#PAGE_PARAMS# #ADS_HEAD_SCRIPTS# #MICRODATA#

KOMPLEXNÍ REKONSTRUKCE OBLIČEJE NA ZÁKLADĚ 3D MODELŮ: PŘÍPADY S UŽITÍM PRELAMINACE A PŘEHLED LITERATURY


Autoři: F. Frias;  R. Horta
Působiště autorů: Faculty of Medicine, University of Porto ;  Portugal ;  Department of Plastic, Reconstructive and Maxillo-Facial Surgery, and Burn Unity, Centro Hospitalar de São João
Vyšlo v časopise: ACTA CHIRURGIAE PLASTICAE, 62, 3-4, 2020, pp. 86-94


Zdroje

1. Li QF., Zan T., Li H., Gu B., Liu K., Xie F., et al. Reconstruction of postburn full facial deformities with an integrated method. J Craniofac Surg. 2016, 27:1175–80.

2. Horta R., Nascimento R., Vilas-Boas J., Sousa F., Orvalho V., Silva A., et al. Thermographic analysis of facially burned patients. Burns. 2016, 42:236–8.

3. Hsieh TY., Dedhia R., Cervenka B., Tollefson TT. 3D Printing: Current use in facial plastic and reconstructive surgery. Curr Opin Otolaryngol Head Neck Surg. 2017, 25:291–9.

4. King BJ., Park EP., Christensen BJ., Danrad R. On-Site 3-Dimensional Printing and Preoperative Adaptation Decrease Operative Time for Mandibular Fracture Repair. J Oral Maxillofac Surg. [Internet]. 2018, 76:1950.e1–1950.e8. Available from: https://doi.org/10.1016/j.joms.2018.05.009

5. Yuan X., Xuan M., Tian W., Long J. Application of digital surgical guides in mandibular resection and reconstruction with fibula flaps. Int J Oral Maxillofac Surg [Internet]. 2016, 45:1406–9. Available from: http://dx.doi.org/10.1016/j.ijom.2016.06.022

6. Sinha P., Skolnick G., Patel KB., Branham GH., Chi JJ. A 3-dimensional–printed short-segment template prototype for mandibular fracture repair. JAMA Facial Plast Surg. 2018, 20:373–80.

7. Qassemyar Q., Assouly N., Temam S., Kolb F. Use of a three-dimensional custom-made porous titanium prosthesis for mandibular body reconstruction. Int J Oral Maxillofac Surg. 2017, 46:1248–51.

8. Abbasi AJ., Azari A., Mohebbi SZ., Javani A. Mandibular Rami Implant: A New Approach in Mandibular Reconstruction. J Oral Maxillofac Surg. 2017, 75:2550–8.

9. Yi CR., Choi JW. Three-Dimension-Printed Surgical Guide for Accurate and Safe Mandibuloplasty in Patients With Prominent Mandibular Angles. J Craniofac Surg. 2019, 30:1979–81.

10. Wang L., Tian D., Sun X., Xiao Y., Chen L., Wu G. The Precise Repositioning Instrument for Genioplasty and a Three-Dimensional Printing Technique for Treatment of Complex Facial Asymmetry. Aesthetic Plast Surg. 2017, 41:919–29.

11. Chang PC. Computer-assisted planning and 3D printing-assisted modeling for chin augmentation. Aesthetic Surg J. 2018, 38:1–10.

12. Zhang YL., Song JL., Xu XC., Zheng LL., Wang QY., Fan YB, et al. Morphologic analysis of the temporomandibular joint between patients with facial asymmetry and asymptomatic subjects by 2D and 3D evaluation: A preliminary study. Med (United States). 2016, 95:3052.

13. Ryu J., Cho J., Kim HM. Bilateral temporomandibular joint replacement using computer-assisted surgical simulation and three-dimensional printing. J Craniofac Surg. 2016, 27:450–2.

14. Hatamleh M., Turner C., Bhamrah G., Mack G., Osher J. Improved virtual planning for bimaxillary orthognathic surgery. J Craniofac Surg. 2016, 27:568–73.

15. Dave T., Tiple S, Vempati S., Palo M., Ali M., Kaliki S. et al. Low-cost three-dimensional printed orbital template-assisted patient-specific implants for the correction of spherical orbital implant migration. Indian J Ophthalmol. 2018, 66:1600–7.

16. Kim YC., Jeong WS., Park T kyung., Choi JW., Koh KS., Oh TS. The accuracy of patient specific implant prebented with 3D-printed rapid prototype model for orbital wall reconstruction. J Cranio-Maxillofacial Surg [Internet]. 2017, 45:928–36. Available from: http://dx.doi.org/10.1016/j.jcms.2017.03.010

17. Nekooei S., Sardabi M., Razavi M., Nekooei A., Kiarudi M. Implantation of customized, preshaped implant for orbital fractures with the aid of three-dimensional printing. Middle East Afr J Ophthalmol. 2018, 25:56–8.

18. Moura LB., de Azambuja Carvalho PH., Gabrielli MAC., Pereira-Filho VA. Three-dimensional printed model and transantral endoscopy to orbital fracture repair. J Craniofac Surg. 2018, 29:594–5.

19. Weissler JM., Sosin M., Dorafshar AH., Garcia JR. Combining Virtual Surgical Planning, Intraoperative Navigation, and 3-Dimensional Printing in Prosthetic-Based Bilateral Microtia Reconstruction. J Oral Maxillofac Surg [Internet]. 2017, 75:1491–7. Available from: http://dx.doi.org/10.1016/j.joms.2016.12.037

20. Gibelli D., Cellina M., Gibelli S., Oliva AG., Termine G., Pucciarelli V., et al. Assessing symmetry of zygomatic bone through three-dimensional segmentation on computed tomography scan and “mirroring” procedure: A contribution for reconstructive maxillofacial surgery. J Cranio-Maxillofacial Surg [Internet]. 2018, 46:600–4. Available from: https://doi.org/10.1016/j.jcms.2018.02.012

21. Roy AA., Efanov JI., Mercier-Couture G., Chollet A., Borsuk DE. Zygomatico-maxillary Reconstruction with Computer-aided Manufacturing of a Free DCIA Osseous Flap and Intraoral Anastomoses. Plast Reconstr Surg – Glob Open. 2017, 5:1–4.

22. Khan G., Choi YS., Park ES., Choi YD. The application of three-dimensional simulation program and three-dimensional printing in secondary rhinoplasty. J Craniofac Surg. 2018, 29:774–7.

23. Klosterman T., Romo T. Three-Dimensional Printed Facial Models in Rhinoplasty. Facial Plast Surg. 2018, 34:201–4.

24. Jung JW., Ha DH., Kim BY., Seo BF., Han HH., Kim DH., et al. Nasal Reconstruction Using a Customized Three-Dimensional–Printed Stent for Congenital Arhinia: Three-Year Follow-up. Laryngoscope. 2019, 129:582–5.

25. Zeng W., Chen G., Ju R., Yin H., Tian W., Tang W. The Combined Application of Database and Three-Dimensional Image Registration Technology in the Restoration of Total Nose Defect. J Craniofac Surg. 2018, 29:484–7.

26. Padula S La., Hersant B., Chatel H., Aguilar P., Bosc R., Roccaro G., et al. One-step facial feminization surgery: The importance of a custom-made preoperative planning and patient satisfaction assessment. J Plast Reconstr Aesthetic Surg [Internet]. 2019, 72:1694–9. Available from: https://doi.org/10.1016/j.bjps.2019.06.014

27. Pribaz JJ., Caterson EJ. Evolution and limitations of conventional autologous reconstruction of the head and neck. J Craniofac Surg. 2013, 24:99–107.

28. Guo L., Pribaz JJ. Clinical flap prefabrication. Plast Reconstr Surg. 2009, 124:340–50.

29. Horta R., Valença-Filipe R., Carvalho J., Nascimento R., Silva A., Amarante J. Reconstruction of a near total ear amputation with a neurosensorial radial forearm free flap prelaminated with porous polyethylene implant and delay procedure. Microsurgery. 2017, 38:203–8.

30. Modest MC., Moore EJ., Abel KMV., Janus JR., Sims JR., Price DL., et al. Scapular flap for maxillectomy defect reconstruction and preliminary results using three-dimensional modeling. Laryngoscope. 2017, 127:8–14.

31. Jȩdrzejewski P., MacIejewski A., Szymczyk C., Wierzgoń J. Maxillary reconstruction using a multi-element free fibula flap based on a three-dimensional polyacrylic resin model. Pol Prz Chir Polish J Surg. 2012, 84:49–55.

32. Fu K., Liu Y., Gao N., Cai J., He W., Qiu W. Reconstruction of Maxillary and Orbital Floor Defect With Free Fibula Flap and Whole Individualized Titanium Mesh Assisted by Computer Techniques. J Oral Maxillofac Surg [Internet]. 2017, 75:1791e1–1791e9. Available from: http://dx.doi.org/10.1016/j.joms.2017.03.054

33. Zhu B., Han M., Heaton C., Park AM., Seth R., Knott PD. Assessing Free Flap Reconstruction Accuracy of the Midface and Orbit Using Computer-Aided Modeling Software. 2020, 22:93–9.

34. Rohner D., Guijarro-Martínez R., Bucher P., Hammer B. Importance of patient-specific intraoperative guides in complex maxillofacial reconstruction. J Cranio-Maxillofacial Surg [Internet]. 2013, 41:382–90. Available from: http://dx.doi.org/10.1016/j.jcms.2012.10.021

35. Modabber A., Legros C., Rana M., Gerressen M., Riediger D., Ghassemi A. Evaluation of computer-assisted jaw reconstruction with free vascularized fibular flap compared to conventional surgery: a clinical pilot study. Int J Med Robot Comput Assist Surg. 2012, 8:215–20.

36. He Y., Zhu H guang., Zhang Z yuan., He J., Sader R. Three-dimensional model simulation and reconstruction of composite total maxillectomy defects with fibula osteomyocutaneous flap flow-through from radial forearm flap. Oral Surgery, Oral Med Oral Pathol Oral Radiol Endodontology [Internet]. 2009, 108:e6–12. Available from: http://dx.doi.org/10.1016/j.tripleo.2009.07.027

37. Hu YJ., Hardianto A., Li SY., Zhang ZY., Zhang CP. Reconstruction of a palatomaxillary defect with vascularized iliac bone combined with a superficial inferior epigastric artery flap and zygomatic implants as anchorage. Int J Oral Maxillofac Surg. 2007, 36:854–7.

38. Kääriäinen M., Kuuskeri M., Gremoutis G., Kuokkanen H., Miettinen A., Laranne J. Utilization of Three-Dimensional Computer-Aided Preoperative Virtual Planning and Manufacturing in Maxillary and Mandibular Reconstruction with a Microvascular Fibula Flap. J Reconstr Microsurg. 2016, 32:137–41.

39. Nkenke E., Eitner S. Complex hemimaxillary rehabilitation with a prefabricated fibula flap and cast-based vacuum-formed surgical template. J Prosthet Dent [Internet]. 2014, 111:521–4. Available from: http://dx.doi.org/10.1016/j.prosdent.2013.07.028

40. Mottini M., Seyed Jafari SM., Shafighi M., Schaller B. New approach for virtual surgical planning and mandibular reconstruction using a fibula free flap. Oral Oncol [Internet]. 2016, 59:6–9. Available from: http://dx.doi.org/10.1016/j.oraloncology.2016.06.001

41. Kadowaki M., Kubo T., Fujikawa M., Tashima H., Nagayama H., Ishihara O., et al. A two-tiered structure device based on stereolithography for residual mandible repositioning in mandibular reconstruction with fibular flap. Microsurgery. 2017, 37:509–15.

42. Jacek B., Maciej P., Tomasz P., Agata B., Wiesław K., Radosław W., et al. 3D printed models in mandibular reconstruction with bony free flaps. J Mater Sci Mater Med. 29, 2018, p. 10–15.

43. Iglesias-Martín F., Oliveros-López LG., Fernández-Olavarría A., Serrera-Figallo MÁ., Gutiérrez-Corrales A., Torres-Lagares D., et al. Advantages of surgical simulation in the surgical reconstruction of oncological patients. Med Oral Patol Oral y Cir Bucal. 2018, 23:e596–601.

44. Arce K., Waris S., Alexander AE., Ettinger KS. Novel Patient-Specific 3-Dimensional Printed Fixation Tray for Mandibular Reconstruction With Fibular Free Flaps. J Oral Maxillofac Surg. 2018, 76:2211–9.

45. Jȩdrzejewski P., MacIejewski A., Szymczyk C., Wierzgoń J. Maxillary reconstruction using a multi-element free fibula flap based on a three-dimensional polyacrylic resin model. Pol Prz Chir Polish J Surg. 2012, 84:49–55.

46. Wang WH., Zhu J., Deng JY., Xia B., Xu B. Three-dimensional virtual technology in reconstruction of mandibular defect including condyle using double-barrel vascularized fibula flap. J Cranio-Maxillofacial Surg. 2013, 41:417–22.

47. Weitz J., Wolff KD., Kesting MR., Nobis CP. Development of a novel resection and cutting guide for mandibular reconstruction using free fibula flap. J Cranio-Maxillofacial Surg [Internet]. 2018, 46:1975–8. Available from: https://doi.org/10.1016/j.jcms.2018.09.007

48. Mazzoni S., Marchetti C., Sgarzani R., Cipriani R., Scotti R., Ciocca L. Prosthetically guided maxillofacial surgery: Evaluation of the accuracy of a surgical guide and custom-made bone plate in oncology patients after mandibular reconstruction. Plast Reconstr Surg. 2013, 131:1376–85.

49. Ciocca L., Mazzoni S., Fantini M., Persiani F., Marchetti C., Scotti R. CAD/CAM guided secondary mandibular reconstruction of a discontinuity defect after ablative cancer surgery. J Cranio-Maxillofacial Surg [Internet]. 2012, 40:e511–5. Available from: http://dx.doi.org/10.1016/j.jcms.2012.03.015

50. Katsuragi Y., Kayano S., Akazawa S., Nagamatsu S., Koizumi T., Matsui T., et al. Mandible reconstruction using the calcium-sulphate three-dimensional model and rubber stick: A new method, “mould technique”, for more accurate, efficient and simplified fabrication. J Plast Reconstr Aesthetic Surg [Internet]. 2011, 64:614–22. Available from: http://dx.doi.org/10.1016/j.bjps.2010.08.010

51. Roser SM., Ramachandra S., Blair H., Grist W., Carlson GW., Christensen AM., et al. The accuracy of virtual surgical planning in free fibula mandibular reconstruction: Comparison of planned and final results. J Oral Maxillofac Surg [Internet]. 2010, 68:2824–32. Available from: http://dx.doi.org/10.1016/j.joms.2010.06.177

52. Cornelius CP., Smolka W., Giessler GA., Wilde F., Probst FA. Patient-specific reconstruction plates are the missing link in computer-assisted mandibular reconstruction: A showcase for technical description. J Cranio-Maxillofacial Surg [Internet]. 2015, 43:624–9. Available from: http://dx.doi.org/10.1016/j.jcms.2015.02.016

53. Ren W., Gao L., Li S., Chen C., Li F., Wang Q., et al. Virtual planning and 3D printing modeling for mandibular reconstruction with fibula free flap. Med Oral Patol Oral y Cir Bucal. 2018, 23:e359–66.

54. Nuri T., Ueda K., Iwanaga H., Otsuki Y., Nakajima Y., Ueno T., et al. Microsurgical mandibular reconstruction using a resin surgical guide combined with a metal reconstructive plate. Microsurgery. 2019, 39:696–703.

55. Vakharia KT., Natoli NB., Johnson TS. Stereolithography-aided reconstruction of the mandible. Plast Reconstr Surg. 2012, 129:194–5.

56. Valentini V., Agrillo A., Battisti A., Gennaro P., Calabrese L., Iannetti G. Surgical planning in reconstruction of mandibular defect with fibula free flap: 15 Patients. J Craniofac Surg. 2005, 16:601–7.

57. Chai G., Tan A., Yao CA., Magee WP., Junjun P., Zhu M., et al. Treating Parry-Romberg Syndrome Using Three-Dimensional Scanning and Printing and the Anterolateral Thigh Dermal Adipofascial Flap. J Craniofac Surg. 2015, 26:1826–9.

58. Herlin C., Doucet JC., Bigorre M., Khelifa HC., Captier G. Computer-assisted midface reconstruction in Treacher Collins syndrome part 1: Skeletal reconstruction. J Cranio-Maxillofacial Surg [Internet]. 2013, 41:670–5. Available from: http://dx.doi.org/10.1016/j.jcms.2013.01.007

59. Daugherty THF., Pribaz JJ., Neumeister MW. The Use of Prefabricated Flaps in Burn Reconstruction. Clin Plast Surg. 2017, 44:813–21.

60. Pomahac B., Aflaki P., Chandraker A., Pribaz JJ. Facial transplantation and immunosuppressed patients: A new frontier in reconstructive surgery. Transplantation. 2008, 85:1693–7.

61. Mathy JA., Pribaz JJ. Prefabrication and Prelamination Applications in Current Aesthetic Facial Reconstruction. Clin Plast Surg. 2009, 36:493–505.

62. Weber SM., Wang TD. Options for Internal Lining in Nasal Reconstruction. Facial Plast Surg Clin North Am. 2011, 19:163–73.

63. Reinisch JF., Lewin S. Ear reconstruction using a porous polyethylene framework and temporoparietal fascia flap. Facial Plast Surg. 2009, 25:181–9.

64. Ali K., Trost JG., Truong TA., Harshbarger RJ. Total Ear Reconstruction Using Porous Polyethylene. Semin Plast Surg. 2017, 31:161–72.

Štítky
Chirurgie plastická Ortopedie Popáleninová medicína Traumatologie

Článek vyšel v časopise

Acta chirurgiae plasticae

Číslo 3-4

2020 Číslo 3-4
Nejčtenější tento týden
Nejčtenější v tomto čísle
Kurzy

Zvyšte si kvalifikaci online z pohodlí domova

Svět praktické medicíny 1/2024 (znalostní test z časopisu)
nový kurz

Koncepce osteologické péče pro gynekology a praktické lékaře
Autoři: MUDr. František Šenk

Sekvenční léčba schizofrenie
Autoři: MUDr. Jana Hořínková

Hypertenze a hypercholesterolémie – synergický efekt léčby
Autoři: prof. MUDr. Hana Rosolová, DrSc.

Význam metforminu pro „udržitelnou“ terapii diabetu
Autoři: prof. MUDr. Milan Kvapil, CSc., MBA

Všechny kurzy
Kurzy Podcasty Doporučená témata Časopisy
Přihlášení
Zapomenuté heslo

Zadejte e-mailovou adresu, se kterou jste vytvářel(a) účet, budou Vám na ni zaslány informace k nastavení nového hesla.

Přihlášení

Nemáte účet?  Registrujte se

#ADS_BOTTOM_SCRIPTS#