Bernard, A, Fischer A. New trends in rapid product development.CIRP Ann. 2002;51:635–52. [DOI]
Birtchnell T, Urry J. 3D, SF and the future.Futures. 2013;50:25–34. [DOI]
Low ZX, Chua YT, Ray BM, Mattia D, Metcalfe IS, Patterson DA. Perspective on 3D printing of separation membranes and comparison to related unconventional fabrication techniques.J Membr Sci. 2017;523:596–613. [DOI]
Holzmann P, Breitenecker RJ, Soomro AA, Schwarz EJ. User entrepreneur business models in 3D printing.J Manuf Technol Manag. 2017;28:75–94. [DOI]
Computer Sciences Corporation. 3D printing and the future of manufacturing. Tysons (VA): The Corporation; 2012.
Pîrjan A, Petroşanu DM. The impact of 3D printing technology on the society and economy.J Inf Syst Oper Manag. 2013;7:360–70.
Tofail SAM, Koumoulos EP, Bandyopadhyay A, Bose S, O’Donoghue L, Charitidis C. Additive manufacturing: scientific and technological challenges, market uptake and opportunities.Mater Today. 2018;21:22–37. [DOI]
Dilberoglu UM, Gharehpapagh B, Yaman U, Dolen M. The role of additive manufacturing in the era of Industry 4.0.Procedia Manuf. 2017;11:545–54. [DOI]
Tiwari SK, Pande S, Agrawal S, Bobade SM. Selection of selective laser sintering materials for different applications.Rapid Prototyp J. 2015;21:630–48. [DOI]
Ventola CL. Medical application for 3D printing: current and projected uses.P T. 2014;39:704–11. [PubMed] [PMC]
Vijayavenkataraman S, Fuh JYH, Lu WF. 3D printing and 3D bioprinting in pediatrics.Bioengineering (Basel). 2017;4:63. [DOI] [PubMed] [PMC]
Luo Z, Zhang H, Chen R, Li H, Cheng F, Zhang L, et al. Digital light processing 3D printing for microfluidic chips with enhanced resolution via dosing- and zoning-controlled vat photopolymerization.Microsyst Nanoeng. 2023;9:103. [DOI] [PubMed] [PMC]
Anderson C. Makers: the new industrial revolution. 1st ed. New York (NY): Crown Business; 2012.
Matias E, Rao B. 3D printing on its historical evolution and the implications for business. Proceedings of 2015 Portland International Conference on Management of Engineering and Technology (PICMET); 2015 Aug 2–6; Portland (OR), USA. Piscataway (NJ): IEEE; 2015. pp. 551–8.
van der Klift F, Koga Y, Todoroki A, Ueda M, Hirano Y, Matsuzaki R. 3D printing of continuous carbon fibre reinforced thermo-plastic (CFRTP) tensile test specimens.Open J Compos Mater. 2016;6:18–27. [DOI]
Stansbury JW, Idacavage MJ. 3D printing with polymers: challenges among expanding options and opportunities.Dent Mater. 2016;32:54–64. [DOI] [PubMed]
Yap YL, Tan YSE, Tan HKJ, Peh ZK, Low XY, Yeong WY, et al. 3D printed bio-models for medical applications.Rapid Prototyp J. 2017;23:227–35. [DOI]
Bozkurt Y, Karayel E. 3D printing technology; methods, biomedical applications, future opportunities and trends.J Mater Res Technol. 2021;14:1430–50. [DOI]
Schubert C, van Langeveld MC, Donoso LA. Innovations in 3D printing: a 3D overview from optics to organs.Br J Ophthalmol. 2014;98:159–61. [DOI] [PubMed]
Basit AW, Gaisford S, editors. 3D printing of pharmaceuticals. Cham: Springer; 2018.
Robiony M, Salvo I, Costa F, Zerman N, Bazzocchi M, Toso F, et al. Virtual reality surgical planning for maxillofacial distraction osteogenesis: the role of reverse engineering rapid prototyping and cooperative work.J Oral Maxillofac Surg. 2007;65:1198–208. [DOI] [PubMed]
Mazzoli A. Selective laser sintering in biomedical engineering.Med Biol Eng Comput. 2013;51:245–56. [DOI] [PubMed]
Boland T, Wilson WC Jr, Xu T, inventor; Clemson University, assignee. Ink-jet printing of viable cells.United States patent US 7051654. 2006 May 30.
Leukers B, Gülkan H, Irsen SH, Milz S, Tille C, Schieker M, et al. Hydroxyapatite scaffolds for bone tissue engineering made by 3D printing.J Mater Sci Mater Med. 2005;16:1121–4. [DOI] [PubMed]
Organovo [Internet].San Diego (CA): Organovo Holdings Inc.; c2023 [cited 2023 Oct 7]. Available from: https://organovo.com/
Khaled SA, Burley JC, Alexander MR, Roberts CJ. Desktop 3D printing of controlled release pharmaceutical bilayer tablets.Int J Pharm. 2014;461:105–11. [DOI] [PubMed]
Khaled SA, Burley JC, Alexander MR, Yang J, Roberts CJ. 3D printing of tablets containing multiple drugs with defined release profiles.Int J Pharm. 2015;494:643–50. [DOI] [PubMed]
Khaled SA, Burley JC, Alexander MR, Yang J, Roberts CJ. 3D printing of five-in-one dose combination polypill with defined immediate and sustained release profiles.J Control Release. 2015;217:308–14. [DOI] [PubMed]
Hull CW, inventor; 3D Systems Inc., assignee. Apparatus for production of three-dimensional objects by stereolithography.United States patent US 4575330. 1984 Mar 11.
Sachs E, Cima M, Cornie J. Three-dimensional printing: rapid tooling and prototypes directly from a CAD model.CIRP Ann. 1990;39:201–4. [DOI]
Crump SS, inventor; Stratasys Inc., assignee. Apparatus and method for creating three-dimensional objects.United States patent US 5121329. 1992 Jun 9.
Skowyra J, Pietrzak K, Alhnan MA. Fabrication of extended-release patient-tailored prednisolone tablets via fused deposition modelling (FDM) 3D printing.Eur J Pharm Sci. 2015;68:11–7. [DOI] [PubMed]
Pietrzak K, Isreb A, Alhnan MA. A flexible-dose dispenser for immediate and extended release 3D printed tablets.Eur J Pharm Biopharm. 2015;96:380–7. [DOI] [PubMed]
Okwuosa TC, Stefaniak D, Arafat B, Isreb A, Wan KW, Alhnan MA. A lower temperature FDM 3D printing for the manufacture of patient-specific immediate release tablets.Pharm Res. 2016;33:2704–12. [DOI] [PubMed]
Seeman E. Bone quality: the material and structural basis of bone strength.J Bone Miner Metab. 2008;26:1–8. [DOI] [PubMed]
Ho-Shui-Ling A, Bolander J, Rustom LE, Johnson AW, Luyten FP, Picart C. Bone regeneration strategies: engineered scaffolds, bioactive molecules and stem cells current stage and future perspectives.Biomaterials. 2018;180:143–62. [DOI] [PubMed] [PMC]
Algahtani MS, Mohammed AA, Ahmad J, Abdullah MM, Saleh E. 3D printing of dapagliflozin containing self-nanoemulsifying tablets: formulation design and in vitro characterization.Pharmaceutics. 2021;13:993. [DOI] [PubMed] [PMC]
Zuniga JM, Peck J, Srivastava R, Katsavelis D, Carson A. An open source 3D-printed transitional hand prosthesis for children.J Prosthet Orthot. 2016;28:103–8. [DOI]
Rengier F, Mehndiratta A, von Tengg-Kobligk H, Zechmann CM, Unterhinninghofen R, Kauczor HU, et al. 3D printing based on imaging data: review of medical applications.Int J Comput Assist Radiol Surg. 2010;5:335–41. [DOI] [PubMed]
Burn MB, Ta A, Gogola GR. Three-dimensional printing of prosthetic hands for children.J Hand Surg Am. 2016;41:e103–9. [DOI] [PubMed]
Zhou J, Zhang Z, Joseph J, Zhang X, Ferdows BE, Patel DN, et al. Biomaterials and nanomedicine for bone regeneration: progress and future prospects.Exploration (Beijing). 2021;1:20210011. [DOI] [PubMed] [PMC]
Cummings D. Prosthetics in the developing world: a review of the literature.Prosthet Orthot Int. 1996;20:51–60. [DOI] [PubMed]
Barcik J, Ernst M, Schwyn R, Freitag L, Dlaska CE, Drenchev L, et al. Development of surgical tools and procedures for experimental preclinical surgery using computer simulations and 3D printing.Int J Online Biomed Eng. 2020;16:183–95. [DOI]
Ivanov S, Valchanov P, Hristov S, Veselinov D, Gueorguiev B. Management of complex acetabular fractures by using 3D printed models.Medicina (Kaunas). 2022;58:1854. [DOI] [PubMed] [PMC]
Pastor T, Nagy L, Fürnstahl P, Roner S, Pastor T, Schweizer A. Three-dimensional planning and patient-specific instrumentation for the fixation of distal radius fractures.Medicina (Kaunas). 2022;58:744. [DOI] [PubMed] [PMC]
Wong KC. 3D-printed patient-specific applications in orthopedics.Orthop Res Rev. 2016;8:57–66. [DOI] [PubMed] [PMC]
Dimitrova M, Corsalini M, Kazakova R, Vlahova A, Chuchulska B, Barile G, et al. Comparison between conventional PMMA and 3D printed resins for denture bases: a narrative review.J Compos Sci. 2022;6:87. [DOI]
Peng Y, Zhuang Y, Liu Y, Le H, Li D, Zhang M, et al. Bioinspired gradient scaffolds for osteochondral tissue engineering.Exploration (Beijing). 2023;3:20210043. [DOI] [PubMed] [PMC]
Amiot LP, Labelle H, DeGuise JA, Sati M, Brodeur P, Rivard CH. Computer-assisted pedicle screw fixation. A feasibility study.Spine (Phila Pa 1976). 1995;20:1208–12. [DOI] [PubMed]
Rittel D, Shemtov-Yona K, Lapovok R. Random spectrum fatigue performance of severely plastically deformed titanium for implant dentistry applications.J Mech Behav Biomed Mater. 2018;83:94–101. [DOI] [PubMed]
Bevilacqua L, Milan A, Del Lupo V, Maglione M, Dolzani L. Biofilms developed on dental implant titanium surfaces with different roughness: comparison between in vitro and in vivo studies.Curr Microbiol. 2018;75:766–72. [DOI] [PubMed]
Ishida Y, Miyasaka T. Dimensional accuracy of dental casting patterns created by 3D printers.Dent Mater J. 2016;35:250–6. [DOI] [PubMed]
Panayi NC, Tsolakis AI. In-house computer-aided design and 3-dimensional printing of customized orthodontic brackets using hybrid ceramic resin: Is it the time for the orthodontist to take over?AJO DO Clin Companion. 2021;1:187–93. [DOI]
Turek P, Budzik G, Przeszłowski Ł. Assessing the radiological density and accuracy of mandible polymer anatomical structures manufactured using 3D printing technologies.Polymers (Basel). 2020;12:2444. [DOI] [PubMed] [PMC]
Shim KS, Kim SE, Yun YP, Jeon DI, Kim HJ, Park K, et al. Surface immobilization of biphasic calcium phosphate nanoparticles on 3D printed poly(caprolactone) scaffolds enhances osteogenesis and bone tissue regeneration.J Ind Eng Chem. 2017;55:101–9. [DOI]
Tahayeri A, Morgan M, Fugolin AP, Bompolaki D, Athirasala A, Pfeifer CS, et al. 3D printed versus conventionally cured provisional crown and bridge dental materials.Dent Mater. 2018;34:192–200. [DOI] [PubMed] [PMC]
Connert T, Zehnder MS, Amato M, Weiger R, Kühl S, Krastl G. Microguided Endodontics: a method to achieve minimally invasive access cavity preparation and root canal location in mandibular incisors using a novel computer-guided technique.Int Endod J. 2018;51:247–55. [DOI] [PubMed]
Melchels FPW, Domingos MAN, Klein TJ, Malda J, Da Silva bartolo PJ, Hutmacher DW. Additive manufacturing of tissues and organs.Prog Polym Sci. 2012;37:1079–104. [DOI]
Mironov V, Prestwich G, Forgacs G. Bioprinting living structures.J Mater Chem. 2007;17:2054–60. [DOI]
Mironov V, Reis N, Derby B. Review: bioprinting: a beginning.Tissue Eng. 2006;12:631–4. [DOI] [PubMed]
Nakamura M, Iwanaga S, Henmi C, Arai K, Nishiyama Y. Biomatrices and biomaterials for future developments of bioprinting and biofabrication.Biofabrication. 2010;2:014110. [DOI] [PubMed]
Gu Z, Fu J, Lin H, He Y. Development of 3D bioprinting: from printing methods to biomedical applications.Asian J Pharm Sci. 2020;15:529–57. [DOI] [PubMed] [PMC]
Alonzo M, AnilKumar S, Roman B, Tasnim N, Joddar B. 3D bioprinting of cardiac tissue and cardiac stem cell therapy.Transl Res. 2019;211:64–83. [DOI] [PubMed] [PMC]
Larsen CG, Stapleton EJ, Sgaglione J, Sgaglione M, Goldstein T, Sgaglione NA, et al. Three-dimensional bioprinting in orthopaedics.JBJS Rev. 2020;8:e0204. [DOI] [PubMed]
Catros S, Fricain JC, Guillotin B, Pippenger B, Bareille R, Remy M, et al. Laser-assisted bioprinting for creating on-demand patterns of human osteoprogenitor cells and nano-hydroxyapatite.Biofabrication. 2011;3:025001. [DOI] [PubMed]
Gruene M, Unger C, Koch L, Deiwick A, Chichkov B. Dispensing pico to nanolitre of a natural hydrogel by laser-assisted bioprinting.Biomed Eng Online. 2011;10:19. [DOI] [PubMed] [PMC]
Guillotin B, Souquet A, Catros S, Duocastella M, Pippenger B, Bellance S, et al. Laser assisted bioprinting of engineered tissue with high cell density and microscale organization.Biomaterials. 2010;31:7250–6. [DOI] [PubMed]
Koch L, Deiwick A, Schlie S, Michael S, Gruene M, Coger V, et al. Skin tissue generation by laser cell printing.Biotechnol Bioeng. 2012;109:1855–63. [DOI] [PubMed]
Gruene M, Pflaum M, Hess C, Diamantouros S, Schlie S, Deiwick A, et al. Laser printing of three-dimensional multicellular arrays for studies of cell-cell and cell-environment interactions.Tissue Eng Part C Methods. 2011;17:973–82. [DOI] [PubMed] [PMC]
Derby B. Printing and prototyping of tissues and scaffolds.Science. 2012;338:921–6. [DOI] [PubMed]
Afsana, Jain V, Haider N, Jain K. 3D printing in personalized drug delivery.Curr Pharm Des. 2018;24:5062–71. [DOI] [PubMed]
Aho J, Bøtker JP, Genina N, Edinger M, Arnfast L, Rantanen J. Roadmap to 3D-printed oral pharmaceutical dosage forms: feedstock filament properties and characterization for fused deposition modeling.J Pharm Sci. 2019;108:26–35. [DOI] [PubMed]
Jamróz W, Szafraniec J, Kurek M, Jachowicz R. 3D printing in pharmaceutical and medical applications – recent achievements and challenges.Pharm Res. 2018;35:176. [DOI] [PubMed] [PMC]
Alhijjaj M, Nasereddin J, Belton P, Qi S. Impact of processing parameters on the quality of pharmaceutical solid dosage forms produced by fused deposition modeling (FDM).Pharmaceutics. 2019;11:633. [DOI] [PubMed] [PMC]
Arafat B, Wojsz M, Isreb A, Forbes RT, Isreb M, Ahmed W, et al. Tablet fragmentation without a disintegrant: a novel design approach for accelerating disintegration and drug release from 3D printed cellulosic tablets.Eur J Pharm Sci. 2018;118:191–9. [DOI] [PubMed]
Azad MA, Olawuni D, Kimbell G, Badruddoza AZM, Hossain MS, Sultana T. Polymers for extrusion-based 3D printing of pharmaceuticals: a holistic materials-process perspective.Pharmaceutics. 2020;12:124. [DOI] [PubMed] [PMC]
Dumpa N, Butreddy A, Wang H, Komanduri N, Bandari S, Repka MA. 3D printing in personalized drug delivery: an overview of hot-melt extrusion-based fused deposition modeling.Int J Pharm. 2021;600:120501. [DOI] [PubMed] [PMC]
Schlegel L, Ho M, Fields JM, Backlund E, Pugliese R, Shine KM. Standardizing evaluation of patient-specific 3D printed models in surgical planning: development of a cross-disciplinary survey tool for physician and trainee feedback.BMC Med Educ. 2022;22:614. [DOI] [PubMed] [PMC]
Marconi S, Pugliese L, Botti M, Peri A, Cavazzi E, Latteri S, et al. Value of 3D printing for the comprehension of surgical anatomy.Surg Endosc. 2017;31:4102–10. [DOI] [PubMed]
Andrés-Cano P, Calvo-Haro JA, Fillat-Gomà F, Andrés-Cano I, Perez-Mañanes R. Role of the orthopaedic surgeon in 3D printing: current applications and legal issues for a personalized medicine.Rev Esp Cir Ortop Traumatol (Engl Ed). 2021;65:138–51. [DOI] [PubMed]
Dawood A, Marti Marti B, Sauret-Jackson V, Darwood A. 3D printing in dentistry.Br Dent J. 2015;219:521–9. [DOI] [PubMed]
Gander C, Shi K, Nokhodchi A, Lam M. A review of the benefits 3D printing brings to patients with neurological diseases.Pharmaceutics. 2023;15:892. [DOI] [PubMed] [PMC]
Wang C, Zhang L, Qin T, Xi Z, Sun L, Wu H, et al. 3D printing in adult cardiovascular surgery and interventions: a systematic review.J Thorac Dis. 2020;12:3227–37. [DOI] [PubMed] [PMC]
Ghosh RM, Jolley MA, Mascio CE, Chen JM, Fuller S, Rome JJ, et al. Clinical 3D modeling to guide pediatric cardiothoracic surgery and intervention using 3D printed anatomic models, computer aided design and virtual reality.3D Print Med. 2022;8:11. [DOI] [PubMed] [PMC]
Li Q, Chen X, Lin B, Ma Y, Liao JX, Zheng Q. Three-dimensional technology assisted trabecular metal cup and augments positioning in revision total hip arthroplasty with complex acetabular defects.J Orthop Surg Res. 2019;14:431. [DOI] [PubMed] [PMC]
Kačarević ŽP, Rider PM, Alkildani S, Retnasingh S, Smeets R, Jung O, et al. An introduction to 3D bioprinting: possibilities, challenges and future aspects.Materials (Basel). 2018;11:2199. [DOI] [PubMed] [PMC]
Vaz VM, Kumar L. 3D printing as a promising tool in personalized medicine.AAPS PharmSciTech. 2021;22:49. [DOI] [PubMed] [PMC]
Awad A, Fina F, Trenfield SJ, Patel P, Goyanes A, Gaisford S, et al. 3D printed pellets (miniprintlets): a novel, multi-drug, controlled release platform technology.Pharmaceutics. 2019;11:148. [DOI] [PubMed] [PMC]
Zheng Z, Lv J, Yang W, Pi X, Lin W, Lin Z, et al. Preparation and application of subdivided tablets using 3D printing for precise hospital dispensing.Eur J Pharm Sci. 2020;149:105293. [DOI] [PubMed]
Gültekin HE, Tort S, Acartürk F. An effective technology for the development of immediate release solid dosage forms containing low-dose drug: fused deposition modeling 3D printing.Pharm Res. 2019;36:128. [DOI] [PubMed]
Robles-Martinez P, Xu X, Trenfield SJ, Awad A, Goyanes A, Telford R, et al. 3D printing of a multi-layered polypill containing six drugs using a novel stereolithographic method.Pharmaceutics. 2019;11:274. [DOI] [PubMed] [PMC]
Aliyu AAA, Abdul-Rani AM, Ginta TL, Prakash C, Axinte E, Razak MA, et al. A review of additive mixed-electric discharge machining: current status and future perspectives for surface modification of biomedical implants.Adv Mater Sci Eng. 2017;2017:8723239. [DOI]
van der Stelt M, Stenveld F, Bitter T, Maal TJJ, Janssen D. Design evaluation of FFF-printed transtibial prosthetic sockets using follow-up and finite element analysis.Prosthesis. 2022;4:589–99. [DOI]
Wang X, Yan Y, Pan Y, Xiong Z, Liu H, Cheng J, et al. Generation of three-dimensional hepatocyte/gelatin structures with rapid prototyping system.Tissue Eng. 2006;12:83–90. [DOI] [PubMed]
Martin I, Wendt D, Heberer M. The role of bioreactors in tissue engineering.Trends Biotechnol. 2004;22:80–6. [DOI] [PubMed]
Kumar M, Zhang W, Fischer L, Freudenthaler B. Membership mappings for practical secure distributed deep learning.IEEE Trans Fuzzy Syst. 2023;31:2617–31. [DOI]
Hossain MA, Zhumabekova A, Paul SC, Kim JR. A review of 3D printing in construction and its impact on the labor market.Sustainability. 2020;12:8492. [DOI]
Simon G, Tóth D, Heckmann V, Poór VS. Application of 3D printing in assessment and demonstration of stab injuries.Int J Legal Med. 2022;136:1431–42. [DOI] [PubMed] [PMC]
Van Ombergen A, Chalupa-Gantner F, Chansoria P, Colosimo BM, Costantini M, Domingos M, et al. 3D bioprinting in microgravity: opportunities, challenges, and possible applications in space.Adv Healthc Mater. 2023;12:e2300443. [DOI] [PubMed]
Weller C, Kleer R, Piller FT. Economic implications of 3D printing: market structure models in light of additive manufacturing revisited.Int J Prod Econ. 2015;164:43–56. [DOI]