Biomedical implant corrosion mitigation through surface engineering /

Modern biomedical implants have made a positive contribution to patient quality of life, but their eventual corrosion limits their longevity and efficacy. New developments in surface engineering techniques show promise in extending corrosion resistance in implants, and the development of biocompatib...

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Bibliographic Details
Corporate Author: Knovel (Firm)
Other Authors: Kumar, Ashish (Editor), Thakur, Abhinay (Editor)
Format: eBook
Language:English
Published: Cambridge : Royal Society of Chemistry, [2025]
Subjects:
Online Access:Connect to the full text of this electronic book

MARC

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245 0 0 |a Biomedical implant corrosion mitigation through surface engineering /  |c edited by Ashish Kumar, Abhinay Thakur. 
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505 0 |a Introduction to Biomedical Implants and Corrosion Fundamentals of Surface Engineering Techniques Surface Modification Techniques for Corrosion Control in Biomedical Implants Advanced Materials for Corrosion Mitigation in Biomedical Implants Corrosion Characterization and Evaluation of Biomedical Implants Computational Modeling for Surface Engineering of Biomedical Implants Innovative Approaches for Corrosion Control in Biomedical Implants Using Magnesium and Its Alloys Surface Modification Techniques for Corrosion Control in Biomedical Implants Surface Engineering of Dental Implants Surface Engineering of Cardiovascular Implants: A Focus on Nanoscale Modifications Surface Engineering of Neural Implants Regulatory and Clinical Considerations for Surface-Engineered Biomedical Implants Future Directions and Emerging Trends in Surface Engineering of Biomedical Implants Conclusive Insights from Biomedical Implant Surface Engineering 
520 |a Modern biomedical implants have made a positive contribution to patient quality of life, but their eventual corrosion limits their longevity and efficacy. New developments in surface engineering techniques show promise in extending corrosion resistance in implants, and the development of biocompatible and biodegradable materials offers new opportunities in the development of implants. Beginning with an overview of corrosion mechanisms and current approaches to surface modification methods, this book also presents the practical applications of the latest materials and techniques available. With an emphasis on clinical translation, covering orthopaedic, dental, cardiovascular, and neural implants, the book bridges the gap between research and clinical practice. With expert contributions from around the globe, the editors aim to inspire future innovation and collaboration between researchers, industry professionals, and clinicians. 
588 0 |a Vendor-supplied metadata. 
650 0 |a Implants, Artificial  |x Biodegradation. 
650 0 |a Surface chemistry. 
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650 6 |a Chimie des surfaces. 
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