Silicon Carbide Biotechnology: A Biocompatible Semiconductor for Advanced Biomedical Devices and Applications
Editat de Stephen E. Saddowen Limba Engleză Hardback – 29 feb 2016
SiC devices offer high power densities and low energy losses, enabling lighter, more compact, and higher efficiency products for biocompatible and long-term in vivo applications, including heart stent coatings, bone implant scaffolds, neurological implants and sensors, glucose sensors, brain-machine-interface devices, smart bone implants, and organ implants.
This book provides the materials and biomedical engineering communities with a seminal reference book on SiC for developing technology, and is a resource for practitioners eager to identify and implement advanced engineering solutions to their everyday medical problems for which they currently lack long-term, cost-effective solutions.
- Discusses the properties, processing, characterization, and application of silicon carbide biomedical materials and related technology
- Assesses literature, patents, and FDA approvals for clinical trials, enabling rapid assimilation of data from current disparate sources and promoting the transition from technology R&D, to clinical trials
- Includes more on applications and devices, such as SiC nanowires, biofunctionalized devices, micro-electrode arrays, heart stent/cardiovascular coatings, and continuous glucose sensors, in this new edition
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Specificații
ISBN-13: 9780128029930
ISBN-10: 0128029935
Pagini: 378
Dimensiuni: 152 x 229 x 46 mm
Greutate: 0.82 kg
Ediția:2
Editura: ELSEVIER SCIENCE
ISBN-10: 0128029935
Pagini: 378
Dimensiuni: 152 x 229 x 46 mm
Greutate: 0.82 kg
Ediția:2
Editura: ELSEVIER SCIENCE
Public țintă
Biomedical and materials engineers and scientists, device professionals and related specialists searching for a robust biomedical option for implantation with semiconductor effects.Cuprins
1. Silicon Carbide for Biomedical Applications: An Update2. The Cytotoxicity of 3C-SiC and a-SiC Investigated through Strict Adherence to ISO 109933. Study of the Hemocompatiblity of SiC: 3C-S-C and a-SiC Films4. Graphene Functionalization for Biosensor Applications5. SIC Bio-sensing and Electrochemical Sensing State of the Art and Perspective6. SiC RF Antennas for in-vivo Glucose Monitoring and WiFi Applications7. Solving Reliability and Stability Issues in Implantable Neural Interfaces with 3C-SiC8. Amorphous SiC for Neural Interface Applications9. SiC Nanowire Based Transistors for Electrical DNA Detection10. Silicon Carbide Based Nanowires for Biomedical Applications