Engineered Nanostructures for Therapeutics and Biomedical Applications (Woodhead Publishing Series in Biomaterials) - Softcover

Buch 261 von 344: Woodhead Publishing Series in Biomaterials
 
9780128212400: Engineered Nanostructures for Therapeutics and Biomedical Applications (Woodhead Publishing Series in Biomaterials)

Inhaltsangabe

Engineered Nanostructures for Therapeutics and Biomedical Applications offers a single reference for a diverse biomedical readership to learn about the application of nanotechnology in biomedicine and biomedical engineering, from past developments to current research and future prospects. This book sets out a broad selection of biomedical and therapeutic applications for nanostructures, including bioimaging, nanorobotics, orthopedics, and tissue engineering, offering a useful, multidisciplinary approach. Each chapter discusses challenges faced in each discipline, including limiting factors, biocompatibility, and toxicity, thus enabling the reader to make informed decisions in their research.

This book is a comprehensive, broad overview of the role and significance of nanomaterials and their composites that also includes discussions of key aspects in the field of biomedicine. It will be of significant interest to academics and researchers in materials science and engineering, biomedicine and biomedical engineering, chemical engineering, pharmaceutics, bioimaging, and nanorobotics.

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Über die Autorinnen und Autoren

Dr. Ajeet Kaushik is an Associate Professor of Chemistry at the Department of Chemistry, at Florida Polytechnic University, Florida, United States, as well as an ICS Fellow and Fulbright Specialist. Currently he is exploring nano-enabled technologies for health and environmental monitoring. He has authored or co-authored over 350 publications, published 14 edited books, and has 4 patents, as well as various other editorial roles and international collaborations. Dr. Kaushik’s research interests include green chemistry, catalysis, drug delivery systems, electrochemistry, sensors, and point-of-care sensing for sustainable health and the environment.



Dr. Sandeep Kumar is a researcher of international recognition and has received his PhD degree from Panjab University, Chandigarh. His current research interest includes synthesis and characterization of nanomaterials, nano-carriers for healthcare applications; nanomaterials based sensors, biomaterials and nanotoxicity. Dr. Kumar has published more than 150 research papers in international journals of repute and also has patents to his credit. Dr. Kumar has international and national sponsored research projects from numerous funding agencies. Dr. Kumar has been rewarded with “Haryana Yuva Vigyan Ratna Award” and “Water Advanced Research and Innovation Fellow” for undertaking research work at University of Nebraska, Lincoln, USA. Dr. Kumar visited Hanyang University, Seoul, South Korea; University of Florence, Italy as a visiting Professor and also Australia, UK, Scotland, Germany, Spain, France, Belgium etc under different supporting schemes of Govt of India.

Dr G R Chaudhary is currently working as Professor at Department of Chemistry, Panjab University, Chandigarh. Dr Chaudhary has focused his research for the past 15 years in emerging research areas of green technologies, novel healthcare formulations, catalysis, nanomaterials-based sensors, molecular recognition/reorganizational behavior and emerging materials for biological applications. The work carried out by Dr Chaudhary in above areas has been published in numerous reputed international journals having high impact factor. Dr Chaudhary is well connected to international research groups with similar research interests.

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Engineered Nanostructures for Therapeutics and Biomedical Applications offers a single reference for a diverse biomedical readership to learn about the application of nanotechnology in biomedicine and biomedical engineering, from past developments to current research and future prospects. This book sets out a broad selection of biomedical and therapeutic applications for nanostructures, including bioimaging, nanorobotics, orthopedics, and tissue engineering, offering a useful, multidisciplinary approach. Each chapter discusses challenges faced in each discipline, including limiting factors, biocompatibility, and toxicity, thus enabling the reader to make informed decisions in their research.

This book is a comprehensive, broad overview of the role and significance of nanomaterials and their composites that also includes discussions of key aspects in the field of biomedicine. It will be of significant interest to academics and researchers in materials science and engineering, biomedicine and biomedical engineering, chemical engineering, pharmaceutics, bioimaging, and nanorobotics.

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