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Clinical Trials/NCT05104060
NCT05104060CompletedNot Applicable

The Effects of Manual Therapy and Scapular Exercise for the Pectoralis Minor in Individuals With Shoulder Pain

National Yang Ming Chiao Tung University3 sites in 1 country100 target enrollmentStarted: November 17, 2021Last updated:
Conditions

Trial Snapshot

Phase
Not Applicable
Status
Completed
Enrollment
100
Locations
3
Primary Endpoint
Round shoulder posture test I

Study Overview

Brief Summary

Shoulder pain is the third common problem, after problems of spine. Abnormal scapular kinematics, so called scapular dyskinesis, is believed to be associated with shoulder pain. Studies showed that individuals with shoulder problems demonstrate less upward rotation, posterior tilt and external rotation during shoulder movement. The shortness of the pectoralis minor (PM) is one of the factors leading to scapular dyskinesis. Short pectoralis minor has been shown to prevent scapula from tilting posterior and rotating externally during shoulder motion. The decreased scapular posterior tilt and external rotation may decrease subacromial space and result in impingement. However, although many assessment methods have been used to assess PM tightness or shortness, no study has tested the validity of these testing methods. Moreover, although stretching exercises for PM have been shown to increase the PM length, previous studies found that PM stretching exercises did not restore scapular kinematics and did not further decrease pain and improve function. Shoulder pain and discomfort has also been reported during stretching. Therefore, rather than stretching exercise, other types of treatment that can specifically increase the PM length and restore scapular kinematics may be needed. Manual therapy could specifically increase the flexibility of PM, and scapular orientation exercises could improve scapular kinematics. These types of treatment may be better options. However, to our knowledge, no study has investigated whether manual therapy combined with scapular orientation exercises could improve scapular kinematics, pain and function. Therefore, the first part of this study is to investigate which tests for length or tightness of PM can predict the scapular dyskinesis. The second part of the study is to investigate the effects of manual therapy and scapular orientation training on PM length, scapular kinematics, pain, and function in subjects with shoulder pain. In the first part of the study, 67 healthy subjects will be recruited. In the second part, 62 patients with shoulder pain will be recruited and randomized into either a PM treatment group or a control group. While no treatment will be provided for the healthy subjects in the first part, subjects with shoulder pain in the second part will receive 12 sessions of treatment in 4-6weeks, with 30-40 minutes per session. Patients in the control group will receive general shoulder strengthening exercise, while patients in the PM treatment group will have additional manual therapy and scapular orientation exercise. The measures include tests of PM length, scapular kinematics in the first and second parts, and pain and shoulder disability were also additionally assessed in the second part.

Study Design

Study Type
Interventional
Allocation
Randomized
Intervention Model
Parallel
Primary Purpose
Treatment
Masking
Single (Participant)

Eligibility Criteria

Ages
20 Years to 60 Years (Adult)
Sex
All
Accepts Healthy Volunteers
Yes

Inclusion Criteria

  • Not provided

Exclusion Criteria

  • Adhesive capsulitis
  • Pathologies of cervical origin
  • History of acute trauma, previous surgery, or fracture in the affected shoulder
  • Corticoid injection in the last 3 months
  • Platelet Rich Plasma injection in the last 1 year
  • Other manual and exercise physical therapy in the last 6 weeks
  • Anyone suffering from neurological diseases and nerve damage
  • Vulnerable subjects

Outcomes

Primary Outcomes

Round shoulder posture test I

Time Frame: Change from baseline round shoulder posture test I after 12 times intervention up to 6 weeks

Measured the distance between the posterior border of the acromion and the table surface.

Pectoralis minor tightness test II

Time Frame: Change from baseline pectoralis minor tightness test II after 12 times intervention up to 6 weeks

Subjects will forward flexion 30 degrees,and pressed the coracoid process.If physical therapist felt tightness for positive.

Pectoralis minor length

Time Frame: Change from baseline pectoralis minor length after 12 times intervention up to 6 weeks

Measurement of pectoralis minor length: distance between coracoid process and fourth rib taken with a tape measure on resting position.

Round shoulder posture test II

Time Frame: Change from baseline round shoulder posture test II after 12 times intervention up to 6 weeks

Measured the vertical distance between the posterior acromion and the treatment bed,then divided by thorax thickness and multiplied by 100.

Scapular kinematics

Time Frame: Change from baseline scapular kinematics after 12 times intervention up to 6 weeks

Scapular kinematics, including anterior/posterior tilt, upward/downward rotation, and internal/external rotation in scapula plan elevation at 30°, 60°, 90°, and 120°, will be calculated and will be described with degree (°).

Pectoralis minor index

Time Frame: Change from baseline pectoralis minor index after 12 times intervention up to 6 weeks

The pectoralis minor length was divided by the participant's height and multiplied by 100 to calculate the pectoralis minor index

Pectoralis minor tightness test I

Time Frame: Change from baseline pectoralis minor tightness test I after 12 times intervention up to 6 weeks

Pressed the coracoid process of the subjects to make the scapula flat on the treatment bed.If flat the bed for negative,unable to flat the bed for positive.

Secondary Outcomes

  • Patient-Specific Functional Scale (PSFS)(Change from baseline PSFS after 12 times intervention up to 6 weeks)
  • Visual analog scale(Change from baseline visual analog scale after 12 times intervention up to 6 weeks)
  • Disabilities of the Arm, Shoulder, and Hand (DASH)(Change from baseline DASH after 12 times intervention up to 6 weeks)
  • Global rating of change (GRC)(After 12 times intervention up to 6 weeks)

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

Yin-Liang Lin

Assistant Professor

National Yang Ming Chiao Tung University

Study Sites (3)

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