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Ultrasound Based Navigation and Control for Orthopaedic Robot Surgery
Details
Robotic Surgery increases precision and accuracy of surgical procedures, besides producing more reliable and reproducible results, minimizing the invasiveness, reducing complications and improving patient safety, compared with conventional techniques. The target's localization within the operating room is fundamental to the success of robotic systems. In this context a new navigation system, used in the control loop, to co-manipulate a robotic system developed to assist orthopaedic surgeons, is proposed. The system was designed to perform a hole in the femur head, necessary to implant the initial guide wire used in Hip Resurfacing surgery. During the surgery, the bone position and orientation is obtained through a registration process between a set of US images acquired in real time and the CT femur model, preloaded pre-operatively. Contrary to current surgical systems, it does not use any type of implant in the bone, to localize the femur, but passive markers, of an optical measurement system, placed on the probe and the robot to measure their 3D poses. Experimental validation tests were performed on a human's femur phantom, validating the proposed system.
Autorentext
Pedro Torres received his BSc (5 years course) degree in Electronics and Telecommunications Engineering from the Polytechnic Institute of C. Branco (Portugal), in 2007. Received his PhD degree in Mechanical Engineering from the, Instituto Superior Técnico, Universidade de Lisboa, in 2015. He is Assistant Lecturer at IPCB, since 2007.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783659712180
- Genre Information Technology
- Anzahl Seiten 132
- Größe H220mm x B150mm x T7mm
- Jahr 2015
- EAN 9783659712180
- Format Kartonierter Einband
- ISBN 978-3-659-71218-0
- Titel Ultrasound Based Navigation and Control for Orthopaedic Robot Surgery
- Autor Pedro Torres
- Untertitel A Practical Approach
- Gewicht 194g
- Herausgeber LAP LAMBERT Academic Publishing
- Sprache Englisch