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Titlebook: Racing for the Surface; Antimicrobial and In Bingyun Li,Thomas Fintan Moriarty,Malcolm Xing Book 2020 Springer Nature Switzerland AG 2020 b

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楼主: Fillmore
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Additive Manufacturing of Bioscaffolds for Bone Regeneration and three-Dimensional (3D) designs in AM are addressed. The benefits and drawbacks of different methods used in AM for bone scaffolds and their suitability for human trials and further applications on patients are also discussed.
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Osteoinductive and Osteoconductive Biomaterialsrts in this domain are to render the orthopedic procedures minimally invasive and maximally effective..This chapter encompasses the journey of classes of biomaterials used for their osteoinductive and osteoconductive properties and discusses the challenges for bringing them closer to fulfil the requisites.
发表于 2025-3-31 00:21:25 | 显示全部楼层
Three-Dimensional (3D) and Drug-Eluting Nanofiber Coating for Prosthetic Implants. This chapter reviews current and potential future use of biologic and drug-eluting coatings for orthopedic implants to facilitate osseointegration and prevent implant infection. The potential application of porous and drug-eluting coaxial nanofiber as a means of alternative implant surface coating was discussed.
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Carbon Nanotubes: Their Antimicrobial Properties and Applications in Bone Tissue Regeneration of CNTs is briefly described, followed by an overview of CNT toxicity. The antimicrobial properties of single-walled and multi-walled CNTs and the antimicrobial mechanisms of CNTs are summarized and discussed. The future challenges and potential applications of CNTs in bone tissue engineering and antimicrobial applications are provided.
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Advances in Antimicrobial and Osteoinductive Biomaterialsrthopedic applications, infections also lead to the limited healing ability of infected and defected bone. Generally, these problems are treated with a load of antibiotics or surgical intervention. Therefore, having antibacterial properties integrated with a biomaterial would reduce the time of heal
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