Effectiveness of Supervised Motor Control Exercises on Rotator Cuff Tendinopathies

August 21, 2018 updated by: Laval University

Effectiveness of the Upper Extremity Neuromuscular Training Program (UpEx-NTP) on Shoulder Function of People With Rotator Cuff Tendinopathies: A Pilot Randomized Control Trial

The shoulder is the most mobile joint in the body but still has the responsibility of ensuring a strong stability of our upper limbs during daily activities. The shoulder joint therefore requires a significant level of neuromuscular control at all times. The shoulder heavily relies on 4 key stabilizing muscles, known as the rotator cuff complex (RC). A tendinopathy of the RC may cause pain, significant muscle weakness, and a decrease in motor control of the shoulder during functional activities as well as work tasks. Individuals who have an RC tendinopathy often have neuromuscular and proprioceptive deficits. The objectives of this study are to evaluate the effectiveness of a brand new group strength and motor control exercise program for the upper extremities and to compare the effectiveness of this program to usual one-on-one physiotherapy care (such as manual therapy, motion exercises, strengthening, manual techniques) in reducing shoulder pain and improving overall function. A total of 33 participants suffering from an RC tendinopathy have been recruited; 16 have been assigned to the exercise group (EXP) and 17 participants have received usual physiotherapy care (CTL). Participants in the EXP group partook in the new exercise program 3 times / week for 6 weeks whereas participants in the CTL group received usual physiotherapy treatments twice / week with home exercises for 6 weeks. The results of this study will provide clinicians with a cost-effective and innovative treatment approach to treating shoulder pain. This study will provide active rehabilitation guidelines for reducing shoulder pain and the incidence of recurrence.

Study Overview

Detailed Description

The importance of our shoulders to everyday movement and activity is often not fully appreciated, until we are limited by injury or pain. The shoulder complex allow us to interact with our surroundings while acting as the functional link between our stable trunks and our free moving upper limbs. This is no easy task for highly mobile joints such as the shoulders. A shoulder injury can be functionally devastating to an individual, and can potentially place unnecessary financial stress on our health care system. Shoulder pain is currently among the most common reasons to visit a general practitioner or a physiotherapist today. Shoulder pain is third in prevalence, only to back and neck pain, and nearly two-thirds of adults suffer from shoulder pain at some point during their lives. Despite being an important focus for rehabilitative care, we have yet to confidently establish efficient and potentially cost effective methods for treating shoulder pathologies and pain. Among shoulder disorders, the rotator cuff (RC) muscles are the leading source of shoulder pain. Due to the vast mobility of the shoulder complex, it relies greatly on the stability and control provided by its supportive tissues, notably the rotator cuff muscles; often rendering them highly susceptible to injury. It has been noted that individuals affected by rotator cuff tendinopathies (RCt) often exhibit motor control and shoulder proprioception deficits. As noted by Cools and colleagues, rehabilitative training programs that focus on motor control are greatly needed for rehabilitation as well as to prevent re-injury. Accordingly, rehabilitation interventions should focus on motor (re)learning, targeting a better muscle coordination to reduce motor control impairments, optimize movement control, and improve muscle strength.

Motor control rehabilitation: To address the motor control deficits among individuals affected by an RCt, we have developed a novel, structured, and supervised group exercise-based program focusing on neuromuscular reeducation. It is well documented in the scientific literature that motor control and proprioception exercises are crucial for healing among this population. However, the effectiveness of a group delivery method remains unknown. It is presently unclear how a group exercise program compares to one-on-one physiotherapy care for shoulder dysfunctions. The developed group program allows patients to individually progress their exercises based on their symptoms, while being guided and corrected by the supervising physiotherapist. This model allows several patients to access physiotherapy services simultaneously, while remaining cost and resource effective for the clinics. To appreciate the goal of the proposed exercise program, it is important to understand the physiological and biomechanical factors directly related to shoulder stability.

Underlying mechanisms for shoulder stability: For its joint stability, the glenohumeral (GH) joint heavily depends on muscle strength, adequate synergistic activity between the neuromuscular structures, as well as a strong joint position sense (a subcategory of proprioception). Our ability to detect our limbs in space helps us to interact with our surroundings and contributes to the neuromuscular stability of our joints. A RCt is often associated with a subacromial impingement syndrome, where structures under the acromion become pinched during arm elevation. Such a compression during arm movements can include abnormal shoulder kinematics, as well as RC and scapular muscles performance deficits. This inadequate scapulothoracic muscle control is believed to contribute to a reduction of amplitude in posterior tilting and lateral rotation of the scapula, which causes the acromion to remain in a lower anterolateral position resulting in a dynamic narrowing of the subacromial space. Also, the abnormal muscle control is associated with superior migration of humeral head with respect to the glenoid fossa, which again leads to a dynamic narrowing of the subacromial space. These deficits contribute to the impingement of subacromial structures and often lead to the symptoms associated with an RCt. What makes the investigated approach unique in addressing RC disorders is the resource-effective exercise rehabilitation model the investigators propose; a motor control and strengthening approach well supported in the scientific literature and packaged in a conveniently resource-friendly protocol. This approach maximizes patient autonomy while being matched to a suitable level of physiotherapist supervision. The investigators believe that the Upper Extremity Neuromuscular Training Program (UpEx-NTP) provides a realistic and financially beneficial solution to a costly health care problem.

Research Question: How will a 6-week UpEx-NTP improve shoulder function, pain, and joint position sense (JPS) in individuals affected by a rotator cuff (RC) tendinopathy compared to usual physiotherapy care? The primary objective of this randomized control trial (RTC) is to compare, in terms of symptoms and functional limitations, a group receiving a group-supervised rehabilitation program (UpEx-NTP) centered on strength and motor control training to a group receiving usual one-on-one physiotherapy clinical care in individuals affected by a RC tendinopathy of the shoulder. It is hypothesized that both the UpEx-NTP (Exp) and usual physiotherapy care (Ctl) groups will equally demonstrate statistically (p-value < 0.05) and clinically (all noted changes above their MCID : DASH questionnaire = 11 points, WORC index = 12 points and the Numeric Rating Scale for pain = 2 points) significant changes in shoulder function and pain over a 6-week period in individuals with an RC tendinopathy and will be maintained over time, notably 12-weeks after the intervention.

Study Type

Interventional

Enrollment (Actual)

33

Phase

  • Not Applicable

Contacts and Locations

This section provides the contact details for those conducting the study, and information on where this study is being conducted.

Study Locations

    • Quebec
      • Shannon, Quebec, Canada, G0A 4N1
        • Valcartier Garrison, Physiotherapy Clinic

Participation Criteria

Researchers look for people who fit a certain description, called eligibility criteria. Some examples of these criteria are a person's general health condition or prior treatments.

Eligibility Criteria

Ages Eligible for Study

14 years to 56 years (Adult)

Accepts Healthy Volunteers

No

Genders Eligible for Study

All

Description

Inclusion Criteria:

  1. Reported pain and / or stiffness to shoulder joint, localized tenderness over one of the rotator cuff muscles, reported night pain to the shoulder,
  2. Painful arc of movement during flexion or abduction,
  3. Positive Neer's Test or Kennedy-Hawkins Test,
  4. Pain on resisted external (lateral) rotation, abduction or Empty Can Test,
  5. A combined DASH-CF (Disability of the Arm, Shoulder, and Hand - Canadian French) score (all 3 subsections) greater than 15%, or a WORC-CF (Western Ontario Rotator Cuff Index - Canadian French) score greater than 12%,
  6. Active military members.

N.B. The minimal scores for both the DASH and WORC questionnaires are based on their minimal clinically important difference (MCID). Also, the combination of criteria 2), 3) and 4) have a good diagnostic accuracy with sensitivity and specificity values ≥ 0.74. and Positive Likelihood Ratio = 3.5.

Exclusion Criteria:

  1. Any prior history of shoulder surgery, dislocations, fractures, capsulitis,
  2. Demonstrate any systematic pathologies (such as diabetes, neurological signs or symptoms, complex regional pain syndrome, rheumatoid conditions, or signs and symptoms of vascular compression or vestibular dysfunction),
  3. Not able to commit to the treatment schedule of the project.

Study Plan

This section provides details of the study plan, including how the study is designed and what the study is measuring.

How is the study designed?

Design Details

  • Primary Purpose: Treatment
  • Allocation: Randomized
  • Interventional Model: Parallel Assignment
  • Masking: Single

Arms and Interventions

Participant Group / Arm
Intervention / Treatment
Active Comparator: One-on-one Usual Physiotherapy Care (Control)
The Ctl group (n =16) will receive physiotherapy usual care treatments during a 6-week period. The Ctl group will receive 2 physiotherapy treatments (30 minutes) in the clinic per week (total of 12 treatments) as well as an individualized home exercise program (HEP). Treatments will include range of motion exercises, manual therapy treatments, modalities, and strengthening exercises, as determined by the treating physiotherapist. Specific muscle group exercises and parameters will be documented by the treating physiotherapist on a provided summary sheet.
One-on-one physiotherapy care in a clinical setting.
Experimental: Group Program (UpEx-NTP) (Exp)
The Exp group (n =16) will partake in a 6-week group Upper Extremity Neuromuscular Training Program that consists of postural education, strength exercises, motor control exercises, and upper extremity functional tasks common for active military personnel. The UpEx-NTP program consists of 35-45 minutes of exercise, three times a week for 6 weeks (18 treatments), supervised by a physiotherapist. The program consists of 11 stations with several variations of difficulty of the same exercise per station. The exercises of each station will be performed in order of difficulty. The participant chooses one exercise to perform per station based on their current ability while respecting their pain levels at 3/10 or less.
Neuromuscular and strengthening shoulder exercises in a group setting.

What is the study measuring?

Primary Outcome Measures

Outcome Measure
Measure Description
Time Frame
Change from baseline in self-reported shoulder function at 6 weeks (DASH-CF)
Time Frame: Baseline to 6 weeks
DASH-CF: Disability of Arm, Shoulder, and Hand Questionnaire (Canadian French). Self-reporting questionnaire that assesses the upper limb pain and disability of the participants. The DASH has 30-items over three sub-sections: General, Work, and Sports / Art. You can also interpret the global score (sum of the 3 sections). The scores are then used to calculate a scale score ranging from 0 (no disability) to 100 (most severe disability)-this is called the DASH score.
Baseline to 6 weeks

Secondary Outcome Measures

Outcome Measure
Measure Description
Time Frame
Change from baseline in self-reported shoulder function specific to rotator cuff disorders at 6 months (WORC-CF)
Time Frame: Baseline to 6 weeks
WORC-CF: Western Ontario Rotator Cuff Index Questionnaire (Canadian French). A self-reporting, disease-specific quality of life questionnaire, that will evaluate the change in symptoms of our participants specific to their rotator cuff disorder.
Baseline to 6 weeks
Change from baseline in self-reported shoulder function specific to rotator cuff disorders at 6 weeks (WORC-CF)
Time Frame: Baseline to 12 weeks
WORC-CF: Western Ontario Rotator Cuff Index Questionnaire (Canadian French). A self-reporting, disease-specific quality of life questionnaire, that will evaluate the change in symptoms of our participants specific to their rotator cuff disorder.
Baseline to 12 weeks
Change from baseline in shoulder strength at 6 weeks
Time Frame: Baseline to 6 weeks
Bilateral shoulder strength will be assessed using a hand held dynamometer (HHD) by the evaluator for shoulder abductors and external rotator muscles.
Baseline to 6 weeks
Change from baseline in level of perceived shoulder pain at 6 weeks (NPRS)
Time Frame: Baseline to 6 weeks
Pain levels will be assessed at 6 weeks using the 11-point Numeric Rating Scale (NRS) for pain, where 0 represents "no pain" and 10 represents "worst pain imaginable".
Baseline to 6 weeks
Change from baseline in common military task
Time Frame: Baseline to 6 weeks
Repeated sand bag lift (20kg, 30 repetitions in 3 minutes 30 seconds)
Baseline to 6 weeks
Change from baseline of perceived level of change in symptoms
Time Frame: Baseline to 6 weeks
Global Rating of Change (GROC) questionnaire
Baseline to 6 weeks
Change from baseline of perceived level of change in symptoms
Time Frame: Baseline to 12 weeks
Global Rating of Change (GROC) questionnaire
Baseline to 12 weeks
Change from baseline in self-reported shoulder function at 12 weeks (DASH-CF)
Time Frame: Baseline to 12 weeks
DASH-CF: Disability of Arm, Shoulder, and Hand Questionnaire (Canadian French). Self-reporting questionnaire that assesses the upper limb pain and disability of the participants.
Baseline to 12 weeks

Collaborators and Investigators

This is where you will find people and organizations involved with this study.

Investigators

  • Study Director: Luc J. Hébert, MSc PT, PhD, CIRRIS / IRDPQ, Canadian Armed Forces (CAF)
  • Study Director: Jean-Sébastien Roy, MSc PT, PhD, IRDPQ and CIRRIS

Publications and helpful links

The person responsible for entering information about the study voluntarily provides these publications. These may be about anything related to the study.

Study record dates

These dates track the progress of study record and summary results submissions to ClinicalTrials.gov. Study records and reported results are reviewed by the National Library of Medicine (NLM) to make sure they meet specific quality control standards before being posted on the public website.

Study Major Dates

Study Start

January 1, 2016

Primary Completion (Actual)

August 31, 2017

Study Completion (Actual)

August 31, 2017

Study Registration Dates

First Submitted

July 18, 2016

First Submitted That Met QC Criteria

October 5, 2016

First Posted (Estimate)

October 6, 2016

Study Record Updates

Last Update Posted (Actual)

August 22, 2018

Last Update Submitted That Met QC Criteria

August 21, 2018

Last Verified

August 1, 2018

More Information

Terms related to this study

Plan for Individual participant data (IPD)

Plan to Share Individual Participant Data (IPD)?

No

This information was retrieved directly from the website clinicaltrials.gov without any changes. If you have any requests to change, remove or update your study details, please contact register@clinicaltrials.gov. As soon as a change is implemented on clinicaltrials.gov, this will be updated automatically on our website as well.

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