Title :
Robot integrated ultrasound geometry-scanning for trackerless bone cement detection in RTHR
Author :
Heger, Stefan ; Vollborn, Thorsten ; Niggemeyer, Martin ; Mumme, Torsten ; Chuembou, Fabrice ; Radermacher, Klaus
Author_Institution :
Helmholtz Inst. for Biomed. Eng., RWTH Aachen Univ., Aachen, Germany
Abstract :
Detection and removal of intra-femoral bone-cement in the context of revision total hip replacement (RTHR) can be a time-consuming and risky intervention. Within the framework of computer and robot assisted surgery a system for integrated intraluminal ultrasound based cement detection using a modular mini-robot is being developed. One challenge of an ultrasound based approach is that refraction and wave mode conversion at the water-cement interface will cause refraction distortion and artefacts respectively. In order to minimize measurement errors a scanning concept aiming on an almost perpendicular beam direction with respect to the local water cement interface scanning has been developed. Bone cement prepared ex-vivo femora have been ultrasound scanned and the results have been compared with golden standard CT data. The ultrasound integrated geometry scanner, the detection algorithms as well as the ex-vivo evaluation is presented as part of this contribution.
Keywords :
biomedical ultrasonics; bone; medical robotics; prosthetics; surgery; RTHR surgery; intrafemoral bone cement detection; intrafemoral bone cement removal; measurement error; revision total hip replacement; robot assisted surgery; robot integrated ultrasound geometry-scanning; trackerless bone cement detection; water-cement interface; Bones; Computed tomography; Milling; Prosthetics; Robots; Three dimensional displays; Ultrasonic imaging; 3D-scanner; RTHR; bone cement; detection; integrated; robot assisted surgery; robotics; ultrasound;
Conference_Titel :
Ultrasonics Symposium (IUS), 2010 IEEE
Conference_Location :
San Diego, CA
Print_ISBN :
978-1-4577-0382-9
DOI :
10.1109/ULTSYM.2010.5935724