一种系统性制造3D打印患者匹配式颅颌面重建植入物的方法

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一种系统性制造3D打印患者匹配式颅颌面重建植入物的方法

2024-07-16 06:46| 来源: 网络整理| 查看: 265

[ 1 ] Marchetti C, Bianchi A, Mazzoni S, Cipriani R, Campobassi A. Oromandibular reconstruction using a fibula osteocutaneous free flap: four different ‘‘preplating” techniques. Plast Reconstr Surg 2006;118(3):643–51. 链接1

[ 2 ] Martola M, Lindqvist C, Hänninen H, Al-Sukhun J. Fracture of titanium plates used for mandibular reconstruction following ablative tumor surgery. J Biomed Mater Res B 2007;80B(2):345–52. 链接1

[ 3 ] Katakura A, Shibahara T, Noma H, Yoshinari M. Material analysis of AO plate fracture cases. J Oral Maxillofac Surgerys 2004;62(3):348–52. 链接1

[ 4 ] Li J, Sun J, Ma HT. Reconstruction of maxillary and mandibular defect with individual titanium mesh/plate—a clinical study. J Oral Maxillofac Surg 2003;13(1):17–20. Chinese. 链接1

[ 5 ] Singare S, Li D, Lu B, Liu Y, Gong Z, Liu Y. Design and fabrication of custom mandible titanium tray based on rapid prototyping. Med Eng Phys 2004;26 (8):671–6. 链接1

[ 6 ] Li B, Jiang TF, Shen SY, Cai M, Jiang WB, Shen GF, et al. Accuracy of 3D printing individual titanium plates for maxillary repositioning in orthognathic surgery. China J Oral Maxillofac Surg 2016;14(5):419–24. Chinese. 链接1

[ 7 ] Zhang B, Pei X, Song P, Sun H, Li H, Fan Y, et al. Porous bioceramics produced by inkjet 3D printing: effect of printing ink formulation on the ceramic macro and micro porous architectures control. Compos Part B Eng 2018;155(15):112–21. 链接1

[ 8 ] Diao J, Ouyang J, Deng T, Liu X, Feng Y, Zhao N, et al. 3D-plotted beta-tricalcium phosphate scaffolds with smaller pore sizes improve in vivo bone regeneration and biomechanical properties in a critical-sized calvarial defect rat model. Adv Healthcare Meter 2018;7(17):1800441. 链接1

[ 9 ] Rotaru H, Stan H, Florian IS, Schumacher R, Park YT, Kim SG, et al. Cranioplasty with custom-made implants: analyzing the cases of 10 patients. J Oral Maxillofac Surg 2012;70(2):e169–76. 链接1

[10] Rotaru H, Schumacher R, Kim SG, Dinu C. Selective laser melted titanium implants: a new technique for the reconstruction of extensive zygomatic complex defects. Maxillofac Plast Reconstr Surg 2015;37(1):1. 链接1

[11] Chaware SM, Bagaria V, Kuthe A. Application of the rapid prototyping technique to design a customized temporomandibular joint used to treat temporomandibular ankylosis. Indian J Plast Surg 2009;42(1):85–93. 链接1

[12] Park EK, Lim JY, Yun IS, Kim JS, Woo SH, Kim DS, et al. Cranioplasty enhanced by three-dimensional printing: custom-made three-dimensional-printed titanium implants for skull defects. J Craniofac Surg 2016;27(4):943–9. 链接1

[13] Rana M, Chin SJ, Muecke T, Kesting M, Groebe A, Riecke B, et al. Increasing the accuracy of mandibular reconstruction with free fibula flaps using functionalized selective laser-melted patient-specific implants: a retrospective multicenter analysis. J Craniomaxillofac Surg 2017;45(8):1212–9. 链接1

[14] Wilde F, Kasper R, Sakkas A, Pietzka S, Winter K, Schramm A, et al. Biomechanical in-vitro study concerning the stability of customized CAD/ CAM mandibular reconstruction plates. Comparison of additively and subtractively manufactured as well as hand-bended plates. Int J Oral Maxillofac Surg 2019;48(S1):150–1. 链接1

[15] Lowther M, Louth S, Davey A, Hussain A, Ginestra P, Carter L, et al. Clinical, industrial, and research perspectives on powder bed fusion additively manufactured metal implants. Addit Manuf 2019;28:565–84. 链接1

[16] Vahtsevanos K, Triaridis S, Patrikidou A, Uttley D, Moore AJ, Bell A, et al. The Atkinson Morley’s Hospital joint neurosurgical–maxillofacial procedures: cranioplasty case series 1985–2003. J Craniomaxillofac Surg 2007;35 (8):336–42. 链接1

[17] Renishaw plc. LaserImplantTM—case timeline (UK Only) [Internet]. New Mills: Renishaw plc; c2016 [cited 2019 Jun 27]. Available from: http://www. renishaw.com/go/media/pdf/en/3dcb96b444bf4ad6aed3394b779943ec.pdf.

[18] Peel S, Eggbeer D, Burton H, Hanson H, Evans PL. Additively manufactured versus conventionally pressed cranioplasty implants: an accuracy comparison. Arch Proc Inst Mech Eng Part H J Eng Med 2018;232(9):949–61. 链接1

[19] Lee CH, Chung YS, Lee SH, Yang HJ, Son YJ. Analysis of the factors influencing bone graft infection after cranioplasty. J Trauma Acute Care Surg 2012;73 (1):255–60. 链接1

[20] Jackson TD, Wannares JJ, Lancaster RT, Rattner DW, Hutter MM. Does speed matter? The impact of operative time on outcome in laparoscopic surgery. Surg Endosc 2011;25(7):2288–95. 链接1

[21] Phan K, Kim JS, Kim JH, Somani S, Di’Capua J, Dowdell JE, et al. Anesthesia duration as an independent risk factor for early postoperative complications in adults undergoing elective ACDF. Global Spine J 2017;7(8):727–34. 链接1

[22] US Food and Drug Administration. Technical considerations for additive manufactured medical devices—guidance for Industry and Food and Drug Administration staff [Internet]. Silver Spring: US Food and Drug Administration; 2017 Dec 5 [2019 Jun 27]. Available from: https://www. fda.gov/media/97633/download.

[23] Attar H, Calin M, Zhang LC, Scudino S, Eckert J. Manufacture by selective laser melting and mechanical behavior of commercially pure titanium. Mater Sci Eng A 2014;593:170–7. 链接1

[24] Gu DD, Hagedorn Y, Meiners W, Meng G, Batista RJS, Wissenbach K, et al. Densification behavior, microstructure evolution, and wear performance of selective laser melting processed commercially pure titanium. Acta Mater 2012;60(9):3849–60. 链接1

[25] Zhang Y, Xiu P, Jia Z, Zhang T, Yin C, Cheng Y, et al. Effect of vanadium released from micro-arc oxidized porous Ti6Al4V on biocompatibility in orthopedic applications. Colloids Surf B Biointerfaces 2018;169(1):366–74. 链接1

[26] Singh G, Singh H, Sidhu BS. Characterization and corrosion resistance of plasma sprayed HA and HA–SiO2 coatings on Ti–6Al–4V. Surf Coat Tech 2013;228:242–7. 链接1

[27] Yang Y, Kim KH, Ong JL. A review on calcium phosphate coatings produced using a sputtering process—an alternative to plasma spraying. Biomaterials 2005;26(3):327–37. 链接1

[28] Bigi A, Boanini E, Bracci B, Facchini A, Panzavolta S, Segatti F, et al. Nanocrystalline hydroxyapatite coatings on titanium: a new fast biomimetic method. Biomaterials 2005;26(19):4085–9. 链接1

[29] Choudhury P, Agrawal DC. Sol–gel derived hydroxyapatite coatings on titanium substrates. Surf Coat Techno 2011;206(2–3):360–5. 链接1

[30] Yang CC, Huang CY, Lin CC, Yen SK. Electrolytic deposition of collagen/HA composite on post HA/TiO2 coated Ti6Al4V implant alloy. J Electrochem Soc 2011;158(2):E13–20. 链接1

[31] Jain P, Mandal T, Prakash P, Garg A, Balani K. Electrophoretic deposition of nanocrystalline hydroxyapatite on Ti6Al4V/TiO2 substrate. J Coat Technol Res 2013;10(2):263–75. 链接1

[32] Yang WF, Zhang C, Choi W, Zhu W, Li DTS, Chen C, et al. A novel ‘surgeondominated’ approach to the design of 3D-printed patient-specific surgical plates in mandibular reconstruction: a proof-of-concept study. Int J Oral Maxillofac Surg 2019;49(1):13–21. 链接1

[33] Huang Y, Yan Y, Pang X, Ding Q, Han S. Bioactivity and corrosion properties of gelatin-containing and strontium-doped calcium phosphate composite coating. Appl Surf Sci 2013;282:583–9. 链接1

[34] Osman RB, Swain MV. A critical review of dental implant materials with an emphasis on titanium versus zirconia. Materials 2015;8(3):932–58. 链接1

[35] Guillaume O, Geven MA, Varjas V, Varga P, Gehweiler D, Stadelmann VA, et al. Orbital floor repair using patient specific osteoinductive implant made by stereolithography. Biomaterials 2020;233:119721. 链接1



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