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Y-Balance Test Training for Ankle Function and Lower Limb Functional Performance

13 września 2026 zaktualizowane przez: MARIO ALEXANDRE GONÇALVES LOPES, Aveiro University

Effect of a Y-Balance Test-Based Training Protocol on Ankle Function and Lower Limb Injury Prevention

This randomized controlled study investigated whether a 6-week home-based training program based on the Y-Balance Test could improve ankle function and lower limb functional performance in university students. The Y-Balance Test is a functional task that involves standing on one leg while reaching in different directions with the other leg, and it is commonly used to assess dynamic balance and postural control.

Participants were randomly assigned to either an experimental group, which performed the Y-Balance Test-based training program, or a control group, which maintained its usual routine without intervention. All participants were assessed at baseline and after 6 weeks.

The study assessed Y-Balance Test performance, weight-bearing ankle dorsiflexion, ankle maximal isometric strength, and self-reported ankle function. These outcomes were selected because they are relevant components of ankle function and lower limb performance.

The main goal of the study was to determine whether this structured training program led to greater improvements in Y-Balance Test composite score than no intervention. Secondary aims included assessing changes in normalized reach distances, ankle dorsiflexion, ankle strength, and self-reported ankle function. The study did not directly assess injury incidence, but focused on functional measures commonly used in the assessment of factors related to lower limb injury risk.

Przegląd badań

Status

Zakończony

Typ studiów

Interwencyjne

Zapisy (Rzeczywisty)

56

Faza

  • Nie dotyczy

Kontakty i lokalizacje

Ta sekcja zawiera dane kontaktowe osób prowadzących badanie oraz informacje o tym, gdzie badanie jest przeprowadzane.

Lokalizacje studiów

    • Aveiro District
      • Aveiro, Aveiro District, Portugalia, 3810-193
        • Escola Superior de Saúde da Universidade de Aveiro

Kryteria uczestnictwa

Badacze szukają osób, które pasują do określonego opisu, zwanego kryteriami kwalifikacyjnymi. Niektóre przykłady tych kryteriów to ogólny stan zdrowia danej osoby lub wcześniejsze leczenie.

Kryteria kwalifikacji

Wiek uprawniający do nauki

  • Dorosły
  • Starszy dorosły

Akceptuje zdrowych ochotników

Tak

Opis

Inclusion Criteria:

Enrolled in an undergraduate degree at the School of Health Sciences, University of Aveiro.

Aged 18 years or older. Able and willing to provide written informed consent.

Exclusion Criteria:

Current pain, injury, or medical condition that prevents the safe performance of the study assessments, based on self-report during the baseline assessment.

Unable to comply with the intervention protocol or the assessment sessions. Not willing to agree to the terms of the informed consent.

Plan studiów

Ta sekcja zawiera szczegółowe informacje na temat planu badania, w tym sposób zaprojektowania badania i jego pomiary.

Jak projektuje się badanie?

Szczegóły projektu

  • Główny cel: Inny
  • Przydział: Randomizowane
  • Model interwencyjny: Przydział równoległy
  • Maskowanie: Brak (otwarta etykieta)

Broń i interwencje

Grupa uczestników / Arm
Interwencja / Leczenie
Eksperymentalny: Y-Balance Test-Based Training
Participants in this arm completed a 6-week home-based Y-Balance Test-based training program, performed 5 times per week. Outcome measures were assessed at baseline and after 6 weeks.
Participants completed a 6-week home-based training program based on the Y-Balance Test, performed 5 times per week, for a total planned dose of 30 sessions. The program used a paper Y-Balance Test kit provided to participants. In each session, participants performed six maximal attempts per lower limb, reaching in the anterior, posteromedial, and posterolateral directions. Rest between attempts was self-managed. The program was self-administered, with initial face-to-face instructions and access to online demonstration videos.
Brak interwencji: No Additional Training Control
Participants in this arm did not receive any intervention and maintained their usual routine during the study period. Outcome measures were assessed at baseline and after 6 weeks.

Co mierzy badanie?

Podstawowe miary wyniku

Miara wyniku
Opis środka
Ramy czasowe
Change from Baseline in Dominant Lower Limb Y-Balance Test Composite Score at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Composite score (%) of the dominant lower limb calculated from the maximal reach distances in the anterior, posteromedial, and posterolateral directions of the Y-Balance Test, normalized to lower limb length using the formula: [(anterior + posteromedial + posterolateral) / (3 × lower limb length)] × 100. Higher values indicate better performance on the test.
Baseline and 6 weeks
Change from Baseline in Non Dominant Lower Limb Y-Balance Test Composite Score at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Composite score (%) of the non dominant lower limb calculated from the maximal reach distances in the anterior, posteromedial, and posterolateral directions of the Y-Balance Test, normalized to lower limb length using the formula: [(anterior + posteromedial + posterolateral) / (3 × lower limb length)] × 100. Higher values indicate better performance on the test.
Baseline and 6 weeks

Miary wyników drugorzędnych

Miara wyniku
Opis środka
Ramy czasowe
Change from Baseline in Dominant Ankle Weight-Bearing Dorsiflexion at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Weight-bearing ankle dorsiflexion measured using the Knee-to-Wall Test. The distance between the great toe and the wall was recorded in centimeters at the maximal position in which the participant could touch the knee to the wall while maintaining the heel in contact with the floor. The mean of three trials was used. Higher values indicate greater weight-bearing dorsiflexion.
Baseline and 6 weeks
Change from Baseline in Non Dominant Ankle Weight-Bearing Dorsiflexion at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Weight-bearing ankle dorsiflexion measured using the Knee-to-Wall Test. The distance between the great toe and the wall was recorded in centimeters at the maximal position in which the participant could touch the knee to the wall while maintaining the heel in contact with the floor. The mean of three trials was used. Higher values indicate greater weight-bearing dorsiflexion.
Baseline and 6 weeks
Change from Baseline in Dominant Ankle Inversion Maximal Isometric Strength at 6 Weeks
Ramy czasowe: baseline and 6 weeks
Maximal isometric strength of Dominant ankle inversion measured using a microFET2 handheld dynamometer during a standardized make test. Three maximal 5-second contractions were performed, and the highest peak force was used for analysis. Results are expressed in kilogram-force (kgf), with higher values indicating greater maximal isometric strength.
baseline and 6 weeks
Change from Baseline in Non Dominant Ankle Inversion Maximal Isometric Strength at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Maximal isometric strength of Non Dominant ankle inversion measured using a microFET2 handheld dynamometer during a standardized make test. Three maximal 5-second contractions were performed, and the highest peak force was used for analysis. Results are expressed in kilogram-force (kgf), with higher values indicating greater maximal isometric strength.
Baseline and 6 weeks
Change from Baseline in Dominant Ankle Eversion Maximal Isometric Strength at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Maximal isometric strength of Dominant ankle eversion measured using a microFET2 handheld dynamometer during a standardized make test. Three maximal 5-second contractions were performed, and the highest peak force was used for analysis. Results are expressed in kilogram-force (kgf), with higher values indicating greater maximal isometric strength.
Baseline and 6 weeks
Change from Baseline in Non Dominant Ankle Eversion Maximal Isometric Strength at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Maximal isometric strength of non Dominant ankle eversion measured using a microFET2 handheld dynamometer during a standardized make test. Three maximal 5-second contractions were performed, and the highest peak force was used for analysis. Results are expressed in kilogram-force (kgf), with higher values indicating greater maximal isometric strength.
Baseline and 6 weeks
Change from Baseline in Dominant Ankle Dorsiflexion Maximal Isometric Strength at 6 Weeks
Ramy czasowe: baseline and 6 weeks
Maximal isometric strength of Dominant ankle dorsiflexion measured using a microFET2 handheld dynamometer during a standardized make test. Three maximal 5-second contractions were performed, and the highest peak force was used for analysis. Results are expressed in kilogram-force (kgf), with higher values indicating greater maximal isometric strength.
baseline and 6 weeks
Change from Baseline in Non Dominant Ankle Dorsiflexion Maximal Isometric Strength at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Maximal isometric strength of Non Dominant ankle dorsiflexion measured using a microFET2 handheld dynamometer during a standardized make test. Three maximal 5-second contractions were performed, and the highest peak force was used for analysis. Results are expressed in kilogram-force (kgf), with higher values indicating greater maximal isometric strength.
Baseline and 6 weeks
Change from Baseline in Dominant Ankle Plantar Flexion Maximal Isometric Strength at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Maximal isometric strength of Dominant ankle plantar flexion measured using a microFET2 handheld dynamometer during a standardized make test. Three maximal 5-second contractions were performed, and the highest peak force was used for analysis. Results are expressed in kilogram-force (kgf), with higher values indicating greater maximal isometric strength.
Baseline and 6 weeks
Change from Baseline in Non Dominant Ankle Plantar Flexion Maximal Isometric Strength at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Maximal isometric strength of Non Dominant ankle plantar flexion measured using a microFET2 handheld dynamometer during a standardized make test. Three maximal 5-second contractions were performed, and the highest peak force was used for analysis. Results are expressed in kilogram-force (kgf), with higher values indicating greater maximal isometric strength.
Baseline and 6 weeks
Change from Baseline in Dominant Ankle Self-Reported Function Assessed by the Portuguese Cumberland Ankle Instability Tool at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Self-reported Dominant ankle function and perceived instability assessed using the Portuguese version of the Cumberland Ankle Instability Tool. The questionnaire contains nine items and is scored separately for each ankle. The total score ranges from 0 to 30, with higher scores indicating better self-reported ankle function and less perceived instability.
Baseline and 6 weeks
Change from Baseline in Non Dominant Ankle Self-Reported Function Assessed by the Portuguese Cumberland Ankle Instability Tool at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Self-reported Non Dominant ankle function and perceived instability assessed using the Portuguese version of the Cumberland Ankle Instability Tool. The questionnaire contains nine items and is scored separately for each ankle. The total score ranges from 0 to 30, with higher scores indicating better self-reported ankle function and less perceived instability.
Baseline and 6 weeks
Change from Baseline in Dominant Lower Limb Y-Balance Test Anterior Reach Distance at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Normalized reach distance (%) in the specified Y-Balance Test direction, calculated as maximal reach distance divided by lower limb length and multiplied by 100. Higher values indicate better reach performance in that direction.
Baseline and 6 weeks
Change from Baseline in Non-Dominant Lower Limb Y-Balance Test Anterior Reach Distance at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Normalized reach distance (%) in the specified Y-Balance Test direction, calculated as maximal reach distance divided by lower limb length and multiplied by 100. Higher values indicate better reach performance in that direction.
Baseline and 6 weeks
Change from Baseline in Dominant Lower Limb Y-Balance Test Posteromedial Reach Distance at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Normalized reach distance (%) in the specified Y-Balance Test direction, calculated as maximal reach distance divided by lower limb length and multiplied by 100. Higher values indicate better reach performance in that direction.
Baseline and 6 weeks
Change from Baseline in Non-Dominant Lower Limb Y-Balance Test Posteromedial Reach Distance at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Normalized reach distance (%) in the specified Y-Balance Test direction, calculated as maximal reach distance divided by lower limb length and multiplied by 100. Higher values indicate better reach performance in that direction.
Baseline and 6 weeks
Change from Baseline in Dominant Lower Limb Y-Balance Test Posterolateral Reach Distance at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Normalized reach distance (%) in the specified Y-Balance Test direction, calculated as maximal reach distance divided by lower limb length and multiplied by 100. Higher values indicate better reach performance in that direction.
Baseline and 6 weeks
Change from Baseline in Non-Dominant Lower Limb Y-Balance Test Posterolateral Reach Distance at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Normalized reach distance (%) in the specified Y-Balance Test direction, calculated as maximal reach distance divided by lower limb length and multiplied by 100. Higher values indicate better reach performance in that direction.
Baseline and 6 weeks

Inne miary wyników

Miara wyniku
Opis środka
Ramy czasowe
Change from Baseline in Inter-Limb Asymmetry in the Y-Balance Test Composite Score at 6 Weeks
Ramy czasowe: Baseline and 6 weeks
Inter-limb asymmetry calculated as the absolute difference between the right and left lower limb Y-Balance Test composite scores. Results are expressed in percentage points. Lower values indicate less asymmetry between lower limbs.
Baseline and 6 weeks

Współpracownicy i badacze

Tutaj znajdziesz osoby i organizacje zaangażowane w to badanie.

Śledczy

  • Główny śledczy: Mário A Lopes, PhD, Escola Superior de Saúde da Universidade de Aveiro

Daty zapisu na studia

Daty te śledzą postęp w przesyłaniu rekordów badań i podsumowań wyników do ClinicalTrials.gov. Zapisy badań i zgłoszone wyniki są przeglądane przez National Library of Medicine (NLM), aby upewnić się, że spełniają określone standardy kontroli jakości, zanim zostaną opublikowane na publicznej stronie internetowej.

Główne daty studiów

Rozpoczęcie studiów (Rzeczywisty)

30 marca 2026

Zakończenie podstawowe (Rzeczywisty)

1 czerwca 2026

Ukończenie studiów (Rzeczywisty)

1 czerwca 2026

Daty rejestracji na studia

Pierwszy przesłany

13 września 2026

Pierwszy przesłany, który spełnia kryteria kontroli jakości

13 września 2026

Pierwszy wysłany (Rzeczywisty)

17 września 2026

Aktualizacje rekordów badań

Ostatnia wysłana aktualizacja (Rzeczywisty)

17 września 2026

Ostatnia przesłana aktualizacja, która spełniała kryteria kontroli jakości

13 września 2026

Ostatnia weryfikacja

1 września 2026

Więcej informacji

Terminy związane z tym badaniem

Inne numery identyfikacyjne badania

  • 11-CEIC-UA/2026-M

Plan dla danych uczestnika indywidualnego (IPD)

Planujesz udostępniać dane poszczególnych uczestników (IPD)?

NIE

Informacje o lekach i urządzeniach, dokumenty badawcze

Bada produkt leczniczy regulowany przez amerykańską FDA

Nie

Bada produkt urządzenia regulowany przez amerykańską FDA

Nie

Te informacje zostały pobrane bezpośrednio ze strony internetowej clinicaltrials.gov bez żadnych zmian. Jeśli chcesz zmienić, usunąć lub zaktualizować dane swojego badania, skontaktuj się z register@clinicaltrials.gov. Gdy tylko zmiana zostanie wprowadzona na stronie clinicaltrials.gov, zostanie ona automatycznie zaktualizowana również na naszej stronie internetowej .

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