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Published on: December 3, 2017
Sonication versus Tissue Sampling for Diagnosis of Prosthetic Joint and Other Orthopedic Device-Related Infections
Maria Dudareva1, Lucinda Barrett1, Mel Figtree2
1Department of Microbiology, Oxford University Hospitals NHS Foundation Trust, Oxford, United Kingdom.
Abstract:
Current guidelines recommend collection of multiple tissue samples for diagnosis of prosthetic joint infections (PJI). Sonication of explanted devices has been proposed as a potentially simpler alternative; however, reported microbiological yield varies. We evaluated sonication for diagnosis of PJI and other orthopedic device-related infections (DRI) at the Oxford Bone Infection Unit between October 2012 and August 2016. We compared the performance of paired tissue and sonication cultures against a "gold standard" of published clinical and composite clinical and microbiological definitions of infection. We analyzed explanted devices and a median of five tissue specimens from 505 procedures. Among clinically infected cases the sensitivity of tissue and sonication culture was 69% (95% confidence interval, 63 to 75) and 57% (50 to 63), respectively (P < 0.0001). Tissue culture was more sensitive than sonication for both PJI and other DRI, irrespective of the infection definition used. Tissue culture yield was higher for all subgroups except less virulent infections, among which tissue and sonication culture yield were similar. The combined sensitivity of tissue and sonication culture was 76% (70 to 81) and increased with the number of tissue specimens obtained. Tissue culture specificity was 97% (94 to 99), compared with 94% (90 to 97) for sonication (P = 0.052) and 93% (89 to 96) for the two methods combined. Tissue culture is more sensitive and may be more specific than sonication for diagnosis of orthopedic DRI in our setting. Variable methodology and case mix may explain reported differences between centers in the relative yield of tissue and sonication culture. Culture yield was highest for both methods combined.
Insights
Tissue culture is more sensitive and specific for diagnosing prosthetic joint infections (PJI) and orthopedic device-related infections (DRI) than device sonication. Combining both methods offers the highest diagnostic yield for orthopedic infections.
Area of Science:
- Orthopedic Surgery
- Infectious Diseases
- Microbiology
Background:
- Current guidelines advocate multiple tissue samples for prosthetic joint infection (PJI) diagnosis.
- Device sonication is a proposed simpler alternative, but its diagnostic yield varies.
- Accurate diagnosis of orthopedic device-related infections (DRI) is crucial for patient outcomes.
Purpose of the Study:
- To compare the diagnostic performance of tissue culture versus sonication culture for PJI and other DRI.
- To evaluate the sensitivity and specificity of each method and their combination.
- To identify optimal methods for microbiological diagnosis of orthopedic device infections.
Main Methods:
- Retrospective analysis of explanted devices and paired tissue cultures from 505 orthopedic procedures (Oct 2012-Aug 2016).
- Comparison of culture results against established clinical and composite definitions of infection.
- Statistical analysis of sensitivity, specificity, and combined yield for tissue and sonication cultures.
Main Results:
- Tissue culture demonstrated higher sensitivity (69%) than sonication (57%) for clinically infected cases (P < 0.0001).
- Tissue culture was more sensitive for both PJI and other DRI, except in less virulent infections where yields were similar.
- Combined tissue and sonication culture sensitivity reached 76%, increasing with more tissue samples; specificity was high for all methods.
Conclusions:
- Tissue culture is superior to sonication for diagnosing orthopedic device-related infections in this setting.
- Combined tissue and sonication cultures provide the highest diagnostic yield.
- Variations in methodology and patient case mix may explain inter-center differences in sonication yield.
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