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Acute Effects of Vibration Versus High-Intensity Resistance Conditioning on Neuromuscular Performance

Acute Effects of Vibration Versus High-Intensity Resistance Conditioning on Lower- and Upper-Body Neuromuscular Performance: A Randomized Crossover Study

Status
Completed
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07789470
Enrollment
20
Registered
2026-08-27
Start date
2025-11-10
Completion date
2025-11-20
Last updated
2026-08-27

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Neuromuscular Performance

Keywords

Whole-Body Vibration, High-Intensity Resistance Conditioning, Post-Activation Performance Enhancement, Countermovement Jump, Isometric Push-Up, Acute Conditioning

Brief summary

The purpose of this randomized crossover study was to compare the immediate effects of high-intensity resistance conditioning and whole-body vibration conditioning on lower- and upper-body neuromuscular performance in recreationally resistance-trained young adults. Twenty participants were enrolled, and 19 completed both experimental conditions. After a preliminary assessment and familiarization session, participants completed the resistance-conditioning and vibration-conditioning protocols in a randomized order during two experimental sessions separated by 24 hours. The resistance-conditioning protocol included three squat repetitions at 90% of estimated one-repetition maximum before countermovement jump testing and three bench-press repetitions at 90% of estimated one-repetition maximum before an isometric push-up assessment. The vibration-conditioning protocol included lower- and upper-body vibration exercises performed on a vibration platform before the corresponding performance assessments. Lower-body performance was assessed using countermovement jump height, flight time-to-contraction time ratio, and relative peak power. Upper-body performance was assessed using peak force during an isometric push-up. All performance outcomes were measured using dual force desks.

Detailed description

Acute conditioning activities are commonly included in pre-performance routines to influence subsequent force- and power-related performance. High-intensity resistance exercise and whole-body vibration represent mechanically different conditioning strategies, but direct comparisons of their immediate effects, particularly across both lower- and upper-body outcomes in the same participants, remain limited. This study used a randomized, two-treatment, two-period, two-sequence crossover design. Twenty recreationally resistance-trained students from the Faculty of Sport Sciences were enrolled. One participant withdrew during preliminary testing and did not proceed to the experimental crossover sessions. The remaining 19 participants completed both conditioning conditions. Participants were assigned to either a resistance-conditioning followed by vibration-conditioning sequence or a vibration-conditioning followed by resistance-conditioning sequence using a computer-generated random-number sequence. The study included one preliminary assessment session and two experimental sessions. During the preliminary session, demographic and training-history information, anthropometric and body-composition measurements, estimated squat and bench-press one-repetition maximum values, familiarization trials, and a common pre-experimental performance assessment were completed. A 48-hour recovery interval was provided between the preliminary session and the first experimental session. The two experimental sessions were separated by 24 hours. During the high-intensity resistance-conditioning condition, participants performed three squat repetitions at 90% of estimated one-repetition maximum. After 9 minutes of passive recovery, countermovement jump performance was assessed. Following the jump assessment, participants rested for 15 minutes and then performed three bench-press repetitions at 90% of estimated one-repetition maximum. Isometric push-up performance was assessed 9 minutes after the bench-press conditioning activity. During the vibration-conditioning condition, participants completed four 30-second lower-body vibration bouts at 28 Hz and 4 mm displacement, with 30 seconds of passive recovery between bouts. Countermovement jump performance was assessed after 5 minutes of recovery. Following the jump assessment and a 7-minute passive recovery period, participants completed two 30-second upper-body vibration bouts using extended- and flexed-elbow push-up positions. Isometric push-up performance was assessed 9 minutes after completion of the upper-body vibration protocol. The four primary outcomes were countermovement jump height, flight time-to-contraction time ratio, relative peak power, and isometric push-up peak force. Outcomes were obtained using a dual force-plate system. The common pre-experimental assessment was used descriptively because it was performed once before both crossover conditions and was not a period-specific baseline. The primary comparison evaluated the period-adjusted within-participant difference between the complete resistance-conditioning and vibration-conditioning protocols.

Interventions

OTHERHigh-Intensity Resistance Conditioning

Participants performed three squat repetitions at 90% of estimated one-repetition maximum. Countermovement jump performance was assessed after 9 minutes of passive recovery. Following the jump assessment and 15 minutes of passive recovery, participants performed three bench-press repetitions at 90% of estimated one-repetition maximum. Isometric push-up performance was assessed 9 minutes after the bench-press conditioning activity.

OTHERVibration Conditioning

Participants completed four 30-second lower-body vibration bouts at 28 Hz and 4 mm displacement, with 30 seconds of passive recovery between bouts. Countermovement jump performance was assessed after 5 minutes of recovery. Following the jump assessment and 7 minutes of passive recovery, participants completed two 30-second upper-body vibration bouts using extended- and flexed-elbow push-up positions. Isometric push-up performance was assessed 9 minutes after completion of the upper-body vibration protocol.

Sponsors

Namik Kemal University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
OTHER
Masking
NONE

Intervention model description

This study used a randomized, two-treatment, two-period, two-sequence crossover design. Participants were randomized to either a resistance-conditioning followed by vibration-conditioning sequence or a vibration-conditioning followed by resistance-conditioning sequence. Each participant completing the crossover phase received both conditioning protocols. The two experimental periods were separated by 24 hours.

Eligibility

Sex/Gender
ALL
Age
17 Years to 25 Years
Healthy volunteers
Yes

Inclusion criteria

* Aged 17 to 25 years * Enrolled as a student in the Faculty of Sport Sciences at Tekirdag Namik Kemal University * Recreational participation in resistance training * Previous sporting experience * Provision of written informed consent * For participants younger than 18 years, provision of additional written consent from a parent

Exclusion criteria

* An orthopedic condition that could interfere with the exercise or testing procedures * A cardiovascular condition that could interfere with the exercise or testing procedures * A neurological condition that could interfere with the exercise or testing procedures

Design outcomes

Primary

MeasureTime frameDescription
Countermovement Jump HeightAt each experimental period: 9 minutes after squat resistance conditioning and 5 minutes after lower-body vibration conditioningCountermovement jump height was measured in centimeters using a dual force-plate system (ForceDecks, VALD Performance). Participants completed at least three valid trials, and the highest valid jump was retained for analysis. Higher values indicate greater jump height.
Countermovement Jump Flight Time-to-Contraction Time RatioAt each experimental period: 9 minutes after squat resistance conditioning and 5 minutes after lower-body vibration conditioningThe flight time-to-contraction time ratio was obtained from the countermovement jump force-time data using ForceDecks software. Participants completed at least three valid trials, and the value from the highest valid jump was retained for analysis. The ratio is dimensionless.
Countermovement Jump Relative Peak PowerAt each experimental period: 9 minutes after squat resistance conditioning and 5 minutes after lower-body vibration conditioningRelative peak power during the countermovement jump was measured in watts per kilogram using a dual force-plate system and calculated by ForceDecks software. Participants completed at least three valid trials, and the value from the highest valid jump was retained for analysis.
Isometric Push-Up Peak ForceAt each experimental period: 9 minutes after bench-press resistance conditioning and 9 minutes after upper-body vibration conditioningPeak vertical ground-reaction force during an isometric push-up was measured in newtons using a dual force-plate system (ForceDecks, VALD Performance). Participants completed two to three maximal attempts, and the highest valid force value was retained for analysis.

Countries

Turkey (Türkiye)

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Aug 28, 2026