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Published in: Abdominal Radiology 2/2006

01-04-2006

Dynamic MR urography in urinary tract obstruction: implementation and preliminary results

Authors: C. Lefort, N. Marouteau-Pasquier, A.-S. Pesquet, C. Pfister, P. Vera, J.-N. Dacher

Published in: Abdominal Radiology | Issue 2/2006

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Abstract

Background

Recent studies have demonstrated magnetic resonance (MR) capabilities in evaluating renal morphology and function in patients with urinary obstruction. The objective of this report is to support the introduction of dynamic MR renography on any MR equipment.

Methods

A custom-made device of vials filled with different concentrations of gadolinium was studied by combinations of T1-weighted gradient-echo sequences and coils. We compared the capabilities of two coils (phased array vs. standard body), the properties of dynamic sequences, and the effects of increasing concentrations of gadolinium on signal intensity. In a second section, we designed MR urography plug-ins of Image J (DICOM image software) for the analysis of dynamic studies.

Results

Optimized gradient-echo sequences acquired with a phased array body coil produced acceptable quality images with a linear relation between signal intensity and the lowest concentrations of gadolinium. In vitro measurements showed loss of linearity above 8 mmol/L.

Conclusion

Theoretical calculation and data from the literature suggest that the gadolinium dose to the patient should not exceed one-fourth of the usual one (0.025 mmol/kg). Postprocessing using Image J software and the specifically designed plug-ins was validated. The collection of plug-ins is now available on the Internet.
Literature
1.
go back to reference Nolte-Ernsting CC, Staatz G, Tacke J, Gunther RW (2003) MR urography today. Abdom Imaging 28:191–209PubMedCrossRef Nolte-Ernsting CC, Staatz G, Tacke J, Gunther RW (2003) MR urography today. Abdom Imaging 28:191–209PubMedCrossRef
2.
go back to reference Borthne A, Nordshus T, Reiseter T, et al. (1999) MR urography: the future gold standard in paediatric urogenital imaging? Pediatr Radiol 29:694–701PubMedCrossRef Borthne A, Nordshus T, Reiseter T, et al. (1999) MR urography: the future gold standard in paediatric urogenital imaging? Pediatr Radiol 29:694–701PubMedCrossRef
3.
go back to reference Rohrschneider WK, Haufe S, Wiesel M, et al. (2002) Functional and morphologic evaluation of congenital urinary combined static-dynamic MR urography: findings in kidneys with a single collecting system. Radiology 224:683–694PubMed Rohrschneider WK, Haufe S, Wiesel M, et al. (2002) Functional and morphologic evaluation of congenital urinary combined static-dynamic MR urography: findings in kidneys with a single collecting system. Radiology 224:683–694PubMed
4.
go back to reference Rothpearl A, Frager D, Subramanian A, et al. (1995) MR urography: technique and application. Radiology 194:125–130PubMed Rothpearl A, Frager D, Subramanian A, et al. (1995) MR urography: technique and application. Radiology 194:125–130PubMed
5.
go back to reference Aerts P, Van Hoe L, Bosmans H, et al. (1996) Breath-Hold MR urography using the HASTE technique. AJR 166:543–545PubMed Aerts P, Van Hoe L, Bosmans H, et al. (1996) Breath-Hold MR urography using the HASTE technique. AJR 166:543–545PubMed
6.
go back to reference Teh HS, Ang ES, Wong WC, et al. (2003) MR renography using a dynamic gradient-echo sequence and low-dose gadopentetate dimeglumine as an alternative to radionuclide renography. AJR 181:441–450PubMed Teh HS, Ang ES, Wong WC, et al. (2003) MR renography using a dynamic gradient-echo sequence and low-dose gadopentetate dimeglumine as an alternative to radionuclide renography. AJR 181:441–450PubMed
7.
go back to reference O’Reilly P, Aurell M, Britton K, et al. (1996) Consensus on diuresis renography for investigating the dilated upper urinary tract. Radionuclides in Nephrourology Group. Consensus Committee on Diuresis Renography. J Nucl Med 37:1872–1876PubMed O’Reilly P, Aurell M, Britton K, et al. (1996) Consensus on diuresis renography for investigating the dilated upper urinary tract. Radionuclides in Nephrourology Group. Consensus Committee on Diuresis Renography. J Nucl Med 37:1872–1876PubMed
8.
go back to reference Escott EJ, Rubinstein D (2003) Free DICOM image viewing and processing software for your desktop computer: what’s available and what it can do for you. Radiographics 23:1341–1357PubMed Escott EJ, Rubinstein D (2003) Free DICOM image viewing and processing software for your desktop computer: what’s available and what it can do for you. Radiographics 23:1341–1357PubMed
9.
go back to reference Rohrschneider WK, Haufe S, Clorius JH, Tröger J (2003) MR to assess renal function in children. Eur Radiol 13:1033–1045PubMedCrossRef Rohrschneider WK, Haufe S, Clorius JH, Tröger J (2003) MR to assess renal function in children. Eur Radiol 13:1033–1045PubMedCrossRef
10.
go back to reference Rohrschneider WK, Hoffend J, Becker K, et al. (2000) Combined static-dynamic MR urography for the simultaneous evaluation of morphology and function in urinary tract obstruction. Evaluation of the normal status in an animal model. Pediatr Radiol 30:511–522PubMed Rohrschneider WK, Hoffend J, Becker K, et al. (2000) Combined static-dynamic MR urography for the simultaneous evaluation of morphology and function in urinary tract obstruction. Evaluation of the normal status in an animal model. Pediatr Radiol 30:511–522PubMed
11.
go back to reference Rohrschneider WK, Hoffend J, Becker K, et al. (2000) Combined static-dynamic MR urography for the simultaneous evaluation of morphology and function in urinary tract obstruction. Findings in experimentally induced ureteric stenosis. Pediatr Radiol 30:523–532PubMed Rohrschneider WK, Hoffend J, Becker K, et al. (2000) Combined static-dynamic MR urography for the simultaneous evaluation of morphology and function in urinary tract obstruction. Findings in experimentally induced ureteric stenosis. Pediatr Radiol 30:523–532PubMed
12.
go back to reference Nolte-Ernsting CC, Adam GB, Gunther RW (2001) MR urography: examination techniques and clinical applications. Eur Radiol 11:355–372PubMed Nolte-Ernsting CC, Adam GB, Gunther RW (2001) MR urography: examination techniques and clinical applications. Eur Radiol 11:355–372PubMed
13.
go back to reference Tang Y, Yamashita Y, Namimoto T, et al. (1996) The value of MR urography that uses HASTE sequences to reveal urinary tract disorders. AJR 167:1497–1502PubMed Tang Y, Yamashita Y, Namimoto T, et al. (1996) The value of MR urography that uses HASTE sequences to reveal urinary tract disorders. AJR 167:1497–1502PubMed
14.
go back to reference Taylor J, Summers PE, Keevil SF, et al. (1997) Magnetic resonance renography: optimization of pulse sequence parameters and Gd-DTPA dose, and comparison with radionuclide renography. Magn Reson Imaging 15:637–649PubMed Taylor J, Summers PE, Keevil SF, et al. (1997) Magnetic resonance renography: optimization of pulse sequence parameters and Gd-DTPA dose, and comparison with radionuclide renography. Magn Reson Imaging 15:637–649PubMed
15.
go back to reference Grattan-Smith JD, Perez-Bayfield MR, Jones RA, et al. (2003) MR imaging of kidneys: functional evaluation using F-15 perfusion imaging. Pediatr Radiol 33:293–304PubMed Grattan-Smith JD, Perez-Bayfield MR, Jones RA, et al. (2003) MR imaging of kidneys: functional evaluation using F-15 perfusion imaging. Pediatr Radiol 33:293–304PubMed
16.
go back to reference Grenier N, Basseau F, Ries M, et al. (2003) Functional MRI of the kidney. Abdom Imaging 28:164–175PubMed Grenier N, Basseau F, Ries M, et al. (2003) Functional MRI of the kidney. Abdom Imaging 28:164–175PubMed
17.
go back to reference Lee VS, Rusinek H, Lee P, et al. (2003) Dynamic three-dimensional MR renography of single kidney function: initial experience. Radiology 227:289–294PubMed Lee VS, Rusinek H, Lee P, et al. (2003) Dynamic three-dimensional MR renography of single kidney function: initial experience. Radiology 227:289–294PubMed
18.
go back to reference Semelka RC, Hricak H, Tomei E, et al. (1990) Obstructive nephropathy: evaluation with dynamic Gd-DTPA-enhanced MR imaging. Radiology 175:797–803PubMed Semelka RC, Hricak H, Tomei E, et al. (1990) Obstructive nephropathy: evaluation with dynamic Gd-DTPA-enhanced MR imaging. Radiology 175:797–803PubMed
19.
go back to reference Knesplova L, Krestin GP (1998) Magnetic resonance in the assessment of renal function. Eur Radiol 8:201–211PubMedCrossRef Knesplova L, Krestin GP (1998) Magnetic resonance in the assessment of renal function. Eur Radiol 8:201–211PubMedCrossRef
20.
go back to reference Krestin GP, Schuhmann-Giampieri G, Haustein J, et al. (1992) Functional dynamic MRI, pharmacokinetics and safety of Gd-DTPA in patients with impaired renal function. Eur Radiol 2:16–32CrossRef Krestin GP, Schuhmann-Giampieri G, Haustein J, et al. (1992) Functional dynamic MRI, pharmacokinetics and safety of Gd-DTPA in patients with impaired renal function. Eur Radiol 2:16–32CrossRef
21.
go back to reference Kastler B, Vetter D, Patay Z, Germain P. Imagerie rapide. In: Kastler B, ed. Comprendre l’IRM: Manuel d’auto apprentissage. Paris: Masson, 2003:133–175 Kastler B, Vetter D, Patay Z, Germain P. Imagerie rapide. In: Kastler B, ed. Comprendre l’IRM: Manuel d’auto apprentissage. Paris: Masson, 2003:133–175
22.
go back to reference Kikinis R, Von Schulthess GK, Jäger P, et al. (1987) Normal and hydronephrotic kidney: Evaluation of renal function with contrast-enhanced MR imaging. Radiology 165:837–842PubMed Kikinis R, Von Schulthess GK, Jäger P, et al. (1987) Normal and hydronephrotic kidney: Evaluation of renal function with contrast-enhanced MR imaging. Radiology 165:837–842PubMed
23.
go back to reference Hittmair K, Turetschek K, Gomiscek G, et al. (1996) Field strength dependence of MRI contrast enhancement: phantom measurements and application to dynamic breast imaging. Br J Radiol 69:215–220PubMed Hittmair K, Turetschek K, Gomiscek G, et al. (1996) Field strength dependence of MRI contrast enhancement: phantom measurements and application to dynamic breast imaging. Br J Radiol 69:215–220PubMed
24.
go back to reference Katzberg RW, Ivanovic M, Buonocore MH, et al. (2002) Gadolinium-enhanced T1-weighted renal and abdominal imaging: quantitative discrepancy between clinical and in vitro findings. Acad Radiol 9:679–687PubMed Katzberg RW, Ivanovic M, Buonocore MH, et al. (2002) Gadolinium-enhanced T1-weighted renal and abdominal imaging: quantitative discrepancy between clinical and in vitro findings. Acad Radiol 9:679–687PubMed
25.
go back to reference Strich G, Hagan PL, Gerber KH, Slutsky RA (1985) Tissue distribution and magnetic resonance spin lattice relaxation effects of gadolinium-DTPA. Radiology 154:723–726PubMed Strich G, Hagan PL, Gerber KH, Slutsky RA (1985) Tissue distribution and magnetic resonance spin lattice relaxation effects of gadolinium-DTPA. Radiology 154:723–726PubMed
26.
go back to reference Jones RA, Perez-Brayfield MR, Kirsch A, Grattan Smith JD (2004) Renal transit time with MR urography in children. Radiology 233:41–50PubMed Jones RA, Perez-Brayfield MR, Kirsch A, Grattan Smith JD (2004) Renal transit time with MR urography in children. Radiology 233:41–50PubMed
27.
go back to reference Bakker J, Olree M, Kaatee R, et al. (1999) Renal volume measurements: accuracy and repeatability of US compared with that of MR imaging. Radiology 211:623–62PubMed Bakker J, Olree M, Kaatee R, et al. (1999) Renal volume measurements: accuracy and repeatability of US compared with that of MR imaging. Radiology 211:623–62PubMed
Metadata
Title
Dynamic MR urography in urinary tract obstruction: implementation and preliminary results
Authors
C. Lefort
N. Marouteau-Pasquier
A.-S. Pesquet
C. Pfister
P. Vera
J.-N. Dacher
Publication date
01-04-2006
Publisher
Springer-Verlag
Published in
Abdominal Radiology / Issue 2/2006
Print ISSN: 2366-004X
Electronic ISSN: 2366-0058
DOI
https://doi.org/10.1007/s00261-005-0391-8

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