Chinese Journal of Lasers, Volume. 50, Issue 3, 0307107(2023)

Intravascular Photoacoustic, Ultrasonic, Optical Coherence Tomography, and Photoacoustic Elastic Multimodal Imaging Method and System

Yuyang Wan1,2, Peng Lei3、*, Kedi Xiong1,2, and Sihua Yang1,2、**
Author Affiliations
  • 1MOE Key Laboratory of Laser Life Science & Institute of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou 510631, Guangdong, China
  • 2Guangdong Provincial Key Laboratory of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou 510631, Guangdong, China
  • 3Institute of Biological and Medical Engineering, Guangdong Academy of Sciences, Guangzhou 510316, Guangdong, China
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    References(38)

    [1] Libby P, Pasterkamp G, Crea F et al. Reassessing the mechanisms of acute coronary syndromes: the “vulnerable plaque” and superficial erosion[J]. Circulation Research, 124, 150-160(2019).

    [2] Sanz J, Fayad Z A. Imaging of atherosclerotic cardiovascular disease[J]. Nature, 451, 953-957(2008).

    [3] Shah P K. Mechanisms of plaque vulnerability and rupture[J]. Journal of the American College of Cardiology, 41, S15-S22(2003).

    [4] Virmani R, Burke A P, Farb A et al. Pathology of the vulnerable plaque[J]. Journal of the American College of Cardiology, 47, C13-C18(2006).

    [5] Naghavi M, Libby P, Falk E et al. From vulnerable plaque to vulnerable patient: a call for new definitions and risk assessment strategies: part I[J]. Circulation, 108, 1664-1672(2003).

    [6] Falk E, Shah P K, Fuster V. Coronary plaque disruption[J]. Circulation, 92, 657-671(1995).

    [7] De Korte C L, Sierevogel M J, Mastik F et al. Identification of atherosclerotic plaque components with intravascular ultrasound elastography in vivo: a Yucatan pig study[J]. Circulation, 105, 1627-1630(2002).

    [8] Li Z H, Wang L, Hu X B et al. Intravascular ultrasound elastography analysis of the elastic mechanical properties of atherosclerotic plaque[J]. The International Journal of Cardiovascular Imaging, 33, 1663-1671(2017).

    [9] Zhou Q, Chen Z[M]. Multimodality imaging(2020).

    [10] Zhan K H, Wang L, Chen Z J et al. Intravascular photoacoustic and autofluorescence imaging for detecting intraplaque hemorrhage: a feasibility study[J]. IEEE Journal of Selected Topics in Quantum Electronics, 27, 7100105(2021).

    [11] Li J W, Chen Z P. Multimodality intravascular imaging technologies based on optical system[J]. Chinese Journal of Lasers, 43, 1200001(2016).

    [12] Garcia-Garcia H M, Costa M A, Serruys P W. Imaging of coronary atherosclerosis: intravascular ultrasound[J]. European Heart Journal, 31, 2456-2469(2010).

    [13] Kini A S, Vengrenyuk Y, Yoshimura T et al. Fibrous cap thickness by optical coherence tomography in vivo[J]. Journal of the American College of Cardiology, 69, 644-657(2017).

    [14] Yang Q, Zhu L Q, Fan F et al. Signal retrieval method of en-face optical coherence tomography system[J]. Acta Optica Sinica, 40, 0711001(2020).

    [15] Bouma B E, Villiger M, Otsuka K et al. Intravascular optical coherence tomography[J]. Biomedical Optics Express, 8, 2660-2686(2017).

    [16] Zhang J, Yang S H, Ji X R et al. Characterization of lipid-rich aortic plaques by intravascular photoacoustic tomography: ex vivo and in vivo validation in a rabbit atherosclerosis model with histologic correlation[J]. Journal of the American College of Cardiology, 64, 385-390(2014).

    [17] Li C, Sun M J, Ma L Y et al. Algorithm for three-dimensional enhancement of blood vessels in photoacoustic endoscopic in vivo imaging[J]. Chinese Journal of Lasers, 47, 0907003(2020).

    [18] Xu K, Wang C, Zhang M J et al. Photoacoustic spectrum analysis of atherosclerotic vessels[J]. Laser&Optoelectronics Progress, 58, 1217001(2021).

    [19] Ji X R, Xiong K D, Yang S H et al. Intravascular confocal photoacoustic endoscope with dual-element ultrasonic transducer[J]. Optics Express, 23, 9130-9136(2015).

    [20] Chen Z J, Yang S H, Xing D. Progress and application of photoacoustic microscopy technique[J]. Chinese Journal of Lasers, 45, 0307008(2018).

    [21] Wang Q, Shi Y J, Yang F et al. Quantitative photoacoustic elasticity and viscosity imaging for cirrhosis detection[J]. Applied Physics Letters, 112, 211902(2018).

    [22] Wang P P, Chen Z J, Yang F et al. Intravascular tri-modality system: combined ultrasound, photoacoustic, and elasticity imaging[J]. Applied Physics Letters, 113, 253701(2018).

    [23] Schaar J A, van der Steen A F W, Mastik F et al. Intravascular palpography for vulnerable plaque assessment[J]. Journal of the American College of Cardiology, 47, C86-C91(2006).

    [24] Tian J W, Dauerman H, Toma C et al. Prevalence and characteristics of TCFA and degree of coronary artery stenosis: an OCT, IVUS, and angiographic study[J]. Journal of the American College of Cardiology, 64, 672-680(2014).

    [25] Piao Z L, Ma T, Li J W et al. High speed intravascular photoacoustic imaging with fast optical parametric oscillator laser at 1.7 μm[J]. Applied Physics Letters, 107, 083701(2015).

    [26] Wu M, Springeling G, Lovrak M et al. Real-time volumetric lipid imaging in vivo by intravascular photoacoustics at 20 frames per second[J]. Biomedical Optics Express, 8, 943-953(2017).

    [27] Lei P, Wen X, Wang L et al. Ultrafine intravascular photoacoustic endoscope with a 0.7 mm diameter probe[J]. Optics Letters, 44, 5406-5409(2019).

    [28] Li Y, Gong X J, Liu C B et al. High-speed intravascular spectroscopic photoacoustic imaging at 1000 A-lines per second with a 0.9-mm diameter catheter[J]. Journal of Biomedical Optics, 20, 065006(2015).

    [29] Xie Z H, Shu C Y, Yang D Y et al. In vivo intravascular photoacoustic imaging at a high speed of 100 frames per second[J]. Biomedical Optics Express, 11, 6721-6731(2020).

    [30] Lei P, Hao J H, Wang L et al. Reliability assessment on intravascular photoacoustic imaging of lipid: ex vivo animal and human sample validation[J]. Journal of Biophotonics, 13, e202000162(2020).

    [31] Mathews S J, Little C, Loder C D et al. All-optical dual photoacoustic and optical coherence tomography intravascular probe[J]. Photoacoustics, 11, 65-70(2018).

    [32] Li X, Li J W, Jing J et al. Integrated IVUS-OCT imaging for atherosclerotic plaque characterization[J]. IEEE Journal of Selected Topics in Quantum Electronics, 20, 196-203(2014).

    [33] Dai X J, Yang H, Shan T Q et al. Miniature endoscope for multimodal imaging[J]. ACS Photonics, 4, 174-180(2017).

    [34] Leng J, Zhang J K, Li C G et al. Multi-spectral intravascular photoacoustic/ultrasound/optical coherence tomography tri-modality system with a fully-integrated 0.9-mm full field-of-view catheter for plaque vulnerability imaging[J]. Biomedical Optics Express, 12, 1934-1946(2021).

    [35] Li J W, Thiele S, Quirk B C et al. Ultrathin monolithic 3D printed optical coherence tomography endoscopy for preclinical and clinical use[J]. Light: Science & Applications, 9, 124(2020).

    [36] Munding C E, Chérin E, Alves N et al. 30/80 MHz bidirectional dual-frequency IVUS feasibility evaluated in vivo and for stent imaging[J]. Ultrasound in Medicine & Biology, 46, 2104-2112(2020).

    [37] Wang J Q, Zheng Z, Chan J et al. Capacitive micromachined ultrasound transducers for intravascular ultrasound imaging[J]. Microsystems & Nanoengineering, 6, 73(2020).

    [38] Dangi A, Agrawal S, Tiwari S et al. Ring PMUT array based miniaturized photoacoustic endoscopy device[J]. Proceedings of SPIE, 10878, 1087811(2019).

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    Yuyang Wan, Peng Lei, Kedi Xiong, Sihua Yang. Intravascular Photoacoustic, Ultrasonic, Optical Coherence Tomography, and Photoacoustic Elastic Multimodal Imaging Method and System[J]. Chinese Journal of Lasers, 2023, 50(3): 0307107

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    Paper Information

    Category: Biomedical Optical Imaging

    Received: Jul. 5, 2022

    Accepted: Aug. 5, 2022

    Published Online: Feb. 6, 2023

    The Author Email: Lei Peng (leipeng@scnu.edu.cn), Yang Sihua (yangsh@scnu.edu.cn)

    DOI:10.3788/CJL221028

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