Yıl: 2021 Cilt: 32 Sayı: 2 Sayfa Aralığı: 279 - 289 Metin Dili: İngilizce DOI: 10.52312/jdrs.2021.20 İndeks Tarihi: 12-10-2021

Orthopedics and 3D technology in Turkey: A preliminary report

Öz:
Objectives: In this study, we present the use of case specific threedimensional (3D) printed plastic models and custom-made acetabularimplants in orthopedic surgery.Materials and methods: Between March 2018 and September 2020,surgeries were simulated using plastic models manufactured by 3Dprinters on the two patients with pilon fractures. Also, custom-madeacetabular implants were used on two patients with an acetabularbone defect for the revision of total hip arthroplasty (THA).Results: More comfortable surgeries were experienced in pilonfractures using preoperative plastic models. Similarly, during thefollow-up period, the patients that applied custom-made acetabularimplants showed a fixed and well-positioning in radiographicexamination. These patients did not experience any surgicalcomplications and achieved an excellent recovery.Conclusion: Preoperative surgical simulation with 3D printedmodels can increase the comfort of fracture surgeries. Also,custom-made 3D printed acetabular implants can perform animportant task in patients treated with revision THA surgery due tosevere acetabular defects.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • 1. Aimar A, Palermo A, Innocenti B. The role of 3D printing in medical applications: A state of the art. J Healthc Eng 2019;2019:5340616.
  • 2. Ye Z, Dun A, Jiang H, Nie C, Zhao S, Wang T, et al. The role of 3D printed models in the teaching of human anatomy: A systematic review and meta-analysis. BMC Med Educ 2020;20:335.
  • 3. Vaish A, Vaish R. 3D printing and its applications in orthopedics. J Clin Orthop Trauma 2018;9(Suppl 1):S74- S75.
  • 4. Saad BN, Yingling JM, Liporace FA, Yoon RS. Pilon fractures: Challenges and solutions. Orthop Res Rev 2019;11:149-57.
  • 5. May H, Köse Ö, Kastan Ö, Emre TY, Sindel M, Akkurt MO. Is there a safe place for posterior malleolar screw fixation? An anatomic study on dry bones. Jt Dis Relat Surg 2020;31:476-9.
  • 6. Zheng W, Chen C, Zhang C, Tao Z, Cai L. The feasibility of 3D printing technology on the treatment of pilon fracture and its effect on doctor-patient communication. Biomed Res Int 2018;2018:8054698.
  • 7. Kang HJ, Kim BS, Kim SM, Kim YM, Kim HN, Park JY, et al. Can preoperative 3D printing change surgeon's operative plan for distal tibia fracture? Biomed Res Int 2019;2019:7059413.
  • 8. Citak M, Kochsiek L, Gehrke T, Haasper C, Suero EM, Mau H. Preliminary results of a 3D-printed acetabular component in the management of extensive defects. Hip Int 2018;28:266-71.
  • 9. Aprato A, Giachino M, Bedino P, Mellano D, Piana R, Massè A. Management of Paprosky type three B acetabular defects by custom-made components: Early results. Int Orthop 2019;43:117-22.
  • 10. Trauner KB. The emerging role of 3D printing in arthroplasty and orthopedics. J Arthroplasty 2018;33:2352-4.
  • 11. Zhang H, Liu Y, Dong Q, Guan J, Zhou J. Novel 3D printed integral customized acetabular prosthesis for anatomical rotation center restoration in hip arthroplasty for developmental dysplasia of the hip crowe type III: A case report. Medicine (Baltimore) 2020;99:e22578.
  • 12. Sağlık Bilimleri Üniversitesi. Available at: https://www. sbu.edu.tr/ [Accessed: November 20, 2018]
  • 13. Available at: https://www.sbu.edu.tr/tr/arastirma/ uygulama-ve-arastirma-merkezleri/gulhane-medikaltasarim-ve-uretim-uam/index [Accessed: December 17, 2019]
  • 14. Available at: http://www.uhs.edu.tr/research/medicaldesign-and-manufacturing-center [Accessed: February 20, 2021]
  • 15. Bagaria V, Chaudhary K. A paradigm shift in surgical planning and simulation using 3D graphy: Experience of first 50 surgeries done using 3D-printed biomodels. Injury 2017;48:2501-8.
  • 16. Chen X, Chen X, Zhang G, Lin H, Yu Z, Wu C, et al. Accurate fixation of plates and screws for the treatment of acetabular fractures using 3D-printed guiding templates: An experimental study. Injury 2017;48:1147-54.
  • 17. Zheng W, Su J, Cai L, Lou Y, Wang J, Guo X, et al. Application of 3D-printing technology in the treatment of humeral intercondylar fractures. Orthop Traumatol Surg Res 2018;104:83-8.
  • 18. Zhang YW, Xiao X, Xiao Y, Chen X, Zhang SL, Deng L. Efficacy and prognosis of 3D printing technology in treatment of high-energy trans-syndesmotic ankle fracture dislocation – “log-splitter” injury. Med Sci Monit 2019;25:4233-43.
  • 19. Bai J, Wang Y, Zhang P, Liu M, Wang P, Wang J, et al. Efficacy and safety of 3D print-assisted surgery for the treatment of pilon fractures: A meta-analysis of randomized controlled trials. J Orthop Surg Res 2018;13:283.
  • 20. Li Q, Chen X, Lin B, Ma Y, Liao JX, Zheng Q. Threedimensional technology assisted trabecular metal cup and augments positioning in revision total hip arthroplasty with complex acetabular defects. J Orthop Surg Res 2019;14:431.
  • 21. Kieser DC, Ailabouni R, Kieser SCJ, Wyatt MC, Armour PC, Coates MH, et al. The use of an Ossis custom 3D-printed tri-flanged acetabular implant for major bone loss: minimum 2-year follow-up. Hip Int 2018;28:668-74.
  • 22. Kavalerskiy GM, Murylev VY, Rukin YA, Elizarov PM, Lychagin AV, Tselisheva EY. Three-dimensional models in planning of revision hip arthroplasty with complex acetabular defects. Indian J Orthop 2018;52:625-30.
APA Ertürk C, Ayyildiz S, Erdöl C (2021). Orthopedics and 3D technology in Turkey: A preliminary report. , 279 - 289. 10.52312/jdrs.2021.20
Chicago Ertürk Cemil,Ayyildiz Simel,Erdöl Cevdet Orthopedics and 3D technology in Turkey: A preliminary report. (2021): 279 - 289. 10.52312/jdrs.2021.20
MLA Ertürk Cemil,Ayyildiz Simel,Erdöl Cevdet Orthopedics and 3D technology in Turkey: A preliminary report. , 2021, ss.279 - 289. 10.52312/jdrs.2021.20
AMA Ertürk C,Ayyildiz S,Erdöl C Orthopedics and 3D technology in Turkey: A preliminary report. . 2021; 279 - 289. 10.52312/jdrs.2021.20
Vancouver Ertürk C,Ayyildiz S,Erdöl C Orthopedics and 3D technology in Turkey: A preliminary report. . 2021; 279 - 289. 10.52312/jdrs.2021.20
IEEE Ertürk C,Ayyildiz S,Erdöl C "Orthopedics and 3D technology in Turkey: A preliminary report." , ss.279 - 289, 2021. 10.52312/jdrs.2021.20
ISNAD Ertürk, Cemil vd. "Orthopedics and 3D technology in Turkey: A preliminary report". (2021), 279-289. https://doi.org/10.52312/jdrs.2021.20
APA Ertürk C, Ayyildiz S, Erdöl C (2021). Orthopedics and 3D technology in Turkey: A preliminary report. Joint diseases and related surgery, 32(2), 279 - 289. 10.52312/jdrs.2021.20
Chicago Ertürk Cemil,Ayyildiz Simel,Erdöl Cevdet Orthopedics and 3D technology in Turkey: A preliminary report. Joint diseases and related surgery 32, no.2 (2021): 279 - 289. 10.52312/jdrs.2021.20
MLA Ertürk Cemil,Ayyildiz Simel,Erdöl Cevdet Orthopedics and 3D technology in Turkey: A preliminary report. Joint diseases and related surgery, vol.32, no.2, 2021, ss.279 - 289. 10.52312/jdrs.2021.20
AMA Ertürk C,Ayyildiz S,Erdöl C Orthopedics and 3D technology in Turkey: A preliminary report. Joint diseases and related surgery. 2021; 32(2): 279 - 289. 10.52312/jdrs.2021.20
Vancouver Ertürk C,Ayyildiz S,Erdöl C Orthopedics and 3D technology in Turkey: A preliminary report. Joint diseases and related surgery. 2021; 32(2): 279 - 289. 10.52312/jdrs.2021.20
IEEE Ertürk C,Ayyildiz S,Erdöl C "Orthopedics and 3D technology in Turkey: A preliminary report." Joint diseases and related surgery, 32, ss.279 - 289, 2021. 10.52312/jdrs.2021.20
ISNAD Ertürk, Cemil vd. "Orthopedics and 3D technology in Turkey: A preliminary report". Joint diseases and related surgery 32/2 (2021), 279-289. https://doi.org/10.52312/jdrs.2021.20