Tang Annie M, Kacher Daniel F, Lam Edmund Y, Wong Kelvin K, Jolesz Ferenc A, Yang Edward S
Department of Electrical and Electronic Engneering, The University of Hong Kong, Hong Kong.
IEEE Trans Med Imaging. 2008 Feb;27(2):247-54. doi: 10.1109/TMI.2007.911000.
Simultaneous capturing of ultrasound (US) and magnetic resonance (MR) images allows fusion of information obtained from both modalities. We propose an MR-compatible US system where MR images are acquired in a known orientation with respect to the US imaging plane and concurrent real-time imaging can be achieved. Compatibility of the two imaging devices is a major issue in the physical setup. Tests were performed to quantify the radio frequency (RF) noise introduced in MR and US images, with the US system used in conjunction with MRI scanner of different field strengths (0.5 T and 3 T). Furthermore, simultaneous imaging was performed on a dual modality breast phantom in the 0.5 T open bore and 3 T close bore MRI systems to aid needle-guided breast biopsy. Fiducial based passive tracking and electromagnetic based active tracking were used in 3 T and 0.5 T, respectively, to establish the location and orientation of the US probe inside the magnet bore. Our results indicate that simultaneous US and MR imaging are feasible with properly-designed shielding, resulting in negligible broadband noise and minimal periodic RF noise in both modalities. US can be used for real time display of the needle trajectory, while MRI can be used to confirm needle placement.
同时采集超声(US)和磁共振(MR)图像可实现两种模态信息的融合。我们提出了一种与MR兼容的US系统,在该系统中,MR图像以相对于US成像平面的已知方向采集,并且可以实现同步实时成像。两种成像设备的兼容性是物理设置中的一个主要问题。进行了测试以量化在MR和US图像中引入的射频(RF)噪声,US系统与不同场强(0.5 T和3 T)的MRI扫描仪结合使用。此外,在0.5 T开放式磁体和3 T封闭式磁体MRI系统中的双模态乳腺模型上进行了同步成像,以辅助针引导乳腺活检。在3 T和0.5 T中分别使用基于基准的被动跟踪和基于电磁的主动跟踪来确定磁体孔内US探头的位置和方向。我们的结果表明,通过适当设计的屏蔽,同时进行US和MR成像是可行的,在两种模态中产生的宽带噪声可忽略不计,周期性RF噪声最小。US可用于实时显示针的轨迹,而MRI可用于确认针的放置。