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Contrast artifact in CPS plane wave imaging using array subapertures.

机译:使用阵列子孔径的CPS平面波成像中的对比伪影。

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Contrast plane wave (PW) imaging has been recently proposed as an improvement in contrast imaging mode. The capability of acquiring contrast images with a high frame rate and with limited bubble destruction led to novel investigation approaches such as the tracking of single bubbles in motion. Some of these studies are based on classical contrast sequences using Pulse Inversion (PI) or Contrast Pulse Sequence (CPS) mode. The use of subaperture transmit is used to create half the amplitude in CPS sequence with clinical scanners due to technological limitations. However, subaperture transmit induces differences in the radiation pattern of the acoustic beam. Hence, when only half of the elements of the ultrasonic probe are used in transmit (subaperture), the form of the beam is no longer a plane wave and the assumptions for plane wave imaging are no longer really valid and acoustic artifacts occur. We investigate here the origin and the mechanisms behind these artifacts.
机译:近年来,提出了对比平面波(PW)成像作为对比成像模式的一种改进。获得具有高帧频和有限气泡破坏的对比图像的能力导致了新颖的研究方法,例如跟踪运动中的单个气泡。其中一些研究基于使用脉冲反转(PI)或对比度脉冲序列(CPS)模式的经典对比序列。由于技术局限性,使用亚孔传输可在临床扫描仪中产生CPS序列中一半的幅度。但是,子孔径传输会引起声束的辐射方向图上的差异。因此,当仅将超声波探头的一半元件用于发射(收缩)时,束的形式不再是平面波,并且对平面波成像的假设不再真正有效,并且会出现声学伪影。我们在这里研究这些伪像的起源和机制。

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