Cardiac output changes during exercise in heart failure patients: focus on mid-exercise.
<p>This dataset contains the raw data of the paper "Cardiac output changes during exercise in heart failure patients: focus on mid-exercise."</p> <p><strong>Aims: </strong>Peak exercise oxygen uptake (VO<sub>2</sub> ) and cardiac output (CO) are strong prognostic indexes in heart failure (HF) but unrelated to real-life physical activity, which is associated to submaximal effort.</p> <p><strong>Methods and results: </strong>We analysed maximal cardiopulmonary exercise test with rest, mid-exercise, and peak exercise non-invasive CO measurements (inert gas rebreathing) of 231 HF patients and 265 healthy volunteers. HF patients were grouped according to exercise capacity (peak VO<sub>2</sub> < 50% and ≥50% pred, Groups 1 and 2). To account for observed differences, data regarding VO<sub>2</sub> , CO, stroke volume (SV), and artero-venous O<sub>2</sub> content difference [ΔC(a-v)O<sub>2</sub> ] were adjusted by age, gender, and body mass index. A multiple regression analysis was performed to predict peak VO<sub>2</sub> from mid-exercise cardiopulmonary exercise test and CO parameters among HF patients. Rest VO<sub>2</sub> was lower in HF compared with healthy subjects; meanwhile, Group 1 patients had the lowest CO and highest ΔC(a-v)O<sub>2</sub> . At mid-exercise, Group 1 patients achieved a lower VO<sub>2</sub> , CO, and SV [0.69 (interquartile range 0.57-0.80) L/min; 5.59 (4.83-6.67) L/min; 62 (51-73) mL] than Group 2 [0.94 (0.83-1.1) L/min; 7.6 (6.56-9.01) L/min; 77 (66-92) mL] and healthy subjects [1.15 (0.93-1.30) L/min; 9.33 (8.07-10.81) L/min; 87 (77-102) mL]. Rest to mid-exercise SV increase was lower in Group 1 than Group 2 (P = 0.001) and healthy subjects (P < 0.001). At mid-exercise, ΔC(a-v)O<sub>2</sub> was higher in Group 2 [13.6 (11.8-15.4) mL/100 mL] vs. healthy patients [11.6 (10.4-13.2) mL/100 mL] (P = 0.002) but not different from Group 1 [13.6 (12.0-14.9) mL/100 mL]. At peak exercise, Group 1 patients achieved a lower VO<sub>2</sub> , CO, and SV than Group 2 and healthy subjects. ΔC(a-v)O<sub>2</sub> was the highest in Group 2. At multivariate analysis, a model comprising mid-exercise VO<sub>2</sub> , carbon dioxide production (VCO<sub>2</sub> ), CO, haemoglobin, and weight predicted peak VO<sub>2</sub> , P < 0.001. Mid-exercise VO<sub>2</sub> and CO, haemoglobin, and weight added statistically significantly to the prediction, P < 0.050.</p> <p><strong>Conclusions: </strong>Mid-exercise VO<sub>2</sub> and CO portend peak exercise values and identify severe HF patients. Their evaluation could be clinically useful.</p>
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8/100
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- Harmonization
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- 0
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