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Development of a combined intravascular ultrasound and photoacoustic imaging system

机译:开发血管内超声和光声成像系统的组合

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Intravascular ultrasound (IVUS) imaging has emerged as an imaging technique to evaluate coronary artery diseases including vulnerable plaques. However, in addition to the morphological characteristics provided by IVUS imaging, there is a need for functional imaging capability that could identify the composition of vulnerable plaques. Intravascular photoacoustic (IVPA) imaging, in conjunction with clinically available IVUS imaging, may be such a technique allowing vulnerable plaque characterization and differentiation. We have developed an integrated intravascular ultrasound and photoacoustic imaging system to visualize clinically relevant structural and functional properties of the coronary arteries. The performance of the combined IVUS and IVPA imaging system was evaluated through images of arterial phantoms. Experiments were performed using high frequency IVUS imaging catheters operating at 20 MHz, 30 MHz and 40 MHz. The IVPA imaging was successful in highlighting inclusions based on differential optical absorption while these lesions did not have sufficient contrast in the IVUS images. Finally, initial IVUS and IVPA imaging studies were performed on ex vivo samples of a rabbit artery using the 40 MHz IVUS imaging catheter. Results of the above studies demonstrate the feasibility of combining intravascular ultrasound and photoacoustic imaging and suggest clinical utility of the developed imaging system in interventional cardiology.
机译:血管内超声(IVUS)成像已成为评估包括脆弱斑块的冠状动脉疾病的成像技术。然而,除了IVUS成像提供的形态特征外,还需要功能性成像能力,可以识别脆弱的斑块的组成。血管内光声(IVPA)成像与临床可用的IVUS成像一起,可能是允许脆弱的噬斑表征和分化的技术。我们开发了一种集成的血管内超声和光声成像系统,可视化冠状动脉的临床相关的结构和功能性。通过动脉幻影的图像评估组合IVUS和IVPA成像系统的性能。使用在20MHz,30MHz和40MHz的高频IVUS成像导管进行实验。 IVPA成像在突出基于差分光学吸收的夹杂物中成功,而这些病变在IVUS图像中没有足够的对比度。最后,使用40MHz IVUS成像导管对兔动脉的离体样品进行初始IVUS和IVPA成像研究。上述研究的结果证明了组合血管内超声和光声成像的可行性,并提出了发达的成像系统在介入心脏病学中的临床效用。

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