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Reverse Total Shoulder Arthroplasty
Published on: July 5, 2011
Total elbow arthroplasty in patients with rheumatoid arthritis
Te-Feng A Chou1,2, Hsuan-Hsiao Ma1,2, Jou-Hua Wang3
1Department of Orthopaedics, School of Medicine, National Yang-Ming University, Taipei, Taiwan.
Insights
Total elbow arthroplasty (TEA) shows satisfactory results for rheumatoid arthritis (RA) patients but has higher failure and complication rates than hip/knee replacements. Patient age, sex, and prosthesis type impact outcomes.
Area of Science:
- Orthopedic surgery
- Rheumatology
- Biomaterials science
Background:
- Rheumatoid arthritis (RA) frequently affects the elbow joint, causing pain and functional limitation.
- Total elbow arthroplasty (TEA) is a surgical option for end-stage RA affecting the elbow.
Purpose of the Study:
- To validate the outcomes of total elbow arthroplasty (TEA) in patients with rheumatoid arthritis (RA).
- To identify factors influencing the success and failure rates of TEA in RA patients.
Main Methods:
- A systematic literature search was conducted across PubMed, MEDLINE, Cochrane Reviews, and Embase (2003-2019).
- Meta-regression analysis was employed to assess implant failure rates, complication rates, modes of failure, and associated risk factors.
- Clinical performance metrics including range of motion and Mayo Elbow Performance Score (MEPS) were evaluated.
Main Results:
- The study analyzed 38 studies encompassing 2,118 TEAs with a mean follow-up of 80.9 months.
- Implant failure occurred in 16.1% and complications in 24.5% of cases, with aseptic loosening being the most common failure mode (9.5%).
- Younger patients and unlinked prosthesis designs were associated with higher failure and complication rates. Female sex and unlinked prostheses correlated with aseptic loosening.
Conclusions:
- Total elbow arthroplasty (TEA) offers satisfactory outcomes for rheumatoid arthritis (RA) patients.
- However, TEA demonstrates higher implant failure and complication rates compared to hip and knee arthroplasties.
- Patient demographics (age, sex) and surgical factors (cemented fixation, linked prosthesis design) significantly influence TEA outcomes.
Aims:
The aims of this study were to validate the outcome of total elbow arthroplasty (TEA) in patients with rheumatoid arthritis (RA), and to identify factors that affect the outcome.
Methods:
We searched PubMed, MEDLINE, Cochrane Reviews, and Embase from between January 2003 and March 2019. The primary aim was to determine the implant failure rate, the mode of failure, and risk factors predisposing to failure. A secondary aim was to identify the overall complication rate, associated risk factors, and clinical performance. A meta-regression analysis was completed to identify the association between each parameter with the outcome.
Results:
A total of 38 studies including 2,118 TEAs were included in the study. The mean follow-up was 80.9 months (8.2 to 156). The implant failure and complication rates were 16.1% (95% confidence interval (CI) 0.128 to 0.200) and 24.5% (95% CI 0.203 to 0.293), respectively. Aseptic loosening was the most common mode of failure (9.5%; 95% CI 0.071 to 0.124). The mean postoperative ranges of motion (ROMs) were: flexion 131.5° (124.2° to 138.8°), extension 29.3° (26.8° to 31.9°), pronation 74.0° (67.8° to 80.2°), and supination 72.5° (69.5° to 75.5°), and the mean postoperative Mayo Elbow Performance Score (MEPS) was 89.3 (95% CI 86.9 to 91.6). The meta-regression analysis identified that younger patients and implants with an unlinked design correlated with higher failure rates. Younger patients were associated with increased complications, while female patients and an unlinked prosthesis were associated with aseptic loosening.
Conclusion:
TEA continues to provide satisfactory results for patients with RA. However, it is associated with a substantially higher implant failure and complication rates compared with hip and knee arthroplasties. The patient's age, sex, and whether cemented fixation and unlinked prosthesis were used can influence the outcome. Level of Evidence: Therapeutic Level IV. Cite this article: Bone Joint J 2020;102-B(8):967-980.
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