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P. 226

Stakeholder Perspectives on the Current and Future of Additive Manufacturing in Healthcare
               in  Additive  Manufacturing:  A  Review.  J  Manuf Process,   Alex J Med, 54:411–22.
               25:185–200.                                         https://doi.org/10.1016/j.ajme.2017.09.003
               https://doi.org/10.1016/j.jmapro.2016.11.006    57.  McDonough JR, 2020,  A Perspective  on the Current
           46.  Oliveira JP, LaLonde AD, Ma J, 2020, Processing Parameters   and  Future  Roles of  Additive  Manufacturing  in  Process
               in Laser Powder Bed Fusion Metal Additive Manufacturing.   Engineering, with an Emphasis on Heat Transfer. Therm Sci
               Mater Des, 193:108762.                              Eng Prog, 19:100594.
               https://doi.org/10.1016/j.matdes.2020.108762        https://doi.org/10.1016/j.tsep.2020.100594
           47.  Kusoglu IM, Doñate-Buendía C, Barcikowski S, et al.,   58.  Conner BP, Manogharan  GP, Martof  AN, et  al., 2014,
               2021, Laser Powder Bed Fusion of Polymers: Quantitative   Making Sense of 3-D Printing: Creating a Map of Additive
               Research Direction Indices. Materials, 14:1169.     Manufacturing Products and Services. Addit Manuf, 1:64–76.
               https://doi.org/10.3390/ma14051169                  https://doi.org/10.1016/j.addma.2014.08.005
           48.  Goh  GD,  Yap  YL,  Tan  HK, et al., 2020, Process-structure-  59.  Shahrubudin N, Ramlan R, 2019, An Overview of Critical
               properties in Polymer  Additive Manufacturing  Via Material   Success Factors for Implementing 3D Printing Technology in
               Extrusion: A Review. Crit Rev Solid State Mater Sci, 45:113–33.  Manufacturing Firms. J Appl Eng Sci, 17:379–85.
               https://doi.org/10.1080/10408436.2018.1549977       https://doi.org/10.5937/jaes17-21526
           49.  Spoerk M, Holzer C, Gonzalez-Gutierrez J, 2020, Material   60.  Everton SK, Hirsch M, Stravroulakis P, et al., 2016, Review
               Extrusion-based Additive Manufacturing of Polypropylene:   of in-situ Process Monitoring and in-situ Metrology for Metal
               A Review on How to Improve Dimensional Inaccuracy and   Additive Manufacturing. Mater Des, 95:431–45.
               Warpage. J Appl Polym Sci, 137:48545.               https://doi.org/10.1016/j.matdes.2016.01.099
               https://doi.org/10.1002/app.48545               61.  Gustavo T, Elwany A, 2014, A Review on Process Monitoring
           50.  Thompson MK, Moroni G, Vaneker T, et al., 2016, Design   and Control in Metal-based Additive Manufacturing. J Manuf
               for  Additive  Manufacturing:  Trends, Opportunities,   Sci Eng, 136:060801.
               Considerations, and Constraints. CIRP Ann., 65:737–60.  62.  Di Prima M, Coburn J, Hwang D, et al., 2016, Additively
               https://doi.org/10.1016/j.cirp.2016.05.004          Manufactured  Medical  Products-the FDA Perspective.  3D
           51.  Gebler  M, Uiterkamp  AJ,  Visser C, 2014,  A Global   Print Med, 2:1–6.
               Sustainability  Perspective  on  3D  Printing  Technologies.      https://doi.org/10.1186/s41205-016-0005-9
               Energy Policy, 74:158–67.                       63.  Chekurov S, Metsä-Kortelainen S, Salmi M, et al., 2018, The
               https://doi.org/10.1016/j.enpol.2014.08.033         Perceived Value  of Additively  Manufactured  Digital  Spare
           52.  Ford S, Despeisse M, 2016,  Additive Manufacturing  and   Parts in Industry:  An Empirical  Investigation.  Int J Prod
               Sustainability: An Exploratory Study of the Advantages and   Econ, 205:87–97.
               Challenges. J Clean Prod, 137:1573–87.              https://doi.org/10.1016/j.ijpe.2018.09.008
               https://doi.org/10.1016/j.jclepro.2016.04.150   64.  Tavassoli S, Brandt M, Qian M, et al., 2020, Adoption and
           53.  Colorado  HA,  Velásquez  EI,  Monteiro  SN, 2020,   Diffusion of Disruptive Technologies: The Case of Additive
               Sustainability  of  Additive Manufacturing:  The Circular   Manufacturing in Medical Technology Industry in Australia.
               Economy  of Materials  and Environmental  Perspectives.   Proc Manuf, 43:18–24.
               J Mater Res Technol, 9:8221–34.                     https://doi.org/10.1016/j.promfg.2020.02.103
               https://doi.org/10.1016/j.jmrt.2020.04.062      65.  McCann R, Obeidi  MA, Hughes C, et  al., 2021,  In-situ
           54.  Pour MA, Zanardini M, Bacchetti A, et al., 2016, Additive   Sensing, Process Monitoring and Machine Control in Laser
               Manufacturing  Impacts on Productions and Logistics   Powder Bed Fusion: A review. Addit Manuf, 102058.
               Systems. IFAC PapersOnLine, 49:1679–84.             https://doi.org/10.1016/j.addma.2021.102058
               https://doi.org/10.1016/j.ifacol.2016.07.822    66.  Molaei  R,  Fatemi  A, 2018, Fatigue  Design  with  Additive
           55.  Moradlou H, Roscoe S, Ghadge  A, 2020, Buyer-supplier   Manufactured Metals: Issues to Consider and Perspective for
               Collaboration  during Emerging  Technology Development.   Future Research. Proc Eng., 213:5–16.
               Prod Plan Control, 33:1–16.                         https://doi.org/10.1016/j.proeng.2018.02.002
               https://doi.org/10.1080/09537287.2020.1810759   67.  Becker  TH, Kumar  P, Ramamurty  U, 2021, Fracture  and
           56.  Javaid  M, Haleem  A, 2018,  Additive  Manufacturing   Fatigue in  Additively  Manufactured Metals.  Acta Mater,
               Applications in Medical Cases: A Literature Based Review.   219:117240.

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