Virtual Prototyping & Bio Manufacturing in Medical Applications (eBook)

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2007 | 2008
XV, 299 Seiten
Springer US (Verlag)
978-0-387-68831-2 (ISBN)

Lese- und Medienproben

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The original role of RP was to confirm the shape and feel of concept design, but innovations in RP now allow for the development of sophisticated medical devices such as catheters, stents, drug delivery systems, syringes and cardio-vascular devices, and more. RP has moved beyond medical devices, as surgeons now regularly use RP models to brainstorm strategies for surgeries. This book presents new uses for rapid prototyping in state-of-the-art medical applications.


We are especially pleased to present our edited book in an area that is quickly emerging as one of the most active research areas that integrate both engineering and medicine. Preliminary research results show signi?cant potential in effecting major breakthroughsranging from a reduction in the number of corrective surgeries needed to the 'scienti?c miracle' of generating tissue growth. Over $600 million has been in invested in tissue engineering last year alone-a large and signi?cant component of this is in the area of virtual and physical prototyping. Virtual & Physical prototyping can broadly be divided into three categories: Modeling, Manufacturing& Materials. This book focuses on the ?rst part and some areas of the second.The second bookin this series will focuson the areas in the s- ondandthird categories.As youwill see fromthis book,the principlesutilizeddraw heavily from the more traditional engineering?elds including mechanical engine- ing, industrial engineering, civil engineering (structures), electrical engineering and bio engineering. The ?rst chapter by Winder provides an insight into the practicalities of creating custom made implants for the skull details. The concept of cranioplasty, describing the correction of a bone defect or deformity in the cranium using a bio-compatible material, is described and explored from a computational point of view In Chapter 2, Ming Leu and his group of researchers review the use of virtual reality technology for the development of a virtual bone surgery system, which can be used for training in orthopedic surgery and planning of bone surgery procedures.

Preface 6
Contents 9
List of Contributors 11
Computer Assisted Cranioplasty 14
Virtual Bone Surgery 33
Medical Imaging Challenges Photogrammetry 57
Computer Aided Tissue Engineering Scaffold Fabrication 79
CAD Assembly Process for Bone Replacement Scaffolds in Computer- Aided Tissue Engineering 98
Computational Design and Simulation of Tissue Engineering Scaffolds 123
Virtual Prototyping of Biomanufacturing in Medical Applications 138
Advanced Processes to Fabricate Scaffolds for Tissue Engineering 158
Rapid Prototyping to Produce POROUS SCAFFOLDSWITH CONTROLLED ARCHITECTURE for Possible use in Bone Tissue Engineering 180
Laser Printing Cells 216
Selective Laser Sintering of Polymers and Polymer- Ceramic Composites 238
Design, Fabrication and Physical Characterization of Scaffolds Made from Biodegradable Synthetic Polymers in combination with RP Systems based on Melt Extrusion 270
Index 301

Erscheint lt. Verlag 24.11.2007
Zusatzinfo XV, 299 p.
Verlagsort New York
Sprache englisch
Themenwelt Medizin / Pharmazie Physiotherapie / Ergotherapie Orthopädie
Studium 1. Studienabschnitt (Vorklinik) Biochemie / Molekularbiologie
Technik Bauwesen
Technik Medizintechnik
Schlagworte Applications • Bartolo • Bone • Medical • Medical Devices • Physical • Prototyping • Stent • Surgery • tissue • Tissue engineering • virtual
ISBN-10 0-387-68831-5 / 0387688315
ISBN-13 978-0-387-68831-2 / 9780387688312
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