首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Contrast Enhanced Superharmonic Imaging for Acoustic Angiography Using Reduced Form-Factor Lateral Mode Transmitters for Intravascular and Intracavity Applications
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Contrast Enhanced Superharmonic Imaging for Acoustic Angiography Using Reduced Form-Factor Lateral Mode Transmitters for Intravascular and Intracavity Applications

机译:用于血管内和腔内应用的减少型因子横向模式发射器的声学血管造影造影增强超谐波成像

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摘要

Techniques to image the microvasculature may play an important role in imaging tumor-related angiogenesis and vasa vasorum associated with vulnerable atherosclerotic plaques. However, the microvasculature associated with these pathologies is difficult to detect using traditional B-mode ultrasound or even harmonic imaging due to small vessel size and poor differentiation from surrounding tissue. Acoustic angiography, a microvascular imaging technique that utilizes superharmonic imaging (detection of higher order harmonics of microbubble response), can yield a much higher contrast-to-tissue ratio than second harmonic imaging methods. In this paper, two dual-frequency transducers using lateral mode transmitters were developed for superharmonic detection and acoustic angiography imaging in intracavity applications. A single element dual-frequency intravascular ultrasound transducer was developed for concept validation, which achieved larger signal amplitude, better contrast-to-noise ratio (CNR), and pulselength compared to the previous work. A dual-frequency [Pb(Mg1/3Nb2/3)O3]–x[PbTiO3] array transducer was then developed for superharmonic imaging with dynamic focusing. The axial and lateral sizes of the microbubbles in a 200- mu text{m} tube were measured to be 269 and 200~mu text{m} , respectively. The maximum CNR was calculated to be 22 dB. These results show that superharmonic imaging with a low frequency lateral mode transmitter is a feasible alternative to thickness mode transmitters when the final transducer size requirements dictate design choices.
机译:成像微脉管系统的技术可能在成像与脆弱的动脉粥样硬化斑块相关的肿瘤相关血管生成和脉管血管中起重要作用。然而,由于较小的血管尺寸和与周围组织的不良分化,使用传统的B型超声甚至谐波成像很难检测到与这些病理相关的微脉管系统。超声血管造影是一种利用超谐波成像技术(检测微泡响应的高次谐波)的微血管成像技术,与二次谐波成像方法相比,可产生更高的对比度/组织比。在本文中,开发了两个使用横向模式发射器的双频换能器,用于腔内应用中的超谐波检测和声血管造影成像。开发了单元素双频血管内超声换能器以进行概念验证,与以前的工作相比,该信号实现了更大的信号幅度,更好的对比度-噪声比(CNR)和脉冲长度。然后开发了一种双频[Pb(Mg1 / 3Nb2 / 3)O3] –x [PbTiO3]阵列换能器,用于动态聚焦的超谐波成像。在200-mu text {m}管中测量的微气泡的轴向和横向尺寸分别为269和200-mu text {m}。计算得出的最大CNR为22 dB。这些结果表明,当最终换能器的尺寸要求决定了设计选择时,使用低频横向模式发射器的超谐波成像是厚度模式发射器的可行替代方案。

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