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Book

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Title

Computer Aided Design of 3D Printable Anatomically Shaped Medical Devices : Methodologies and Applications

Authors

[ 1 ] Instytut Technologii Materiałów, Wydział Inżynierii Mechanicznej, Politechnika Poznańska | [ P ] employee

Scientific discipline (Law 2.0)

[2.9] Mechanical engineering

Year of publication

2025

Book type

scientific monograph

Publication language

english

Abstract

EN "Computer Aided Design of 3D Printable Anatomically Shaped Medical Devices: Methodologies and Applications" presents a comprehensive framework for designing 3D printable medical devices tailored to individual anatomies. Bridging engineering and medicine, the book guides readers through advanced CAD techniques, anatomical data acquisition (via 3D scanning and imaging), and additive manufacturing processes, presenting mostly results of author's own and co-authored research. Emphasizing efficiency, customization, and real-world applications, it showcases methodologies developed in collaboration with medical professionals for orthopedic devices, surgical aids, and prosthetics. Case studies offer insights into practical uses, demonstrating how these innovations enhance patient care and surgical outcomes through personalized, accessible solutions.

Place

Boca Raton, USA

Publisher name

Taylor & Francis Group

Publisher name from the Ministry list

Taylor & Francis Group

Date of publication

2025

Number of pages

368

ISBN

978-1-032-47920-0

eISBN

978-1-003-38654-4

DOI

10.1201/9781003386544

URL

https://www.routledge.com/Computer-Aided-Design-of-3D-Printable-Anatomically-Shaped-Medical-Devices-Methodologies-and-Applications/Gorski/p/book/9781032479200

Keywords
EN
  • Additive Manufacturing
  • Biomedical Engineering
  • 3D Printing in Medicine
  • Anatomically Shaped Devices
  • Custom Medical Devices
  • Patient-Specific Design
  • Computer-Aided Design (CAD)
  • Personalized Healthcare
  • Anthropometric Data Acquisition
  • Orthotics and Prosthetics
  • Surgical Planning Models
  • Material Science in Medical Applications
  • Virtual Prototyping
  • Mass Customization
  • Medical Device Design
  • CAD Automation
  • Anatomical Design Automation
  • Automated Design
  • AutoMedPrint System
  • 3D Printed Surgical Models
  • Multi-material Models
  • Digital Surgical Planning
  • Virtual Surgical Models
  • Patient-Specific Templates
  • Mixed Reality in Surgery
Total point value of monograph

200

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