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Updated: Sep 22, 2025

Novel Diagnostics in Revision Arthroplasty: Implant Sonication and Multiplex Polymerase Chain Reaction
Published on: December 3, 2017
Tissue sampling is non-inferior in comparison to sonication in orthopedic revision surgery
Theresa Fritsche1, Matthias Schnetz1, Alexander Klug1
1Department of Trauma and Orthopedic Surgery, Berufsgenossenschaftliche Unfallklinik Frankfurt am Main, Friedberger Landstr. 430, 60389, Frankfurt am Main, Germany.
Background:
The aim of this study was to assess the role of sonication fluid cultures in detecting musculoskeletal infections in orthopedic revision surgery in patients suspected of having peri-prosthetic joint infection (PJI), fracture-related infections (FRI), or postoperative spinal implant infections (PSII).
Methods:
Between 2016 and 2019, 149 cases with a data set including sonication fluid cultures and tissue specimen and histological analysis were included. Accuracy of each diagnostic tool as well as the influence of antibiotic therapy was analyzed. Pathogens identified in the sonication cultures and in the associated tissue samples were compared based on the matching of the antibiograms. Therapeutic benefits were then assessed.
Results:
Of 149 cases, 43.6% (n = 65) were identified as PJI, 2.7% (n = 4) as FRI, 12.8% (n = 19) as PSII, 6.7% (n = 10) as aseptic non-union, and 34.2% (n = 51) as aseptic implant loosening. The sensitivity and specificity of tissue and synovial specimens showed no significant difference with respect to sonication fluid cultures (sensitivity/specificity: tissue: 68.2%/96.7%; sonication fluid cultures: 60.2%/98.4%). The administration of antibiotics over 14 days prior to microbiological sampling (n = 40) resulted in a lower sensitivity of 42.9% each. Histological analysis showed a sensitivity 86.3% and specificity of 97.4%. In 83.9% (n = 125) of the cases, the results of sonication fluid cultures and tissue specimens were identical. Different microorganisms were found in only four cases. In 17 cases, tissue samples (n = 5) or sonication (n = 12) were false-negatives.
Conclusion:
Sonication fluid culture showed no additional benefit compared to conventional microbiological diagnostics of tissue and synovial fluid cultures. Preoperative administration of antibiotics had a clearly negative effect on microbiologic test accuracy. In over 83.9% of the cases, sonication fluid and tissue cultures showed identical results. In the other cases, sonication fluid culture did not further contribute to the therapy decision, whereas other factors, such as fistulas, cell counts, or histological analysis, were decisive in determining therapy.
Insights
Sonication fluid cultures offer no significant advantage over traditional methods for detecting musculoskeletal infections in orthopedic surgery. Preoperative antibiotics negatively impact diagnostic accuracy, highlighting the need for alternative diagnostic factors.
Area of Science:
- Orthopedics
- Infectious Diseases
- Diagnostic Microbiology
Background:
- Musculoskeletal infections pose challenges in orthopedic revision surgery.
- Accurate diagnosis is crucial for peri-prosthetic joint infection (PJI), fracture-related infections (FRI), and postoperative spinal implant infections (PSII).
Purpose of the Study:
- To evaluate the diagnostic utility of sonication fluid cultures in detecting musculoskeletal infections.
- To compare sonication fluid cultures with conventional tissue and synovial fluid cultures.
- To assess the impact of antibiotic therapy on diagnostic accuracy.
Main Methods:
- Analysis of 149 cases from 2016-2019, including sonication fluid cultures, tissue specimens, and histological analysis.
- Comparison of pathogen identification and antibiograms between sonication fluid and tissue samples.
- Evaluation of diagnostic accuracy and the influence of preoperative antibiotic administration.
Main Results:
- Sonication fluid cultures showed similar sensitivity and specificity to tissue/synovial cultures (60.2%/98.4% vs. 68.2%/96.7%).
- Preoperative antibiotics (over 14 days) reduced sensitivity to 42.9% for both methods.
- Histological analysis demonstrated high sensitivity (86.3%) and specificity (97.4%).
- Identical results were observed in 83.9% of sonication fluid and tissue cultures.
Conclusions:
- Sonication fluid cultures do not provide additional diagnostic benefit over conventional methods for musculoskeletal infections.
- Preoperative antibiotic use significantly compromises microbiological test accuracy.
- Histological analysis and other clinical factors are often more decisive for therapy than sonication fluid cultures alone.
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