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Published on: May 1, 2018
Comparative effects of four back squat prescription models on explosive performance and sprint outcomes in
Junjie Wang1, Haoyu Guo2, Lingfeng Zhang3
1School of Physical Education, Ankang University, Ankang, China.
Purpose:
To compare the effects of maximum intended velocity (MIV), velocity-loss threshold (VLT), target velocity zone combined with velocity-loss threshold (TVZ+VLT), and traditional percentage-based training (PBT) on explosive performance and sprint outcomes in resistance-trained men.
Methods:
Fifty-two resistance-trained male athletes were randomly assigned to one of four groups and completed 12 supervised back squat sessions over 4 weeks. Primary outcomes were countermovement jump (CMJ) height, 0-30 m sprint time, and isometric mid-thigh pull rate of force development (IMTP RFD). Secondary outcomes included CMJ peak force and peak power, 0-10 m sprint time, IMTP peak force, relative IMTP peak force, and dynamic strength index (DSI).
Results:
Significant baseline-adjusted group effects were retained after Holm correction for CMJ height (F = 7.50, P = .001, ηp² = .324) and 0-30 m sprint time (F = 4.77, P = .011, ηp² = .233). MIV and TVZ+VLT produced greater improvements in CMJ height than PBT, and TVZ+VLT produced a greater improvement in 0-30 m sprint time than PBT. Corrected group effects were also observed for CMJ peak power and DSI, whereas IMTP RFD and IMTP peak force did not show prescription-specific differences.
Conclusions:
MIV and TVZ+VLT prescription packages were associated with more favorable short-term changes in selected explosive-performance and sprint-related outcomes than PBT. However, because the interventions differed in velocity zone, relative intensity, movement intent, feedback provision, and velocity-loss termination, and because session-level realized dose data were not retained, these findings should be interpreted as package-level effects rather than evidence for the independent superiority of any isolated VBT component.
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