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January 1, 2012International Journal of Vascular Medicine72 citationsOpen Access

Effects of the Intensity of Leg Isometric Training on the Vasculature of Trained and Untrained Limbs and Resting Blood Pressure in Middle-Aged Men

ABAnthony BarossUniversity of NorthamptonJWJonathan D. WilesCanterbury Christ Church UniversityISIan SwaineUniversity of Greenwich

Key Result

High-intensity isometric-leg training significantly reduced resting systolic blood pressure (-10.8 ± 7.9 mmHg) and improved local vasculature in healthy middle-aged men compared to controls.

Structured PICO

Does high or low intensity leg isometric training reduce resting blood pressure and improve local vasculature in middle-aged men?

P
Population
30 middle-aged males
I
Intervention
8-week bilateral-leg isometric training program (4 × 2 min contractions 3 times per week) at high intensity (14% maximum voluntary contraction) or low intensity (8% maximum voluntary contraction)
C
Comparator
Control group (no training)
O
Outcome
Changes in resting blood pressure (SBP, MAP), heart rate, and vasculature of trained (femoral) and untrained (brachial) limbs at 4-weeks and post-training (8 weeks)surrogate

High-intensity, but not low-intensity, isometric leg training significantly reduces resting blood pressure and improves local vascular function in middle-aged men.

Abstract

The purpose of this study was to establish whether changes in resting blood pressure and the vasculature of trained and untrained limbs are dependent on training intensity, following isometric-leg training. Thirty middle-aged males undertook an 8 week training programme (4 × 2 min bilateral-leg isometric contractions 3 times per week). Two groups trained at either high (HI; 14%MVC) or low (LO; 8%MVC) intensity a third group (CON) acted as controls. All parameters were measured at baseline, 4-weeks and post-training. Resting SBP (-10.8 ± 7.9 mmHg), MAP (-4.7 ± 6.8 mmHg) and HR (-4.8 ± 5.9 b·min(-1)) fell significantly in the HI group post-training with concomitant significant increases in resting femoral mean artery diameter (FMAD; 1.0 ± 0.4 mm), femoral mean blood velocity (FMBV; 0.68 ± 0.83 cm·s(-1)), resting femoral artery blood flow (FABF; 82.06 ± 31.92 ml·min(-1)) and resting femoral vascular conductance (FVC, 45%). No significant changes occurred in any brachial artery measure nor in any parameters measured in the LO or CON groups. These findings show that training-induced reductions in resting blood pressure after isometric-leg training in healthy middle-aged men are associated with concomitant adaptations in the local vasculature, that appear to be dependent on training intensity and take place in the later stages of training.

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Cite This Study

Baross et al. (2012) studied Healthy (n=30). Bilateral-leg isometric training vs. Control group was evaluated on Changes in resting blood pressure and vasculature of trained and untrained limbs. High-intensity isometric-leg training significantly reduced resting systolic blood pressure (-10.8 ± 7.9 mmHg) and improved local vasculature in healthy middle-aged men compared to controls.

synapsesocial.com/papers/6a12410241f2b0889a38d136https://doi.org/10.1155/2012/964697
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