Huang Yuexi, Curiel Laura, Kukic Aleksandra, Plewes Donald B, Chopra Rajiv, Hynynen Kullervo
Sunnybrook Health Sciences Centre, Toronto, Ontario M4N 3M5, Canada.
Med Phys. 2009 Jun;36(6):2016-20. doi: 10.1118/1.3120289.
MR acoustic radiation force (ARF) imaging was developed for measuring tiSsue elastic properties using focused ultrasound to deliver a localized tissue motion. In this study, an imaging ultrasound transducer was mounted on the focused ultrasound transducer and ultrasound motion tracking was performed simultaneously to MR ARF imaging to validate the measurement results. In vivo studies on rabbit thigh muscle were performed and results showed a general agreement between the two modalities (slope=0.96 and R2=0.67). The temporal information by the ultrasound measurement indicates that the parameters in MR ARF imaging should be optimized according to the tissue type, acoustic power, and envelope and frequency of the ARF modulation.
磁共振声学辐射力(ARF)成像技术是通过聚焦超声产生局部组织运动来测量组织弹性特性而开发的。在本研究中,将成像超声换能器安装在聚焦超声换能器上,并与磁共振ARF成像同时进行超声运动跟踪,以验证测量结果。对兔大腿肌肉进行了体内研究,结果表明两种方法之间总体一致(斜率 = 0.96,R2 = 0.67)。超声测量的时间信息表明,磁共振ARF成像中的参数应根据组织类型、声功率以及ARF调制的包络和频率进行优化。