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Effects of size and shape of the side holes of a double J stent on the ureter fluid flow after stenosis

Authors
Lee, Seung BaeKim, Kyung-WukPark, Se-HyunBaba, YasutakaLee, ChangjeChoi, Young HoKim, Hyoung-Ho
Issue Date
Sep-2024
Publisher
Taylor & Francis
Keywords
computational fluid dynamics (CFD); Double J stent; encrustation; urine flow; wall shear stress
Citation
Computer Methods in Biomechanics and Biomedical Engineering, v.27, no.12, pp 1596 - 1609
Pages
14
Indexed
SCIE
SCOPUS
Journal Title
Computer Methods in Biomechanics and Biomedical Engineering
Volume
27
Number
12
Start Page
1596
End Page
1609
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/67696
DOI
10.1080/10255842.2023.2252550
ISSN
1025-5842
1476-8259
Abstract
The effect of side holes morphology changes in double J stent (DJS) on encrustation was analyzed using computational fluid dynamics (CFD). We analyzed DJS side holes with inner diameter of 1 mm and outer diameters of 1 (type A), 1.2 (type B) and 1.4 (type C) mm, respectively. Concentric stenosis with three intraureteral degree (0%, 12%, and 88%) was analyzed. The flow rate, shear stress and wall shear stress (WSS) distribution were investigated. Urine flow through SH1 before the ureteropelvic junction (UPJ) differed based on the ureteral stenosis degree. The sum of flow rates through the SHs increased with diameter. In the stented ureter with 12% stenosis, the flow rate through SH1 approximately doubled than that without ureteral stenosis, and the flow rate through SH1 was maximal for the type ‘C’ stent in both 12% and 88% ureteral stenosis. The mean shear stress in the SHs increased with the degree of stenosis. The WSS around the SHs was higher for type ‘C’ than types A and B. From the flow rates and shear stresses in and around the SHs, the larger SH diameter of the DJS from the UPJ to mid-ureter is expected to induce encrustation reduction, especially in patients with urinary lithiasis. © 2023 Informa UK Limited, trading as Taylor & Francis Group.
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우주항공대학 (항공우주공학부)
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