Dual-layer spectral detector CT: non-inferiority assessment compared to dual-source dual-energy CT in discriminating uric acid from non-uric acid renal stones ex vivo

Abdom Radiol (NY). 2018 Nov;43(11):3075-3081. doi: 10.1007/s00261-018-1589-x.

Abstract

Purpose: To assess the non-inferiority of dual-layer spectral detector CT (SDCT) compared to dual-source dual-energy CT (dsDECT) in discriminating uric acid (UA) from non-UA stones.

Methods: Fifty-seven extracted urinary calculi were placed in a cylindrical phantom in a water bath and scanned on a SDCT scanner (IQon, Philips Healthcare) and second- and third-generation dsDECT scanners (Somatom Flash and Force, Siemens Healthcare) under matched scan parameters. For SDCT data, conventional images and virtual monoenergetic reconstructions were created. A customized 3D growing region segmentation tool was used to segment each stone on a pixel-by-pixel basis for statistical analysis. Median virtual monoenergetic ratios (VMRs) of 40/200, 62/92, and 62/100 for each stone were recorded. For dsDECT data, dual-energy ratio (DER) for each stone was recorded from vendor-specific postprocessing software (Syngo Via) using the Kidney Stones Application. The clinical reference standard of X-ray diffraction analysis was used to assess non-inferiority. Area under the receiver-operating characteristic curve (AUC) was used to assess diagnostic performance of detecting UA stones.

Results: Six pure UA, 47 pure calcium-based, 1 pure cystine, and 3 mixed struvite stones were scanned. All pure UA stones were correctly separated from non-UA stones using SDCT and dsDECT (AUC = 1). For UA stones, median VMR was 0.95-0.99 and DER 1.00-1.02. For non-UA stones, median VMR was 1.4-4.1 and DER 1.39-1.69.

Conclusion: SDCT spectral reconstructions demonstrate similar performance to those of dsDECT in discriminating UA from non-UA stones in a phantom model.

Keywords: Dual-energy CT; Material separation; Spectral CT; Uric acid; Urolithiasis.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Humans
  • In Vitro Techniques
  • Phantoms, Imaging
  • Radiographic Image Interpretation, Computer-Assisted
  • Radiography, Dual-Energy Scanned Projection / methods*
  • Tomography, X-Ray Computed / methods*
  • Uric Acid / analysis*
  • Urinary Calculi / chemistry*
  • Urinary Calculi / diagnostic imaging*
  • X-Ray Diffraction

Substances

  • Uric Acid