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February 1, 1987Circulation91 citationsOpen Access

Cardiovascular adaptations to intense swim training in sedentary middle-aged men and women.

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WMW. H. MartinJMJenny MontgomeryPSP. G. Snell

Structured PICO

Does 12 weeks of intense swim training improve peak oxygen uptake and cardiovascular function in sedentary middle-aged men and women?

P
Population
17 previously sedentary middle-aged men and women (12 in training group, 5 in nonexercising control group)
I
Intervention
12 weeks of intense swim training
C
Comparator
Nonexercising control
O
Outcome
Peak oxygen uptake (VO2) during upright bicycle exercisesurrogate

Intense swim training for 12 weeks in sedentary middle-aged individuals significantly improves peak oxygen uptake, cardiac pump capacity, and skeletal muscle vasodilatation.

Abstract

Central and peripheral cardiovascular adaptations to 12 weeks of intense swim training were characterized in 12 previously sedentary middle-aged men and women. Peak oxygen uptake (VO2) during upright bicycle exercise improved from 29.2 +/- 5.6 to 34.7 +/- 6.7 ml/kg/min (mean +/- SD, p less than .01) because of similar increases in peak cardiac output (CO) and calculated arteriovenous oxygen difference (both p = .02). Peak supine VO2 was 10% higher after training (p less than .005) solely because of enhanced CO (p = .005). Peak heart rate decreased in both postures; therefore stroke volume at peak exercise was greater by 10% and 18% in the upright and supine postures, respectively (p = .05 and p = .005). There was an identical 18% rise (p = .01) in peak supine left ventricular end-diastolic volume index by radionuclide ventriculography but no change in left ventricular ejection fraction or end-systolic volume index (ESVI). Peak systolic blood pressure (SBP) was unchanged in the upright posture but was 8% higher (p = .002) during recumbency despite a similar total peripheral resistance and SBP/ESVI ratio. Maximal calf conductance (Gmax), assessed separately by venous occlusion plethysmography after local ischemic exercise to fatigue, was augmented 20% (p less than .02) by training, resulting in an 18% greater hyperemic blood flow (p = .05). Peak VO2, CO, and Gmax were unchanged in five nonexercising control subjects. We conclude that in middle-aged humans, intense swim training for 12 weeks produces adaptations that include a greater capacity for vasodilatation in skeletal muscle and an enhanced cardiac pump capacity.

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Cite This Study

Martin et al. (1987) studied this question.

synapsesocial.com/papers/6a0ee0d906ecbe833447e9fehttps://doi.org/10.1161/01.cir.75.2.323
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