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Assessment of Polymeric Materials for Biomedical Applications (EPUB)

Understanding Polymeric Materials in Biomedical Sciences

This book, authored by Vijay Chaudhary, delves into the world of polymeric materials, their classifications, properties, and development methods. It also covers the characterization techniques used for these materials and their applications in biomedical sciences, particularly in tissue regeneration.

Classification and Properties of Polymeric Implant Materials

The book begins by introducing readers to the various classifications of polymeric materials and their properties. This section is crucial for understanding how these materials are used in biomedical applications, including implantable devices.

Development Methods and Characterization Techniques

Chaudhary also discusses the different development methods of polymeric materials and the various characterization techniques employed to assess their properties. This knowledge is essential for researchers and engineers working on creating new polymeric materials for biomedical use.

Toxicology Assessments and Biocompatibility

A key aspect of the book is its coverage of toxicology assessments of polymeric materials. It explains how these assessments are conducted and why they are critical for ensuring the safety and efficacy of polymeric implants. The book also delves into the biocompatibility, toxicity, and biodegradation of these materials.

Design and Analysis Using Ansys Software

The book provides an overview of how to design and analyze polymeric materials-based components using Ansys software. This section is particularly useful for engineers and researchers who need to simulate the behavior of these materials under various conditions.

Applications in Additive Manufacturing and Drug Delivery

Chaudhary explores the applications of polymeric materials in additive manufacturing, specifically in the creation of artificial organs. He also discusses the use of polymeric materials in drug delivery systems, highlighting their potential to revolutionize the field of medicine.

Limitations and Future Directions

The book concludes by discussing the limitations of current polymeric materials and potential future directions for research and development. This section provides valuable insights for researchers and engineers looking to advance the field of biomedical materials.

Key Features:

  • Comprehensive coverage of polymeric materials in biomedical sciences
  • Detailed information on classification, properties, and development methods of polymeric implant materials
  • Insights into various topics in the field of tissue regeneration
  • Discussion on biocompatibility, toxicity, and biodegradation of polymeric materials
  • Wide-scale characterization to study the effect of inclusion size on the mechanical properties of polymeric materials
  • Review of limitations and future directions on polymeric material with emphasis on biocompatibility

Target Audience:

This book is aimed at graduate students and researchers in biomaterials, biomedical engineering, composites, and polymers. It provides a comprehensive understanding of polymeric materials and their applications in biomedical sciences, making it an invaluable resource for those working in this field.

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