Description

Book Synopsis
There has been enormous growth in the use of medical implants. However, in the case of hip replacement, loosening of metallic prosthesis fixed with polymethylmethylacrylate bone cement has resulted in painstaking revision surgery, which is a major problem for the patient, surgeon, and biomedical technology itself. In fact, global recognition of this problem led to the development of cementless fixation through the novel introduction of a bioactive hydroxyapatite (HAp) coating on biomedical-grade metallic implants. Since then, a wide variety of coating methods have evolved to make the HAp coatings on metallic implants more reliable.

Microplasma Sprayed Hydroxyapatite Coatings discusses plasma spraying and other related HAp coating techniques, focusing on the pros and cons of macroplasma sprayed (MAPS)- and microplasma sprayed (MIPS)-HAp coatings. The book begins by explaining what a biomaterial really is, what the frequently used term biocompatibility stands for, and wh

Trade Review

"This unique book on development of microplasma sprayed HAp coating has been organized in a very compact yet comprehensive manner. This book also highlights the horizons of future research that invites the attention of global community, particularly those in bio-medical materials and bio-medical engineering field. This book will surely act as a very useful reference material for both graduate/post-graduate students and researchers in the field of biomedical, orthopedic and manufacturing engineering and research. I truly believ that this is the first ever effort which covers almost all the broad subject area of "HAp coatings developed by microplasma spraying including those of the more commercially accepted plasma spraying method" for developing HAp coated implants and prosthesis."
—Bikramjit Basu, Professor, Materials Research Center, Indian Institute of Science, Bangalore, Associate Faculty, Interdisciplinary Bio-Engineering Program, IISc, Bangalore, Adjunct Professor, Indian Institute of Technology Kanpur, India

"The organization of topics is done very methodically covering all the related and even peripheral issues. The subject is covered well with thorough details and critical views. The book would be a good reference point for researchers working on HA based coatings for orthopedic application."
—Debrupa Lahiri, IIT Roorkee, India

"The lucid presentation style makes it easy for the new entrant to be gradually initiated into the field without any shock or jerk. What is most striking and appealing about the book is that even after starting from basic simple premises it has very capably provided vast and in-depth discussion to an extent that would be very lucrative for advanced researchers from both Govt. and private research organizations in the emerging field of biomedical applications of ceramic coatings."
—Dr. Satyam Priyadarshy, Founder, Reignite strategy



Table of Contents

Introduction. Plasma Spraying and Other Related Coating Techniques. Hydroxyapatite Coating and Its Application. Structural and Chemical Properties of Hydroxyapatite Coating. In Vitro Studies of Hydroxyapatite Coatings. Macromechanical Properties of Hydroxyapatite Coating. Micro/Nanomechanical Properties of Hydroxyapatite Coating. Tribological Properties of Hydroxyapatite Coatings. Residual Stress of Hydroxyapatite Coating. In Vivo Studies of Microplasma Sprayed Hydroxyapatite Coating. Future Scope and Possibilities. Conclusions.

Microplasma Sprayed Hydroxyapatite Coatings

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    A Hardback by Arjun Dey, Anoop Kumar Mukhopadhyay

    1 in stock

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      View other formats and editions of Microplasma Sprayed Hydroxyapatite Coatings by Arjun Dey

      Publisher: Taylor & Francis Inc
      Publication Date: 19/03/2015
      ISBN13: 9781482250930, 978-1482250930
      ISBN10: 1482250934

      Description

      Book Synopsis
      There has been enormous growth in the use of medical implants. However, in the case of hip replacement, loosening of metallic prosthesis fixed with polymethylmethylacrylate bone cement has resulted in painstaking revision surgery, which is a major problem for the patient, surgeon, and biomedical technology itself. In fact, global recognition of this problem led to the development of cementless fixation through the novel introduction of a bioactive hydroxyapatite (HAp) coating on biomedical-grade metallic implants. Since then, a wide variety of coating methods have evolved to make the HAp coatings on metallic implants more reliable.

      Microplasma Sprayed Hydroxyapatite Coatings discusses plasma spraying and other related HAp coating techniques, focusing on the pros and cons of macroplasma sprayed (MAPS)- and microplasma sprayed (MIPS)-HAp coatings. The book begins by explaining what a biomaterial really is, what the frequently used term biocompatibility stands for, and wh

      Trade Review

      "This unique book on development of microplasma sprayed HAp coating has been organized in a very compact yet comprehensive manner. This book also highlights the horizons of future research that invites the attention of global community, particularly those in bio-medical materials and bio-medical engineering field. This book will surely act as a very useful reference material for both graduate/post-graduate students and researchers in the field of biomedical, orthopedic and manufacturing engineering and research. I truly believ that this is the first ever effort which covers almost all the broad subject area of "HAp coatings developed by microplasma spraying including those of the more commercially accepted plasma spraying method" for developing HAp coated implants and prosthesis."
      —Bikramjit Basu, Professor, Materials Research Center, Indian Institute of Science, Bangalore, Associate Faculty, Interdisciplinary Bio-Engineering Program, IISc, Bangalore, Adjunct Professor, Indian Institute of Technology Kanpur, India

      "The organization of topics is done very methodically covering all the related and even peripheral issues. The subject is covered well with thorough details and critical views. The book would be a good reference point for researchers working on HA based coatings for orthopedic application."
      —Debrupa Lahiri, IIT Roorkee, India

      "The lucid presentation style makes it easy for the new entrant to be gradually initiated into the field without any shock or jerk. What is most striking and appealing about the book is that even after starting from basic simple premises it has very capably provided vast and in-depth discussion to an extent that would be very lucrative for advanced researchers from both Govt. and private research organizations in the emerging field of biomedical applications of ceramic coatings."
      —Dr. Satyam Priyadarshy, Founder, Reignite strategy



      Table of Contents

      Introduction. Plasma Spraying and Other Related Coating Techniques. Hydroxyapatite Coating and Its Application. Structural and Chemical Properties of Hydroxyapatite Coating. In Vitro Studies of Hydroxyapatite Coatings. Macromechanical Properties of Hydroxyapatite Coating. Micro/Nanomechanical Properties of Hydroxyapatite Coating. Tribological Properties of Hydroxyapatite Coatings. Residual Stress of Hydroxyapatite Coating. In Vivo Studies of Microplasma Sprayed Hydroxyapatite Coating. Future Scope and Possibilities. Conclusions.

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