Combined ultrasound echography and magnetic resonance imaging guidance for direct and indirect target tracking

B. D. Senneville, Y. Regard, C. Moonen, M. Ries
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引用次数: 2

Abstract

Real-time motion estimation has a growing interest for the guidance of interventional procedures in mobile organs. For this purpose, combined magnetic resonance (MR) imaging and ultrasound (US) echography systems can now provide both MR- and US- images, which can be exploited simultaneously for improved target tracking. For this purpose, two tracking strategies can be investigated: While indirect tracking methods rely on a calibration obtained prior to the intervention, direct tracking methods perform the target localization directly on the continuously acquired position. The current paper describes real-time methodological developments designed for the guidance of non-invasive interventional procedures, using a combined MR/US imaging system: A GPU (Graphics Processing Unit) optimized processing pipeline is proposed for both direct and indirect approaches, in conjunction with simultaneous high-frame-rate MR and echography. Experiments on a moving ex-vivo target were performed with MR-guided HIFU (High Intensity Focused Ultrasound) during continuous ultrasound echography. Real-time US echography-based tracking during MR-guided HIFU heating was achieved with heated area dimensions similar to those obtained for a static target.
超声和磁共振成像联合制导直接和间接目标跟踪
实时运动估计对运动器官介入手术的指导越来越有兴趣。为此目的,结合磁共振(MR)成像和超声(US)超声成像系统现在可以同时提供MR和US图像,这可以同时用于改进目标跟踪。为此,可以研究两种跟踪策略:间接跟踪方法依赖于干预前获得的校准,直接跟踪方法直接在连续获取的位置上进行目标定位。当前的论文描述了用于指导非侵入性介入程序的实时方法发展,使用联合MR/US成像系统:GPU(图形处理单元)优化了直接和间接方法的处理管道,结合同时高帧率MR和超声成像。在连续超声检查过程中,采用核磁共振引导的高强度聚焦超声(HIFU)对运动的离体靶标进行实验。在磁共振引导下的HIFU加热过程中,实现了基于超声的实时跟踪,加热面积尺寸与静态目标相似。
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