Exercise modality influences oxygen pulse flattening during incremental cardiopulmonary exercise testing in healthy adults

Abstract Purpose To compare oxygen pulse (O₂P) responses during cardiopulmonary exercise testing (CPET) in healthy adults using two ergometers, Treadmill and Cycle ergometer, and to determine the prevalence of O₂P flattening and the modality-specific characteristics of O₂P curve dynamics. Methods Thirty-four healthy adults (29.4 ± 6.9 years; 35% female) completed two maximal CPETs on both Cycle and Treadmill, in a random order within three weeks. O₂P flattening, defined as the absence of a further increase in O₂P despite increasing workload, was assessed visually and confirmed quantitatively. Results Twelve participants (35%) demonstrated O₂P flattening or decline, nine (27%) exclusively during Treadmill testing. A significant group × modality interaction was observed for peak O₂P ( p < 0.05), with lower values in participants with flattening than in those showing a continuous rise. (Cycle: 9.9 ± 3.2 vs. 13.6 ± 2.7 ml/min/beat; Treadmill: 11.8 ± 3.7 vs. 16.6 ± 3.7 ml/min/beat). In addition, an O 2 P of ≤ 12.8 ml/beat on the Cycle increased the likelihood of flattening during maximal Treadmill exercise by 7.5 times (OR 7.5, p = 0.03). Conclusion O₂P flattening was more frequently observed during treadmill exercise, indicating that O₂P trajectories are exercise modality dependent. In individuals with low peak O₂P during cycle ergometry, additional assessment using treadmill CPET may offer complementary information.

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Publication Details

Journal
European Journal of Applied Physiology
Published
2026-09-28
DOI
https://doi.org/10.1007/s00421-026-06437-w
Primary Topic
Cardiovascular and exercise physiology
Type
article
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article

Exercise modality influences oxygen pulse flattening during incremental cardiopulmonary exercise testing in healthy adults

Merav Zucker‐Toledano, Ronen Bar‐Yoseph, Einat Kodesh, Gur Mainzer et al.
European Journal of Applied Physiology
Cardiovascular and exercise physiology
article

Exercise modality influences oxygen pulse flattening during incremental cardiopulmonary exercise testing in healthy adults

Merav Zucker‐Toledano, Ronen Bar‐Yoseph, Einat Kodesh, Gur Mainzer, Faris Khourey
article en

Abstract

Abstract Purpose To compare oxygen pulse (O₂P) responses during cardiopulmonary exercise testing (CPET) in healthy adults using two ergometers, Treadmill and Cycle ergometer, and to determine the prevalence of O₂P flattening and the modality-specific characteristics of O₂P curve dynamics. Methods Thirty-four healthy adults (29.4 ± 6.9 years; 35% female) completed two maximal CPETs on both Cycle and Treadmill, in a random order within three weeks. O₂P flattening, defined as the absence of a further increase in O₂P despite increasing workload, was assessed visually and confirmed quantitatively. Results Twelve participants (35%) demonstrated O₂P flattening or decline, nine (27%) exclusively during Treadmill testing. A significant group × modality interaction was observed for peak O₂P ( p < 0.05), with lower values in participants with flattening than in those showing a continuous rise. (Cycle: 9.9 ± 3.2 vs. 13.6 ± 2.7 ml/min/beat; Treadmill: 11.8 ± 3.7 vs. 16.6 ± 3.7 ml/min/beat). In addition, an O 2 P of ≤ 12.8 ml/beat on the Cycle increased the likelihood of flattening during maximal Treadmill exercise by 7.5 times (OR 7.5, p = 0.03). Conclusion O₂P flattening was more frequently observed during treadmill exercise, indicating that O₂P trajectories are exercise modality dependent. In individuals with low peak O₂P during cycle ergometry, additional assessment using treadmill CPET may offer complementary information.

European Journal of Applied Physiology
Technion – Israel Institute of Technology (IL), Rambam Health Care Campus (IL), Poriya Medical Center (IL), University of Haifa (IL)
Openalex Percentile: Top 6%
Cardiovascular and exercise physiology
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Exercise modality influences oxygen pulse flattening during incremental cardiopulmonary exercise testing in healthy adults — Merav Zucker‐Toledano, Ronen Bar‐Yoseph, et al. · European Journal of Applied Physiology (2026) | TGRS Research Map | TGRS