Skip to main content
Top
Published in: Surgical and Radiologic Anatomy 5/2015

01-07-2015 | Anatomic Bases of Medical, Radiological and Surgical Techniques

Study of the renal segmental arterial anatomy with contrast-enhanced multi-detector computed tomography

Authors: Francesco Rocco, Luigi Alberto Cozzi, Gabriele Cozzi

Published in: Surgical and Radiologic Anatomy | Issue 5/2015

Login to get access

Abstract

Purpose

To use triphasic multi-detector computed tomography (MDCT) to study the renal segmental arterial anatomy and its relationship with the urinary tract to plan nephron-sparing surgery (NSS).

Methods

One hundred and fifty nine patients underwent abdominal contrast-enhanced MDCT. We evaluated renal arteries and parenchymal vasculature. In 61 patients, the arteries and the urinary tract were represented simultaneously.

Results

86.60 % presented a single renal artery; 13.4 %, multiple arteries. All single renal arteries divided into anterior and posterior branch before the hilum. The anterior artery branched into a superior, middle, and inferior branch. In 43.14 %, the inferior artery arose before the others; in 45.75 %, the superior artery arose before the others; in 9.80 %, the branches shared a common trunk. In 26.80 %, the posterior artery supplies the entire posterior surface; in 73.20 %, it ends along the inferior calyx. In 96.73 %, the upper pole was vascularized by the anterior superior branch and the posterior artery: the “tuning fork”. MDCT showed four vascular segments in 96.73 % and five in 3.27 %. MDCT showed two avascular areas: the first along the projection of the inferior calyx on the posterior aspect, the second between the branches of the “tuning fork”.

Conclusions

The arterial phase provides the arterial tree representation; the delayed phase shows arteries and urinary tract simultaneously. MDCT provides a useful representation of the renal anatomy prior to intervascular–intrarenal NSS.
Literature
1.
go back to reference Coll DM, Herts BR, Davros WJ, Uzzo RG, Novick AC (2000) Preoperative use of 3D volume rendering to demonstrate renal tumors and renal anatomy. Radiographics 20(2):431–438CrossRefPubMed Coll DM, Herts BR, Davros WJ, Uzzo RG, Novick AC (2000) Preoperative use of 3D volume rendering to demonstrate renal tumors and renal anatomy. Radiographics 20(2):431–438CrossRefPubMed
2.
go back to reference Coll DM, Uzzo RG, Herts BR, Davros WJ, Wirth SL, Novick AC (1999) 3-dimensional volume rendered computerized tomography for preoperative evaluation and intraoperative treatment of patients undergoing nephron sparing surgery. J Urol 161(4):1097–1102CrossRefPubMed Coll DM, Uzzo RG, Herts BR, Davros WJ, Wirth SL, Novick AC (1999) 3-dimensional volume rendered computerized tomography for preoperative evaluation and intraoperative treatment of patients undergoing nephron sparing surgery. J Urol 161(4):1097–1102CrossRefPubMed
3.
go back to reference Cordier G, Ngu-Yen HUU, Bui-Hong H (1964) Segmentation artérielle du rein. Presse Med 72:2433–2438PubMed Cordier G, Ngu-Yen HUU, Bui-Hong H (1964) Segmentation artérielle du rein. Presse Med 72:2433–2438PubMed
4.
go back to reference Denardi F, Borges GM, Silva W Jr, Stopiglia RM, Ferreira U, Billis A, Netto NR Jr (2005) Nephron-sparing surgery for renal tumours using selective renal parenchymal clamping. BJU Int 96(7):1036–1039CrossRefPubMed Denardi F, Borges GM, Silva W Jr, Stopiglia RM, Ferreira U, Billis A, Netto NR Jr (2005) Nephron-sparing surgery for renal tumours using selective renal parenchymal clamping. BJU Int 96(7):1036–1039CrossRefPubMed
6.
go back to reference Hallscheidt P, Schoenberg S, Schenk JP, Zuna I, Petirsch O, Riedasch G (2002) Multi-slice CT in the planning of nephron-sparing interventions for renal cell carcinoma: prospective study correlated with histopathology. Rofo 174(7):898–903CrossRefPubMed Hallscheidt P, Schoenberg S, Schenk JP, Zuna I, Petirsch O, Riedasch G (2002) Multi-slice CT in the planning of nephron-sparing interventions for renal cell carcinoma: prospective study correlated with histopathology. Rofo 174(7):898–903CrossRefPubMed
7.
go back to reference Mallouhi A, Schocke M, Judmaier W, Wolf C, Dessl A, Czermak BV, Waldenberger P, Jaschke WR (2002) 3D MR angiography of renal arteries: comparison of volume rendering and maximum intensity projection algorithms. Radiology 223(2):509–516CrossRefPubMed Mallouhi A, Schocke M, Judmaier W, Wolf C, Dessl A, Czermak BV, Waldenberger P, Jaschke WR (2002) 3D MR angiography of renal arteries: comparison of volume rendering and maximum intensity projection algorithms. Radiology 223(2):509–516CrossRefPubMed
8.
go back to reference Renon G, Illes J, Gouazé A (1958) Essai de sistématisation segmentaire ed lobaire des vaisseaux du rein. Application è la néphrectomie partielle “reglée”. Presse méd 66:259–267PubMed Renon G, Illes J, Gouazé A (1958) Essai de sistématisation segmentaire ed lobaire des vaisseaux du rein. Application è la néphrectomie partielle “reglée”. Presse méd 66:259–267PubMed
9.
go back to reference Rocco F, Casu M, Carmignani L, Trinchieri A, Mandressi A, Larcher P, Gadda F (1998) Long-term results of intrarenal surgery for branched calculi: is such surgery still valid? Br J Urol 81(6):796–800CrossRefPubMed Rocco F, Casu M, Carmignani L, Trinchieri A, Mandressi A, Larcher P, Gadda F (1998) Long-term results of intrarenal surgery for branched calculi: is such surgery still valid? Br J Urol 81(6):796–800CrossRefPubMed
10.
go back to reference Rocco F, Mandressi A, Maggioni A, Caimi D, Arnoletti E, Larcher P, Puccetti U (1982) Anatomia vascolare segmentaria del rene. Urologia XLIX 1:1–22 Rocco F, Mandressi A, Maggioni A, Caimi D, Arnoletti E, Larcher P, Puccetti U (1982) Anatomia vascolare segmentaria del rene. Urologia XLIX 1:1–22
11.
go back to reference Rocco F, Mandressi A, Maggioni A, Caimi D, Arnoletti E, Larcher P, Puccetti U (1982) Chirurgia renale intersegmentaria: modelli sperimentali. Urologia XLIX 1 Rocco F, Mandressi A, Maggioni A, Caimi D, Arnoletti E, Larcher P, Puccetti U (1982) Chirurgia renale intersegmentaria: modelli sperimentali. Urologia XLIX 1
12.
go back to reference Sampaio FJ, Aragao AH (1990) Anatomical relationship between the intrarenal arteries and the kidney collecting system. J Urol 143(4):679–681PubMed Sampaio FJ, Aragao AH (1990) Anatomical relationship between the intrarenal arteries and the kidney collecting system. J Urol 143(4):679–681PubMed
13.
go back to reference Sampaio FJ, Favorito LA (1993) Proportional analysis of the kidney arterial segments. Urol Res 21(6):371–374CrossRefPubMed Sampaio FJ, Favorito LA (1993) Proportional analysis of the kidney arterial segments. Urol Res 21(6):371–374CrossRefPubMed
14.
go back to reference Sampaio FJ, Passos MA (1992) Renal arteries: anatomic study for surgical and radiological practice. Surg Radiol Anat 14(2):113–117CrossRefPubMed Sampaio FJ, Passos MA (1992) Renal arteries: anatomic study for surgical and radiological practice. Surg Radiol Anat 14(2):113–117CrossRefPubMed
15.
go back to reference Sampaio FJ (1992) Anatomical background for nephron-sparing surgery in renal cell carcinoma. J Urol 147(4):999–1005PubMed Sampaio FJ (1992) Anatomical background for nephron-sparing surgery in renal cell carcinoma. J Urol 147(4):999–1005PubMed
16.
go back to reference Sampaio FJ (1996) Partial nephrectomy in cancer of the upper pole of kidney. Anatomical bases. J Urol (Paris) 102(5–6):199–203 Sampaio FJ (1996) Partial nephrectomy in cancer of the upper pole of kidney. Anatomical bases. J Urol (Paris) 102(5–6):199–203
17.
18.
go back to reference Sampaio FJ (1998) Vascular anatomy at the ureteropelvic junction. Urol Clin North Am 25(2):251–258CrossRefPubMed Sampaio FJ (1998) Vascular anatomy at the ureteropelvic junction. Urol Clin North Am 25(2):251–258CrossRefPubMed
19.
go back to reference Sauer B, Flocquet M, Batch T, Blum A, Hubert J (2008) Vascular renal anatomy and the ureteropelvic junction: preoperative multidetector CT scanning with split-bolus injection as a predictor of laparoscopic findings. J Endourol 22(1):13–18CrossRefPubMed Sauer B, Flocquet M, Batch T, Blum A, Hubert J (2008) Vascular renal anatomy and the ureteropelvic junction: preoperative multidetector CT scanning with split-bolus injection as a predictor of laparoscopic findings. J Endourol 22(1):13–18CrossRefPubMed
20.
go back to reference Ternon Y (1959) Anatomie chirurgicale de l’artère rénale, base d’une segmentation artérielle du rein. J de Chir 78:517–533 Ternon Y (1959) Anatomie chirurgicale de l’artère rénale, base d’une segmentation artérielle du rein. J de Chir 78:517–533
21.
go back to reference Tombul ST, Aki FT, Gunay M, Inci K, Hazirolan T, Karcaaltincaba M, Erkan I, Bakkaloglu A, Yasavul U, Bakkaloglu M (2008) Preoperative evaluation of hilar vessel anatomy with 3-D computerized tomography in living kidney donors. Transpl Proc 40(1):47–49CrossRef Tombul ST, Aki FT, Gunay M, Inci K, Hazirolan T, Karcaaltincaba M, Erkan I, Bakkaloglu A, Yasavul U, Bakkaloglu M (2008) Preoperative evaluation of hilar vessel anatomy with 3-D computerized tomography in living kidney donors. Transpl Proc 40(1):47–49CrossRef
22.
go back to reference Ueda T, Tobe T, Yamamoto S, Motoori K, Murakami Y, Igarashi T, Ito H (2004) Selective intra-arterial 3-dimensional computed tomography angiography for preoperative evaluation of nephron-sparing surgery. J Comput Assist Tomogr 28(4):496–504CrossRefPubMed Ueda T, Tobe T, Yamamoto S, Motoori K, Murakami Y, Igarashi T, Ito H (2004) Selective intra-arterial 3-dimensional computed tomography angiography for preoperative evaluation of nephron-sparing surgery. J Comput Assist Tomogr 28(4):496–504CrossRefPubMed
Metadata
Title
Study of the renal segmental arterial anatomy with contrast-enhanced multi-detector computed tomography
Authors
Francesco Rocco
Luigi Alberto Cozzi
Gabriele Cozzi
Publication date
01-07-2015
Publisher
Springer Paris
Published in
Surgical and Radiologic Anatomy / Issue 5/2015
Print ISSN: 0930-1038
Electronic ISSN: 1279-8517
DOI
https://doi.org/10.1007/s00276-014-1382-7

Other articles of this Issue 5/2015

Surgical and Radiologic Anatomy 5/2015 Go to the issue