Bony Apprehension Test for Identifying Bone Loss in Patients With Traumatic Anterior Shoulder Instability: A Validation Study

Author:

James Michael1,Kwong Cory A.1,More Kristie D.2,LeBlanc Justin1,Lo Ian K.Y.123,Bois Aaron J.123

Affiliation:

1. Section of Orthopaedic Surgery, Department of Surgery, Cumming School of Medicine, University of Calgary, Calgary, Canada

2. Sport Medicine Centre, University of Calgary, Calgary, Canada

3. McCaig Institute for Bone and Joint Health, University of Calgary, Calgary, Canada

Abstract

Background: The presence of bone loss has important implications for the surgical treatment of patients with recurrent shoulder instability. The bony apprehension test (BAT) is a physical examination maneuver that was designed to improve specificity from the anterior apprehension test (AAT) in detecting critical bone loss. Purpose: The purpose of this study was to compare the BAT with the AAT and relocation test based on their abilities to predict critical bone loss. Several well–described criteria were utilized to capture critical (≥25%) and subcritical (≥13.5%) glenoid defects, as well as Hill-Sachs defects (≥19%). The ability of the BAT to predict bipolar bone loss was also assessed, as indicated by engaging Hill-Sachs defects and off–track lesions. Study Design: Cohort study (diagnosis); Level of evidence, 1. Methods: The study cohort included patients ≥18 years of age who were scheduled to undergo arthroscopic stabilization for traumatic anterior shoulder instability. Notable exclusion criteria included multidirectional shoulder instability, connective tissue disorders, and workers’ compensation or litigation cases. Patients underwent physical examination immediately before surgery by the treating surgeon (ie, before the induction of anesthesia). Critical glenoid and humeral bone defects were measured on preoperative computed tomography scans. Hill-Sachs engagement and on- or off–track determination of bone loss were assessed arthroscopically and via computed tomography, respectively. Results: A total of 52 patients were included in the study. In cases of subcritical glenoid bone loss (≥13.5%) and critical Hill-Sachs defects (≥19%), the BAT had good and fair specificity (82% and 72%, respectively) but poor sensitivity (40% and 39%). The BAT also had poor sensitivity (0%), specificity (67%), and positive predictive value (0%) for higher percentages of glenoid bone loss (≥25%). When engaging Hill-Sachs lesions were assessed, the BAT had excellent specificity (94%) and positive predictive value (94%) but poor sensitivity (43%) and negative predictive value (44%). Furthermore, the BAT performed poorly at predicting off–track humeral lesions. The AAT demonstrated 100% sensitivity and 0% specificity in detecting all measures of bone loss. Conclusion: The BAT performed poorly at identifying subcritical and critical bone loss and was not found to have any clinical value. Future work is needed to identify a physical examination test that could complement advanced imaging for preoperative assessment of critical bone loss.

Publisher

SAGE Publications

Subject

Physical Therapy, Sports Therapy and Rehabilitation,Orthopedics and Sports Medicine

Reference24 articles.

1. Management of bone loss in recurrent traumatic anterior shoulder instability: a survey of North American surgeons

2. Bois AJ, Miniaci A. Surgical management of instability with bone loss. In: Iannotti J, Miniaci A, Williams G, et al eds. Disorders of the Shoulder: Diagnosis and Management. Volume 2: Sports Injuries. 3rd ed. Lippincott Williams & Wilkins; 2013:228-254.

3. Traumatic glenohumeral bone defects and their relationship to failure of arthroscopic Bankart repairs

4. Quantifying glenoid bone loss arthroscopically in shoulder instability

5. The Bony Apprehension Test for Instability of the Shoulder: A Prospective Pilot Analysis

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