RecruitingNot ApplicableNCT07510893

Augmented Feedback Effects on Shoulder Rotator Performance

Immediate and Retention Effects of Augmented Feedback on Isometric Peak Force and Rate of Force Development of Shoulder Rotators


Sponsor

Elif Turgut

Enrollment

20 participants

Start Date

Mar 1, 2026

Study Type

INTERVENTIONAL

Conditions

Summary

The existing literature demonstrates that motor learning strategies are effective in enhancing sports performance. One of these strategies, augmented feedback, is widely used in athletic training to help athletes achieve their goals more effectively, support the learning process, and motivate improvements in performance. Although studies in the literature have demonstrated the positive effects of augmented feedback provided during training on performance, no study has been found that examines the acute effects of such feedback on peak force and rate of force development during isometric training of the shoulder internal and external rotator muscles. The aim of this study is to investigate the acute effects of outcome feedback on isometric peak force and rate of force development during isometric training of the shoulder internal and external rotator muscles, as well as the short-term retention of these effects. It is expected that augmented feedback on isometric peak force and rate of force development, provided during isometric training of the shoulder internal and external rotator muscles, will have both acute and short-term retention effects on strength parameters. Healthy and physically active individuals will participate in isometric strength training targeting the dominant side shoulder internal and external rotator muscles across two separate sessions. Within a randomized crossover design, all participants will perform the isometric training program under two different conditions: with augmented feedback and without augmented feedback. The order of the conditions will be determined using a computer-based randomization program.To minimize potential learning effects, a washout period of 5-7 days will be provided between the two training conditions. Testing and training protocols will be conducted using an isometric dynamometer (ForceFrame, VALD Performance, Australia). The reported intraclass correlation coefficients (ICC) of the ForceFrame dynamometer for shoulder strength measurements range between 0.85 and 0.91, indicating good to excellent test-retest reliability. All testing and training procedures will be performed in accordance with the standard testing positions recommended by the manufacturer.


Eligibility

Min Age: 18 YearsMax Age: 30 Years

Inclusion Criteria4

  • Healthy individuals aged between 18 and 30 years,
  • Body Mass Index (BMI) below 30 kg/m²,
  • An activity level of 5 or higher according to the Tegner Activity Scale,
  • Full active range of motion (ROM) in shoulder flexion, abduction, internal, and external rotation.

Exclusion Criteria5

  • Resence of current pain complaints,
  • Provocation of symptoms during at least one of the specific shoulder clinical tests (Neer Test, Hawkins-Kennedy Test, Jobe Test, Resisted External Rotation Test, and Apprehension Test),
  • History of any upper extremity injury, pain, or surgical intervention within the past 12 months,
  • Presence or history of hypertension, cardiovascular diseases, peripheral vascular diseases, deep vein thrombosis, neurological disorders, systemic inflammation, diabetes, cancer, or obesity,
  • Unwillingness to participate in the study.

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Interventions

OTHERAugmented Feedback

Augmented feedback is a term used to describe information about the performance of a skill provided from an external source. When this information is presented quantitatively, it is referred to as Knowledge of results (e.g., movement velocity, jump height, or peak force). Knowledge of results, which is a critical component of performance improvement, is delivered to athletes through professional coaching staff as well as advanced technological applications. Accordingly, research in this area has focused on the pivotal role of real-time data flow and feedback in optimizing performance.


Locations(1)

Hacettepe University, Faculty of Physical Therapy and Rehabilitation,

Ankara, Sıhhıye, Turkey (Türkiye)

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NCT07510893


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