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Robust Artifacts Suppression in Ultrasound Passive Cavitation Mapping using Multi-apodization with Cross-correlation

机译:使用具有互相关的多变迹化的超声被动空化映射中的鲁棒伪影抑制

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Ultrasound passive cavitation mapping (UPCM) technique can feed back the distribution information and scattering intensity of ultrasound cavitation in space, and has been proposed for the purpose of ultrasound treatment monitoring. The traditional UPCM reconstruction algorithm based on time exposure acoustics (TEA) introduces the artifacts due to large axial extension and high sidelobes when using the array transducers for diagnostic purposes as passive receivers. We recently applied dual apodization with cross-correlation (DAX) technique to enhance UPCM performance. In this study we propose an enhanced version by using multi-apodization with cross-correlation (MAX), where multiple receive apodization functions divided from DAX apodization functions are used. The obtained results on single- and multi-source simulations indicate that MAX-UPCM algorithm increases the image contrast by 20.2 dB and 23.4 dB over TEA-UPCM algorithm and by 10.1 dB and 7.7 dB over DAX-UPCM algorithm. The robust performance of the proposed UPCM algorithm in this study may enhance the detectability of ultrasound-induced cavitation and benefit the treatment monitoring.
机译:超声被动空化映射(UPCM)技术可以反馈空间中超声空化的分布信息和散射强度,并已提出用于超声治疗监测的目的。当使用阵列换能器作为无源接收器时,基于时间暴露声学(TEA)的传统UPCM重建算法会引入由于大轴向扩展和高旁瓣导致的伪影。我们最近应用了具有互相关(DAX)技术的双重变迹技术来增强UPCM性能。在这项研究中,我们提出了一种通过使用具有互相关(MAX)的多重变迹的增强版本,其中使用了多个从DAX变迹功能中分离出来的接收变迹功能。在单源和多源仿真中获得的结果表明,MAX-UPCM算法与TEA-UPCM算法相比,图像对比度提高了20.2 dB和23.4 dB,而DAX-UPCM算法则使图像对比度提高了10.1 dB和7.7 dB。在这项研究中,所提出的UPCM算法的鲁棒性能可能会增强超声诱导的气蚀的可检测性,并有利于治疗监测。

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