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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Increasing specificity of contrast-enhanced ultrasound imaging using the interaction of quasi counter-propagating wavefronts: a proof of concept
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Increasing specificity of contrast-enhanced ultrasound imaging using the interaction of quasi counter-propagating wavefronts: a proof of concept

机译:利用准反向传播的波前相互作用增强对比增强型超声成像的特异性:概念证明

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Detection methods implemented in present clinical ultrasound scanners for contrast-enhanced ultrasound imaging show high sensitivity but a rather poor specificity due to pseudo-enhancement (false detection of contrast agent) produced by nonlinear wave propagation. They all require linear ultrasound propagation to detect nonlinear scattering of contrast agent microbubbles. Even at low transmit pressure, nonlinear wave propagation occurs in regions perfused with contrast agent because contrast agent microbubbles can dramatically enhance the nonlinear elastic behavior of the medium. This image artifact hinders further development of contrast-enhanced ultrasound imaging toward reliable quantitative measurement of local concentration of contrast agent and blood perfusion kinetics. We propose in this manuscript a new detection method, with specific beamforming and pulsing scheme, that produces contrast images with highly reduced pseudo-enhancement. It is based on the interaction of two diverging wavefronts broadcasted by two single elements of a conventional probe array. The contrast image is formed line by line; one single image line is the line segment bisector defined by the centers of the two transmitting elements. Each image line is formed by a three-step pulse sequence: (1) transmission with one element, (2) transmission with the other element, and (3) transmission with both elements. The proof of principle is shown with numerical simulations and in vitro experiments. The method is implemented in a programmable ultrasound system and tested in a tissue-mimicking phantom containing a vessel filled with diluted contrast agent. At a given depth, increasing the distance between the two transmitting elements increases the angle describing the propagation directions of the two wavefronts. As a result, the nonlinear interaction between the two broadcasted waves is reduced. We show experimentally that increasing the distance between the transmitting elements from 0.6 to 24 - m reduces the amplitude of the pseudoenhancement at the far wall of the vessel relative to true contrast signal amplitude in the vessel by 12 dB, therefore improving specificity in the contrast-enhanced image.
机译:在当前的临床超声扫描仪中用于对比度增强超声成像的检测方法显示出高灵敏度,但是由于非线性波传播产生的伪增强(造影剂的误检测)而导致特异性差。它们都需要线性超声传播,以检测造影剂微泡的非线性散射。即使在低传输压力下,由于造影剂微泡可以显着增强介质的非线性弹性行为,因此在灌注有造影剂的区域中也会发生非线性波传播。该图像伪影阻碍了对比度增强超声成像向可靠定量测量造影剂局部浓度和血液灌注动力学的进一步发展。我们在这份手稿中提出了一种新的检测方法,该方法具有特定的波束成形和脉冲方案,可产生对比度大大降低的伪增强图像。它基于常规探头阵列的两个单个元件广播的两个发散波前的相互作用。对比度图像是逐行形成的;一个单一的图像线是由两个发射元件的中心定义的线段二等分线。每条图像线由三步脉冲序列形成:(1)一个元素传输,(2)另一个元素传输,(3)两个元素传输。数值模拟和体外实验显示了原理证明。该方法在可编程的超声系统中实施,并在包含填充有稀释造影剂的血管的模仿组织的模型中进行测试。在给定深度处,增加两个发射元件之间的距离会增加描述两个波阵面传播方向的角度。结果,减少了两个广播波之间的非线性相互作用。我们通过实验证明,将发射元件之间的距离从0.6增大到24-m可使相对于血管中真实造影剂信号幅度的血管远壁伪增强的幅度降低了12 dB,因此提高了造影剂的特异性-增强图像。

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