Tolerance to Intermittent vs. Continuous Blood Flow Restriction Training: A Meta-Analysis

Author(s):  
Pierre Sinclair ◽  
Murtaza Kadhum ◽  
Bruce Paton

AbstractThe proven beneficial effects of low-load blood flow restriction training on strength gain has led to further exploration into its application during rehabilitation, where the traditional use of heavy loads may not be feasible. With current evidence showing that low-load blood flow restriction training may be less well tolerated than heavy-load resistance training, this review was conducted to decipher whether intermittently deflating the pressure cuff during rest intervals of a training session improves tolerance to exercise, without compromising strength. Four databases were searched for randomized controlled trials that compared the effect of intermittent versus continuous blood flow restriction training on outcomes of exercise tolerance or strength in adults. Nine studies were identified, with six included in the meta-analysis. No significant difference in rate of perceived exertion was found (SMD-0.06, 95% CI-0.41 to 0.29, p=0.73, I 2=80%). Subgroup analysis excluding studies that introduced bias showed a shift towards favoring the use of intermittent blood flow restriction training (SMD-0.42, 95% CI-0.87 to 0.03, p=0.07, I 2=0%). There was no significant difference in strength gain. Intermittent cuff deflations during training intervals does not improve tolerance to exercise during blood flow restriction training.

2020 ◽  
Vol 25 (6) ◽  
pp. 303-306
Author(s):  
Jordan Jacobson ◽  
Cale Chaltron ◽  
David Sherman ◽  
Neal R. Glaviano

Focused Clinical Question: Is low-load exercise training with blood flow restriction (LL-BFR) more effective at increasing muscle strength compared to low-level (LL) or high-level (HL) exercise training in individuals with muscle weakness? Clinical Bottom Line: The results of the systematic review with meta-analysis concluded that there is evidence to support the belief that LL-BFR may increase muscle strength beyond LL exercise training alone, while HL training will produce greater strength increases compared to both LL-BFR and LL training.


2022 ◽  
Vol 5 (1) ◽  
Author(s):  
Austin Bennett ◽  
Sean Collins ◽  
Kaitlyn King ◽  
Caitlyn Harper ◽  
Jill Lucas ◽  
...  

Introduction: Blood flow restriction (BFR) training is a novel training method that has been shown to promote positive aerobic and anaerobic adaptations under low intensity exercise by inhibiting blood flow to target tissue resulting in hypoxia and metabolic byproduct accumulation. This has been shown to have a direct positive effect on aerobic performance adaptation. The purpose was to explore the effect of BFR training on aerobic performance. Methods:  Seven recreationally active adults were randomly assigned to either the BFR group (n=4, BFR) or non-BFR group (n=3, CON). Three testing sessions were conducted throughout the study (Pre-Test, Mid-Test, Post-Test) which consisted of a graded cycle ergometer maximum oxygen consumption (VO2max) test using COSMED-K5 indirect calorimetry. Eleven BFR training sessions were performed consisting of 20-min of cycling at 35-45% of heart rate reserve (HRR) with at 60% (BFR) or 5% (CON) arterial occlusion pressure (AOP) on the BFR cuffs. Results: Absolute VO2max, Relative VO2max, respiratory exchange ratio (RER), maximum heart rate (HRmax), and maximum rate of perceived exertion (RPEmax) reported no significant difference between BFR and CON. There was a significant difference (p < 0.05) found in time to reach VO2max and maximum watts (Wmax) reached which declined over the course of the training intervention. Conclusions: Bilateral lower limb aerobic BFR training resulted in no change in VO2max over seven weeks.  


2021 ◽  
Vol 47 ◽  
pp. e4
Author(s):  
Daniel Germano Maciel ◽  
Mikhail Santos Cerqueira ◽  
Jean Arthur Mendonça Barboza ◽  
José Diego Sales do Nascimento ◽  
Wouber Hérickson de Brito Vieira

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