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Motion Artifacts of Extended High Frame Rate Imaging

机译:扩展的高帧频成像的运动伪像

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摘要

Based on the high frame rate (HFR) imaging method developed in our lab, an extended high frame rate imaging method with various transmission schemes was developed recently. In this method, multiple, limited- diffraction array beams or steered plane wave transmissions are used to increase image resolution and field of view as well as to reduce sidelobes. Furthermore, the multiple, limited-diffraction array beam transmissions can be approximated with square-wave aperture weightings, allowing one or two transmitters to be used with a multielement array transducer to simplify imaging systems. By varying the number of transmissions, the extended HFR imaging method allows a continuous trade-off between image quality and frame rate. Because multiple transmissions are needed to obtain one frame of image for the method, motion could cause phase misalignment and thus produce artifacts, reducing image contrast and resolution and leading to an inaccurate clinical interpretation of images. Therefore, it is important to study how motion affects the method and provide a useful guidance of using the method properly in various applications. In this paper, computer simulations, in vitro and in vivo experiments were performed to study the effects of motion on the method in different conditions. Results show that a number of factors may affect the motion effects. However, it was found that the extended HFR imaging method is not sensitive to the motions commonly encountered in the clinical applications, as is demonstrated by an in vivo heart experiment, unless the number of transmissions is large and objects are moving at a high velocity near the surface of a transducer.
机译:基于我们实验室开发的高帧率(HFR)成像方法,最近开发了具有各种传输方案的扩展高帧率成像方法。在这种方法中,使用多个有限衍射阵列光束或转向平面波传输来提高图像分辨率和视野,并减少旁瓣。此外,可以使用方波孔径权重近似多个有限衍射阵列波束传输,从而允许将一个或两个发射机与多元素阵列换能器一起使用,以简化成像系统。通过改变传输次数,扩展的HFR成像方法可以在图像质量和帧速率之间进行连续权衡。因为该方法需要多次传输才能获得一帧图像,所以运动可能会导致相位失准,从而产生伪像,从而降低图像对比度和分辨率,并导致图像的临床解释不准确。因此,研究运动如何影响该方法并为在各种应用中正确使用该方法提供有用的指导非常重要。在本文中,进行了计算机模拟,体外和体内实验,以研究运动在不同条件下对该方法的影响。结果表明,许多因素可能会影响运动效果。但是,已发现扩展的HFR成像方法对临床应用中通常遇到的运动不敏感,如体内心脏实验所证明的那样,除非透射的次数大且物体在附近以高速运动换能器的表面。

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