3D Printing in Craniofacial Surgery

Naji Bou Zeid , Eduardo Arias , Lee W. T. Alkureishi

Plastic and Aesthetic Research ›› 2024, Vol. 11 ›› Issue (1) : 34

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Plastic and Aesthetic Research ›› 2024, Vol. 11 ›› Issue (1) :34 DOI: 10.20517/2347-9264.2024.41
Review

3D Printing in Craniofacial Surgery

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Abstract

In the last few decades, the utilization of 3D printing has transcended its niche status to become an indispensable tool in medicine, and its ability to swiftly produce intricate geometries, coupled with its cost-effectiveness, has propelled its adoption across multiple surgical specialties, including plastic, abdominal, and orthopedic surgery. Notably, in plastic surgery, 3D printing has revolutionized several facets of patient care, spanning from the creation of anatomical models for surgical planning and medical education to the fabrication of custom implants and molds and the creation of surgical guides. This review delves into the expansive landscape of 3D printing applications within plastic surgery, examining the diverse modalities and materials employed. By leveraging advancements in printing processes and materials, surgeons are empowered to refine established techniques and develop novel solutions tailored to individual patient needs. As the technology continues to mature, its impact on plastic surgery is poised to deepen, promising further enhancements in surgical precision, patient care, and functional and aesthetic outcomes. This review underscores the transformative potential of 3D printing in shaping the future landscape of plastic surgery, driving continuous improvement and innovation in the field.

Keywords

3D Printing / Surgical guides / plastic surgery / anatomical models

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Naji Bou Zeid, Eduardo Arias, Lee W. T. Alkureishi. 3D Printing in Craniofacial Surgery. Plastic and Aesthetic Research, 2024, 11(1): 34 DOI:10.20517/2347-9264.2024.41

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References

[1]

Tack P,Gemmel P.3D-printing techniques in a medical setting: a systematic literature review.Biomed Eng Online2016;15:115 PMCID:PMC5073919

[2]

D'Urso PS,Barker TM.Custom cranioplasty using stereolithography and acrylic.Br J Plast Surg2000;53:200-4

[3]

Pugliese L,Negrello E.The clinical use of 3D printing in surgery.Updates Surg2018;70:381-8

[4]

Mendonça CJA,Pontim CE.An overview of 3D anatomical model printing in orthopedic trauma surgery.J Multidiscip Healthc2023;16:875-87 PMCID:PMC10082616

[5]

Pietrabissa A,Negrello E.An overview on 3D printing for abdominal surgery.Surg Endosc2020;34:1-13

[6]

Stansbury JW.3D printing with polymers: Challenges among expanding options and opportunities.Dent Mater2016;32:54-64

[7]

Dawood A,Sauret-Jackson V.3D printing in dentistry.Br Dent J2015;219:521-9

[8]

Zhang J,Chen J,Zhang J.The application of polyetheretherketone (PEEK) implants in cranioplasty.Brain Res Bull2019;153:143-9

[9]

Khorsandi D,Abasian P.3D and 4D printing in dentistry and maxillofacial surgery: printing techniques, materials, and applications.Acta Biomater2021;122:26-49

[10]

Curti C,Russell CA.Stereolithography apparatus evolution: enhancing throughput and efficiency of pharmaceutical formulation development.Pharmaceutics2021;13:616 PMCID:PMC8145482

[11]

Quodbach J,Breitkreutz J.Quality of FDM 3D printed medicines for pediatrics: considerations for formulation development, filament extrusion, printing process and printer design.Ther Innov Regul Sci2022;56:910-28 PMCID:PMC9492703

[12]

Bulina NV,Makarova SV.Selective laser melting of hydroxyapatite: perspectives for 3D printing of bioresorbable ceramic implants.Materials (Basel)2021;14:5425 PMCID:PMC8468468

[13]

Sing SL,Yeong WY.Laser and electron-beam powder-bed additive manufacturing of metallic implants: A review on processes, materials and designs.J Orthop Res2016;34:369-85

[14]

Kafle A,Silwal R,Shrestha PL.3D/4D printing of polymers: fused deposition modelling (FDM), selective laser sintering (SLS), and stereolithography (SLA).Polymers (Basel)2021;13:3101 PMCID:PMC8470301

[15]

Patel PK,Morris DE.Our experience with virtual craniomaxillofacial surgery: planning, transference and validation.Stud Health Technol Inform2008;132:363-5

[16]

Marques MA,Zhao L,Alkureishi LWT.Patient-specific composite anatomic models: improving the foundation for craniosynostosis repair.J Craniofac Surg2023;34:1078-81

[17]

Bartikian M,Gonçalves-Ferreira A.3D printing anatomical models of head bones.Surg Radiol Anat2019;41:1205-9

[18]

McMenamin PG,McHenry CR.The production of anatomical teaching resources using three-dimensional (3D) printing technology.Anat Sci Educ2014;7:479-86

[19]

Giannopoulos AA,Sheikh A.3D printed ventricular septal defect patch: a primer for the 2015 Radiological Society of North America (RSNA) hands-on course in 3D printing.3D Print Med2015;1:3 PMCID:PMC6036609

[20]

Tan L,Jiang H.Full color 3D printing of anatomical models.Clin Anat2022;35:598-608

[21]

Yang MY,Liu CH.Effects of the individual three-dimensional printed craniofacial bones with a quick response code on the skull spatial knowledge of undergraduate medical students.Anat Sci Educ2023;16:858-69

[22]

Nicot R,Chazard E.Three-dimensional printing model enhances craniofacial trauma teaching by improving morphologic and biomechanical understanding: a randomized controlled study.Plast Reconstr Surg2022;149:475e-84e

[23]

Joseph FJ,Goldberg J.3D-Printed head model in patient's education for micro-neurosurgical aneurysm clipping procedures.World Neurosurg2023;175:e1069-74

[24]

Oliveira M,Dias A.3-D biomodelling technology for maxillofacial reconstruction.Mater Sci Eng C2008;28:1347-51

[25]

Segaran N,Mayer JL.Application of 3D printing in preoperative planning.J Clin Med2021;10:917 PMCID:PMC7956651

[26]

Pacione D,Berman P.The utility of a multimaterial 3D printed model for surgical planning of complex deformity of the skull base and craniovertebral junction.J Neurosurg2016;125:1194-7

[27]

Daniel M,Hoskison E.Frontal sinus models and onlay templates in osteoplastic flap surgery.J Laryngol Otol2011;125:82-5

[28]

Kudva A,Saha M,Kamath AT.Mandibular reconstruction modalities using virtual surgical planning and 3D printing technology: a tertiary care centre experience.J Maxillofac Oral Surg

[29]

Kozakiewicz M,Zajdel R.Custom-made zirconium dioxide implants for craniofacial bone reconstruction.Materials (Basel)2021;14:840 PMCID:PMC7916391

[30]

Keller EE,Liang X,Huebner M.Temporomandibular custom hemijoint replacement prosthesis: prospective clinical and kinematic study.J Oral Maxillofac Surg2012;70:276-88

[31]

Azuma M,Ishibashi-Kanno N.Mandibular reconstruction using plates prebent to fit rapid prototyping 3-dimensional printing models ameliorates contour deformity.Head Face Med2014;10:45 PMCID:PMC4213462

[32]

Park SW,Koh KS.Mirror-Imaged rapid prototype skull model and pre-molded synthetic scaffold to achieve optimal orbital cavity reconstruction.J Oral Maxillofac Surg2015;73:1540-53

[33]

Müller A,Uhl E.The application of rapid prototyping techniques in cranial reconstruction and preoperative planning in neurosurgery.J Craniofac Surg2003;14:899-914

[34]

Yim HW,Kim YK.Facial contouring surgery with custom silicone implants based on a 3D prototype model and CT-scan: a preliminary study.Aesthetic Plast Surg2015;39:418-24

[35]

Li M,Xu Y.The application of rapid prototyping technique in chin augmentation.Aesthetic Plast Surg2010;34:172-8

[36]

Huys SEF,Mommaerts MY.Evaluation of patient-specific cranial implant design using finite element analysis.World Neurosurg2021;148:198-204

[37]

Sharma N,Dalcanale F.Quantitative assessment of point-of-care 3D-printed patient-specific polyetheretherketone (PEEK) cranial implants.Int J Mol Sci2021;22:8521 PMCID:PMC8395180

[38]

Ghai S,Jain N,Pillai AK.Use of 3-D printing technologies in craniomaxillofacial surgery: a review.Oral Maxillofac Surg2018;22:249-59

[39]

Msallem B,Honigmann P,Thieringer F.Craniofacial reconstruction by a cost-efficient template-based process using 3D printing.Plast Reconstr Surg Glob Open2017;5:e1582 PMCID:PMC5732683

[40]

Ghantous Y,Mohanna A.Three-dimensional technology applications in maxillofacial reconstructive surgery: current surgical implications.Nanomaterials (Basel)2020;10:2523 PMCID:PMC7765477

[41]

Alasseri N.Patient-specific implants for maxillofacial defects: challenges and solutions.Maxillofac Plast Reconstr Surg2020;42:15 PMCID:PMC7239988

[42]

Zhong S,Susarla SM,Huang J.Quantitative analysis of dual-purpose, patient-specific craniofacial implants for correction of temporal deformity.Neurosurgery2015;11 Suppl 2:220-9; discussion 229

[43]

Parthasarathy J.3D modeling, custom implants and its future perspectives in craniofacial surgery.Ann Maxillofac Surg2014;4:9-18 PMCID:PMC4073471

[44]

Shuang F,Shao Y,Zou H.Treatment of intercondylar humeral fractures with 3D-printed osteosynthesis plates.Medicine (Baltimore)2016;95:e2461 PMCID:PMC4998254

[45]

Jung BK,Kim YS.Ideal scaffold design for total ear reconstruction using a three-dimensional printing technique.J Biomed Mater Res B Appl Biomater2019;107:1295-303

[46]

Jo H.Zygoma Augmentation with 3D printed bioactive glass-ceramic implant.J Craniofac Surg2022;33:e521-3

[47]

Franco J,Vernon D.Reconstruction of midface defect from idiopathic destructive process using Medpor implant.Am J Otolaryngol2017;38:351-3

[48]

Saponaro G,Barbera G,Gasparini G.Our problems and observations in 3D facial implant planning.Maxillofac Plast Reconstr Surg2022;44:32 PMCID:PMC9556674

[49]

Chan TJ,Wang E.The state of virtual surgical planning in maxillary Reconstruction: a systematic review.Oral Oncol2022;133:106058

[50]

Zhao L,Widera GEO.Development of a computer assisted craniofacial surgery planning system.Stud Health Technol Inform2003;94:410-2

[51]

Haq J,Weimer K.Single stage treatment of ankylosis of the temporomandibular joint using patient-specific total joint replacement and virtual surgical planning.Br J Oral Maxillofac Surg2014;52:350-5

[52]

Ciocca L,Mazzoni S.Accuracy of fibular sectioning and insertion into a rapid-prototyped bone plate, for mandibular reconstruction using CAD-CAM technology.J Craniomaxillofac Surg2015;43:28-33

[53]

Modabber A,Rana M,Riediger D.Evaluation of computer-assisted jaw reconstruction with free vascularized fibular flap compared to conventional surgery: a clinical pilot study.Int J Med Robot2012;8:215-20

[54]

Tawa P,Luca-Pozner V.Three-dimensional custom-made surgical guides in facial feminization surgery: prospective study on safety and accuracy.Aesthet Surg J2021;41:NP1368-78

[55]

Wu B.Control of mandibular width with 3D printed occlusal splint in children with multiple mandibular fractures.J Craniofac Surg2023;34:e582-4

[56]

Kozakiewicz M,Loba P.Clinical application of 3D pre-bent titanium implants for orbital floor fractures.J Craniomaxillofac Surg2009;37:229-34

[57]

Li B,Sun H,Shen SG.A novel method of computer aided orthognathic surgery using individual CAD/CAM templates: a combination of osteotomy and repositioning guides.Br J Oral Maxillofac Surg2013;51:e239-44

[58]

Qaisi M,Shah B.The predictive hole technique: a technical note.J Oral Maxillofac Surg2021;79:722-7

[59]

Xingzhou Q,Ong HS,Abdelrehem A.Accuracy of computer-aided design/computer-aided manufacturing surgical template for guidance of dental implant distraction in mandibular reconstruction with free fibula flaps.J Craniofac Surg2020;31:355-9

[60]

Barakat A, Abou-ElFetouh A, Hakam MM, El-Hawary H, Abdel-Ghany KM. Clinical and radiographic evaluation of a computer-generated guiding device in bilateral sagittal split osteotomies.J Craniomaxillofac Surg2014;42:e195-203

[61]

Hanasono MM.Computer-assisted design and rapid prototype modeling in microvascular mandible reconstruction.Laryngoscope2013;123:597-604

[62]

Mussi E,Volpe Y,McGreevy KS.Ear reconstruction simulation: from handcrafting to 3D printing.Bioengineering (Basel)2019;6:14 PMCID:PMC6466171

[63]

Baluch N,Park C.Auricular reconstruction for microtia: a review of available methods.Plast Surg Oakv Ont2014;22:39-43 PMCID:PMC4128432

[64]

Stewart K.Autologous ear reconstruction - celebrating 50 years.J Plast Reconstr Aesthet Surg2008;61 Suppl 1:S2-4

[65]

Jovic TH,Kon M."Auricular reconstruction: a sociocultural, surgical and scientific perspective".J Plast Reconstr Aesthet Surg2020;73:1424-33

[66]

Walton RL.Auricular reconstruction for microtia: Part II. Surgical techniques.Plast Reconstr Surg2002;110:234-49; quiz 250

[67]

Wilkes GH,Guilfoyle R.Microtia reconstruction.Plast Reconstr Surg2014;134:464e-79e

[68]

Rodríguez-Arias JP,Pampín Martínez MM.Microtia ear reconstruction with patient-specific 3D models-a segmentation protocol.J Clin Med2022;11:3591 PMCID:PMC9267130

[69]

Joo OY,Kim YS.Fabrication of 3D-printed implant for two-stage ear reconstruction surgery and its clinical application.Yonsei Med J2023;64:291-6 PMCID:PMC10067794

[70]

Tahiri Y.Porous Polyethylene Ear Reconstruction.Clin Plast Surg2019;46:223-30

[71]

Day KM,Harshbarger RJ.Advanced three-dimensional technologies in craniofacial reconstruction.Plast Reconstr Surg2021;148:94e-108e

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