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Contrast-enhanced optical coherence microangiography with acoustic-Actuated microbubbles
Conference paper

Contrast-enhanced optical coherence microangiography with acoustic-Actuated microbubbles

Yu-Hsuan Liu, Jia-Wei Zhang, Chih-Kuang Yeh, Kuo-Chen Wei, Hao-Li Liu and Meng-Tsan Tsai
Proceedings of SPIE - The International Society for Optical Engineering, Vol.10251, 102511F
2017

Abstract

Angiography Microbubbles Optical Coherence Tomography Ultrasound Electronic Optical and Magnetic Materials Condensed Matter Physics Computer Science Applications Applied Mathematics Electrical and Electronic Engineering
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 intensitybased 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.

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