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Studying the effect of reactive neuromuscular training on landing kinematics, balance, and performance of football players with anterior cruciate ligament reconstruction

Comparison of the effects of reactive neuromuscular training and traditional neuromuscular training on landing kinematics, balance, and performance of football players with anterior cruciate ligament reconstruction.

Status
Active, not recruiting
Phases
Unknown
Study type
Interventional
Source
IRCT
Registry ID
IRCT20251209068260N1
Enrollment
30
Registered
2026-01-27
Start date
2026-02-03
Completion date
Unknown
Last updated
2026-02-02

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

Conditions

Football players with anterior cruciate ligament reconstruction.

Interventions

Intervention 1: Intervention group: Theraband and mini-loop elastics will be used to perform reactive neuromuscular exercises
in this case, the trainer will increase the individual's incorrect movement pattern by using elastic bands and with a low load, and the exerciser will be asked not to allow the trainer to aggravate hi

Sponsors

Tehran University
Lead Sponsor

Eligibility

Sex/Gender
Male
Age
22 Years to 32 Years

Inclusion criteria

Inclusion criteria: The age of the sample is between 22 and 32 years old. The subjects are football players with at least 3 years of professional sports experience and they train on three sessions Male players with anterior cruciate ligament training (right) People after 4 months after cruciate ligament surgery BMI between 18 and 25 Reconstructive surgery on the anterior cruciate ligament with hamstring autograft Full range of motion of knee flexion and extension.

Exclusion criteria

Exclusion criteria: Injury to the opposite knee Fractures or surgery of lower limb joints and postural disorders of the lower limbs, spine, and feet History of balance or vestibular system disorders.

Design outcomes

Primary

MeasureTime frame
Angles of the knee and hip joints in the sagittal plane at initial contact and maximum knee flexion. Timepoint: Before and after the intervention. Method of measurement: In order to investigate the kinematics of the knee, leg and thigh, the Vaikan motion analysis device with Bonita 10C cameras made in England with a sampling rate of 240 Hz will be used in the sports biomechanics laboratory of the Faculty of Sports and Health Sciences of Tehran University.;Knee and hip joint angles in the frontal plane at initial contact and maximum knee flexion. Timepoint: Before and after the intervention. Method of measurement: In order to investigate the kinematics of the knee, leg and thigh, the Vaikan motion analysis device with Bonita 10C cameras made in England with a sampling rate of 240 Hz will be used in the sports biomechanics laboratory of the Faculty of Sports and Health Sciences of Tehran University.;Angles of the knee and hip joints in the horizontal plane at initial contact and maximum knee flexion. Timepoint: Before and after the intervention. Method of measurement: In order to investigate the kinematics of the knee, leg and thigh, the Vaikan motion analysis device with Bonita 10C cameras made in England with a sampling rate of 240 Hz will be used in the sports biomechanics laboratory of the Faculty of Sports and Health Sciences of Tehran University.;Static and dynamic balance (anterior-posterior stability index, internal-external stability index, overall balance index). Timepoint: Before and after the intervention. Method of measurement: The Biodex balance test is used at stability level 12 as static balance, and scores obtained at stability level 4 are used for dynamic balance.;Knee function. Timepoint: Before and after the intervention. Method of measurement: The hopping test will be used to measure performance.

Countries

Iran (Islamic Republic of)

Contacts

Public ContactMohsen Naderi

Tehran University

mohsennaderi5755@gmail.com+98 21 6695 5276

Outcome results

None listed

Source: IRCT (via WHO ICTRP) · Data processed: Feb 7, 2026