ISBN-13: 9783319680248 / Angielski / Twarda / 2017 / 830 str.
ISBN-13: 9783319680248 / Angielski / Twarda / 2017 / 830 str.
This book covers the properties of biomaterials that have found wide clinical applications, while also reviewing the state-of-the-art in the development towards future medical applications, starting with a brief introduction to the history of biomaterials used in hip arthroplasty.
Chapter 1. Short History of Biomaterials Used in Hip Arthroplasty and their Modern Evolution.- Part 1: Material Classes.- Chapter 2. Progress Beyond the State-of-the-art in the Field of Metallic Materials for Bioimplant Applications.- Chapter 4. Polymeric Biomaterials in Clinical Practice.- Chapter 5. Polymeric Biomaterials Based on Polylactide, Chitosan and Hydrogels in Medicine.- Chapter 6. Polyethylene Based Polymer for Joint Replacement.- Chapter 7. Ceramics for Hip Joint Replacement.- Chapter 8. Metallic Biomaterials.- Chapter 9. Biodegradable Metals as Biomaterials for Clinical Practice: Iron-based Materials.- Chapter 10. Porous Metals in Orthopaedics.- Chapter 11. Properties and Behavior of Shape Memory Alloys in the Scope of Biomedical and Engineering Applications.- Chapter 12. Bioactive Biomaterials: Potential for Application in Bone Regenerative Medicine.- Chapter 13. Bioactive Coatings.- Chapter 14. Nanometals in Cancer Diagnosis and Therapy.- Part 2: Biomaterial Properties and Characterization.- Chapter 15. Chemical Bulk Properties of Biomaterials.- Chapter 16. Assessment of Metallic Alloys Biocompatibility.- Chapter 17. Determining the Biological Properties of Biomaterials In Vivo.- Chapter 18. Genotoxicity and Mutagenicity Testing of Biomaterials.- Chapter 19. Histopathological Analysis of Bone Tissue Reaction on Implanted Biomaterials.- Chapter 20. Imaging in Clinical and Preclinical Practice.- Chapter 21. Selected Instrumental Methods for Physicochemical and Spectroscopic Characterization of Different Biomaterials.- Chapter 22. An Overview of In Vitro Mechanical and Structural Characterization of Hip Prosthesis Components.- Chapter 23. Characterization of Mechanical Properties of Metal Biomaterials.- Chapter 24. Manufacturability of Biomaterials.- Chapter 25. Computer Modeling of Stent Deployment in the Coronary Artery Coupled with Plaque Progression.- Part 3: Clinical Applications.- Chapter 26. Biomaterials in Dentistry - Implantology and Guided Bone Regeneration.- Chapter 27. Knee Arthroplasties.- Chapter 28. Total Endoprothesis of Hip Joint: Characteristics and Application in Patients in the Central Region of Serbia.
Fatima Zivic is an Assistant Professor at the Faculty of Engineering, University of Kragujevac, Serbia, where she teaches courses on: Biomaterials, Surface Modification Technologies, Metrology and Quality Control. Her research explores novel biomaterial structures and material characterisation (mechanical and structural properties).
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