Effects of Low-Intensity Cycle Training with Restricted Leg Blood Flow on Thigh Muscle Volume and VO2MAX in Young Men
- PMID: 24149640
- PMCID: PMC3761718
Effects of Low-Intensity Cycle Training with Restricted Leg Blood Flow on Thigh Muscle Volume and VO2MAX in Young Men
Abstract
Concurrent improvements in aerobic capacity and muscle hypertrophy in response to a single mode of training have not been reported. We examined the effects of low-intensity cycle exercise training with and without blood flow restriction (BFR) on muscle size and maximum oxygen uptake (VO2max). A group of 19 young men (mean age ± SD: 23.0 ± 1.7 years) were allocated randomly into either a BFR-training group (n=9, BFR-training) or a non-BFR control training group (n=10, CON-training), both of which trained 3 days/wk for 8 wk. Training intensity and duration were 40% of VO2max and 15 min for the BFR-training group and 40% of VO2max and 45 min for the CON-training group. MRI-measured thigh and quadriceps muscle cross-sectional area and muscle volume increased by 3.4-5.1% (P < 0.01) and isometric knee extension strength tended to increase by 7.7% (p < 0.10) in the BFR-training group. There was no change in muscle size (~0.6%) and strength (~1.4%) in the CON-training group. Significant improvements in VO2max (6.4%) and exercise time until exhaustion (15.4%) were observed in the BFR-training group (p < 0.05) but not in the CON-training group (-0.1 and 3. 9%, respectively). The results suggest that low-intensity, short-duration cycling exercise combined with BFR improves both muscle hypertrophy and aerobic capacity concurrently in young men. Key pointsConcurrent improvements in aerobic capacity and muscle hypertrophy in response to a single mode of training have not been reported.In the present study, low-intensity (40% of VO2max) cycle training with BFR can elicit concurrent improvement in muscle hypertrophy and aerobic capacity.
Keywords: Aerobic exercise; Muscle hypertrophy; Muscle strength; Occlusion.
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References
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- Abe T., De Hoyos D.V., Pollock M.L., Garzarella L.(2000) Time course for strength and muscle thickness changes following upper and lower body resistance training in men and women. European Journal of Applied Physiology 81, 174-180 - PubMed
-
- Abe T., Yasuda T., Midorikawa T., Sato Y., Kearns C.F., Inoue K., Koizumi K., Ishii N.(2005) Skeletal muscle size and circulating IGF-1 are increased after two weeks of twice daily “KAATSU” resistance training. International Journal of KAATSU Training Research 1, 6-12
-
- Abe T., Kearns C.F., Sato Y.(2006) Muscle size and strength are increased following walk training with restricted venous blood flow from the leg muscle, Kaatsu-walk training. Journal of Applied Physiology 100, 1460-1466 - PubMed
-
- Abe T., Sakamaki M., Fujita S., Ozaki H., Sugaya M., Sato Y., Nakajima T.(2010) Effects of low-intensity walk training with restricted leg blood flow on muscle strength and aerobic capacity in elderly subjects. Journal of Geriatric Physical Therapy 33, 34-40 - PubMed
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