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Arthroscopic Versus Open Stabilization for Traumatic Shoulder Instability

Arthroscopic Versus Open Stabilization of Traumatic Unidirectional Anterior Shoulder Instability: A Randomized Clinical Trial

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT00251264
Enrollment
194
Registered
2005-11-09
Start date
2001-11-30
Completion date
2013-12-31
Last updated
2015-07-13

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

Conditions

Joint Instability, Shoulder Dislocation

Keywords

Shoulder instability, Traumatic, Anterior, Unidirectional, Open stabilization, Arthroscopic, Bankart repair, Shoulder instability, traumatic, Anterior, unidirectional instability, Bankart

Brief summary

The purpose of this study is to compare arthroscopic and open shoulder stabilization procedures by measuring the disease-specific quality of life outcome in patients with traumatic unidirectional anterior instability of the shoulder at 2 and 5 years. Hypothesis: There is no difference in disease-specific quality of life outcomes in patients with traumatic unidirectional anterior shoulder instability, undergoing an arthroscopic versus an open stabilization procedure.

Detailed description

Shoulder instability most commonly affects people in the late teens to mid thirties, which are the most active years, recreational and vocational. The resulting disability, time lost from work, as well as the effect on an individual's quality of life represent a significant clinical problem for the population and for the healthcare system. The normal anatomy in the unstable shoulder can be restored using arthroscopic or open surgical stabilization techniques. There is considerable controversy surrounding the issue of arthroscopic versus open shoulder stabilization. Advocates of arthroscopic procedures cite the following as advantages: faster recovery, less post operative pain, decreased operative time, improved cosmetics, greater return of shoulder motion and the more accurate identification of intraarticular pathology. Those in favor of an open procedure cite superior long term results showing fewer recurrences with an open stabilization. There are few published reports directly comparing arthroscopic versus open shoulder stabilization repairs. It is also difficult to compare the results of existing studies as they report on heterogeneous patient populations, using a variety of techniques on mixed pathologies, using different outcome scales and variable definitions of success and failure. This study will address this controversial issue by comparing the disease-specific quality of life outcomes in patients with traumatic unidirectional anterior shoulder instability undergoing an arthroscopic versus an open stabilization procedure. This study is designed as a prospective randomized clinical trial with a second prospective analytical cohort study arm. In the randomized arm, patients are assigned to arthroscopic or open surgery based on varied block, computer-generated randomization. The expertise-based randomization method is used in this study, whereby the surgeons perform either arthroscopic or open surgery, but not both. Therefore, a patient is not only randomized to a treatment group, but is also assigned to the expert surgeon for that treatment. Patients in the prospective analytical cohort study arm of the trial undergo shoulder stabilization (open or arthroscopic) with any surgeon and complete the same follow-up visits, however they have not been randomized. The outcomes of the prospective cohort will be compared to those of the randomized arm to determine if the expertise-based randomization method has an effect on patient outcome. Disease-specific quality of life is assessed using the validated Western Ontario Shoulder Instability (WOSI) Index. The index has 21 questions divided into 4 categories: physical symptoms, sport/recreation/work, lifestyle and emotions. This self-administered questionnaire utilizes a 100mm visual analog scale format to provide an overall score out of 100. A lower score reflects a better quality of life.

Interventions

PROCEDUREOpen stabilization

Following examination under anesthesia, a 5cm standard deltopectoral incision is made. Dissection is continued exploiting the deltopectoral internervous plane. The conjoined tendon is retracted medially. The underlying subscapularis tendon is identified and incised horizontally or split vertically in its midsubstance. If required for adequate exposure, the subscapularis split may be extended by incising the inferior component of the subscapularis tendon near its insertion on the lesser tuberosity. The shoulder is entered by performing a T shaped arthrotomy with retractors for full exposure of the glenoid. Shoulder pathology is addressed with suture anchor repair of any capsulolabral detachment (ie.Bankart lesion) and/ or a capsular plication for repair of capsular redundancy.

With the examination under anesthesia completed, the arthroscope is introduced through a standard posterior arthroscopy portal. A diagnostic arthroscopy is performed and the intraarticular pathology identified and documented. Any labral detachment (i.e. Bankart lesion) is repaired using suture anchor fixation and arthroscopic tying techniques. Capsular redundancy is addressed with the use of thermal electrocapsulorrhaphy or arthroscopic suture repair of the redundant capsule. With the repair complete, 40 cc of 0.5% Bupivicaine is introduced into the joint. A sterile dressing is applied over the wounds and the operated shoulder placed in a shoulder immobilizer.

Sponsors

Calgary Regional Health Authority (CRHA)
CollaboratorOTHER_GOV
Calgary Orthopaedic Research and Education Fund
CollaboratorOTHER
Canadian Orthopaedic Foundation
CollaboratorOTHER
University of Calgary
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
SINGLE (Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
14 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Clinical: * Age 14 years or greater * Diagnosis of traumatic anterior shoulder instability, made by meeting all of the following: 1. Radiographic evidence or documented physician assisted reduction of anterior shoulder dislocation following a traumatic injury. 2. Ability to elicit unwanted glenohumeral translation which reproduce symptoms with one of the following tests: anterior apprehension, relocation test, or anterior load and shift test * Radiological: * Closed growth plate on a standardized series of x-rays consisting of a minimum of an anteroposterior view, lateral in the scapular plane and an axillary view.

Exclusion criteria

* Clinical: * Diagnosis of multidirectional instability (MDI) or multidirectional laxity with anteroinferior instability (MDL-AII), made by two or more of: 1. Symptomatic (pain or discomfort) in inferior or posterior direction 2. Ability to elicit unwanted posterior glenohumeral translation that reproduces symptoms with posterior apprehension tests, or posterior load and shift test 3. Positive sulcus sign of 1cm or greater that reproduces patient's clinical symptoms * Previous surgery on the affected shoulder other than diagnostic arthroscopy * Cases involving litigation * Significant tenderness of acromioclavicular/sternoclavicular joints on affected side * Confirmed connective tissue disorder (ie: Ehlers-Danlos, Marfan)

Design outcomes

Primary

MeasureTime frame
Western Ontario Shoulder Instability (WOSI) IndexBaseline, 3, 6, 12, 24 months post-operatively

Secondary

MeasureTime frame
Physical examination: range of motion, strength, stabilityBaseline, 3, 6, 12, 24 months post-operatively
Return to sport or activity, return to workBaseline, 3, 6, 12, 24 months post-operatively
American Shoulder and Elbow Society (ASES) scoreBaseline, 3, 6, 12, 24 months post-operatively
Time to perform each procedureDay of surgery
Economic cost of each procedureDay of surgery
ComplicationsIntra-operatively and up to 2 weeks post-operatively

Countries

Canada

Outcome results

None listed

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