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Erschienen in: Abdominal Radiology 6/2021

02.01.2021 | Special Section: Quantitative Imaging

A novel method for estimating the urine drainage time from the renal collecting system

verfasst von: Talia Yeshua, Ori Gleisner, Richard Lederman, Victor Neeman, Mordechai Duvdevani, Isaac Leichter

Erschienen in: Abdominal Radiology | Ausgabe 6/2021

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Abstract

Purpose

Partial obstruction of the upper urinary tract is a common urological pathology that leads to progressive atrophy and dysfunction of the kidney. Most methods for evaluating the urine drainage rate, to assess the severity of partial obstruction, involve injection of markers into the blood stream and therefore the filtration rate from the blood effects the drainage rate. This study presents a novel method for assessing the drainage rate from the upper urinary tract by analyzing sequential fluoroscopic images from a routine nephrostogram, in which contrast material is introduced directly into the renal collecting system.

Methods

Fluoroscopic images from 36 nephrostograms, following percutaneous nephrolithotomy, were retrospectively evaluated, 19 with a dilated renal pelvis. A radiological model for calculating the radiopacity of the renal pelvis, which reflects the amount of contrast material in each sequential image, was developed. Using this model, an algorithm was designed for generating a drainage curve and calculating the “drainage time” t1/2 in which half of the contrast material has drained from the renal pelvis.

Results

Analysis of images of a step-wedge phantom made of an increasing number of contrast material layers showed that the calculated radiopacity of each step was proportional to the amount of contrast material, independent of the background attenuation. Analysis of the nephrostograms showed that the drainage curves highly fitted an exponential function (R = 0.961), with a significantly higher t1/2 for dilated cases.

Conclusion

The developed method may be used for a quantitative and accurate estimation of the urine drainage rate.
Literatur
1.
Zurück zum Zitat Elder JS (2016) Obstruction of the urinary tract. In: Kliegman RM, Stanton BF, Schor NF, St Geme JW, Behrman RE (ed) Nelson textbook of Pediatrics, 20th edn. Elsevier, New Delhi, pp 2567-2575 Elder JS (2016) Obstruction of the urinary tract. In: Kliegman RM, Stanton BF, Schor NF, St Geme JW, Behrman RE (ed) Nelson textbook of Pediatrics, 20th edn. Elsevier, New Delhi, pp 2567-2575
3.
Zurück zum Zitat Choong KKL, Gruenewald SM, Hodson EM, Antico VF, Farlow DC, Cohen RC (1992) Volume expanded diuretic renography in the postnatal assessment of suspected uretero-pelvic junction obstruction. J Nucl Med 33:2094-2098.PubMed Choong KKL, Gruenewald SM, Hodson EM, Antico VF, Farlow DC, Cohen RC (1992) Volume expanded diuretic renography in the postnatal assessment of suspected uretero-pelvic junction obstruction. J Nucl Med 33:2094-2098.PubMed
4.
Zurück zum Zitat Walser M, Davidson DG, Orloff J (1955) The renal clearance of alkali-stable inulin. J Clin invest 34:1520-1523.CrossRef Walser M, Davidson DG, Orloff J (1955) The renal clearance of alkali-stable inulin. J Clin invest 34:1520-1523.CrossRef
9.
Zurück zum Zitat Yuan X, Zhang J, Tang K, Quan C, Tian Y et al (2017) Determination of glomerular filtration rate with CT measurement of renal clearance of iodinated contrast material versus 99mTc-DTPA dynamic imaging “gates” method: A validation study in asymmetrical renal disease. Radiol. 282:552-560. https://doi.org/10.1148/radiol.2016160425CrossRef Yuan X, Zhang J, Tang K, Quan C, Tian Y et al (2017) Determination of glomerular filtration rate with CT measurement of renal clearance of iodinated contrast material versus 99mTc-DTPA dynamic imaging “gates” method: A validation study in asymmetrical renal disease. Radiol. 282:552-560. https://​doi.​org/​10.​1148/​radiol.​2016160425CrossRef
17.
Zurück zum Zitat ElSheemy MS, Shouman AM, Shoukry AI, ElShenoufy A, Aboulela W et al (2015) Ureteric stents vs percutaneous nephrostomy for initial urinary drainage in children with obstructive anuria and acute renal failure due to ureteric calculi: a prospective, randomised study. BJU Int 115:473-479. https://doi.org/10.1111/bju.12768CrossRefPubMed ElSheemy MS, Shouman AM, Shoukry AI, ElShenoufy A, Aboulela W et al (2015) Ureteric stents vs percutaneous nephrostomy for initial urinary drainage in children with obstructive anuria and acute renal failure due to ureteric calculi: a prospective, randomised study. BJU Int 115:473-479. https://​doi.​org/​10.​1111/​bju.​12768CrossRefPubMed
21.
Zurück zum Zitat Rodrigo Zanon J, Cardoso MS, Mimica MJ, Faria EF, Baiocchi G, Guerreiro Fregnani JHT (2020) Retrospective Analysis of the Role of Antibiotic Prophylaxis in the Placement and Replacement of Percutaneous Nephrostomy Catheters in Patients with Malignant Ureteral Obstruction. J. Palliat Med 23:686-691. https://doi.org/10.1089/jpm.2019.0289CrossRefPubMed Rodrigo Zanon J, Cardoso MS, Mimica MJ, Faria EF, Baiocchi G, Guerreiro Fregnani JHT (2020) Retrospective Analysis of the Role of Antibiotic Prophylaxis in the Placement and Replacement of Percutaneous Nephrostomy Catheters in Patients with Malignant Ureteral Obstruction. J. Palliat Med 23:686-691. https://​doi.​org/​10.​1089/​jpm.​2019.​0289CrossRefPubMed
23.
Zurück zum Zitat Ghani KR, Andonian S, Bultitude M, Desai M, Giusti G, Okhunov Z et al (2016) Percutaneous nephrolithotomy: update, trends, and future directions. Eur Urol 70:382-396.CrossRef Ghani KR, Andonian S, Bultitude M, Desai M, Giusti G, Okhunov Z et al (2016) Percutaneous nephrolithotomy: update, trends, and future directions. Eur Urol 70:382-396.CrossRef
26.
Zurück zum Zitat Bushberg JT, Seibert JA, Leidholdt EMJ, Boone JM (2011) Introduction of radiation with matter. In: Bushberg JT (ed) The essential physics of medical imaging, 3th edn. Williams & Wilkins, Boltimore, pp 28-30 Bushberg JT, Seibert JA, Leidholdt EMJ, Boone JM (2011) Introduction of radiation with matter. In: Bushberg JT (ed) The essential physics of medical imaging, 3th edn. Williams & Wilkins, Boltimore, pp 28-30
27.
Zurück zum Zitat Christensen EE, Curry TS, Dowdey JE, Murry RC (1984) Attenuation. In: Christensen’s introduction to the physics of diagnostic radiology, 3th edn. Lea & Febiger, Philadelphia, pp 60-76 Christensen EE, Curry TS, Dowdey JE, Murry RC (1984) Attenuation. In: Christensen’s introduction to the physics of diagnostic radiology, 3th edn. Lea & Febiger, Philadelphia, pp 60-76
28.
Metadaten
Titel
A novel method for estimating the urine drainage time from the renal collecting system
verfasst von
Talia Yeshua
Ori Gleisner
Richard Lederman
Victor Neeman
Mordechai Duvdevani
Isaac Leichter
Publikationsdatum
02.01.2021
Verlag
Springer US
Erschienen in
Abdominal Radiology / Ausgabe 6/2021
Print ISSN: 2366-004X
Elektronische ISSN: 2366-0058
DOI
https://doi.org/10.1007/s00261-020-02880-1

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