Computational intelligence in bioprinting /

Bibliographic Details
Other Authors: Gangadevi, E. (Editor)
Format: eBook
Language:English
Published: Hoboken, NJ : Beverly, MA : John Wiley & Sons, Inc. ; Scrivener Publishing LLC, 2024.
Subjects:
Online Access:Connect to the full text of this electronic book
Table of Contents:
  • Cover
  • Title Page
  • Copyright Page
  • Contents
  • Preface
  • Chapter 1 The Emergence of Bioprinting and Computational Intelligence
  • 1.1 Introduction
  • 1.2 Related Study
  • 1.3 Understanding the Basics of Bioprinting and Computational Intelligence
  • 1.3.1 Bioprinting: The Basics
  • 1.3.2 Computational Intelligence: The Basics
  • 1.3.3 Applications of Bioprinting and Computational Intelligence
  • 1.4 The Role of Computational Intelligence in Bioprinting
  • 1.5 Applications of Bioprinting and Computational Intelligence in Medicine
  • 1.6 Bioprinting and Computational Intelligence in Tissue Engineering and Regenerative Medicine
  • 1.7 Advancements in Bioprinting and Computational Intelligence Technologies
  • 1.8 The Ethical and Regulatory Implications of Bioprinting and Computational Intelligence
  • 1.9 The Future of Bioprinting and Computational Intelligence: Opportunities and Challenges
  • 1.10 Case Studies: Bioprinting and Computational Intelligence in Action
  • 1.10.1 Trends in Computational Intelligence and Bioprinting
  • 1.10.2 Challenges in Computational Intelligence and Bioprinting
  • 1.11 Conclusion
  • References
  • Chapter 2 Design, Architecture, Implementation, and Evaluation of Bioprinting Technology for Tissue Engineering
  • 2.1 Introduction
  • 2.2 3D Bioprinting
  • 2.3 Material Characteristics
  • 2.3.1 Printability
  • 2.4 Mechanical Properties
  • 2.5 Biomaterials
  • 2.6 Design, Architecture of 3D Bioprinting
  • 2.6.1 Inkjet Bioprinting
  • 2.6.2 Laser-Assisted Bioprinting (LAB)
  • 2.6.3 Extrusion Bioprinting
  • 2.7 3D Bioprinting Tissue Models
  • 2.8 3D Multimaterial Bioprinting-Development of Complex Architectures
  • 2.9 Implementation and Evaluation
  • 2.10 Bone
  • 2.11 Cartilage
  • 2.12 Soft Tissue Engineering
  • 2.13 Vascular Tissue
  • 2.14 Skin
  • 2.15 Biocompatibility and Control of Degradation and Byproducts
  • 2.16 Conclusion
  • References
  • Chapter 3 Design and Development of IoT Devices: Methods, Tools and Technologies
  • 3.1 Introduction to IoT Devices and 3D Bioprinting
  • 3.2 Methodology for Designing IoT Devices for 3D Bioprinting
  • 3.3 Additional Considerations in IoT Device Design for 3D Bioprinting
  • 3.4 Tools for Developing IoT Devices for 3D Bioprinting
  • 3.4.1 Microcontrollers and Development Boards
  • 3.4.2 Sensors and Actuators
  • 3.4.3 Communication Protocols
  • 3.4.4 Software Development Kits
  • 3.4.5 Cloud Platforms
  • 3.4.6 3D Printing Software
  • 3.4.7 CAD Software
  • 3.4.8 Simulation Software
  • 3.4.9 Data Analytics Tools
  • 3.4.10 Cybersecurity Tools
  • 3.5 Techniques for Developing IoT Devices for 3D Bioprinting
  • 3.5.1 Agile Development
  • 3.5.2 Rapid Prototyping
  • 3.5.3 Test-Driven Development
  • 3.5.4 Continuous Integration
  • 3.5.5 Modular Design
  • 3.5.6 Power Optimization
  • 3.5.7 Data Processing Techniques
  • 3.5.8 Quality Assurance
  • 3.5.9 Cybersecurity Techniques
  • 3.5.10 Standardization