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Contrast-enhanced optical coherence microangiography with acoustic-actuated microbubbles

机译:具有声学致动微泡的对比增强光学相干微轴造影

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In this study, we propose to use gas-filled microbubbles (MBs) simultaneously actuated by the acoustic wave to enhance the imaging contrast of optical coherence tomography (OCT)-based angiography. In the phantom experiments, MBs can result in stronger backscattered intensity, enabling to enhance the contrast of OCT intensity image. Moreover, simultaneous application of low-intensity acoustic wave enables to temporally induce local vibration of particles and MBs in the vessels, resulting in time-variant OCT intensity which can be used for enhancing the contrast of OCT intensity-based angiography. Additionally, different acoustic modes and different acoustic powers to actuate MBs are performed and compared to investigate the feasibility of contrast enhancement. Finally, animal experiments are performed. The findings suggest that acoustic-actuated MBs can effectively enhance the imaging contrast of OCT-based angiography and the imaging depth of OCT angiography is also extended.
机译:在这项研究中,我们建议使用由声波同时致动的气体微泡(MBS),以增强光学相干断层扫描(OCT)基础血管造影的成像对比度。在幻影实验中,MBS可以导致更强的反向散射强度,使得能够增强OCT强度图像的对比度。此外,低强度声波的同时施加能够在血管中暂时诱导颗粒和MBS的局部振动,从而导致时间变体的OCT强度,可用于增强八月强度的血管造影的对比度。另外,执行不同的声学模式和不同的声功率致动MBS,以研究对比度增强的可行性。最后,进行动物实验。结果表明,声学致动的MBS可以有效地增强了八元基血管造影的成像对比,也延长了OCT血管造影的成像深度。

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