Engineering and Imaging Basics for Robot-Assisted Minimally Invasive Surgery
Editat de Sanja Dogramadzi, Giulio Dagnino, Dennis Kundraten Limba Engleză Paperback – noi 2025
This book provides underlying principles in modern minimally invasive surgery and serves as a reference for both medical and engineering and computing students. This book helps MSc and Ph.D. students approaching the field of image-guided surgery and surgical robotics, acting as a tutorial providing useful references for basic concepts and offering a recent update on current research directions.
- Covers minimally invasive surgical robots design, components and devices in one comprehensive source
- Accessible for readers in multiple areas of study, such as biomedical engineering, computer science, electrical engineering and mechanical engineering
- Includes the most recent and groundbreaking advances in the surgical robotics field
- Provides a technically-oriented material with use cases from significant surgical branches that implement the minimally invasive approach
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Specificații
ISBN-13: 9780128225028
ISBN-10: 0128225025
Pagini: 500
Ilustrații: Approx. 100 illustrations
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
ISBN-10: 0128225025
Pagini: 500
Ilustrații: Approx. 100 illustrations
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Public țintă
Researchers, graduates, and post-graduate students active in the field of medical robotics, medical imaging, image guided surgery and biomedical engineering.Lecturers in image-guided surgery/ medical robotics
MDs, Surgeons, clinical engineers
Cuprins
1. Introduction: Basics of MIS, history of robotic surgery
2. Imaging for MIS
3. Techniques for imaging in MIS
4. Registration and navigation including examples
5. Teleoperation, Augmented and Virtual Reality for Robotic Surgery
6. Robotic system design and control including autonomy (implementation of control systems in robotic surgery) – technical annex on control fundamentals
7. Instruments design (including continuum robots) and manufacturing (including 3D printing) , calibration, control architectures
8. Force sensing and feedback control
9. Human-Robot Interaction and Ergonomics in MIS
10. Surgical applications and scenarios (colorectal, urology, specific requirements, etc)
11. Review on MIS robotic systems - Commercial and Research Prototypes
12. Ethical Issues in robots for MIS
2. Imaging for MIS
3. Techniques for imaging in MIS
4. Registration and navigation including examples
5. Teleoperation, Augmented and Virtual Reality for Robotic Surgery
6. Robotic system design and control including autonomy (implementation of control systems in robotic surgery) – technical annex on control fundamentals
7. Instruments design (including continuum robots) and manufacturing (including 3D printing) , calibration, control architectures
8. Force sensing and feedback control
9. Human-Robot Interaction and Ergonomics in MIS
10. Surgical applications and scenarios (colorectal, urology, specific requirements, etc)
11. Review on MIS robotic systems - Commercial and Research Prototypes
12. Ethical Issues in robots for MIS