Susmita Bose – författare
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1 502 kr
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Materials for Bone Disorders is written by a cross-disciplinary team of research scientists, engineers, and clinicians and bridges the gap between materials science and bone disorders, providing integrated coverage of biomaterials and their applications. The bioceramics, biopolymers, composites, and metallic materials used in the treatment of bone disorders are introduced, as are their interactions with cells, biomolecules, and body tissues. The main types of bone disorder and disease are covered including osteoporosis, spinal injury, load bearing joint diseases, bone cancer, and forms of cranio-maxillofacial disorders.
Bone disorders are common across all ages. Various forms of bone disorders can change the lifestyle of otherwise normal and healthy people. With the development of novel materials, many forms of bone disorders are becoming manageable, allowing people to lead a fairly normal life. Specific consideration is given to areas where recent advances are enabling new treatments, such as the use of resorbable ceramics in bone tissue engineering and drug delivery, newer polymer-based implants in load-bearing contexts, and engineering biomaterials surfaces including modifying surface chemistry. Ethical and regulatory issues are also explored.
Explores biomaterials for bone repair and related applications in orthopedics and dentistry in a clinical context Introduces biomaterials applications in the context of specific diseases, bone disorders, and theraputic contexts Includes input from a world-class team of research scientists, engineers, and clinicians Covers the main types of bone disorder and disease including osteoporosis, spinal injury, load bearing joint diseases, bone cancer, and forms of cranio-maxillofacial disorders2 123 kr
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1 124 kr
Kommande
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2 286 kr
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The field of additive manufacturing is growing dynamically, with continued interest from manufacturing and other sectors. Conceptually, additive manufacturing is a method to build parts without using any part-specific tooling or dies from a computer-aided design file. This new edition of Additive Manufacturing highlights the applications in aerospace industries, biomedical devices, and construction industries, with new material on additive manufacturing at the nano- and microscale, as well as questions and additional reading materials.
Key features:
Covers basics and current technology of 3D printing of all types of materials including detailed discussions of the concerned applications Highlights the latest advancements in 3D printing and additive manufacturing technologies Includes new material on recent applications of additive manufacturing in aerospace, space, biomedical, and construction industries Contains suggested reading, questions for instructors, and PowerPoint slides for each chapter Includes regulatory issues in additive manufacturingThis book is intended for students and researchers in the field of mechanical, manufacturing, materials, and industrial engineering.
2 286 kr
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The field of additive manufacturing is growing dynamically, with continued interest from manufacturing and other sectors. Conceptually, additive manufacturing is a method to build parts without using any part-specific tooling or dies from a computer-aided design file. This new edition of Additive Manufacturing highlights the applications in aerospace industries, biomedical devices, and construction industries, with new material on additive manufacturing at the nano- and microscale, as well as questions and additional reading materials.
Key features:
Covers basics and current technology of 3D printing of all types of materials including detailed discussions of the concerned applications Highlights the latest advancements in 3D printing and additive manufacturing technologies Includes new material on recent applications of additive manufacturing in aerospace, space, biomedical, and construction industries Contains suggested reading, questions for instructors, and PowerPoint slides for each chapter Includes regulatory issues in additive manufacturingThis book is intended for students and researchers in the field of mechanical, manufacturing, materials, and industrial engineering.
Biomaterials Science: Processing, Properties, and Applications
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1 903 kr
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Biomaterials Science: Processing, Properties and Applications II
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1 939 kr
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Biomaterials Science: Processing, Properties and Applications III
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1 841 kr
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This volume contains14 contributed papers from the following 2012 Materials Science and Technology (MS&T’12) symposia:
Next Generation Biomaterials Surface Properties of BiomaterialsBiomaterials Science: Processing, Properties and Applications IV
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This CT Volume contains 11 contributed papers from the following 2013 Materials Science and Technology (MS&T''13) symposia:
Next Generation Biomaterials Surface Properties of Biomaterials2 104 kr
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This CT Volume contains 11 contributed papers from the following 2013 Materials Science and Technology (MS&T''13) symposia:
Next Generation Biomaterials Surface Properties of BiomaterialsBiomaterials Science: Processing, Properties and Applications V
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2 404 kr
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Taking place at the David L. Lawrence Convention Center, Pittsburgh, Pennsylvania, this CT Volume contains 17 papers from the following 2014 Materials Science and Technology (MS&T''14) symposia:
Next Generation Biomaterials Surface Properties of Biomaterials2 389 kr
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Taking place at the David L. Lawrence Convention Center, Pittsburgh, Pennsylvania, this CT Volume contains 17 papers from the following 2014 Materials Science and Technology (MS&T''14) symposia:
Next Generation Biomaterials Surface Properties of BiomaterialsProcessing, Properties, and Design of Advanced Ceramics and Composites II
2 650 kr
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2 961 kr
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Processing, Properties, and Design of Advanced Ceramics and Composites II, Ceramic Transactions Volume 261
Narottam P. Bansal, Ricardo H. R. Castro, Michael Jenkins, Amit Bandyopadhyay, Susmita Bose, Amar Bhalla, J.P. Singh, Morsi M. Mahmoud, Gary Pickrell, and Sylvia Johnson; Editors
This proceedings volume contains a collection of 36 papers (~350 pages) from the following symposia held during the 2016 Materials Science and Technology (MS&T’16) meeting held in Salt Lake City, UT, October 24-27, 2016:
Advanced Materials for Harsh Environments Advances in Dielectric Materials and Electronic Devices Advances in Ceramic Matrix Composites Ceramic Optical Materials Controlled Synthesis, Processing, and Applications of Structural and Functional Nanomaterials Innovative Processing and Synthesis of Ceramics, Glasses and Composites International Standards for Properties and Performance of Advanced Ceramics Multifunctional Oxides Rustum Roy Memorial Symposium on Processing and Performance of Materials Using Microwaves, Electric, and Magnetic Fields Sintering and Related Powder Processing Science and Technology Surface Properties of Biomaterials Thermal Protection Materials and Systems Zirconia Based Materials for Cutting Edge Technology3 069 kr
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Processing, Properties, and Design of Advanced Ceramics and Composites II, Ceramic Transactions Volume 261
Narottam P. Bansal, Ricardo H. R. Castro, Michael Jenkins, Amit Bandyopadhyay, Susmita Bose, Amar Bhalla, J.P. Singh, Morsi M. Mahmoud, Gary Pickrell, and Sylvia Johnson; Editors
This proceedings volume contains a collection of 36 papers (~350 pages) from the following symposia held during the 2016 Materials Science and Technology (MS&T’16) meeting held in Salt Lake City, UT, October 24-27, 2016:
Advanced Materials for Harsh Environments Advances in Dielectric Materials and Electronic Devices Advances in Ceramic Matrix Composites Ceramic Optical Materials Controlled Synthesis, Processing, and Applications of Structural and Functional Nanomaterials Innovative Processing and Synthesis of Ceramics, Glasses and Composites International Standards for Properties and Performance of Advanced Ceramics Multifunctional Oxides Rustum Roy Memorial Symposium on Processing and Performance of Materials Using Microwaves, Electric, and Magnetic Fields Sintering and Related Powder Processing Science and Technology Surface Properties of Biomaterials Thermal Protection Materials and Systems Zirconia Based Materials for Cutting Edge Technology1 419 kr
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One of the key challenges current biomaterials researchers face is identifying which of the dizzying number of highly specialized characterization tools can be gainfully applied to different materials and biomedical devices. Since this diverse marketplace of tools and techniques can be used for numerous applications, choosing the proper characterization tool is highly important, saving both time and resources.
Characterization of Biomaterials is a detailed and multidisciplinary discussion of the physical, chemical, mechanical, surface, in vitro and in vivo characterization tools and techniques of increasing importance to fundamental biomaterials research.
Characterization of Biomaterials will serve as a comprehensive resource for biomaterials researchers requiring detailed information on physical, chemical, mechanical, surface, and in vitro or in vivo characterization. The book is designed for materials scientists, bioengineers, biologists, clinicians and biomedical device researchers seeking input on planning on how to test their novel materials, structures or biomedical devices to a specific application. Chapters are developed considering the need for industrial researchers as well as academics.
Biomaterials researchers come from a wide variety of disciplines: this book will help them to analyze their materials and devices taking advantage of the multiple experiences on offer Coverage encompasses a cross-section of the physical sciences, biological sciences, engineering and applied sciences characterization community, providing gainful and cross-cutting insight into this highly multi-disciplinary field Detailed coverage of important test protocols presents specific examples and standards for applied characterization