3D printing from diagnostic images: a radiologist's primer with an emphasis on musculoskeletal imaging-putting the 3D printing of pathology into the hands of every physician.

Three-dimensional (3D) printing has recently erupted into the medical arena due to decreased costs and increased availability of printers and software tools. Due to lack of detailed information in the medical literature on the methods for 3D printing, we have reviewed the medical and engineering lit...

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Publicado en:Skeletal Radiology Vol. 45; no. 3; pp. 307 - 322
Autores principales: Friedman, Tamir, Michalski, Mark, Goodman, T., Brown, J., Goodman, T Rob, Brown, J Elliott
Formato: review Journal Article
Publicado: Springer Nature Mar2016
Acceso en línea:Ver este registro en EBSCOhost
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        atl: 3D printing from diagnostic images: a radiologist's primer with an emphasis on musculoskeletal imaging-putting the 3D printing of pathology into the hands of every physician.
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        au:
          Friedman, Tamir
          Michalski, Mark
          Goodman, T.
          Brown, J.
          Goodman, T Rob
          Brown, J Elliott
        affil: School of Medicine, Department of Diagnostic Radiology and Bioimaging Sciences, Yale University, New Haven USA
      sug:
        subj:
          Teaching
          Models, Anatomic
          Imaging, Three-Dimensional Equipment and Supplies
          Imaging, Three-Dimensional Methods
          Musculoskeletal Diseases Pathology
          Joints Anatomy and Histology
          Anatomy Education
          Pathology Education
      ab: Three-dimensional (3D) printing has recently erupted into the medical arena due to decreased costs and increased availability of printers and software tools. Due to lack of detailed information in the medical literature on the methods for 3D printing, we have reviewed the medical and engineering literature on the various methods for 3D printing and compiled them into a practical "how to" format, thereby enabling the novice to start 3D printing with very limited funds. We describe (1) background knowledge, (2) imaging parameters, (3) software, (4) hardware, (5) post-processing, and (6) financial aspects required to cost-effectively reproduce a patient's disease ex vivo so that the patient, engineer and surgeon may hold the anatomy and associated pathology in their hands.
      pubtype: Academic Journal
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        review
        Journal Article
      ougenre: Article
    language: English
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