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July 1, 1971Circulation221 citations

Increased Arteriovenous Oxygen Difference After Physical Training in Coronary Heart Disease

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JDJean-Marie R. DetryMRMichel F. RousseauGVG. Vandenbroucke

Key Points

  • This study aims to investigate the effects of physical training on oxygen uptake and hemodynamic changes in coronary heart disease patients.
  • 12 male patients with coronary heart disease underwent a 3-month physical training program (3 sessions of 45 min/week).

Structured PICO

Does a 3-month physical training program improve maximal oxygen intake and hemodynamics in male patients with coronary heart disease?

P
Population
12 male patients with coronary heart disease (six with angina pectoris and six with prior myocardial infarction but without angina), mean age 47.8 years, from Seattle, Washington, and Louvain, Belgium.
I
Intervention
3-month physical training program involving three sessions of 45 min/week
O
Outcome
Maximal oxygen intake (VO2 max)surrogate

A 3-month physical training program in patients with coronary heart disease significantly increases VO2 max primarily through enhanced peripheral oxygen extraction rather than increased stroke volume.

Abstract

A preliminary study of 12 male patients (mean age, 47.8 years) with coronary heart disease (six with angina pectoris and six with prior myocardial infarction but without angina) was conducted according to a common protocol in Seattle, Washington, and Louvain, Belgium. Maximal oxygen intake (V o o2 max) and hemodynamic studies at rest and at two or three levels of submaximal exercise in the upright position were obtained before and after a 3-month physical training program that involved three sessions of 45 min/week. "V o o2 max" increased 22.5% ( P < 0.0001) with physical training. Changes in maximal heart rate occurred in the patients with angina (+8.4%) but not in those without angina (+0.8%). At rest and at each submaximal exercise, heart rate, mean blood pressure, and cardiac output decreased after training, whereas stroke volume was unchanged and arterio-mixed venous oxygen (A-V o o2 ) difference increased. The pressure-rate product and the left ventricular work decreased after training. The classic posttraining bradycardia was compensated not by a higher stroke volume but by an increased A-V o o2 difference which resulted from both a higher arterial oxygen content and an increased peripheral oxygen extraction. The latter was more apparent when exercises of the same relative intensity were compared. Thus, benefits with physical training in coronary patients result at submaximal exercise level from enhanced arterial oxygen content and peripheral extraction and secondarily from lower hemodynamic stress on ischemic myocardium. Increased maximal A-V o o2 difference probably explains most of the increase in "V o o2 max" with physical training in coronary patients not limited by angina pectoris.

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Cite This Study

Detry et al. (1971) studied this question.

synapsesocial.com/papers/6a0ee0d906ecbe833447ea12https://doi.org/10.1161/01.cir.44.1.109
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Changes in maximum work capacity resulting from six months training in patients with ischemic heart disease1969 · 15 citations
  2. 2EFFECTS OF PHYSICAL TRAINING ON THE CARDIOVASCULAR AND RESPIRATORY RESPONSE TO GRADED UPRIGHT EXERCISE IN DISTANCE RUNNERS1965 · 33 citations
  3. 3Physical Training in Sedentary Middle-aged and Older Men III. Cardiac Output and Gas Exchange at Submaximal and Maximal Exercise1969 · 145 citations
  4. 4Long-Term Physical Training and Cardiovascular Dynamics in Middle-Aged Men1968 · 70 citations
  5. 5Renal Haemodynamics, Urine Flow and Urinary Protein Excretion during Exercise in Supine Position at Different Loads1967 · 14 citations