- ICH GCP
- Amerikanska kliniska prövningsregistret
- Klinisk prövning NCT07736209
Effects of Heavy Back-Squat PAPE on Jump and Repeated Sprint Performance in Trained Soccer Players
29 juli 2026 uppdaterad av: Abdullah Demirli, Istanbul University - Cerrahpasa
The PAPE Paradox During Prolonged Repeated Sprint Performance: Acute Heavy Back-Squat Potentiates Vertical Jump and Early Sprint Performance But Impairs Overall Output-A Randomized Crossover Trial in Trained Soccer Players
This study examined whether performing heavy back squats before exercise affects jumping ability and repeated sprint performance in trained soccer players.
Twenty male university soccer players completed two testing sessions in a randomized crossover design.
In one session, participants performed a standardized warm-up only.
In the other session, they performed the same warm-up followed by three sets of three back-squat repetitions at 90% of their one-repetition maximum.
The two sessions were separated by one week.
After each condition, participants completed a countermovement jump test and an 18 × 40-meter repeated sprint test.
The study aimed to determine whether the heavy back-squat activity improves early explosive performance and whether it increases fatigue during prolonged repeated sprint exercise.
Studieöversikt
Status
Avslutad
Betingelser
Intervention / Behandling
Studietyp
Interventionell
Inskrivning (Faktisk)
20
Fas
- Inte tillämpbar
Kontakter och platser
Det här avsnittet innehåller kontaktuppgifter för dem som genomför studien och information om var denna studie genomförs.
Studieorter
-
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Istanbul
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Istanbul, Istanbul, Turkiet (Türkiye), 34320
- İstanbul University Cerrahpaşa
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Deltagandekriterier
Forskare letar efter personer som passar en viss beskrivning, så kallade behörighetskriterier. Några exempel på dessa kriterier är en persons allmänna hälsotillstånd eller tidigare behandlingar.
Urvalskriterier
Åldrar som är berättigade till studier
- Vuxen
Tar emot friska volontärer
Ja
Beskrivning
Inclusion Criteria:
- Male soccer players aged 20-23 years.
- Currently competing in the top division of a university soccer league.
- A minimum of three years of regular soccer training experience.
- Free from long-term musculoskeletal injury during the previous six months.
- Willing and able to complete all familiarization, strength-testing, and experimental sessions.
- Provision of written informed consent.
Exclusion Criteria:
- A musculoskeletal injury resulting in an absence from training or competition for 21 days or longer during the previous six months.
- Use of medications or nutritional or ergogenic supplements that could affect exercise performance.
- Any health or physical condition preventing safe participation in heavy back-squat, countermovement jump, or repeated sprint testing.
- Failure to complete both experimental conditions.
Studieplan
Det här avsnittet ger detaljer om studieplanen, inklusive hur studien är utformad och vad studien mäter.
Hur är studien utformad?
Designdetaljer
- Primärt syfte: Grundläggande vetenskap
- Tilldelning: Randomiserad
- Interventionsmodell: Crossover tilldelning
- Maskning: Enda
Vapen och interventioner
Deltagargrupp / Arm |
Intervention / Behandling |
|---|---|
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Experimentell: Control-PAPE Sequence
Participants first completed the Control condition, consisting of a standardized warm-up without an additional conditioning activity.
After a one-week washout period, participants completed the PAPE condition, consisting of the same standardized warm-up followed by three sets of three back-squat repetitions at 90% of one-repetition maximum, with 3 minutes of passive recovery between sets.
Countermovement jump and repeated sprint performance were assessed after each condition.
|
Participants completed a standardized warm-up followed by a heavy back-squat conditioning activity consisting of three sets of three repetitions at 90% of one-repetition maximum.
Three minutes of passive recovery were provided between sets.
Countermovement jump performance was assessed approximately 4.5-5 minutes after the final squat set, immediately before the repeated sprint test.
Participants completed a standardized warm-up consisting of 5 minutes of jogging, followed by 10 bodyweight squats, 10 lunges, and 10 lateral shuffles.
No additional conditioning activity was performed.
After approximately 5 minutes of passive recovery, countermovement jump performance was assessed immediately before the repeated sprint test.
|
|
Experimentell: PAPE-Control Sequence
Participants first completed the PAPE condition, consisting of a standardized warm-up followed by three sets of three back-squat repetitions at 90% of one-repetition maximum, with 3 minutes of passive recovery between sets.
After a one-week washout period, participants completed the Control condition, consisting of the same standardized warm-up without an additional conditioning activity.
Countermovement jump and repeated sprint performance were assessed after each condition.
|
Participants completed a standardized warm-up followed by a heavy back-squat conditioning activity consisting of three sets of three repetitions at 90% of one-repetition maximum.
Three minutes of passive recovery were provided between sets.
Countermovement jump performance was assessed approximately 4.5-5 minutes after the final squat set, immediately before the repeated sprint test.
Participants completed a standardized warm-up consisting of 5 minutes of jogging, followed by 10 bodyweight squats, 10 lunges, and 10 lateral shuffles.
No additional conditioning activity was performed.
After approximately 5 minutes of passive recovery, countermovement jump performance was assessed immediately before the repeated sprint test.
|
Vad mäter studien?
Primära resultatmått
Resultatmått |
Åtgärdsbeskrivning |
Tidsram |
|---|---|---|
|
Repeated Sprint Performance Decrement
Tidsram: During the 18 × 40-meter repeated sprint test, which lasted approximately 15 minutes and was completed within each of two experimental sessions lasting approximately 25-35 minutes; the sessions were separated by a 1-week washout period.
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Percentage decline in repeated sprint performance calculated from sprint times recorded during an 18 × 40-meter shuttle sprint test.
The protocol consisted of three sets of six 40-meter shuttle sprints, with 20 seconds of passive recovery between sprints and 4 minutes of passive recovery between sets.
Lower percentage values indicate better maintenance of sprint performance and less fatigue.
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During the 18 × 40-meter repeated sprint test, which lasted approximately 15 minutes and was completed within each of two experimental sessions lasting approximately 25-35 minutes; the sessions were separated by a 1-week washout period.
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Countermovement Jump Height
Tidsram: At approximately 5 minutes after the assigned condition, within each of two experimental sessions lasting approximately 25-35 minutes; the sessions were separated by a 1-week washout period.
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Maximum countermovement jump height measured in centimeters using the Optojump Next optical measurement system.
Participants performed three maximal countermovement jump trials with their hands positioned on their hips and 60 seconds of passive recovery between trials.
The highest jump height was used for analysis.
Higher values indicate better jump performance.
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At approximately 5 minutes after the assigned condition, within each of two experimental sessions lasting approximately 25-35 minutes; the sessions were separated by a 1-week washout period.
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Sekundära resultatmått
Resultatmått |
Åtgärdsbeskrivning |
Tidsram |
|---|---|---|
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Mean Repeated Sprint Time
Tidsram: During the 18 × 40-meter repeated sprint test, which lasted approximately 15 minutes and was completed within each of two experimental sessions lasting approximately 25-35 minutes; the sessions were separated by a 1-week washout period.
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Mean sprint time, measured in seconds, calculated across all 18 repetitions of the 40-meter shuttle sprint test.
Sprint times were recorded using a photocell timing system.
Lower values indicate better repeated sprint performance.
|
During the 18 × 40-meter repeated sprint test, which lasted approximately 15 minutes and was completed within each of two experimental sessions lasting approximately 25-35 minutes; the sessions were separated by a 1-week washout period.
|
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Best Sprint Time
Tidsram: During the 18 × 40-meter repeated sprint test, which lasted approximately 15 minutes and was completed within each of two experimental sessions lasting approximately 25-35 minutes; the sessions were separated by a 1-week washout period.
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The fastest sprint time, measured in seconds, recorded among the 18 repetitions of the 40-meter shuttle sprint test using a photocell timing system.
Lower values indicate better sprint performance.
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During the 18 × 40-meter repeated sprint test, which lasted approximately 15 minutes and was completed within each of two experimental sessions lasting approximately 25-35 minutes; the sessions were separated by a 1-week washout period.
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Worst Sprint Time
Tidsram: During the 18 × 40-meter repeated sprint test, which lasted approximately 15 minutes and was completed within each of two experimental sessions lasting approximately 25-35 minutes; the sessions were separated by a 1-week washout period.
|
The slowest sprint time, measured in seconds, recorded among the 18 repetitions of the 40-meter shuttle sprint test using a photocell timing system.
Lower values indicate better sprint performance.
|
During the 18 × 40-meter repeated sprint test, which lasted approximately 15 minutes and was completed within each of two experimental sessions lasting approximately 25-35 minutes; the sessions were separated by a 1-week washout period.
|
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Sprint Time Across Individual Repetitions
Tidsram: During each repetition of the 18 × 40-meter repeated sprint test, which lasted approximately 15 minutes and was completed within each of two experimental sessions lasting approximately 25-35 minutes; the sessions were separated by a 1-week washout period
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Sprint time, measured in seconds, for each of the 18 individual 40-meter shuttle sprint repetitions.
Sprint-by-sprint values were used to evaluate changes in performance during the early repetitions (sprints 1-3), middle repetitions (sprints 4-8), and later repetitions (sprints 9-18).
Lower values indicate faster sprint performance.
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During each repetition of the 18 × 40-meter repeated sprint test, which lasted approximately 15 minutes and was completed within each of two experimental sessions lasting approximately 25-35 minutes; the sessions were separated by a 1-week washout period
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Studieavstämningsdatum
Dessa datum spårar framstegen för inlämningar av studieposter och sammanfattande resultat till ClinicalTrials.gov. Studieposter och rapporterade resultat granskas av National Library of Medicine (NLM) för att säkerställa att de uppfyller specifika kvalitetskontrollstandarder innan de publiceras på den offentliga webbplatsen.
Studera stora datum
Studiestart (Faktisk)
20 december 2025
Primärt slutförande (Faktisk)
15 februari 2026
Avslutad studie (Faktisk)
15 februari 2026
Studieregistreringsdatum
Först inskickad
26 juli 2026
Först inskickad som uppfyllde QC-kriterierna
29 juli 2026
Första postat (Faktisk)
30 juli 2026
Uppdateringar av studier
Senaste uppdatering publicerad (Faktisk)
30 juli 2026
Senaste inskickade uppdateringen som uppfyllde QC-kriterierna
29 juli 2026
Senast verifierad
1 juli 2026
Mer information
Termer relaterade till denna studie
Andra studie-ID-nummer
- PAPE-RSA-2025-01
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