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April 1, 1982Journal of Applied Physiology183 citations

Central and regional circulatory adaptations to one-leg training

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KKKurt Klaudi KlausenNSNells SecherJCJ. P. Clausen

Structured PICO

Does 8 weeks of one-leg training alter central and regional circulatory adaptations during one- and two-leg exercise in young healthy males?

P
Population
6 young healthy male subjects
I
Intervention
8 weeks of one-leg training with each of both legs
C
Comparator
Pre-training baseline
O
Outcome
Oxygen uptake, heart rate, mean arterial blood pressure, cardiac output, leg blood flow, and iliac arteriovenous differences for oxygen and lactate during one- and two-leg exercisesurrogate

One-leg training induces circulatory adaptations that differ between one-leg and two-leg exercise, suggesting oxygen supply to a large muscle group may be limited by vasoconstriction when another large muscle group exercises simultaneously.

Abstract

Six young healthy male subjects performed submaximal and maximal exercise on bicycle ergometers with one leg and two legs before and after 8 wk of one-leg training with each of both legs. The following variables were measured during one- and two-leg exercise: oxygen uptake, heart rate, mean arterial blood pressure, cardiac output, leg blood flow, and iliac arteriovenous differences for oxygen and lactate. After training the maximal oxygen uptake during one- and two-leg exercise was increased by 19 and 11%, respectively. The corresponding cardiac outputs increased by 16 and 11%, respectively. During submaximal one-leg exercise, heart rate decreased by 11%, whereas a decrease of only 2% was seen during submaximal two-leg exercise. Mean blood pressure decreased by about 10 Torr in both types of exercise and during both submaximal and maximal exercise. Maximal leg blood flow increased only by 1.2 l/min during one-leg exercise. Leg blood flow and leg oxygen uptake were smaller during two-leg exercise than during one-leg exercise and more so after training. These findings indicate that one-leg exercise, compared with two-leg exercise, involves circulatory adaptations that respond differently to one-leg training. The findings further imply that oxygen supply to one large muscle group of exercising muscles may be limited by vasoconstriction when another large group of muscles is exercising simultaneously.

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Cite This Study

Klausen et al. (1982) studied this question.

synapsesocial.com/papers/6a16c06b0f965e9c137b9157https://doi.org/10.1152/jappl.1982.52.4.976
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Also Consider

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

  1. 1Cardiovascular responses during one‐ and two‐legged exercise in middle‐aged men1994 · 49 citations
  2. 2Failure to augment maximal limb blood flow in response to one-leg versus two-leg exercise in patients with severe heart failure.1986 · 231 citations
  3. 3Effects of one-legged endurance training on femoral arterial and venous size in healthy humans2001 · 124 citations
  4. 4Active and Inactive Leg Hemodynamics during Sequential Single-Leg Interval Cycling2018 · 9 citations
  5. 5The training stimulus experienced by the leg muscles during cycling in humans2009 · 37 citations