Printed Biomaterials (eBook)
XIV, 124 Seiten
Springer New York (Verlag)
978-1-4419-1395-1 (ISBN)
Recent studies have shown that novel processing and modeling techniques may be used to create patient-specific prostheses, artificial tissues, and other implants using data obtained from magnetic resonance imaging, computed tomography, or other imaging techniques. For example, customized prostheses may be fabricated that possess suitable features, including geometry, size, and weight, for a given medical condition. Many advances have been made in the development of patient-specific implants in the past decade, yet this information is not readily available to scientists and students. Printed Biomaterials: Novel Processing and Modeling Techniques for Medicine and Surgery provides the biomaterials scientist and engineer, as well as advanced undergraduate or graduate students, with a comprehensive discussion of contemporary medical implant research and development. The development of printed biomaterials is multidisciplinary, and includes concepts traditionally associated with engineering, materials science, medicine, and surgery. This text highlights important topics in these core fields in order to provide the fundamentals necessary to comprehend current processing and modeling technologies and to develop new ones.
Recent studies have shown that novel processing and modeling techniques may be used to create patient-specific prostheses, artificial tissues, and other implants using data obtained from magnetic resonance imaging, computed tomography, or other imaging techniques. For example, customized prostheses may be fabricated that possess suitable features, including geometry, size, and weight, for a given medical condition. Many advances have been made in the development of patient-specific implants in the past decade, yet this information is not readily available to scientists and students. Printed Biomaterials: Novel Processing and Modeling Techniques for Medicine and Surgery provides the biomaterials scientist and engineer, as well as advanced undergraduate or graduate students, with a comprehensive discussion of contemporary medical implant research and development. The development of printed biomaterials is multidisciplinary, and includes concepts traditionally associated with engineering, materials science, medicine, and surgery. This text highlights important topics in these core fields in order to provide the fundamentals necessary to comprehend current processing and modeling technologies and to develop new ones.
Surgical Cutting Simulation and Topology Refinement of Bio-Tissues and Bio-Object.- Heterogeneous Deformable Modeling of Bio-Tissues and Haptic Force Rendering for Bio-Object Modeling.- Computer-Aided Process Planning for the Layered Fabrication of Porous Scaffold Matrices.- Cell Source for Tissue and Organ Printing.- Direct-Writing of Biomedia for Drug Delivery and Tissue Regeneration.- Precision Extruding Deposition for Freeform Fabrication of PCL and PCL-HA Tissue Scaffolds.- The Role of Technology in the Maxillofacial Prosthetic Setting.
Erscheint lt. Verlag | 26.11.2009 |
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Reihe/Serie | Biological and Medical Physics, Biomedical Engineering | Biological and Medical Physics, Biomedical Engineering |
Zusatzinfo | XIV, 124 p. 162 illus., 73 illus. in color. |
Verlagsort | New York |
Sprache | englisch |
Themenwelt | Medizin / Pharmazie ► Pflege |
Medizin / Pharmazie ► Physiotherapie / Ergotherapie ► Orthopädie | |
Naturwissenschaften ► Chemie | |
Technik ► Bauwesen | |
Technik ► Maschinenbau | |
Technik ► Medizintechnik | |
Schlagworte | Biomaterial • biomaterials • Computed tomography (CT) • Imaging techniques • Medical Devices • Medical Imaging • Surgery • tissue • Tissue engineering |
ISBN-10 | 1-4419-1395-5 / 1441913955 |
ISBN-13 | 978-1-4419-1395-1 / 9781441913951 |
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