[EAN: 9783838349299], Neubuch, Publisher/Verlag: LAP Lambert Academic Publishing | TE Scaffold and RP Technology | Scaffold-based tissue engineering approach has gained high potential to … Mehr…
[EAN: 9783838349299], Neubuch, Publisher/Verlag: LAP Lambert Academic Publishing | TE Scaffold and RP Technology | Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providing necessary mechanical strength. Therefore, the major challenge in the field of tissue engineering is to design suitable scaffolds that can mimic the structure and function of the natural extracellular matrix (ECM). To date, various scaffolds have been developed with various materials and techniques. However, in many cases the developed scaffolds remain less than practical in terms of structural integrity and functional requirements. In this work, a desktop robot based rapid prototyping (DRBRP) melt extrusion system has been developed that allows fabrication of 3D scaffolds for tailored tissue engineering applications with customised morphological, mechanical and biochemical properties through modulation of material property and scaffold s macro/micro architecture. This book will provide an important assistance to researchers, professionals, engineers and academics seeking a comprehensive overview of tissue engineering scaffold development. | Format: Paperback | Language/Sprache: english | 315 gr | 220x150x12 mm | 228 pp<
[EAN: 9783838349299], Neubuch, [PU: LAP LAMBERT Academic Publishing], nach der Bestellung gedruckt Neuware - Scaffold-based tissue engineering approach has gained high potential to treat … Mehr…
[EAN: 9783838349299], Neubuch, [PU: LAP LAMBERT Academic Publishing], nach der Bestellung gedruckt Neuware - Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providing necessary mechanical strength. Therefore, the major challenge in the field of tissue engineering is to design suitable scaffolds that can mimic the structure and function of the natural extracellular matrix (ECM). To date, various scaffolds have been developed with various materials and techniques. However, in many cases the developed scaffolds remain less than practical in terms of structural integrity and functional requirements. In this work, a desktop robot based rapid prototyping (DRBRP) melt extrusion system has been developed that allows fabrication of 3D scaffolds for tailored tissue engineering applications with customised morphological, mechanical and biochemical properties through modulation of material property and scaffold s macro/micro architecture. This book will provide an important assistance to researchers, professionals, engineers and academics seeking a comprehensive overview of tissue engineering scaffold development. 228 pp. Englisch, Books<
[EAN: 9783838349299], Neubuch, [PU: LAP LAMBERT Academic Publishing, Germany], Language: English. Brand new Book. Scaffold-based tissue engineering approach has gained high potential to t… Mehr…
[EAN: 9783838349299], Neubuch, [PU: LAP LAMBERT Academic Publishing, Germany], Language: English. Brand new Book. Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providing necessary mechanical strength. Therefore, the major challenge in the field of tissue engineering is to design suitable scaffolds that can mimic the structure and function of the natural extracellular matrix (ECM). To date, various scaffolds have been developed with various materials and techniques. However, in many cases the developed scaffolds remain less than practical in terms of structural integrity and functional requirements. In this work, a desktop robot based rapid prototyping (DRBRP) melt extrusion system has been developed that allows fabrication of 3D scaffolds for tailored tissue engineering applications with customised morphological, mechanical and biochemical properties through modulation of material property and scaffold's macro/micro architecture. This book will provide an important assistance to researchers, professionals, engineers and academics seeking a comprehensive overview of tissue engineering scaffold development., Books<
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Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providi… Mehr…
Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providing necessary mechanical strength. Therefore, the major challenge in the field of tissue engineering is to design suitable scaffolds that can mimic the structure and function of the natural extracellular matrix (ECM). To date, various scaffolds have been developed with various materials and techniques. However, in many cases the developed scaffolds remain less than practical in terms of structural integrity and functional requirements. In this work, a desktop robot based rapid prototyping (DRBRP) melt extrusion system has been developed that allows fabrication of 3D scaffolds for tailored tissue engineering applications with customised morphological, mechanical and biochemical properties through modulation of material property and scaffold s macro/micro architecture. This book will provide an important assistance to researchers, professionals, engineers and academics seeking a comprehensive overview of tissue engineering scaffold development. Bücher, Hörbücher & Kalender / Bücher / Sachbuch / Herstellung & Technik / Herstellungs- & Verfahrenstechnik<
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Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providi… Mehr…
Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providing necessary mechanical strength. Therefore, the major challenge in the field of tissue engineering is to design suitable scaffolds that can mimic the structure and function of the natural extracellular matrix (ECM). To date, various scaffolds have been developed with various materials and techniques. However, in many cases the developed scaffolds remain less than practical in terms of structural integrity and functional requirements. In this work, a desktop robot based rapid prototyping (DRBRP) melt extrusion system has been developed that allows fabrication of 3D scaffolds for tailored tissue engineering applications with customised morphological, mechanical and biochemical properties through modulation of material property and scaffold s macro/micro architecture. This book will provide an important assistance to researchers, professionals, engineers and academics seeking a comprehensive overview of tissue engineering scaffold development. Buch, LAP Lambert Academic Publishing<
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[EAN: 9783838349299], Neubuch, Publisher/Verlag: LAP Lambert Academic Publishing | TE Scaffold and RP Technology | Scaffold-based tissue engineering approach has gained high potential to … Mehr…
[EAN: 9783838349299], Neubuch, Publisher/Verlag: LAP Lambert Academic Publishing | TE Scaffold and RP Technology | Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providing necessary mechanical strength. Therefore, the major challenge in the field of tissue engineering is to design suitable scaffolds that can mimic the structure and function of the natural extracellular matrix (ECM). To date, various scaffolds have been developed with various materials and techniques. However, in many cases the developed scaffolds remain less than practical in terms of structural integrity and functional requirements. In this work, a desktop robot based rapid prototyping (DRBRP) melt extrusion system has been developed that allows fabrication of 3D scaffolds for tailored tissue engineering applications with customised morphological, mechanical and biochemical properties through modulation of material property and scaffold s macro/micro architecture. This book will provide an important assistance to researchers, professionals, engineers and academics seeking a comprehensive overview of tissue engineering scaffold development. | Format: Paperback | Language/Sprache: english | 315 gr | 220x150x12 mm | 228 pp<
[EAN: 9783838349299], Neubuch, [PU: LAP LAMBERT Academic Publishing], nach der Bestellung gedruckt Neuware - Scaffold-based tissue engineering approach has gained high potential to treat … Mehr…
[EAN: 9783838349299], Neubuch, [PU: LAP LAMBERT Academic Publishing], nach der Bestellung gedruckt Neuware - Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providing necessary mechanical strength. Therefore, the major challenge in the field of tissue engineering is to design suitable scaffolds that can mimic the structure and function of the natural extracellular matrix (ECM). To date, various scaffolds have been developed with various materials and techniques. However, in many cases the developed scaffolds remain less than practical in terms of structural integrity and functional requirements. In this work, a desktop robot based rapid prototyping (DRBRP) melt extrusion system has been developed that allows fabrication of 3D scaffolds for tailored tissue engineering applications with customised morphological, mechanical and biochemical properties through modulation of material property and scaffold s macro/micro architecture. This book will provide an important assistance to researchers, professionals, engineers and academics seeking a comprehensive overview of tissue engineering scaffold development. 228 pp. Englisch, Books<
[EAN: 9783838349299], Neubuch, [PU: LAP LAMBERT Academic Publishing, Germany], Language: English. Brand new Book. Scaffold-based tissue engineering approach has gained high potential to t… Mehr…
[EAN: 9783838349299], Neubuch, [PU: LAP LAMBERT Academic Publishing, Germany], Language: English. Brand new Book. Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providing necessary mechanical strength. Therefore, the major challenge in the field of tissue engineering is to design suitable scaffolds that can mimic the structure and function of the natural extracellular matrix (ECM). To date, various scaffolds have been developed with various materials and techniques. However, in many cases the developed scaffolds remain less than practical in terms of structural integrity and functional requirements. In this work, a desktop robot based rapid prototyping (DRBRP) melt extrusion system has been developed that allows fabrication of 3D scaffolds for tailored tissue engineering applications with customised morphological, mechanical and biochemical properties through modulation of material property and scaffold's macro/micro architecture. This book will provide an important assistance to researchers, professionals, engineers and academics seeking a comprehensive overview of tissue engineering scaffold development., Books<
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Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providi… Mehr…
Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providing necessary mechanical strength. Therefore, the major challenge in the field of tissue engineering is to design suitable scaffolds that can mimic the structure and function of the natural extracellular matrix (ECM). To date, various scaffolds have been developed with various materials and techniques. However, in many cases the developed scaffolds remain less than practical in terms of structural integrity and functional requirements. In this work, a desktop robot based rapid prototyping (DRBRP) melt extrusion system has been developed that allows fabrication of 3D scaffolds for tailored tissue engineering applications with customised morphological, mechanical and biochemical properties through modulation of material property and scaffold s macro/micro architecture. This book will provide an important assistance to researchers, professionals, engineers and academics seeking a comprehensive overview of tissue engineering scaffold development. Bücher, Hörbücher & Kalender / Bücher / Sachbuch / Herstellung & Technik / Herstellungs- & Verfahrenstechnik<
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Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providi… Mehr…
Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providing necessary mechanical strength. Therefore, the major challenge in the field of tissue engineering is to design suitable scaffolds that can mimic the structure and function of the natural extracellular matrix (ECM). To date, various scaffolds have been developed with various materials and techniques. However, in many cases the developed scaffolds remain less than practical in terms of structural integrity and functional requirements. In this work, a desktop robot based rapid prototyping (DRBRP) melt extrusion system has been developed that allows fabrication of 3D scaffolds for tailored tissue engineering applications with customised morphological, mechanical and biochemical properties through modulation of material property and scaffold s macro/micro architecture. This book will provide an important assistance to researchers, professionals, engineers and academics seeking a comprehensive overview of tissue engineering scaffold development. Buch, LAP Lambert Academic Publishing<
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Scaffold-based tissue engineering approach has gained high potential to treat patient with damaged or diseased organ. The scaffold should be biocompatible and bioresorbable, while providing necessary mechanical strength. Therefore, the major challenge in the field of tissue engineering is to design suitable scaffolds that can mimic the structure and function of the natural extracellular matrix (ECM). To date, various scaffolds have been developed with various materials and techniques. However, in many cases the developed scaffolds remain less than practical in terms of structural integrity and functional requirements. In this work, a desktop robot based rapid prototyping (DRBRP) melt extrusion system has been developed that allows fabrication of 3D scaffolds for tailored tissue engineering applications with customised morphological, mechanical and biochemical properties through modulation of material property and scaffold's macro/micro architecture. This book will provide an important assistance to researchers, professionals, engineers and academics seeking a comprehensive overview of tissue engineering scaffold development.
Detailangaben zum Buch - Tissue Engineering Scaffold And Rapid Prototyping Technology
EAN (ISBN-13): 9783838349299 ISBN (ISBN-10): 3838349296 Gebundene Ausgabe Taschenbuch Erscheinungsjahr: 2010 Herausgeber: LAP Lambert Acad. Publ. 228 Seiten Gewicht: 0,351 kg Sprache: eng/Englisch
Buch in der Datenbank seit 2009-06-27T04:30:42+02:00 (Vienna) Detailseite zuletzt geändert am 2021-11-08T09:56:46+01:00 (Vienna) ISBN/EAN: 9783838349299
ISBN - alternative Schreibweisen: 3-8383-4929-6, 978-3-8383-4929-9 Alternative Schreibweisen und verwandte Suchbegriffe: Autor des Buches: hoque Titel des Buches: engineering technology, tissue engineering, rapid prototyping