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NCT Number: NCT07577011

Impact of Abdominal Muscle-Induced Fatigue on Hip Muscle Performance and Functional Balance in Healthy Adults

The study is based on the theory that the abdominal muscles contribute to transverse and frontal plane torques that complement hip abductor torque, as both muscle groups act in the same counterclockwise direction within the proposed biomechanical model. Through their role in trunk and pelvic stabilization, the abdominal muscles help optimize the mechanical environment in which the hip abductors operate, potentially enhancing their effective torque production during functional tasks.

This shared torque direction suggests a functional interdependence between core and hip musculature, whereby deficits or fatigue in the abdominal muscles may compromise hip abductor performance and load distribution at the hip joint. Clinically, this relationship supports the integration of abdominal muscle assessment and targeted core rehabilitation into the evaluation and management of hip-related injuries, with the potential to improve movement control, reduce injury risk, and enhance treatment outcomes. A quasi-experimental, within-subject study conducted at the Isokinetic Laboratory, Faculty of Physical Therapy, Cairo University, to examine the effect of abdominal muscle-induced fatigue on hip muscle strength, endurance, and functional balance. Seventy healthy male college students aged 20-25 years will be assessed before and after an isokinetic abdominal fatigue protocol using an isokinetic dynamometer. Outcome measures include isokinetic hip muscle strength and endurance, as well as balance assessed by the Single Leg Stance Test and Star Excursion Balance Test. The study procedure consists of participant preparation, baseline assessment, abdominal muscle fatigue induction, and immediate post-fatigue reassessment. Sample size was determined using G*Power to ensure adequate statistical power, and data will be analyzed using one-way within-subject MANOVA with significance set at p < 0.05. This study holds critical importance for advancing both biomechanical theory and clinical practice by directly investigating a key, yet under-quantified, link in the human kinetic chain: the specific impact of abdominal muscle fatigue on hip muscle performance and functional balance. By employing instrumented (Isokinetic dynamometer, star excursion balance test and single leg stance test)., pre- and post-fatigue measurements in a healthy non-athletic population, it will generate novel empirical evidence clarifying how core endurance directly influences proximal stability and distal function. Clinically, the outcomes promise to transform assessment and rehabilitation paradigms-shifting focus from isolated hip treatment toward integrated core-hip strategies-ultimately informing more effective injury prevention programs, optimizing movement efficiency, and enhancing rehabilitation outcomes for both athletic and general populations.

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Key information

Age range

20 year–25 year

Sex eligibility

All sexes

Study type

Observational

Primary location

Degla Palms

Giza, Giza Governorate, 12534, Egypt

Location contact

Ahmed Samir Abdel Latif, MSc in Biomechanics

CONTACT

[email protected]

01222832888

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Healthy colleague male students aged 20-25 years (Cerda et al., 2018).
  • No history of low back, hip, knee or pelvic surgery in past year (Hietamo et al., 2021).
  • Physically able to perform isokinetic contractions against isokinetic dynamometer (Babiloni et al., 2025).
  • Body mass index (BMI) from 18 to 25 (Milanese et al., 2025).
  • Abdominal and Hip manual muscle test of 4 or above (Ciesla et al.,2011).

Exclusion criteria

  • Current musculoskeletal pain in trunk, hip, or lower limb (Hietamo et al., 2021).
  • Neurological disorders affecting balance (e.g vertebra basilar insufficiency) or muscle performance (Pongmala et al., 2024).
  • Recent participation (48-72 h) in strenuous trunk/hip exercise that might confound fatigue measures (Foucher et al., 2021).
  • Participation in athletic activities (Elliott et al., 2021).

Treatment and study plan

Isokinetic Dynamometer for fatiguing abdominal muscles and assessing hip Muscle Performance, and balance assessment using star excursion test and single leg balance test

Other

To assess physical performance, this study utilizes three specialized tools to measure strength, endurance, and balance. The isokinetic dynamometer serves as the clinical "gold standard" for quantifying muscle performance, providing highly standardized and sensitive data to induce abdominal muscle fatigue and evaluate the strength and endurance of the hip musculature. For balance assessment, the study uses the Star Excursion Balance Test (SEBT) to measure dynamic postural control; by recording the maximum distance a participant can reach while standing on one leg, it identifies sensorimotor deficits and provides a reliable index of stability. Complementing this is the Single Leg Stance (SLS) test, a validated, straightforward method for evaluating static balance by measuring the duration a participant can maintain a barefoot, one-legged position. Together, these tools provide a comprehensive evaluation of both strength-based fatigue and multi-directional stability.

Primary outcomes

  1. Hip Abductors Muscle Strength

    Time frame: One week

    Assess hip Abductor muscle strength using Isokinetic Dynamometer after fatiguing the abdominal muscles Unite: N.m

  2. Hip Extensor Muscle Strength

    Time frame: One week

    Assess hip Extensor muscle strength using Isokinetic Dynamometer after fatiguing the abdominal muscles Unite: N.m

  3. Hip Flexor Muscle Strength

    Time frame: One Week

    Assess hip Abductor muscle strength using Isokinetic Dynamometer after fatiguing the abdominal muscles Unite: N.m

  4. Hip Adductor Muscle Strength

    Time frame: One Week

    Assess hip Abductor muscle strength using Isokinetic Dynamometer after fatiguing the abdominal muscles Unite: N.m

Secondary outcomes

  1. Hip Abductor Endurance Test

    Time frame: One Week

    Assess hip Abductor muscle endurance using Isokinetic Dynamometer after fatiguing the abdominal muscles Measured by Fatigue Index

  2. Hip Extensor Endurance Testing

    Time frame: One Week

    Assess hip Extensor muscle endurance using Isokinetic Dynamometer after fatiguing the abdominal muscles Measured by Fatigue Index

  3. Hip Flexor Endurance Testing

    Time frame: One Week

    Assess hip Flexor muscle endurance using Isokinetic Dynamometer after fatiguing the abdominal muscles Measured by Fatigue Index

  4. Hip Adductor Endurance Testing

    Time frame: One Week

    Assess hip Adductor muscle endurance using Isokinetic Dynamometer after fatiguing the abdominal muscles Measured by Fatigue Index

  5. Balance Testing Using Star Excursion test

    Time frame: One week

    Balance testing after abdominal muscle fatigue using star excursion test Unite: Seconds

  6. Balance Testing Using Single Leg Stance Test

    Time frame: One Week

    Balance testing after abdominal muscle fatigue using Single Leg Stance Test Unite: Seconds

Study contacts

Contact information is provided by the study sponsor or research team.

Ahmed Samir Abdel Latif, MSc in Biomechanics

CONTACT

[email protected]

01222832888

Sponsors and collaborators

Lead sponsor

Cairo University

Other

Registry information

Important dates

Study start
2026
Primary completion
2026
Study completion
2027
First posted
May 8, 2026
Registry last updated
May 8, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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