Hybrid Polymeric Biomaterials for Hemostasis
- 1 Edición - 27 de febrero de 2026
- Última edición
- Editor: Varaprasad Kokkarachedu
- Idioma: Inglés
Advancing Hemostasis: Innovations in Hybrid Polymeric Biomaterials provides an in-depth review of hybrid polymeric biomaterials and their applications in hemostasis, partic… Leer más
Descripción
Descripción
Advancing Hemostasis: Innovations in Hybrid Polymeric Biomaterials provides an in-depth review of hybrid polymeric biomaterials and their applications in hemostasis, particularly at the interface where polymers and nanomaterials meet. This advanced guide explores the transformative potential of these materials in bleeding management, infection control, and wound healing. Chapters cover a range of hybrid polymeric biomaterials, including polysaccharide-based hemostatic biomaterials, peptide and protein hybrid biomaterials, nanostructured hemostatic hybrid biomaterials and more; in addition, a selection of key clinical case studies is detailed, bridging the gap between research and clinics to enhance patient care outcomes. Advancing Hemostasis: Innovations in Hybrid Polymeric Biomaterials is an invaluable resource for academic and industrial researchers, professionals, and students in the fields of biomaterials, nanotechnology, and tissue engineering, as well as clinicians interested in the development of novel biomaterials for hemostasis.
Puntos claves
Puntos claves
- Provides a detailed overview of the fundamental principles, recent research developments, and practical applications in clinical practice of hybrid polymeric biomaterials for hemostasis
- Offers real-world case studies and practical insights for implementation, providing readers with knowledge in managing bleeding, infection control, wound healing, and hemostatic treatments
- Covers a range of hybrid polymeric biomaterials, including composites, 3D printed, self-healing, thermoresponsive, and many more
De interès para
De interès para
Academics and researchers in the fields of materials science, biomaterials, and tissue engineering
Índice
Índice
1. Introduction of Hybrid Biomaterials
2. Polyscaccharide based hemostatic biomaterials
3. Peptide and Protein Hybrid Biomaterials for Hemostasis
4. Supramolecular, Thermoresposive and Self-Healing Polymers/Hydrogels for Hemostasis
5. FDA-Approved Polymers and Nanomaterials for Hemostatic Applications
6. Synthetic polymer based hemostatic biomaterials
7. Nanostructured Hemostatic hybrid biomaterials
8. Hybrid Polymeric Biomaterial Composites and Combinations
9. 3D printed hybrid Hemostatic Biomaterials
10. Microfabrication Techniques for Hemostatic Biomaterials
11. Regenerative Medicine and Hemostatic Biomaterials
12. Biomimetic Approaches in Hemostatic Biomaterials Design
13. Biocompatibility and Safety Assessment of Hemostatic Biomaterials
14.Clinical Applications and Case Studies in Hemostasis
15.Regulatory Considerations and Commercialization
2. Polyscaccharide based hemostatic biomaterials
3. Peptide and Protein Hybrid Biomaterials for Hemostasis
4. Supramolecular, Thermoresposive and Self-Healing Polymers/Hydrogels for Hemostasis
5. FDA-Approved Polymers and Nanomaterials for Hemostatic Applications
6. Synthetic polymer based hemostatic biomaterials
7. Nanostructured Hemostatic hybrid biomaterials
8. Hybrid Polymeric Biomaterial Composites and Combinations
9. 3D printed hybrid Hemostatic Biomaterials
10. Microfabrication Techniques for Hemostatic Biomaterials
11. Regenerative Medicine and Hemostatic Biomaterials
12. Biomimetic Approaches in Hemostatic Biomaterials Design
13. Biocompatibility and Safety Assessment of Hemostatic Biomaterials
14.Clinical Applications and Case Studies in Hemostasis
15.Regulatory Considerations and Commercialization
Detalles del producto
Detalles del producto
- Edición: 1
- Última edición
- Publicado: 27 de febrero de 2026
- Idioma: Inglés
Sobre el editor
Sobre el editor
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Varaprasad Kokkarachedu
Dr. Kokkarachedu Varaprasad is Associate Professor in the Facultad de Ingeniería y Tecnología, Universidad San Sebastián, Concepción, Chile. He received his PhD (2011) from the Department of Polymer Science and Technology, India, and worked as an Investigator at the Advanced Polymer Research Center (CIPA). He completed three international postdoctoral fellowships, at Creighton University (USA), Tshwane University of Technology (South Africa), and Universidad de Concepción (Chile). His research centres on the bioactivity of biocidal hybrid nanomaterials for advanced biomedical applications, aiming to translate polymer and nanotechnology research into next-generation applications. He has published over 159 articles, including 2 patents, 5 books, and 37 book chapters, and has an h-index of 48. He has received 11 research grants, edited journal special issues, and belongs to several scientific societies. He is listed in Stanford University's Top 2% of Scientists Worldwide in biomaterials, nanoscience, and nanotechnology.
Afiliaciones y experiencia
Associate Professor, Facultad de Ingeniería y Tecnología, Universidad San Sebastián, Concepción, ChileVer libro en ScienceDirect
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