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Surface engineering provides one of the most important means of engineering product differentiation in terms of quality, performance, and lifecycle cost. It is essential to achieve predetermined functional properties of materials such as mechanical strength, biocompatibility, corrosion resistance, wear resistance, and heat and oxidation resistance. Surface Engineering of Biomaterials addresses this topic across a diverse range of process technologies and healthcare applications. Introduces biomaterial surface science and surface engineering and includes criteria for biomaterial surface selection Focuses on a broad array of materials including metals, ceramics, polymers, alloys, and composites Discusses corrosion, degradation, and material release issues in implant materials Covers various processing routes to develop biomaterial surfaces, including for smart and energy applications Details techniques for post-modification of biomaterial surfaces This reference work helps researchers working at the intersection of materials science and biotechnology to engineer functional biomaterials for a variety of applications.
"...The true story of a family dealing with autism and all that implies, especially the effects of autism at home and within the public school system... This is also the story of Mark Hartmann, the authors' son, who turned 23 years old on August 21, 2008." -- Preface, xvii
How did lay people in old China save their lives when dealing with acute or chronic health issues? Conventional medicine was costly and might not have been an option for many. Instead, people in villages and towns relied on remedies drawn from a woodblock-printed illustrated booklet called the Seventy-Two Therapies, first published in 1847. The goal of this book is to foster an appreciation of China’s long tradition of folk remedies. Each folk remedy is illustrated by a page from the circa 1860s woodblock edition of the Seventy-Two Therapieswhich the author used for translation. He also added a historical and interpretive analysis to expand on each therapy and to place it in the context of...
After the drug discovery and development process, designing suitable formulations to safely deliver the optimum dose, while avoiding side effects, has been a constant challenge, especially when drugs are very toxic and have poor solubility and undesirable clearance profiles. With recent advances in synthetic technologies, nanoparticles can be custom-made from a variety of advanced materials to mimic the bioenvironment and can be equipped with various targeting and imaging moieties for site-specific delivery and real-time imaging. Drug Delivery Using Nanomaterials covers advancements in the field of nanoparticle-based drug-delivery systems, along with all the aspects needed for a successful a...
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