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Investigation of the impact of pressurization coupled with eccentric resistance training on the explosive strength of the lower limbs in male college students specializing in sprinting.

Liu M, Zhang R, Yan X, Zhao W, Wang K. ยท Frontiers in physiology ยท 2026

Sixteen male college sprinters did eccentric lower-body training three times a week for six weeks, with half of them also wearing a thigh cuff at 150 mmHg to restrict blood flow during the work. Both groups improved hip extensor strength, jumping, sprint speed, anaerobic capacity, and leg girth, but the blood-flow-restriction group gained more and also reduced left-right strength imbalance.
Takeaway: Consider adding blood flow restriction cuffs to eccentric lower-body training to boost explosive power and even out side-to-side strength differences.
Abstract (source)

This study examined the impact of eccentric exercise (ECC) training combined with blood flow restriction training (BFRT) on explosive power in the lower extremities. Sixteen collegiate sprinters were randomly allocated into two groups: the BFRT group, comprising eight male participants, and the ECC group, also consisting of eight men. Participants in the ECC group engaged in eccentric exercises thrice weekly for a duration of six weeks. Alongside the ECC training, participants in the BFRT group had a pressure cuff positioned on the proximal thigh, sustaining a pressure of 150 mmHg. Assessments were performed before and after training to examine hip joint strength, physical fitness (assessed through a 30-meter sprint and vertical jump), anaerobic capacity, and lower limb circumference. The

Findings: indicated that both the ECC and BFRT groups displayed notable enhancements in the isokinetic strength of the hip extensors, with the BFRT group achieving superior

Results: relative to the ECC group. Moreover, BFRT was observed to improve muscle strength on the non-dominant side, consequently diminishing strength asymmetry between both sides. Both training

Methods: enhanced the leaping ability and speed of the collegiate sprinters; however, the BFRT group demonstrated superior efficacy in improving jumping performance. Furthermore, both groups enhanced anaerobic ability and the limb circumference of the lower limb muscles, with BFRT demonstrating more significant advantages than ECC alone. The data indicate that the regular integration of ECC training with BFRT

results in superior improvements in lower limb explosiveness, anaerobic capacity, and muscular circumference compared to ECC training performed alone.

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