Page 115 - IJB-8-2
P. 115
Lee, et al.
https://doi.org/10.1016/j.aju.2012.08.004 https://doi.org/10.1371/journal.pone.0087433
13. Joshi HB, Okeke A, Newns N, et al., 2002, Characterization 25. Kim HW, Park CJ, Seo S, et al., 2016, Evaluation of a Polymeric
of Urinary Symptoms in Patients with Ureteral Stents. Flap Valve-attached Ureteral Stent for Preventing Vesicoureteral
Urology, 59:511–6. Reflux in Elevated Intravesical Pressure Conditions: A Pilot
https://doi.org/10.1016/s0090-4295(01)01644-2 Study Using a Porcine Model. J Endourol, 30:428–32.
14. de la Cruz JE, Fernández I, Sanz-Migueláñez JL, et al., 2021, https://doi.org/10.1089/end.2015.0711
Assessment of the Grades of Vesicoureteral Reflux in Stented 26. Liu Z, Liu N, Zhao C, et al., 2020, Preliminary Assessment of
Ureters: An Experimental Study. Urol Int, 105:554–9. the Effectiveness of an Anti-reflux Ureteral Stent with a Novel
https://doi.org/10.1159/000515613 Device in a Swine Model. Int J Clin Exp Med, 13:141–7.
15. Ritter M, Krombach P, Knoll T, et al., 2012, Initial Experience 27. Ecke TH, Bartel P, Hallmann S, et al., 2010, Evaluation of
with a Newly Developed Antirefluxive Ureter Stent. Urol Symptoms and Patients’ Comfort for JJ-ureteral Stents With
Res, 40:349–53. and Without Antireflux-membrane Valve. Urology, 75:212–6.
https://doi.org/10.1007/s00240-011-0415-5 https://doi.org/10.1016/j.urology.2009.07.1258
16. Cummings LJ, Waters SL, Wattis JAD, et al., 2004, The Effect 28. Urrios A, Parra-Cabrera C, Bhattacharjee N, et al., 2016,
of Ureteric Stents on Urine Flow: Reflux. J Math Biol, 49:56–82. 3D-printing of Transparent Bio-microfluidic Devices in PEG-
https://doi.org/10.1007/s00285-003-0252-4. DA. Lab Chip, 16:2287–94.
17. Vahidi B, Fatouraee N, 2012, A Biomechanical Simulation https://doi.org/10.1039/c6lc00153j
of Ureteral Flow During Peristalsis using Intraluminal 29. Schweiger J, Beuer F, Stimmelmayr M, et al., 2016, Histo-
Morphometric Data. J Theor Biol, 298:42–50. anatomic 3D Printing of Dental Structures. Br Dent J,
https://doi.org/10.1016/j.jtbi.2011.12.019 221:555–60.
18. Peters C, Rushton HG, 2010, Vesicoureteral Reflux https://doi.org/10.1038/sj.bdj.2016.815
Associated Renal Damage: Congenital Reflux Nephropathy 30. Jeong YG, Lee WS, Lee KB, 2018, Accuracy Evaluation of
and Acquired Renal Scarring. J Urol, 184:265–73. Dental Models Manufactured by CAD/CAM Milling Method
https://doi.org/10.1016/j.juro.2010.03.076 and 3D Printing Method. J Adv Prosthodont, 10:245–51.
19. Chew BH, Lange D, 2016, Advances in Ureteral Stent https://doi.org/10.4047/jap.2018.10.3.245
Development. Curr Opin Urol, 26:277–82. 31. Yoshikawa M, Sato R, Higashihara T, et al., 2015, Rehand:
https://doi.org/10.1097/MOU.0000000000000275 Realistic Electric Prosthetic Hand Created with a 3D Printer.
20. Chew BH, Seitz C, 2016, Impact of Ureteral Stenting in Proc Annu Int Conf IEEE Eng Med Biol Soc, 2015:2470–3.
Ureteroscopy. Curr Opin Urol, 26:76–80. https://doi.org/10.1109/EMBC.2015.7318894
https://doi.org/10.1097/MOU.0000000000000234 32. Burn MB, Ta A, Gogola GR, 2016, Three-dimensional
21. Park CJ, Kim HW, Jeong S, et al., 2015, Anti-reflux Ureteral Printing of Prosthetic Hands for Children. J Hand Surg Am,
Stent with Polymeric Flap Valve using Three-dimensional 41:e103–9.
Printing: An in vitro Study. J Endourol, 29:933–8. https://doi.org/10.1016/j.jhsa.2016.02.008
https://doi.org/10.1089/end.2015.0154 33. Del Junco M, Okhunov Z, Yoon R, et al., 2015, Development
22. Korkes F, Baccaglini W, Silveira MA, 2019, Is Ureteral Stent and Initial Porcine and Cadaver Experience with Three-
an Effective Way to Deliver Drugs Such as Bacillus Calmette- dimensional Printing of Endoscopic and Laparoscopic
Guérin to the Upper Urinary Tract? An experimental study, Equipment. J Endourol, 29:58–62.
Ther Adv Urol, 11:1–7. https://doi.org/10.1089/end.2014.0280
https://doi.org/10.1177/1756287219836895 34. He Y, Xue GH, Fu JZ, 2014, Fabrication of Low Cost Soft
23. Yamaguchi O, Yoshimura Y, Irisawa C, et al., 1992, Prototype Tissue Prostheses with the Desktop 3D Printer. Sci Rep,
of a Reflux-preventing Ureteral Stent and its Clinical Use. 4:1–7.
Urology, 40:326–9. https://doi.org/10.1038/srep06973
https://doi.org/10.1016/0090-4295(92)90381-6 35. Bégin-Drolet A, Dussault MA, Fernandez SA, et al., 2017, Design
24. Clavica F, Zhao X, ElMahdy M, et al., 2014, Investigating of a 3D Printer Head for Additive Manufacturing of Sugar Glass
the Flow Dynamics in the Obstructed and Stented Ureter for Tissue Engineering Applications. Addit Manuf, 15:29–39.
by Means of a Biomimetic Artificial Model. PLoS One, https://doi.org/10.1016/j.addma.2017.03.006
9:e87433. 36. Salentijn GI, Oomen PE, Grajewski M, et al., 2017, Fused
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