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Computed Ultrasound Tomography in Echo mode (CUTE) of speed of sound for diagnosis and for aberration correction in pulse-echo sonography

机译:Eco模式(CUT)的计算机超声层析成像技术可降低声音速度,以进行脉冲回波超声检查中的诊断和像差校正

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Sound speed as a diagnostic marker for various diseases of human tissue has been of interest for a while. Up to now, mostly transmission ultrasound computed tomography (UCT) was able to detect spatially resolved sound speed, and its promise as a diagnostic tool has been demonstrated. However, UCT is limited to acoustically transparent samples such as the breast. We present a novel technique where spatially resolved detection of sound speed can be achieved using conventional pulse-echo equipment in reflection mode. For this purpose, pulse-echo images are acquired under various transmit beam directions and a two-dimensional map of the sound speed is reconstructed from the changing phase of local echoes using a direct reconstruction method. Phantom results demonstrate that a high spatial resolution (1 mm) and contrast (0.5 % of average sound speed) can be achieved suitable for diagnostic purposes. In comparison to previous reflection-mode based methods, CUTE works also in a situation with only diffuse echoes, and its direct reconstruction algorithm enables real-time application. This makes it suitable as an addition to conventional clinical ultrasound where it has the potential to benefit diagnosis in a multimodal approach. In addition, knowledge of the spatial distribution of sound speed allows full aberration correction and thus improved spatial resolution and contrast of conventional B-mode ultrasound.
机译:声速作为人体组织各种疾病的诊断标记已引起人们的关注。到目前为止,大多数透射超声计算机断层扫描(UCT)能够检测空间分辨的声速,并且其作为诊断工具的前景已得到证明。但是,UCT仅限于声音透明的样本,例如乳房。我们提出了一种新技术,其中可以使用反射模式下的常规脉冲回波设备来实现声速的空间分辨检测。为此,在各种发射波束方向上获取脉冲回波图像,并使用直接重建方法从局部回波的变化相位中重建声速的二维图。幻影结果表明,可以实现较高的空间分辨率(1毫米)和对比度(平均声速的0.5%),适用于诊断。与以前的基于反射模式的方法相比,CUTE还可在仅具有漫反射的情况下工作,其直接重建算法可实现实时应用。这使其适合作为常规临床超声的补充,在常规超声中,它有可能以多模式方法使诊断受益。另外,了解声速的空间分布可以进行完整的像差校正,从而提高了常规B模式超声的空间分辨率和对比度。

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