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Gouty arthropathy: Review of clinico-pathologic and imaging features
Nishanthinie Parathithasan1, Wai-Kit Lee1, Marcus Pianta1
1Department of Medical Imaging, St Vincent's Hospital, University of Melbourne, Victoria, Australia.
Abstract:
Gout is a common inflammatory arthropathy in adults, with the prevalence increasing in males of older age. It occurs when monosodium urate (MSU) crystals are deposited in joints and connective tissue causing inflammation. The gold standard for the diagnosis of gout is the demonstration of negatively birefringent, needle-shaped MSU crystals through synovial fluid aspiration. However, this is an invasive technique and may not always be conclusive or feasible. Imaging techniques have been developed to aid in diagnosis of gout non-invasively. Radiography has a low utility in the early diagnosis of gout and demonstrates erosions in late stages. Ultrasound (US) has a high overall sensitivity in diagnosing gout with the 'double contour' sign having a high specificity. Magnetic resonance imaging is good at detecting tophi, bone marrow oedema and erosions, but has a limited role in diagnosis because of its high cost and limited availability. Conventional computed tomography (CT) has no role in the routine diagnosis of gout before development of erosions and tophi. A newer technology, dual-energy CT (DECT) has been shown to be able to detect MSU crystals burden with high accuracy. It has a higher specificity and lower sensitivity that US in gout diagnosis. However, because of radiation exposure and cost, it has a better utility in diagnosing clinically suspected gout complicated by other concurrent rheumatologic conditions or if radiography, US and synovial aspiration are inconclusive or not feasible. This paper will review the clinico-pathologic and imaging features of gouty arthropathy.
Insights
Gout diagnosis relies on identifying monosodium urate (MSU) crystals. This review explores imaging techniques, including ultrasound and dual-energy CT, as non-invasive alternatives to synovial fluid aspiration for detecting gouty arthritis.
Area of Science:
- Rheumatology
- Medical Imaging
- Crystal Arthropathies
Background:
- Gout is a prevalent inflammatory arthropathy in adults, characterized by monosodium urate (MSU) crystal deposition.
- Diagnosis traditionally involves invasive synovial fluid aspiration to identify MSU crystals, which can be challenging.
- Increasing prevalence necessitates exploring reliable, non-invasive diagnostic methods.
Purpose of the Study:
- To review the clinico-pathologic features of gouty arthropathy.
- To evaluate the utility of various imaging techniques in diagnosing gout.
- To compare the diagnostic accuracy and limitations of different imaging modalities.
Main Methods:
- Review of existing literature on gout diagnosis and imaging.
- Analysis of radiography, ultrasound (US), magnetic resonance imaging (MRI), conventional computed tomography (CT), and dual-energy CT (DECT).
- Comparison of sensitivity, specificity, and clinical utility of each modality.
Main Results:
- Ultrasound shows high sensitivity for gout, with the 'double contour' sign being highly specific.
- DECT accurately detects MSU crystal burden, offering high specificity but lower sensitivity than US.
- MRI is effective for detecting complications like tophi and erosions but is limited by cost and availability.
Conclusions:
- Imaging techniques offer non-invasive alternatives for gout diagnosis, complementing or replacing synovial fluid aspiration.
- DECT is valuable for complex cases or when other methods are inconclusive, despite radiation exposure and cost.
- A comprehensive understanding of imaging features aids in accurate gout diagnosis and management.
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