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Chapter 1: Nanoparticles for Drug Delivery Chapter 2: Nanobiotechnology and Bionanomaterials Chapter 3: Nanomedicine for Cancer Treatment Chapter 4: Personalized Medicine and Precision Diagnostics Chapter 5: Nanotechnology for Infectious Disease Chapter 6: Eco-Nanomedicine and the Environment Chapter 7: Future Prospects: Molecular Nanomachines, New Drug Modalities, Individual Nanobots in the Body
Chapter 1: Artificial Intelligence and Machine Learning in Biomedical Imaging Chapter 2: Neuroengineering and Brain-Machine Interfaces Keywords: neural engineering, deep brain stimulation, BCIs, neural prosthetics
Chapter 1: Digestive Diseases Chapter 2: Nutritional Diseases Chapter 3: Novel Therapies and Technologies for Diabetes Management
Chapter 1: Current Advances in Dental Implant Technology Chapter 2: Medical Imaging Innovations
Chapter 1: Embracing Plant-Based Bounty: Pathways to Sustainable Nutrition Chapter 2: Smarter Infrastructure: The Integration of AI and Automation in Civil Engineering Chapter 3: Cracking the Code: Understanding and Mitigating Wireless Encryption Vulnerabilities
Chapters Chapter 1: Advancements in Robotic Surgery Chapter 2: 3D Printing in Surgery Chapter 3: Molecular Surgery and Gene Therapy Chapter 4: Brain-Computer Interfaces in Neural Surgery Chapter 5: Stem Cell Therapy and Tissue Engineering Chapter 6: Metabolic and Bariatric Procedures Chapter 7: New Frontiers in Cancer Treatment Chapter 8: Personalized and Precision Surgery Chapter 9: New Frontiers in orthopedic Surgery
Chapter 1: Cell and Gene Therapies Chapter 2: Monoclonal Antibody Drug Development Chapter 3: Synthetic Biology and Proteins as Medicines Chapter 4: Nanobiotechnology Drug Delivery Systems Chapter 5: Vaccine Design and Production Chapter 6: Computational Modeling in Drug Discovery
Stephen Hawking says that the 21st century will be the century of complexity and indeed now systems biology or medicine means dealing with complexity. Both the genome and physiome have emerged in studying complex physiological systems. Computational and mathematical modeling has been regarded as an efficient tool to boost the understanding about living systems in normal or pathophysiological states. Covering applied methodology, basic case studies and complex applications, this volume provides researchers with an overview of modeling and computational studies of physiology (i.e. quantitative physiology), which is becoming an increasingly important branch of systems biology. This book aims to build multi-scale models to investigate functions in living systems and explain how biomolecules, cells, organs, organ systems and organisms carry out the chemical or physical functions. Some of the models addressed are related to gene expression, calcium signalling, neural activity, blood dynamics and bone mechanics. Combining theory and practice, with extensive use of MATLAB, this book is designed to establish a paradigm for quantitative physiology by integrating biology, mathematics, physics and informatics etc. To benefit from this book, the readers are expected to have a background in general physiology and mathematics
REA’s Essentials provide quick and easy access to critical information in a variety of different fields, ranging from the most basic to the most advanced. As its name implies, these concise, comprehensive study guides summarize the essentials of the field covered. Essentials are helpful when preparing for exams, doing homework and will remain a lasting reference source for students, teachers, and professionals. This book explores the world of DNA, genetic makeup, and the impact of DNA on science.