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Handbook on Advanced Design and Manufacturing Technologies for Biomedical Devices [electronic resource] / edited by AndrȨs Dȡaz Lantada.

Por: Tipo de material: TextoTextoEditor: Boston, MA : Springer US : Imprint: Springer, 2013Descripción: XIV, 378 p. 143 illus., 136 illus. in color. online resourceTipo de contenido:
  • text
Tipo de medio:
  • computer
Tipo de soporte:
  • online resource
ISBN:
  • 9781461467892
Trabajos contenidos:
  • SpringerLink (Online service)
Tema(s): Formatos físicos adicionales: Sin títuloClasificación CDD:
  • 610.28 23
Clasificación LoC:
  • R856-857
Recursos en línea:
Contenidos:
Springer eBooksResumen: The last decades have seen remarkable advances in computer-aided design, engineering and manufacturing technologies, multi-variable simulation tools, medical imaging, biomimetic design, rapid prototyping, micro and nanomanufacturing methods and information management resources, all of which provide new horizons for the Biomedical Engineering fields and the Medical Device Industry. Handbook on Advanced Design and Manufacturing Technologies for Biomedical Devices covers such topics in depth, with an applied perspective and providing several case studies that help to analyze and understand the key factors of the different stages linked to the development of a novel biomedical device, from the conceptual and design steps, to the prototyping and industrialization phases. Main research challenges and future potentials are also discussed, taking into account relevant social demands and a growing market already exceeding billions of dollars. In time, advanced biomedical devices will decisively change methods and results in the medical world, dramatically improving diagnoses and therapies for all kinds of pathologies. But if these biodevices are to fulfill present expectations, todays engineers need a thorough grounding in related simulation, design and manufacturing technologies, and collaboration between experts of different areas has to be promoted, as is also analyzed within this handbook.
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Introduction to modern product development -- General considerations for developing medical devices -- Overview of novel technologies with impact in the biomedical device industry -- Computer aided design technologies for biodevices -- Medical imaging aided design of personalized devices -- Fractal and nonEuclidean geometries for biomimetic design -- Computer aided engineering resources for biodevices -- Soft computing for enhancing biodevice simulation -- Computer aided manufacturing technologies for biodevices -- Rapid manufacturing for enhancing the development process of biodevices -- Micromanufacturing technologies for biodevices: Interacting at cellular scale -- Nanomanufacturing technologies for biodevices: Interacting at molecular scale -- Biofabrication: Main advances and challenges -- In silico, in vitro & in vivo testing of biodevices -- Technologies for promoting information management and technological transfer -- A proposal for structured development methodology -- Appendixes -- Index.

The last decades have seen remarkable advances in computer-aided design, engineering and manufacturing technologies, multi-variable simulation tools, medical imaging, biomimetic design, rapid prototyping, micro and nanomanufacturing methods and information management resources, all of which provide new horizons for the Biomedical Engineering fields and the Medical Device Industry. Handbook on Advanced Design and Manufacturing Technologies for Biomedical Devices covers such topics in depth, with an applied perspective and providing several case studies that help to analyze and understand the key factors of the different stages linked to the development of a novel biomedical device, from the conceptual and design steps, to the prototyping and industrialization phases. Main research challenges and future potentials are also discussed, taking into account relevant social demands and a growing market already exceeding billions of dollars. In time, advanced biomedical devices will decisively change methods and results in the medical world, dramatically improving diagnoses and therapies for all kinds of pathologies. But if these biodevices are to fulfill present expectations, todays engineers need a thorough grounding in related simulation, design and manufacturing technologies, and collaboration between experts of different areas has to be promoted, as is also analyzed within this handbook.

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