Burn Wound Infections: Biomaterials, Healing Mechanisms, Dressing Techniques and Clinical Practice: Woodhead Publishing Series in Biomaterials
Editat de Fatemeh Mottaghitalab, Mehdi Farokhi, Przemyslaw Gnatowski, Justyna Kucinska-Lipka, Tomasz Baczek, Mohammad Reza Saeben Limba Engleză Paperback – aug 2025
- Focuses on both clinical outcomes and commercialization
- Presents a thorough overview of the current state of using biomaterial/hydrogel based dressing for infected burn wounds. This broad coverage ensures that readers are well-informed about the most significant developments in the field
- Provides expert perspectives from leading authorities working in the field
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Specificații
ISBN-13: 9780443335204
ISBN-10: 0443335206
Pagini: 700
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Biomaterials
ISBN-10: 0443335206
Pagini: 700
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Biomaterials
Cuprins
Part I: Burn wound infections: mechanisms, microbiology, pathophysiology, and healing
1. Overview of burn wound infections
2. Overview of the factors and mechanisms influencing the burn wound infections
3. Microbiological mechanisms undertaking burn wound infections.
4. Overview of the healing mechanisms of infected burn wounds
Part II: Types of dressings used for infected burn wounds
5. Biomaterials based dressings: properties: Physicochemical, mechanical, rheological, and biocompatibility characteristics
6. Types of biomaterials useful for infected burn wound repair
7. Interaction of biomaterials with wound environment and healing mechanisms
8. Hybrid/composite biomaterials as powerful burn wound dressings
9. Evaluating the in vitro and in vivo performances of biomaterials for healing infected burn wounds
10. Evaluating the antimicrobial properties of biomaterials
11. Challenges of using biomaterials for infected wound care
12. Hydrogel based dressings: properties: Physicochemical, mechanical, rheological, and biocompatibility characteristic
13. Types of hydrogels useful for infected burn wound repair
14. Interaction of hydrogels with wound environment and healing mechanisms
15. Hybrid hydrogels for progressive healing of infected wounds
16. Evaluating the in vitro and in vivo performances of hydrogels
17. Evaluating the antimicrobial properties of hydrogels
18. Challenges of using hydrogels for infected wound care
19. Overview of methods for fabricating biomaterials based dressings for infected wounds
20. Overview of methods for fabricating hydrogel based dressings for infected wounds
21. Overview of methods for fabricating biomaterials/hydrogel based dressings for infected wounds
22. Surface modification strategies for improving the performance of biomaterial/hydrogel based wound dressings
23. Cellular therapies in burn wound treatment
Part III: Regulatory considerations and commercialization of biomaterial/hydrogel based dressings for infected burn wound
24. Regulatory Pathways for biomaterial/hydrogel based Dressings
25. Quality Control and Standardization of biomaterial/hydrogel based Dressings
26.Translation of Research Findings on the efficacy of biomaterial/hydrogel based Dressings into Clinical Practice
27. Wound dressings targeted at infected burns: Challenges and Future Perspectives
1. Overview of burn wound infections
2. Overview of the factors and mechanisms influencing the burn wound infections
3. Microbiological mechanisms undertaking burn wound infections.
4. Overview of the healing mechanisms of infected burn wounds
Part II: Types of dressings used for infected burn wounds
5. Biomaterials based dressings: properties: Physicochemical, mechanical, rheological, and biocompatibility characteristics
6. Types of biomaterials useful for infected burn wound repair
7. Interaction of biomaterials with wound environment and healing mechanisms
8. Hybrid/composite biomaterials as powerful burn wound dressings
9. Evaluating the in vitro and in vivo performances of biomaterials for healing infected burn wounds
10. Evaluating the antimicrobial properties of biomaterials
11. Challenges of using biomaterials for infected wound care
12. Hydrogel based dressings: properties: Physicochemical, mechanical, rheological, and biocompatibility characteristic
13. Types of hydrogels useful for infected burn wound repair
14. Interaction of hydrogels with wound environment and healing mechanisms
15. Hybrid hydrogels for progressive healing of infected wounds
16. Evaluating the in vitro and in vivo performances of hydrogels
17. Evaluating the antimicrobial properties of hydrogels
18. Challenges of using hydrogels for infected wound care
19. Overview of methods for fabricating biomaterials based dressings for infected wounds
20. Overview of methods for fabricating hydrogel based dressings for infected wounds
21. Overview of methods for fabricating biomaterials/hydrogel based dressings for infected wounds
22. Surface modification strategies for improving the performance of biomaterial/hydrogel based wound dressings
23. Cellular therapies in burn wound treatment
Part III: Regulatory considerations and commercialization of biomaterial/hydrogel based dressings for infected burn wound
24. Regulatory Pathways for biomaterial/hydrogel based Dressings
25. Quality Control and Standardization of biomaterial/hydrogel based Dressings
26.Translation of Research Findings on the efficacy of biomaterial/hydrogel based Dressings into Clinical Practice
27. Wound dressings targeted at infected burns: Challenges and Future Perspectives