Sport Injury Clinical Trial
— SDLEOfficial title:
Development of a System Dynamics Model for the Prediction of Acute Non-contact Lower Extremity Injuries in Team Sports
NCT number | NCT05425303 |
Other study ID # | 12126 |
Secondary ID | |
Status | Active, not recruiting |
Phase | |
First received | |
Last updated | |
Start date | July 22, 2022 |
Est. completion date | June 2024 |
Verified date | November 2023 |
Source | University of Patras |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Observational |
Despite the extensive research on prevention and prediction strategies, hamstrings strains injury (HSI) persists at a high rate in team sports and specifically in football. An initial injury increases the risk for re-injury and affects performance, whereas the financial cost for athletes and teams is crucial due to the time needed for appropriate rehabilitation. For that reason, it is critical to formulate better strategies in order to predict and prevent HSI. This study aims to develop a system dynamics (SD) model to evaluate HSI risk. First, a literature review will be carried out on the current approaches and identification of intrinsic and extrinsic risk factors of hamstrings strain injuries. Second, co-creation workshops based on the method of Group Modeling Building (GMB) will be applied to develop the SD for the HSI model. This co-creation process will involve stakeholders such as sports physiotherapists, doctors, and sports scientists. After creating the SD for HSI model, a one-year prospective cohort study will be performed to validate the model with real data and evaluate the ability of the model to predict HSIs. Sports teams will be invited to take part in the validation of the model. Multiple biomechanical parameters and other personal characteristics will be collected. Then, athletes will be monitored for the occurrence of injury and their exposure to injury risk during training and games. The factors' non-linear interaction will be assessed with the statistical method of structural equation modeling and factor analysis. In this way, the factors' interactions extracted for the qualitative phase of the study (group modeling building process) will be quantitatively evaluated. Validating the model with real data will provide a computer simulation platform to test plausible strategies for preventing hamstrings strain injuries prior to implementation and optimize intervention programs.
Status | Active, not recruiting |
Enrollment | 99 |
Est. completion date | June 2024 |
Est. primary completion date | July 30, 2023 |
Accepts healthy volunteers | Accepts Healthy Volunteers |
Gender | Male |
Age group | 17 Years to 40 Years |
Eligibility | Inclusion Criteria: - Male professional football and handball teams. - Healthy team sports athletes fully participating in the team's activities. - The athlete should be free of injury at the time of measurements or fully rehabilitated from a previous injury. Exclusion Criteria: - Injured athlete at the time of pre-season measurements. |
Country | Name | City | State |
---|---|---|---|
Greece | University of Patras | Patra | Rio |
Lead Sponsor | Collaborator |
---|---|
University of Patras |
Greece,
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* Note: There are 17 references in all — Click here to view all references
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Number of Acute Hamstring Strain Injuries of the participants | An acute hamstring strain injury, resulting from a specific event and producing at least 24 hours of time loss for training or game. | up to 32 weeks | |
Primary | Demographic, previous injuries, and sports characteristics | Through questionnaire will be collected data such as age, sports, playing position, number of years in sports, level of competition, training volume of the previous season, Previous injuries, and details about previous injuries such as severity, time loss, | Pre season examination | |
Primary | BMI | Weight (kg) and Height (cm) data will be collected to report BMI in kg/m^2 | Pre season examination | |
Primary | Anthropocentric variables | Leg length will be measured (cm) using a measuring tape from the anterior superior iliac spine (ASIS) to the medial malleolus. The tibia length will be measured (cm) using a measuring tape to measure the distance between the lateral knee joint line to the distal aspect of the lateral malleolus minus. | Pre season examination | |
Primary | Lower extremity Flexibility and Range of motion measurement | The test that will be used to assess lower extremity flexibility and range of motion includes the passive knee extension test (Hamstrings flexibility), Modified Thomas test (Hip extension), Hip internal/external rotation in sitting position, and Weight bearing lung test (Ankle dorsiflexion). A goniometer and the bubble inclinometer will be used. All measurements will be expressed in degrees | Pre season examination | |
Primary | Participants' core muscle endurance | For the examination of core muscle, endurance will be used the Prone Bridging Test for the assessment of the Abdominal muscle endurance, the Side Bridging Test for the assessment of lateral abdominal endurance, and the Biering-Sorensen test for the assessment of Back muscle endurance. The total time that the participant can hold the proper position for each specific test will be recorded. | Pre season examination | |
Primary | Single leg hamstring bridge (SLHB) | The hamstring endurance will be measured using the Single leg hamstring bridge (SLHB) test. The total number of repetition for each leg will be measured. | Pre season examination | |
Primary | Lower extremity strength measurements | Abductor, hamstrings, and quadriceps strength examination using a handheld dynamometer (mictofet 2, Hoggan scientific) | Pre season examination | |
Primary | Single-leg triple hop for distance test | We will record asymmetries in distance between the dominant and non-dominant leg. | Pre season examination | |
Secondary | Number of Acute lower extremity injuries of the participants | Acute lower extremity injuries resulting from a specific event and producing at least 24 hours of time loss for training or game. | up to 32 weeks |
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