Skip to main content
Top
Published in: Abdominal Radiology 5/2013

01-10-2013

Split-bolus dual-energy CT urography: protocol optimization and diagnostic performance for the detection of urinary stones

Authors: Christoph A. Karlo, Ralph Gnannt, Anna Winklehner, Michael A. Fischer, Olivio F. Donati, Daniel Eberli, Tullio Sulser, Hatem Alkadhi, Paul Stolzmann

Published in: Abdominal Radiology | Issue 5/2013

Login to get access

Abstract

Purpose

Prospective protocol optimization, determination of image quality and diagnostic performance of virtual non-enhanced images (VNEI) derived from split-bolus dual-energy computed tomography (DECT) urography in patients with urinary stones.

Methods

IRB-approved, prospective study of 100 patients who, after written informed consent, underwent single-energy, non-enhanced CT and split-bolus, contrast-enhanced DECT (30 + 50 mL of contrast media; combined nephro-urographic acquisition). DECT was performed using setting A (80/140 kVp) in the first 20, and setting B (100/140 kVp) in the second 20 patients. Tin filtration was used in all patients. After a pre-analysis of VNEI quality, 60 additional patients were examined using setting B. Two readers qualitatively and quantitatively determined image quality of all weighted-average DECT images regarding urinary tract opacification (n = 100), and all VNEI regarding quality of iodine subtraction and urinary stone detection (n = 80). True nonenhanced (TNEI) images were the standard of reference for statistical analysis (inter-reader variability and diagnostic performance characteristics).

Results

The urinary tract was completely opacified in 94% (94/100) of patients. Iodine subtraction was improved (p < 0.01) and image noise of VNEI was lower (p < 0.05) in DECT setting B. On VNEI, 83% (86/104) of urinary stones were correctly identified and 17% (18/104) were missed. Stones missed (2.5 mm, 1–4) were significantly smaller than stones correctly identified (5 mm, 2–27; p < 0.001). Diagnostic accuracy was 98% on a per-renal-unit basis and 96% on a per-patient basis. Inter-reader agreements were excellent (κ = 0.91–1.00; ICC = 0.86–0.99).

Conclusions

Split-bolus DECT urography was technically feasible and quality of VNEI was improved with the 100/140 kVp setting. Detection of urinary stones <4 mm on VNEI was limited.
Literature
1.
go back to reference Royal SA, Slovis TL, Kushner DC, et al. (2000) Hematuria. American College of Radiology. ACR Appropriateness Criteria. Radiology 215(Suppl):841–846PubMed Royal SA, Slovis TL, Kushner DC, et al. (2000) Hematuria. American College of Radiology. ACR Appropriateness Criteria. Radiology 215(Suppl):841–846PubMed
2.
go back to reference Van Der Molen AJ, Cowan NC, Mueller-Lisse UG, et al. (2008) CT urography: definition, indications and techniques. A guideline for clinical practice. Eur Radiol 18:4–17CrossRef Van Der Molen AJ, Cowan NC, Mueller-Lisse UG, et al. (2008) CT urography: definition, indications and techniques. A guideline for clinical practice. Eur Radiol 18:4–17CrossRef
3.
go back to reference Chow LC, Kwan SW, Olcott EW, Sommer G (2007) Split-bolus MDCT urography with synchronous nephrographic and excretory phase enhancement. AJR Am J Roentgenol 189:314–322PubMedCrossRef Chow LC, Kwan SW, Olcott EW, Sommer G (2007) Split-bolus MDCT urography with synchronous nephrographic and excretory phase enhancement. AJR Am J Roentgenol 189:314–322PubMedCrossRef
4.
go back to reference Dillman JR, Caoili EM, Cohan RH, et al. (2007) Comparison of urinary tract distension and opacification using single-bolus 3-phase vs split-bolus 2-phase multidetector row CT urography. J Comput Assist Tomogr 31:750–757PubMedCrossRef Dillman JR, Caoili EM, Cohan RH, et al. (2007) Comparison of urinary tract distension and opacification using single-bolus 3-phase vs split-bolus 2-phase multidetector row CT urography. J Comput Assist Tomogr 31:750–757PubMedCrossRef
5.
go back to reference Kekelidze M, Dwarkasing RS, Dijkshoorn ML, et al. (2010) Kidney and urinary tract imaging: triple-bolus multidetector CT urography as a one-stop shop—protocol design, opacification, and image quality analysis. Radiology 255:508–516PubMedCrossRef Kekelidze M, Dwarkasing RS, Dijkshoorn ML, et al. (2010) Kidney and urinary tract imaging: triple-bolus multidetector CT urography as a one-stop shop—protocol design, opacification, and image quality analysis. Radiology 255:508–516PubMedCrossRef
6.
go back to reference Maheshwari E, O’Malley ME, Ghai S, Staunton M, Massey C (2010) Split-bolus MDCT urography: upper tract opacification and performance for upper tract tumors in patients with hematuria. AJR Am J Roentgenol 194:453–458PubMedCrossRef Maheshwari E, O’Malley ME, Ghai S, Staunton M, Massey C (2010) Split-bolus MDCT urography: upper tract opacification and performance for upper tract tumors in patients with hematuria. AJR Am J Roentgenol 194:453–458PubMedCrossRef
7.
go back to reference Sanyal R, Deshmukh A, Singh Sheorain V, Taori K (2007) CT urography: a comparison of strategies for upper urinary tract opacification. Eur Radiol 17:1262–1266PubMedCrossRef Sanyal R, Deshmukh A, Singh Sheorain V, Taori K (2007) CT urography: a comparison of strategies for upper urinary tract opacification. Eur Radiol 17:1262–1266PubMedCrossRef
8.
go back to reference Zamboni GA, Romero JY, Raptopoulos VD (2010) Combined vascular-excretory phase MDCT angiography in the preoperative evaluation of renal donors. AJR Am J Roentgenol 194:145–150PubMedCrossRef Zamboni GA, Romero JY, Raptopoulos VD (2010) Combined vascular-excretory phase MDCT angiography in the preoperative evaluation of renal donors. AJR Am J Roentgenol 194:145–150PubMedCrossRef
9.
go back to reference Mangold S, Thomas C, Fenchel M, et al. (2012) Virtual nonenhanced dual-energy CT urography with tin-filter technology: determinants of detection of urinary calculi in the renal collecting system. Radiology 264:119–125PubMedCrossRef Mangold S, Thomas C, Fenchel M, et al. (2012) Virtual nonenhanced dual-energy CT urography with tin-filter technology: determinants of detection of urinary calculi in the renal collecting system. Radiology 264:119–125PubMedCrossRef
10.
go back to reference Takahashi N, Vrtiska TJ, Kawashima A, et al. (2010) Detectability of urinary stones on virtual nonenhanced images generated at pyelographic-phase dual-energy CT. Radiology 256:184–190PubMedCrossRef Takahashi N, Vrtiska TJ, Kawashima A, et al. (2010) Detectability of urinary stones on virtual nonenhanced images generated at pyelographic-phase dual-energy CT. Radiology 256:184–190PubMedCrossRef
11.
go back to reference Takahashi N, Hartman RP, Vrtiska TJ, et al. (2008) Dual-energy CT iodine-subtraction virtual unenhanced technique to detect urinary stones in an iodine-filled collecting system: a phantom study. AJR Am J Roentgenol 190:1169–1173PubMedCrossRef Takahashi N, Hartman RP, Vrtiska TJ, et al. (2008) Dual-energy CT iodine-subtraction virtual unenhanced technique to detect urinary stones in an iodine-filled collecting system: a phantom study. AJR Am J Roentgenol 190:1169–1173PubMedCrossRef
12.
go back to reference Scheffel H, Stolzmann P, Frauenfelder T, et al. (2007) Dual-energy contrast-enhanced computed tomography for the detection of urinary stone disease. Invest Radiol 42:823–829PubMedCrossRef Scheffel H, Stolzmann P, Frauenfelder T, et al. (2007) Dual-energy contrast-enhanced computed tomography for the detection of urinary stone disease. Invest Radiol 42:823–829PubMedCrossRef
13.
go back to reference Takeuchi M, Kawai T, Ito M, et al. (2012) Split-bolus CT-urography using dual-energy CT: feasibility, image quality and dose reduction. Eur J Radiol 81:3160–3165PubMedCrossRef Takeuchi M, Kawai T, Ito M, et al. (2012) Split-bolus CT-urography using dual-energy CT: feasibility, image quality and dose reduction. Eur J Radiol 81:3160–3165PubMedCrossRef
14.
go back to reference Levey AS, Stevens LA, Schmid CH, et al. (2009) A new equation to estimate glomerular filtration rate. Ann Intern Med 150:604–612PubMedCrossRef Levey AS, Stevens LA, Schmid CH, et al. (2009) A new equation to estimate glomerular filtration rate. Ann Intern Med 150:604–612PubMedCrossRef
15.
go back to reference Stolzmann P, Leschka S, Scheffel H, et al. (2010) Characterization of urinary stones with dual-energy CT: improved differentiation using a tin filter. Invest Radiol 45:1–6PubMedCrossRef Stolzmann P, Leschka S, Scheffel H, et al. (2010) Characterization of urinary stones with dual-energy CT: improved differentiation using a tin filter. Invest Radiol 45:1–6PubMedCrossRef
Metadata
Title
Split-bolus dual-energy CT urography: protocol optimization and diagnostic performance for the detection of urinary stones
Authors
Christoph A. Karlo
Ralph Gnannt
Anna Winklehner
Michael A. Fischer
Olivio F. Donati
Daniel Eberli
Tullio Sulser
Hatem Alkadhi
Paul Stolzmann
Publication date
01-10-2013
Publisher
Springer US
Published in
Abdominal Radiology / Issue 5/2013
Print ISSN: 2366-004X
Electronic ISSN: 2366-0058
DOI
https://doi.org/10.1007/s00261-013-9992-9

Other articles of this Issue 5/2013

Abdominal Radiology 5/2013 Go to the issue