Robot integrated ultrasound geometry-scanning for trackerless bone cement detection in RTHR

S. Heger, T. Vollborn, M. Niggemeyer, T. Mumme, F. Chuembou, K. Radermacher
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引用次数: 2

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.
机器人集成超声几何扫描在RTHR无跟踪器骨水泥检测中的应用
在翻修全髋关节置换术(RTHR)的背景下,股骨内骨水泥的检测和移除是一项耗时且危险的干预措施。在计算机和机器人辅助手术的框架内,正在开发一种使用模块化微型机器人的综合腔内超声水泥检测系统。基于超声的方法面临的一个挑战是,水-水泥界面处的折射和波模式转换将分别导致折射畸变和伪影。为了使测量误差最小化,提出了一种针对局部水-水泥界面扫描的几乎垂直光束方向的扫描概念。对骨水泥制备的离体股骨进行超声扫描,并与金标准CT数据进行比较。超声集成几何扫描仪,检测算法以及离体评估是这一贡献的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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