Full-Body and Lower-Limb Stretching on Explosive Power and Agility (static stretch)
Do Stretching Variations Affect Performance? A Comparison of Full-Body and Lower-Limb Stretching on Explosive Power and Agility Reaction Time
Przegląd badań
Status
Status
Warunki
Warunki
Szczegółowy opis
Stretching exercise is one of the most commonly used strategies for pre-exercise warm-up and post-exercise recovery, and its physiological effects involve muscle flexibility, neuromuscular control, and joint range of motion. However, empirical evidence regarding the acute effects of different stretching scopes on jumping ability and agility remains relatively limited, as most previous studies have focused on individual muscles or localized muscle groups. Therefore, the present study aims to investigate the effects of static stretching involving different body regions, specifically whole-body and lower-limb stretching, on explosive performance and agility.
A pretest-intervention-posttest design will be adopted. A total of 60 healthy university students (30 males and 30 females) are expected to be recruited and randomly assigned to a whole-body stretching group (10 males and 10 females), a lower-limb stretching group (10 males and 10 females), or a control group (10 males and 10 females). The duration of the static stretching intervention will be standardized to 14 minutes. The whole-body stretching group will perform stretching exercises targeting the major muscle groups of the upper limbs, trunk, and lower limbs, whereas the lower-limb stretching group will focus on key lower-limb muscle groups, including the quadriceps, hamstrings, and gastrocnemius. The control group will remain seated quietly for 14 minutes without performing any stretching exercise.
Participants will undergo a series of physical performance assessments before and after the intervention. Jump performance will be evaluated using the standing long jump, squat jump, countermovement jump, and drop jump. All jump-related data will be recorded using a Vmaxpro wireless inertial measurement sensor (BM Sports Technology GmbH, Germany), providing key parameters such as jump height, peak velocity, and peak power. Agility will be assessed using the T-Test and Hexagon Agility Test.
It is hypothesized that excessive static stretching may cause an acute reduction in muscular strength and explosive performance. The whole-body stretching group may demonstrate only a slight decrease in jump performance while maintaining relatively stable agility performance, whereas the lower-limb stretching group may exhibit changes in both jump and agility performance. The findings of this study are expected to clarify the relationship between the scope of static stretching and subsequent physical performance and may provide evidence to support the design of pre-exercise warm-up strategies and physical therapy interventions.
Typ studiów
Typ studiów
Zapisy (Szacowany)
Zapisy
Kontakty i lokalizacje
Kontakt w sprawie studiów
Kontakt w sprawie studiów
- Nazwa: Yueh-Ling Hsieh, PhD
- Numer telefonu: 886-0929122977
- E-mail: sherrie@mail.cmu.edu.tw
Kopia zapasowa kontaktu do badania
- Nazwa: Ling-Ling Tang, BS
- Numer telefonu: 886-0979087177
- E-mail: l0979087177@gmail.com
Lokalizacje studiów
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Beitun
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Taichung, Beitun, Tajwan, 406040
- Rekrutacyjny
- Department of Physical Therapy, China Medical University
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Kontakt:
- Yueh-Ling Hsieh, PhD
- Numer telefonu: 0929122977
- E-mail: sherrie@mail.cmu.edu.tw
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Kontakt:
- Ling-Ling Tang, BS
- Numer telefonu: 0979087177
- E-mail: l0979087177@gmail.com
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Główny śledczy:
- Yueh-Ling Hsieh, PhD
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Kryteria uczestnictwa
Kryteria kwalifikacji
Kryteria kwalifikacji
Wiek uprawniający do nauki
- Dorosły
Akceptuje zdrowych ochotników
Metoda próbkowania
Badana populacja
Opis
Healthy university students aged 20-30 years Regularly engaged in physical activity Not specialized in weightlifting or jumping disciplines Able to understand the study procedures and provide written informed consent
Exclusion Criteria:
Acute lower-limb or low-back injury within the previous three months Fracture, sprain, or muscle strain within the previous three months Related surgery or medical treatment within the previous three months Pain, swelling, inflammation, or restricted movement on the day of testing Any condition that may compromise exercise safety Physician-advised restriction from moderate- to high-intensity exercise Cardiovascular disease or other exercise contraindications Neurological, musculoskeletal, or balance impairments that may affect test performance
Plan studiów
Jak projektuje się badanie?
Szczegóły projektu
Liczba grup / kohort
Kohorty i interwencje
Grupa / KohortaGrupa / Kohorta |
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Whole-Body Stretching
Healthy university students who performed the whole-body static stretching protocol.
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Lower-Limb Stretching Group
Healthy university students who performed the lower-limb static stretching protocol.
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Non-Stretching Control Group
Healthy university students who remained seated quietly without performing stretching exercises.
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Co mierzy badanie?
Podstawowe miary wyniku
Podstawowe miary wyniku
Miara wyniku |
Opis środka |
Ramy czasowe |
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Hexagon Agility Test Completion Time
Ramy czasowe: From baseline to immediately after the 15-min intervention
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Agility performance will be assessed using the Hexagon Agility Test.
Participants will complete two valid trials, and the mean completion time will be used for analysis.
Completion time will be recorded in seconds, with a shorter time indicating better agility performance.
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From baseline to immediately after the 15-min intervention
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T-Test Agility Test Completion Time
Ramy czasowe: From baseline to immediately after the 15-min intervention
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Agility performance will be assessed using the T-Test Agility Test.
Participants will complete two trials, and completion time will be recorded in seconds using a photocell timing gate system.
The mean completion time of the two trials will be used for analysis, with lower values indicating better agility performance.
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From baseline to immediately after the 15-min intervention
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Squat jump height
Ramy czasowe: From baseline to immediately after the 15-min intervention
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Squat jump performance will be assessed using a wireless inertial measurement sensor.
Participants will perform two valid squat jump trials, and the mean jump height will be used for analysis.
Jump height will be recorded in centimeters, with higher values indicating better jump performance.
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From baseline to immediately after the 15-min intervention
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Countermovement Jump Height
Ramy czasowe: From baseline to immediately after the 15-min intervention
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Countermovement jump performance will be assessed using a wireless inertial measurement sensor.
Participants will perform two valid countermovement jump trials, and the mean jump height will be used for analysis.
Jump height will be recorded in centimeters, with higher values indicating better jump performance.
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From baseline to immediately after the 15-min intervention
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Drop Jump Reactive Strength Index
Ramy czasowe: From baseline to immediately after the 15-min intervention
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Reactive strength during the drop jump will be assessed using a wireless inertial measurement sensor.
The reactive strength index will be calculated as jump height divided by ground contact time.
Participants will perform two valid trials, and the mean reactive strength index will be used for analysis.
Values will be expressed in meters per second, with higher values indicating better reactive strength performance.
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From baseline to immediately after the 15-min intervention
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Standing Long Jump Distance
Ramy czasowe: From baseline to immediately after the 15-min intervention
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Horizontal lower-limb explosive performance will be assessed using the standing long jump.
Participants will perform two valid trials, and the mean jump distance will be used for analysis.
Jump distance will be recorded in centimeters, with higher values indicating better performance.
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From baseline to immediately after the 15-min intervention
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Współpracownicy i badacze
Sponsor
Sponsor
Publikacje i pomocne linki
Publikacje ogólne
- Behm DG, Blazevich AJ, Kay AD, McHugh M. Acute effects of muscle stretching on physical performance, range of motion, and injury incidence in healthy active individuals: a systematic review. Appl Physiol Nutr Metab. 2016 Jan;41(1):1-11. doi: 10.1139/apnm-2015-0235. Epub 2015 Dec 8.
- Behm DG, Alizadeh S, Anvar SH, Drury B, Granacher U, Moran J. Non-local Acute Passive Stretching Effects on Range of Motion in Healthy Adults: A Systematic Review with Meta-analysis. Sports Med. 2021 May;51(5):945-959. doi: 10.1007/s40279-020-01422-5. Epub 2021 Jan 18.
Daty zapisu na studia
Główne daty studiów
Rozpoczęcie studiów (Rzeczywisty)
Rozpoczęcie studiów
Zakończenie podstawowe (Szacowany)
Zakończenie podstawowe
Ukończenie studiów (Szacowany)
Ukończenie studiów
Daty rejestracji na studia
Pierwszy przesłany
Pierwszy przesłany
Pierwszy przesłany, który spełnia kryteria kontroli jakości
Pierwszy przesłany, który spełnia kryteria kontroli jakości
Pierwszy wysłany (Rzeczywisty)
Pierwszy wysłany
Aktualizacje rekordów badań
Ostatnia wysłana aktualizacja (Rzeczywisty)
Ostatnia wysłana aktualizacja
Ostatnia przesłana aktualizacja, która spełniała kryteria kontroli jakości
Ostatnia przesłana aktualizacja, która spełniała kryteria kontroli jakości
Ostatnia weryfikacja
Ostatnia weryfikacja
Więcej informacji
Terminy związane z tym badaniem
Słowa kluczowe
Inne numery identyfikacyjne badania
Inne numery identyfikacyjne badania
- CMUH115-REC3-011
- NSTC115-2813-C-039-101-B (Inny numer grantu/finansowania: National Science and Technology Council)
Plan dla danych uczestnika indywidualnego (IPD)
Planujesz udostępniać dane poszczególnych uczestników (IPD)?
Opis planu IPD
Informacje o lekach i urządzeniach, dokumenty badawcze
Bada produkt leczniczy regulowany przez amerykańską FDA
Bada produkt urządzenia regulowany przez amerykańską FDA
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