (r = 0.93, p=<0.001). A novel resistance-based walking cardiorespiratory test yielded maximum VO2 measures that were strongly correlated with the traditional Bruce Protocol (r = 0.93, p < 0.001).
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