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Robotic Platforms for Minimally Invasive Surgery

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2026
ISBN13: 9780443217333
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Elsevier Science e druk, 2026 9780443217333
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Samenvatting

Robotic Platforms for Minimally Invasive Surgery provides a concise and solid overview of the primary robotic systems currently employed in minimally invasive surgical practice. Combining
technical description with clinical insights, the book serves as a practical reference for surgeons,
researchers, and healthcare professionals beginning to engage with robot-assisted procedures.

This book examines established platforms across laparoscopic, endoscopic, and microsurgical
approaches. It describes system design and functionality, complemented by a thorough review of
safety, feasibility, and clinical outcomes. By seamlessly integrating engineering concepts with surgical applications, its content equips readers with a well-de ned framework for understanding both the potential and limitations of robotic technologies in minimally invasive surgery.

Specificaties

ISBN13:9780443217333
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

Part I: Robotic Surgery: Evolution, Technologies and Global Vision<br>1. Past, present and future of minimally invasive and robotic surgery<br>2. Technical aspects of robotic platforms<br>3. Multi-Arm Robotics<br>4. Autonomy in cooperative robotic systems for MIS<br>5. Autonomy in the operating room<br>6. Ergonomic recommendations and challenges in robotic surgery<br>7. The Role of Scientific Societies in Advancing and Standardizing Robotic Approaches: Insights from Thoracic Surgery<br>8. The future of sustainable robotics for use in minimally invasive surgery<br><br>Part II: Education, Simulation and Competency in Robotic Surgery<br>9. Transforming Robotic Surgery Education: Competency-Based Frameworks and Technological Integration<br>10. Impact and implementation of robotic surgery in a training surgery program using pathological obesity surgery as model<br>11. Validation of the Marion portable virtual reality robotic surgical training platform<br><br>Part III: Robotic Platforms: Systems, Implementation and Innovation<br>12. The DaVinci SP Robotic System: Urologic applications<br>13. Versius from CMR – the next generation robotic surgical system<br>14. Enhancing Surgical Precision: The Role of the Versius Robot in Minimally Invasive Abdominal Surgery<br>15. The Versius Robotic Platform: Design, Clinical Applications in Cholecystectomy and Future Directions<br>16. Robotic surgery for rectal cancer using Versius robotic platform<br>17. Avatera Robotic System. An interesting alternative<br>18. The Hugo™ Robotic-Assisted Surgery Platform in Urology: Technical Characteristics and Early Clinical Outcomes<br>19. Technical Performance and Clinical Implementation of the Hugo™ RAS System in Urologic Robotic Surgery<br>20. Renal and Adrenal Surgery with the Hugo™ RAS System: Technical Execution and Early Outcomes<br>21. Robotic Radical Cystectomy and Neobladder Reconstruction Using the Hugo™ RAS System<br>22. Hugo RAS system in radical prostatectomy<br>23. Emerging Innovations in Robotic Platforms for Laparoscopic Surgery: Telesurgery and Artificial Intelligence<br>24. Robotic Platforms for Endoluminal Surgery<br>25. Endorobots for Interventional Endoscopy: Design Challenges and Available Technology<br><br>Part IV: Clinical Applications by Specialty<br>26. Current and emerging Robotic Platforms in Urology<br>27. Single-Port Robotic Surgery in Urology: Present Applications and Future Perspectives<br>28. From da Vinci to Versius: Transition Dynamics, Learning Curves and Implementation Strategies in Robotic Urologic Surgery<br>29. Advances in Robotic-Assisted Urologic Surgery: Techniques, Outcomes and Future Directions<br>30. Uniportal Robotic-Assisted Thoracic Surgery: Evolution, Current Practices and Future Innovations<br>31. Robotic-Assisted Surgery for Anatomical Lung Resections: Techniques, Outcomes and Complex Cases<br>32. Totally robotic lung transplant: a novel approach<br>33. Robotic-Assisted Surgery for Benign and Malignant Esophageal Conditions: Techniques, Outcomes and Future Directions<br>34. Robotic platforms for colorectal surgery<br>35. Robot-Assisted Colposacropexy Using the Da Vinci® Surgical System<br>36. Uterus transplantation - current and future developments by robotics<br>37. Transoral Robotic Thyroidectomy (TORT): Techniques, Outcomes and Future Directions<br><br>Part V: Robotic Platforms for Microsurgery<br>38. Robotics in Microsurgery and Supermicrosurgery<br>39. The MicroSure MUSA Robot: Development, Clinical Validation and Future of Robotic Microsurgery<br>40. Robotic Microsurgery with the Symani Surgical System: From Preclinical Insights to Clinical Applications<br>41. Robotics in microsurgery: Preclinical studies

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        Robotic Platforms for Minimally Invasive Surgery