Yeh Chih-Kuang, Su Shin-Yuan, Shen Che-Chou, Li Meng-Lin
Department of Biomedical Engineering and Environmental Sciences, National Tsing Hua University, Hsinchu, Taiwan, ROC.
IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Oct;55(10):2164-76. doi: 10.1109/TUFFC.916.
Stimulating high-frequency nonlinear oscillations of ultrasound contrast agents is helpful to distinguish microbubbles from background tissues. Nevertheless, inefficiency of such oscillations from most commercially available contrast agents and intense attenuation of the resultant high-frequency harmonics limit microbubble detection with high-frequency ultrasound. To avoid this high-frequency nature, we devised and explored a dual-frequency difference excitation technique to induce efficiently low-frequency, rather than high-frequency, nonlinear scattering from microbubbles by using high-frequency ultrasound. The proposed excitation pulse is comprised of 2 high-frequency sinusoids with frequency difference subject to the microbubble resonance frequency. Its envelope, with frequency being the difference between the 2 frequencies, is used to stimulate nonlinear oscillation of microbubbles for the consonant low-frequency harmonic generation, whereas high-imaging resolution is retained because of narrow high-frequency transmit beams. Hydrophone measurements and phantom experiments of speckle-generating flow phantoms were performed to demonstrate the efficacy of the proposed technique. The results show that, especially when the envelope frequency is near the microbubbleiquests resonance frequency, the envelope of the proposed excitation pulse can induce significant nonlinear scattering from microbubbles, the induced nonlinear responses tend to increase with the pulse pressures, and up to 26 dB and 36 dB contrast-to-tissue ratios with second- and fourth-order nonlinear responses, respectively, can be obtained. Potential applications of this method include microbubble fragmentation and cavitation with high-frequency ultrasound.
刺激超声造影剂的高频非线性振荡有助于将微泡与背景组织区分开来。然而,大多数市售造影剂的这种振荡效率低下以及由此产生的高频谐波的强烈衰减限制了高频超声对微泡的检测。为了避免这种高频特性,我们设计并探索了一种双频差激发技术,通过使用高频超声有效地诱导微泡产生低频而非高频的非线性散射。所提出的激发脉冲由两个高频正弦波组成,其频率差取决于微泡共振频率。其包络频率为两个频率之差,用于刺激微泡的非线性振荡以产生一致的低频谐波,而由于窄的高频发射波束,仍保留了高成像分辨率。进行了水听器测量和散斑生成流动体模的体模实验,以证明所提出技术的有效性。结果表明,特别是当包络频率接近微泡共振频率时,所提出的激发脉冲的包络可以诱导微泡产生显著的非线性散射,诱导的非线性响应倾向于随脉冲压力增加,并且分别利用二阶和四阶非线性响应可获得高达26 dB和36 dB的对比组织比。该方法的潜在应用包括高频超声下的微泡破碎和空化。