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January 1, 2004Circulation Journal24 citationsOpen Access

Early Aerobic Training Increases End-Tidal CO2 Pressure During Exercise in Patients After Acute Myocardial Infarction

YEYoko EtoAKAkira KoikeAMAkihiro Matsumoto

Key Result

Aerobic exercise training early after acute myocardial infarction significantly increased PETCO2 during exercise from 39.1 to 41.1 mmHg (p<0.01), reflecting improved cardiac output.

Study Design

Type

RCT (n=36)

Randomization

Randomized

Structured PICO

Does early aerobic exercise training improve PETCO2 and cardiac output during exercise in patients after acute myocardial infarction?

P
Population
36 patients (35 men, 1 woman) aged 47-73 years, 1 week after the onset of acute myocardial infarction (AMI). Exclusions included pulmonary congestion, dyspnea at rest, serious arrhythmia, left ventricular aneurysm, valvular lesions, or primary lung disease.
I
Intervention
Supervised bicycle exercise training at the anaerobic threshold level for 30 minutes twice daily for 2 weeks.
C
Comparator
Conventional walking regimen (walking 200m to 500m along a hospital corridor 3 times a day).
O
Outcome
End-tidal CO2 partial pressure (PETCO2) at the respiratory compensation point and cardiac index at peak exercise after 2 weeks of training.surrogate

Early aerobic exercise training after acute myocardial infarction significantly increases PETCO2 and cardiac output during exercise, suggesting an improvement in ventilation-perfusion mismatch.

Main Result

p-value: p=<0.01

Abstract

Background End-tidal CO2 partial pressure (PETCO2) has been suggested as a noninvasive index reflecting cardiac output under constant ventilation. The aim of this study was to examine whether PETCO2 does reflect cardiac output, even during exercise, in patients with acute myocardial infarction (AMI) undergoing exercise training early after onset. Method and Results Patients aged 47-73 years were randomly assigned to either a training group (n=18) or a control group (n=18) 1 week after the onset of AMI. Those in the training group performed exercise training under supervision at the anaerobic threshold level for 2 weeks, while patients in the control group followed a conventional walking regimen. In the training group, but not in the control group, PETCO2 at the respiratory compensation point increased significantly from 39.1±3.5 to 41.1±3.7 mmHg (p<0.01). Similarly, the cardiac index at peak exercise increased only in the training group (from 6.04±0.98 to 7.31±0.97 L/min per m2, p<0.01). These 2 measurements correlated well both before and after the study period. Peak oxygen uptake and anaerobic threshold were increased only in the training group. Conclusions Aerobic exercise training early after the onset of AMI significantly increased PETCO2 during exercise, which may reflect an improvement in cardiac output during exercise in response to physical training via a decreased ventilation - perfusion mismatch. (Circ J 2004; 68: 778 - 783)

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Cite This Study

Eto et al. (2004) conducted an RCT in Acute myocardial infarction (n=36). Aerobic exercise training at the anaerobic threshold level vs. Conventional walking regimen was evaluated on End-tidal CO2 partial pressure (PETCO2) at the respiratory compensation point (p=<0.01). Aerobic exercise training early after acute myocardial infarction significantly increased PETCO2 during exercise from 39.1 to 41.1 mmHg (p<0.01), reflecting improved cardiac output.

synapsesocial.com/papers/6a154f29814bf8ec9a4e6328https://doi.org/10.1253/circj.68.778
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