Control Systems Design of Bio-Robotics and Bio-Mechatronics with Advanced Applications delivers essential and advanced bioengineering information on the application of control and robotics technologies in the life sciences. Judging by what we have witnessed so far, this exciting field of control systems and robotics in bioengineering is likely to produce revolutionary breakthroughs over the next decade. While this book is intended for senior undergraduate or graduate students in both control engineering and biomedical engineering programs, it will also appeal to medical researchers and…mehr
Control Systems Design of Bio-Robotics and Bio-Mechatronics with Advanced Applications delivers essential and advanced bioengineering information on the application of control and robotics technologies in the life sciences. Judging by what we have witnessed so far, this exciting field of control systems and robotics in bioengineering is likely to produce revolutionary breakthroughs over the next decade. While this book is intended for senior undergraduate or graduate students in both control engineering and biomedical engineering programs, it will also appeal to medical researchers and practitioners who want to enhance their quantitative understanding of physiological processes.
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Autorenporträt
Ahmad Azar is a Research Associate Professor at the Prince Sultan University, Riyadh, Kingdom Saudi Arabia. He is also an associate professor at the Faculty of Computers and Artificial intelligence, in Benha University, Egypt. He is the Editor in Chief of the International Journal of System Dynamics Applications (IJSDA), International Journal of Service Science, Management, Engineering, and Technology (IJSSMET), and International Journal of Intelligent Engineering Informatics (IJIEI), among others. He is currently Associate Editor of ISA Transactions, Elsevier, and the IEEE systems journal. Dr. Azar works in the areas of control theory & applications, process control, chaos control and synchronization, nonlinear control, renewable energy, computational intelligence.
Inhaltsangabe
1. Human-Robot Interaction for Rehabilitation Scenarios 2. State Observation and Feedback Control in Robotic Systems for Surgery and Therapy 3. Robin Heart Surgical Robot: Description and future challenges 4. Real-Time Object Detection and Manipulation Using Biomemetic Musculoskeletal Soft Robotic Grasper Addressing Robotic Fan Handling Challenge 5. Formal Verification of Robotic Cell Injection Systems 6. Identifying Vessel Branching from Fluid Stresses on Microscopic Robots 7. Navigation and Control of Endovascular Helical Swimming Microrobot Using Dynamic Programing and Adaptive Sliding Mode Strategy 8. Robotics in endoscopic transnasal skull base surgery: literature review and personal experience 9. Strategies for mimicking the movements of an upper extremity using superficial electromyographic signals 10. Automated Transportation of Micro-particles in vivo 11. Medical Nanorobots: Design, applications and future challenges 12. Impedance Control Applications in Therapeutic Exercise Robots 13. Architecture and Application of Nanorobots in Medicine
1. Human-Robot Interaction for Rehabilitation Scenarios 2. State Observation and Feedback Control in Robotic Systems for Surgery and Therapy 3. Robin Heart Surgical Robot: Description and future challenges 4. Real-Time Object Detection and Manipulation Using Biomemetic Musculoskeletal Soft Robotic Grasper Addressing Robotic Fan Handling Challenge 5. Formal Verification of Robotic Cell Injection Systems 6. Identifying Vessel Branching from Fluid Stresses on Microscopic Robots 7. Navigation and Control of Endovascular Helical Swimming Microrobot Using Dynamic Programing and Adaptive Sliding Mode Strategy 8. Robotics in endoscopic transnasal skull base surgery: literature review and personal experience 9. Strategies for mimicking the movements of an upper extremity using superficial electromyographic signals 10. Automated Transportation of Micro-particles in vivo 11. Medical Nanorobots: Design, applications and future challenges 12. Impedance Control Applications in Therapeutic Exercise Robots 13. Architecture and Application of Nanorobots in Medicine
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