Independent and combined effects of low-load variable resistance and blood flow restriction on post-activation performance enhancement in countermovement jump
Low-load blood flow restriction (BFR) induces post-activation performance enhancement (PAPE), but its constant-resistance nature involves a terminal deceleration phase that attenuates terminal mechanical tension. Combining BFR with variable resistance (VR) may overcome this mechanical deficit. Utilizing a randomized crossover design, 17 strength-trained males completed four protocols (4 × 15 back squats): control (CON), VR (27–33% 1RM), BFR (30% 1RM, 80% arterial occlusion pressure), and BFR + VR.
Countermovement jump (CMJ) kinetics—jump height (JH), relative peak power (RPP), net impulse (NI), and peak rate of force development (PRFD)—were assessed at baseline and up to 15 min post-intervention. CON yielded no significant changes, whereas VR elicited selective, smaller-magnitude enhancements; BFR induced significant PAPE, peaking at 12 min before decaying. The BFR + VR protocol induced an acute performance decrement at 0 min (JH: -8.1% ± 5.4%; p
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