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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >High-resolution, high-contrast ultrasound imaging using a prototype dual-frequency transducer: In vitro and in vivo studies
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High-resolution, high-contrast ultrasound imaging using a prototype dual-frequency transducer: In vitro and in vivo studies

机译:使用原型双频换能器进行高分辨率,高对比度超声成像:体内和体外研究

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With recent advances in animal models of disease, there has been great interest in capabilities for highresolution contrast-enhanced ultrasound imaging. Microbubble contrast agents are unique in that they scatter broadband ultrasound energy because of their nonlinear behavior. For optimal response, it is desirable to excite the microbubbles near their resonant frequency. To date, this has been challenging with high-frequency imaging systems because most contrast agents are resonant at frequencies in the order of several megahertz. Our team has developed a unique dual-frequency confocal transducer which enables low-frequency excitation of bubbles near their resonance with one element, and detection of their emitted high-frequency content with the second element. Using this imaging approach, we have attained an average 12.3 dB improvement in contrast-to-tissue ratios over fundamental mode imaging, with spatial resolution near that of the high-frequency element. Because this detection method does not rely on signal decorrelation, it is not susceptible to corruption by tissue motion. This probe demonstrates contrast imaging capability with significant tissue suppression, enabling high-resolution contrast-enhanced images of microvascular blood flow. Additionally, this probe can readily produce radiation force on flowing contrast agents, which may be beneficial for targeted imaging or therapy.
机译:随着疾病动物模型的最新发展,人们对高分辨率的造影剂增强型超声成像的能力产生了极大的兴趣。微泡造影剂的独特之处在于,由于它们的非线性行为,它们会散射宽带超声能量。为了获得最佳响应,希望在微泡的共振频率附近激发微泡。迄今为止,由于大多数造影剂在几兆赫兹的频率处共振,因此对于高频成像系统而言,这一直是具有挑战性的。我们的团队开发了一种独特的双频共焦换能器,该换能器可以通过一个元素对气泡在其共振附近的低频激发,并使用第二个元素检测其发出的高频成分。使用这种成像方法,与基本模式成像相比,我们的对比度/组织比平均提高了12.3 dB,空间分辨率接近高频元件。因为此检测方法不依赖于信号去相关,所以它不易受组织运动的破坏。该探头展示了具有显着组织抑制作用的对比成像功能,可实现微血管血流的高分辨率对比增强图像。另外,该探针可容易地对流动的造影剂产生辐射力,这可能对靶向成像或治疗有益。

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