Liu Hao-Li, Li Meng-Lin, Shih Tzu-Ching, Huang Sheng-Min, Lu I-Yeh, Lin Deng-Yn, Lin Shi-Ming, Ju Kuen-Cheng
Department of Electrical Engineering and Biomedical Engineering Center, Chang-Gung University, Taoyuan, Taiwan.
Ultrasound Med Biol. 2009 Oct;35(10):1647-61. doi: 10.1016/j.ultrasmedbio.2009.05.004. Epub 2009 Jul 29.
Focused ultrasound thermal therapy relies on temperature monitoring for treatment guidance and assurance of targeting and dose control. One potential approach is to monitor temperature change through ultrasonic-backscattered signal processing. The current approach involves the detection of echo time-shifts based on cross-correlation processing from segmented radiofrequency (RF) data. In this study, we propose a novel ultrasonic temperature-measurement approach that detects changes in instantaneous frequency along the imaging beam direction. Focused ultrasound was used as the heating source, and the 1-D beamformed RF signals provided from an ultrasound imager were used to verify the proposed algorithm for temperature change estimation. For comparison, a conventional cross-correlation technique was also evaluated. Heating experiments testing tissue-mimicking phantoms and ex vivo porcine muscles were conducted. The results showed that temperature can be well estimated by the proposed algorithm in the temperature range, where the relationship of sound speed versus temperature is linear. Compared with the cross-correlation-based algorithm, the proposed new algorithm yields a six-fold increase in computational efficiency, along with comparable contrast-detection ability and precision. This new algorithm may serve as an alternative method for implementing temperature estimation into a clinical ultrasound imager for thermal therapy guidance.
聚焦超声热疗依赖于温度监测来指导治疗,并确保靶向性和剂量控制。一种潜在的方法是通过超声背向散射信号处理来监测温度变化。当前的方法涉及基于对分段射频(RF)数据进行互相关处理来检测回波时间偏移。在本研究中,我们提出了一种新颖的超声温度测量方法,该方法可检测沿成像波束方向的瞬时频率变化。使用聚焦超声作为加热源,并利用超声成像仪提供的一维波束形成RF信号来验证所提出的温度变化估计算法。为作比较,还评估了传统的互相关技术。进行了测试组织模拟体模和离体猪肌肉的加热实验。结果表明,在所提出的算法中,在声速与温度的关系呈线性的温度范围内,可以很好地估计温度。与基于互相关的算法相比,所提出的新算法计算效率提高了六倍,同时具有相当的对比度检测能力和精度。这种新算法可作为一种替代方法,用于将温度估计功能集成到临床超声成像仪中以指导热疗。