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Combined frequency domain photoacoustic and ultrasound imaging for intravascular applications

机译:频域结合的光声和超声成像在血管内应用

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摘要

Intravascular photoacoustic (IVPA) imaging has the potential to characterize lipid-rich structures based on the optical absorption contrast of tissues. In this study, we explore frequency domain photoacoustics (FDPA) for intravascular applications. The system employed an intensity-modulated continuous wave (CW) laser diode, delivering 1W over an intensity modulated chirp frequency of 4-12MHz. We demonstrated the feasibility of this approach on an agar vessel phantom with graphite and lipid targets, imaged using a planar acoustic transducer co-aligned with an optical fibre, allowing for the co-registration of IVUS and FDPA images. A frequency domain correlation method was used for signal processing and image reconstruction. The graphite and lipid targets show an increase in FDPA signal as compared to the background of 21dB and 16dB, respectively. Use of compact CW laser diodes may provide a valuable alternative for the development of photoacoustic intravascular devices instead of pulsed laser systems.
机译:血管内光声(IVPA)成像具有基于组织的光吸收对比来表征富含脂质的结构的潜力。在这项研究中,我们探索血管内应用的频域光声(FDPA)。该系统采用了强度调制连续波(CW)激光二极管,可在4-12MHz的强度调制线性调频频率上提供1W的功率。我们证明了这种方法在带有石墨和脂质靶标的琼脂血管模型上的可行性,该模型使用与光纤共对准的平面声换能器进行成像,从而可以对IVUS和FDPA图像进行共配准。频域相关方法用于信号处理和图像重建。与背景相比,石墨和脂质靶标的FDPA信号分别增加了21dB和16dB。紧凑型连续波激光二极管的使用可以为光声血管内装置的开发提供有价值的替代方法,而不是脉冲激光系统。

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