Yusuf Şinasi Kirmaci
Gaziantep, 27090, Turkey (Türkiye)
NCT Number: NCT04972305
The aim of this study is to determine the effects of personal ergonomic adaptations of the bicycle on the bicycle performance parameters, together with the exercise program training created to prevent biomechanical problems that cause injuries in recreational cyclist.
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Notify Me18 year–45 year
Male
Interventional
Not applicable
Gaziantep, 27090, Turkey (Türkiye)
Considering the pandemic period we are living in, people are much more interested in health, sports and nature than they used to be. From this perspective, the interest in cycling, which can accommodate all of these features at the same time, is rapidly increasing. Individuals take bicycle rides in nature in their free time and make this activity a way of life. However, as in every physical activity, factors such as lack of knowledge in cycling, choosing the wrong bike and material, and not knowing the important basics of sports cause non-traumatic injuries in cyclists.
While transitioning from the sedentary life brought by the age of technology to the activity, the musculoskeletal systems of individuals are caught unprepared and even exposed to various traumas and biomechanical problems. Because the looping motion of the lower extremities while cycling occurs primarily in the sagittal plane, power imbalances can develop that affect a cyclist's susceptibility to injury elsewhere along the kinetic chain. The most common areas of overuse injury in cycling are the knee, lumbar spine, cervical spine, hip, Achilles tendon, wrists, and forearm.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
12 week exercise and fit bike
Fit bike
Time frame: Change from Baseline at 12th weeks and 6th month
Body fat percentage will be determined by skinfold measurement
Time frame: Change from Baseline at 12th weeks and 6th month
It will be measured with "1 max rep" (1RM).
Time frame: Change from Baseline at 12th weeks and 6th month
It will be evaluated with sit-reach test and modified ober test.
Time frame: Change from Baseline at 12th weeks and 6th month
It will be evaluated by shuttle run.
Time frame: Change from Baseline at 12th weeks and 6th month
It is obtained by calculating the force applied while pedaling for 20 minutes.
Time frame: Change from Baseline at 12th weeks and 6th month
Average heart rate taken while pedaling for 20 minutes.
Time frame: Change from Baseline at 12th weeks and 6th month
The time it takes to complete 10 miles in the fastest possible time is counted.
Time frame: Change from Baseline at 12th weeks and 6th month
It is the estimation of the maximum effort that can be sustained for 3 minutes.
Time frame: Change from Baseline at 12th weeks and 6th month
It will be measured with myoton pro.
Time frame: Change from Baseline at 12th weeks and 6th month
It will be measured with Y balance test.
Time frame: Change from Baseline at 12th weeks and 6th month
It will be measured with McGill pain questionnaire
Time frame: Change from Baseline at 12th weeks and 6th month
It will be measured with The Nordic musculoskeletal questionnaire
Hasan Kalyoncu University
Other
The Effect of the Prevention Program Developed for Injuries in Recreational Cyclists on Physical Performance and Physical Fitness Parameters
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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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