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Contrast vs Non-Contrast Enhanced Microvascular Imaging Using Acoustic Sub-Aperture Processing (ASAP): In Vivo Demonstration

机译:使用声学子孔径处理(ASAP)对比对比非对比增强微血管成像:体内演示

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Angiogenesis plays a vital role in the progression of cancer. Non-invasive imaging techniques capable of assessing the microenvironment are therefore of clinical interest. Although highly sensitive vascular mapping has been demonstrated using ultrafast Power Doppler (PD), the detectability of microvasculature from the background noise may be hindered by the low signal-to-noise ratio (SNR) in deeper region and without the use of contrast agents. We recently developed acoustic sub-aperture processing (ASAP) processing for super-contrast vasculature imaging. This technique relies on the spatial coherence of the backscattered echoes over different acquisitions to substantially reduce the noise floor compared to the power Doppler (PD) technique. In this study, we demonstrate the feasibility of applying ASAP processing for non-contrast enhanced microvascular imaging in preclinical condition, and compare it with contrast enhanced ASAP as well as ultrafast PD. Comparing to PD, ASAP exhibit SNR improvement up to 12 dB. Higher SNR and extra visibility of smaller vessel are also demonstrated in contrast enhanced images in comparison to the non-contrast images. In conclusion, we have demonstrated the feasibility of using ASAP in vivo for non-contrast microvascular imaging, and the added benefit of using contrast agents in microvascular imaging.
机译:血管生成在癌症的进展中起着至关重要的作用。因此,能够评估微环境的非侵入性成像技术具有临床意义。尽管使用超快功率多普勒(PD)证实了高度灵敏的血管作图,但由于较深区域中的低信噪比(SNR)而未使用造影剂,可能会妨碍从背景噪声中检测微脉管系统。我们最近开发了用于超对比血管成像的声学子孔径处理(ASAP)处理。与功率多普勒(PD)技术相比,该技术依赖于不同采集上反向散射回波的空间相干性,从而大大降低了本底噪声。在这项研究中,我们证明了在临床前条件下应用ASAP处理进行非对比增强微血管成像的可行性,并将其与对比增强ASAP和超快PD进行比较。与PD相比,ASAP的SNR改善高达12 dB。与非对比图像相比,对比增强图像也显示出更高的SNR和较小血管的额外可见性。总之,我们已经证明了在体内使用ASAP进行非造影剂微血管成像的可行性,以及在微血管成像中使用造影剂的附加好处。

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