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Shoulder Kinematics and Muscle Activation in Sport Climbers With Shoulder Pain

Shoulder Kinematics and Muscle Activation in Sport Climbers With Shoulder Pain

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT05139654
Enrollment
30
Registered
2021-12-01
Start date
2021-11-10
Completion date
2022-06-10
Last updated
2022-09-09

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

Conditions

Shoulder Impingement Syndrome, Shoulder Pain

Keywords

Sport climbing, Shoulder kinematics, Electromyography, Shoulder pain

Brief summary

Sport climbing has recently become a highly popular sport and was included in the Summer Olympic Games 2021. Shoulder injury accounts for 15 to 20 percent of all sport climbing injuries, and it is the third most common problems, only surpassed by wrist and hand injuries. Sport climbing involves both open and closed chain movements of upper limbs. These prolonged and repetitive movements on vertical or overhanging terrain may lead to overuse and fatigue, which result in injuries. Sport climbing consists of multiple movement elements. Pull up with small holds is a basic movement in sport climbing, and activates many shoulder muscles, including trapezius, serratus anterior, latissimus dorsi. Studies related to sport climbing have focused on observing difference between sport climbers and non-sport climbers. Altered posture, increased scapulohumeral rhythm during arm elevation, and decreased shoulder angle during one-arm hanging have been observed in sport climbers. However, little studies have investigated whether climbers with shoulder injuries demonstrate different shoulder kinematics and muscle activation during tasks related to sport climbing. Therefore, the purpose of this study is to investigate the shoulder kinematics and muscle activation during pull-up with small holds in sport climbers with and without shoulder pain. Methods. Thirty sport climbers with shoulder pain and 30 healthy control subjects matched with gender, age, dominant hand and experience will be recruited in this study. All subjects will undertake physical examinations such as shoulder range of motion (ROM). Shoulder kinematics and muscle activation will be collected during arm elevation in the scapular plane and pull-up with gym-bar and 20mm depth small climbing holds. An electromagnetic tracking system will be used to measure bilateral scapular and humerothoracic kinematics. Surface electromyography (EMG) will be used to record muscle activation of bilateral upper trapezius, lower trapezius, serratus anterior and latissimus dorsi. Demographic data and physical examination will be analyzed by independent t test or Chi-square test. Two-way ANOVA will be used to test differences between groups in kinematics and EMG data at different phases of tasks. If significant interaction effect is found, Post-hoc pairwise comparison with Bonferroni correction will be used. The significant level is set at 0.05.

Interventions

OTHERArm elevation in the scapular plane

Lift the arm up in the scapular plane

OTHERPull up with gymbar

Grasp the gymbar with both hands and pull up as high as the subject can

OTHERPull up with fingerboard

The width of the fingerboar is 20 mm. Pull up with fingers on the fingerboard.

Sponsors

National Yang Ming Chiao Tung University
Lead SponsorOTHER

Study design

Observational model
CASE_CONTROL
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
ALL
Age
20 Years to 40 Years
Healthy volunteers
Yes

Inclusion criteria

of Patients with Shoulder Pain: 1. Ages ranges from 20-40 years old 2. At least one year of experience of sport climbing 3. Sport Climbing frequency ≥ 6 hours per week in the last one month 4. Shoulder pain ≥ 1 month 5. Minimum of 3/10 on the numerical rating scale (NRS) in the last one month Inclusion Criteria of Healthy Subjects in the control group: 1. Ages ranges from 20-40 years old 2. Gender, age, dominant hand and experience matching to shoulder pain climbers group 3. At least one year of experience of sport climbing 4. Sport Climbing at least 6 hours per week in the last one month 5. No history of shoulder pain in the last six months

Exclusion criteria

of Patients with Shoulder Pain and All Healthy Subjects 1. History of upper limb surgery or fracture 2. History of shoulder dislocation 3. History of neck pain, back pain, or elbow injuries in the last one year 4. Wrist or finger pain during sport climbing \> 3/10 on the numerical rating scale (NRS) 5. Shoulder pain during pull-up \> shoulder pain during sport climbing 6. Intensive exercise within 12 hours or any delay onset muscle soreness 7. Systemic autoimmune disease 8. Cancer 9. Pregnancy

Design outcomes

Primary

MeasureTime frameDescription
Shoulder kinematics during arm elevationImmediately during the experimentScapular kinematics, including anterior/posterior tilt, upward/downward rotation, and internal/external rotation in scapular plane elevation at 30°, 60°, 90°, and 120°, and will be described with degree (°).
Shoulder kinematics during pull-up with gym-barImmediately during the experimentScapular kinematics, including anterior/posterior tilt, upward/downward rotation, and internal/external rotation in pull-up, and will be described with degree (°).
Shoulder kinematics during pull-up with finger boardImmediately during the experimentScapular kinematics, including anterior/posterior tilt, upward/downward rotation, and internal/external rotation in pull-up, and will be described with degree (°).
Scapular muscles activation during arm elevationImmediately during the experimentThe root mean square of electromyography (EMG) data of the upper trapezius, lower trapezius, serratus anterior, and latissimus dorsi will be normalized by the maximum voluntary contraction amplitude (percentage of maximal voluntary contraction, %) and calculated over three 30° increments of motion during arm elevation from 30° to 120°, including 30° - 60°, 60° - 90°, and 90° - 120°.
Scapular muscles activation during pull-up with gym-barImmediately during the experimentThe root mean square of electromyography (EMG) data of the upper trapezius, lower trapezius, serratus anterior, and latissimus dorsi will be normalized by the maximum voluntary contraction amplitude (percentage of maximal voluntary contraction, %).
Scapular muscles activation during pull-up with finger boardImmediately during the experimentThe root mean square of electromyography (EMG) data of the upper trapezius, lower trapezius, serratus anterior, and latissimus dorsi will be normalized by the maximum voluntary contraction amplitude (percentage of maximal voluntary contraction, %).

Countries

Taiwan

Outcome results

None listed

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