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Comparison of Shoulder Range of Motion and Isometric Strength Before and After a Single Badminton Match in Young Elite Badminton Players of Rawalpindi.

Comparison of Shoulder Range of Motion and Isometric Strength Before and After a Single Badminton Match in Young Elite Badminton Players of Rawalpindi.

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT06072469
Enrollment
56
Registered
2023-10-10
Start date
2023-09-04
Completion date
2024-02-26
Last updated
2023-10-10

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

Conditions

Athletes

Keywords

ROM, Isometric Strength, Single Match

Brief summary

The goal of this study is to compare the result of shoulder ranges of motion and isometric strength before and after a single badminton match in young elite badminton players of Rawalpindi. This is an observational study. The main questions it aims to answer is; Does the shoulder ranges of motion and isometric strength increases or decreases before and after a single badminton match. ROM and Isometric strength will be performed on the participants.

Detailed description

Badminton is a worldwide popular racquet sport. In badminton, the player uses a variety of multidirectional movement patterns quickly in succession to execute defensive/counterattacking retrievals or construct offensive plays. Although badminton is considered a relatively safe sport, shoulder injuries are very common among both recreational and competitive players. Badminton injuries are most common of all sports injuries. To meet the functional requirements of their particular activity, overhead athletes need to maintain a careful balance of shoulder mobility and stability. It has been noted that overhead athletes have altered shoulder mobility, which is assumed to arise from adaptive structural alterations to the joint brought on by the high physiological demands of overhead activity. The scapulothoracic articulation and the glenohumeral joint make up the shoulder complex, which divides the range of motion and increases it. This composition places the glenoid beneath the humeral head to support some of the arm's weight, allowing the implicated muscles to perform in the most productive portion of their length-tension curve. In the scientific literature, studies on injuries and trauma related to badminton predominate however, some authors report that there are few scientific studies on the relationship between non-serious injuries such as overuse injuries and the history of shoulder pain. Shoulder pain is a very common musculoskeletal complaint in recreational, national, and international competitive players. Shoulder instability encompasses a spectrum of diseases ranging from subluxation to frank dislocation. While a lot of instability occurrences happen after trauma, instability can also result through recurrent attenuation of the capsuloligamentous structures near the shoulder. During subluxation, the humeral head translates beyond normal physiological limits, but maintains contact with the glenoid, often resulting in translation to, but not beyond the glenoid rim. While subluxation is often overlooked, it can be problematic, especially in overhead athletes. Shoulder girdle motion is complex and involves synchronous movement of the scapula, clavicle, and humerus. Two-dimensional (2D and more recently three dimensional (3D) measurement techniques have been used to describe this motion. As the arm is raised, the generally accepted pattern of motion at the shoulder is as follows; the scapula upwardly rotates, posteriorly tilts, and externally rotates; the clavicle elevates and retracts; and the humerus elevates and externally rotates. This coordinated motion, which is reliant on capsulo-ligamentous structures and neuromuscular control, is crucial for the shoulder girdle's correct operation. There is currently insufficient research on the causes of shoulder pain in badminton players, as far as we could find in our search. Increased age, shorter height, hard training intensity, and more training hours per week, were found to be risk factors for shoulder pain in studies on other overhead motion sports, such as baseball. There is very limited research purely investigating the short-term effect of overhead play such as single badminton matches. Hence, this study aims to analyze the effects of a single badminton match on young elite players of Rawalpindi and how it affects day-to-day shoulder movement in players.

Interventions

None listed

Sponsors

Yusra Medical and Dental College
Lead SponsorOTHER

Study design

Observational model
OTHER
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
ALL
Age
16 Years to 30 Years
Healthy volunteers
Yes

Inclusion criteria

* No prior history of shoulder injury or immobility. * Only elite badminton players * Players between the age of 16-30 years only. * Both male and female players.

Exclusion criteria

* Participants that have any prior surgical history of the upper limb. * Participants who play other sports along with badminton. * Players having any nerve injury or brachial plexus injury. * Individuals who have systemic joint disease.

Design outcomes

Primary

MeasureTime frameDescription
Shoulder Range of Motion1 weekShoulder range of motion (ROM) refers to the ability of the shoulder joint to move through its full and natural range of movement. A goniometer is one of the widely used instruments for measuring the ranges of motion. The angle obtained by lining up the goniometer's arms with bony landmarks accurately depicts the angle formed by the proximal and distal bones that make up the joint. The normal range for shoulder internal rotation is: 0-70 degrees, external rotation: 0-90 degrees , abduction: 0-180 degrees , adduction: 180-0 degrees , flexion:0-180 degrees , extension: 0-60 degrees.
Shoulder Isometric Strength1 weekManual muscle testing is used for testing the muscle strength. There are total 6 grades of manual muscle testing; 0-5. 0 indicates no visible contraction, 1 indicates visible palpation without motion, 2 indicates full range of motion with gravity eliminated, 3 indicates full range of motion against gravity, 4 indicates full range of motion against gravity and moderate resistance, 5 indicates full range of motion against gravity with maximal resistance.

Countries

Pakistan

Contacts

Primary ContactMaham Nasir, MSOMPT
mahamnasir7@gmail.com03065091652

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026