Laparoscopic resection of localized tumors of horseshoe kidney parenchyma using 3D printing: clinical observation

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Abstract

The use of 3D-computer technologies (3D-modeling, 3D-printing) in the surgical treatment of patients with kidney abnormalities contributes to a better understanding of anatomy at the preoperative planning stage and improves intraoperative navigation. We present a clinical observation using 3D-printing during performing organ-preserving laparoscopic surgery in a patient with localized formations of the horseshoe kidney parenchyma.

About the authors

E. S. Sirota

Institute of Urology and Reproductive Health, I.M. Sechenov First Moscow State Medical University, Ministry of Health of Russia (Sechenov University)

Author for correspondence.
Email: essirota@mail.ru
ORCID iD: 0000-0001-6419-0155

Evgeniy Sergeevich Sirota

Build. 1, 2 Bol’shaya Pirogovskaya St., Moscow 119435

 

Russian Federation

Yu. G. Alyaev

Institute of Urology and Reproductive Health, I.M. Sechenov First Moscow State Medical University, Ministry of Health of Russia (Sechenov University)

Build. 1, 2 Bol’shaya Pirogovskaya St., Moscow 119435

Russian Federation

L. M. Rapоport

Institute of Urology and Reproductive Health, I.M. Sechenov First Moscow State Medical University, Ministry of Health of Russia (Sechenov University)

Build. 1, 2 Bol’shaya Pirogovskaya St., Moscow 119435

Russian Federation

D. G. Tsarichenko

Institute of Urology and Reproductive Health, I.M. Sechenov First Moscow State Medical University, Ministry of Health of Russia (Sechenov University)

ORCID iD: 0000-0002-3608-8759

Build. 1, 2 Bol’shaya Pirogovskaya St., Moscow 119435

Russian Federation

I. G. Kasiteridi

Institute of Urology and Reproductive Health, I.M. Sechenov First Moscow State Medical University, Ministry of Health of Russia (Sechenov University)

Build. 1, 2 Bol’shaya Pirogovskaya St., Moscow 119435

Russian Federation

O. V. Arutyunyan

Institute of Urology and Reproductive Health, I.M. Sechenov First Moscow State Medical University, Ministry of Health of Russia (Sechenov University)

Build. 1, 2 Bol’shaya Pirogovskaya St., Moscow 119435

Russian Federation

References

  1. Kirkpatrick J.J., Leslie S.W. Horseshoe Kidney. 2022. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing, 2022.
  2. Je B.K., Kim H.K., Horn P.S. Incidence and spectrum of renal complications and extrarenal diseases and syndromes in 380 children and young adults with horseshoe kidney. Am J Roentgenol 2015;205(6):1306–14. doi: 10.2214/AJR.15.14625
  3. Pawar A.S., Thongprayoon C., Cheungpasitporn W. et al. Incidence and characteristics of kidney stones in patients with horseshoe kidney: a systematic review and meta-analysis. Urol Ann 2018;10(1):87–93. doi: 10.4103/UA.UA_76_17
  4. Kochkin A.D., Gallyamov E.A., Medvedev V.L. et al. Horseshoe kidney tumor laparoscopic surgery. First 19 cases. Urologiia 2019;(2):36–9. doi: 10.18565/urology.2019.2.36-39
  5. Alyaev Yu.G., Sirota E.S., Proskura A.V. Surgery digitization in kidney tumors. Moscow: GEOTAR-Media, 2021. p. 240. (In Russ.).
  6. Silberstein J.L., Maddox M.M., Dorsey P. et al. Physical models of renal malignancies using standard cross-sectional imaging and 3-dimensional printers: a pilot study. Urology 2014;84(2):268–72. doi: 10.1016/j.urology.2014.03.042
  7. Mercader C., Vilaseca A., Moreno J.L. et al. Role of the threedimensional printing technology in complex laparoscopic renal surgery: a renal tumor in a horseshoe kidney. Int Braz J Urol 2019;45(6):1129–35. doi: 10.1590/S1677-5538.IBJU.2019.0085
  8. Maddox M.M., Feibus A., Liu J. et al. 3D-printed soft-tissue physical models of renal malignancies for individualized surgical simulation: a feasibility study. J Robot Surg 2018;12(1):27–33. doi: 10.1007/s11701-017-0680-6
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