This study aimed to compare the effects of low-load blood flow restriction resistance exercise (BFR-RE) performed to voluntary failure with traditional high-load resistance exercise (HL-RE) and a control condition on biceps brachii muscle hypertrophy, muscle stiffness, and maximal strength in untrained young men. Participants completed an 8-week training program, with exercise performed three times per week. Outcomes were assessed using ultrasound imaging, elastography, and one-repetition maximum (1RM) testing. The study evaluates whether low-load BFR training can produce adaptations comparable to high-load resistance training.
This study was designed to examine the efficacy of low-load blood flow restriction resistance exercise (BFR-RE) performed to voluntary failure compared with traditional high-load resistance exercise (HL-RE) in inducing muscular adaptations in untrained individuals. The experimental framework was structured to isolate the effects of mechanical load and metabolic stress by standardizing the selection of exercises and the training frequency across groups. A controlled, single-blind, repeated-measures design was used, with participants allocated to BFR-RE, HL-RE, or a non-exercising control condition. The intervention period was set at 8 weeks to ensure sufficient exposure for hypertrophic and neuromuscular adaptations, while minimizing potential confounding effects of long-term training variability. The BFR-RE protocol was developed to emphasize metabolic stress through low external loading (30% 1RM), partial vascular occlusion (60% limb occlusion pressure), and sets performed to volitional failure. In contrast, the HL-RE condition was structured to prioritize mechanical tension using moderate-to-high loading (70% 1RM) without vascular restriction. This contrast enables a mechanistic comparison of two distinct hypertrophic stimuli. To reduce acute exercise-induced confounding factors, particularly transient muscle swelling, post-intervention assessments were complemented with a delayed follow-up measurement. This approach was incorporated better to reflect true morphological adaptations rather than short-term physiological responses. The methodological approach integrates imaging-based and performance-based assessments to capture both structural and functional adaptations. The overall design enables evaluation of whether BFR-RE can provide a time-efficient and lower-load alternative to traditional resistance training while maintaining comparable adaptive outcomes.
Study Type
INTERVENTIONAL
Allocation
Resistance exercise was performed under partial vascular occlusion using a pneumatic cuff applied to the upper arm. Limb occlusion pressure was individually determined, and exercise was conducted at a relative intensity corresponding to a percentage of one-repetition maximum. Occlusion pressure was maintained during sets and released between exercises. Training load and repetition tempo were standardized and progressively adjusted throughout the intervention period.
Participants performed resistance exercise using conventional loading strategies based on a percentage of one-repetition maximum. Training intensity, volume, and progression were standardized across sessions, with loads adjusted periodically according to performance assessments.
Karabük University Hasan Dogan Faculty of Sport Sciences
Karabük, Karabük Province, Turkey (Türkiye)
Biceps Brachii Muscle Thickness
Muscle thickness of the biceps brachii was assessed using ultrasound imaging to evaluate hypertrophic adaptations following the intervention.
Time frame: Baseline and 8 weeks (post-intervention), with an additional follow-up measurement at 1 week after the intervention
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NON_RANDOMIZED
Purpose
TREATMENT
Masking
SINGLE
Enrollment
33