光电工程, 2015, 42 (3): 20, 网络出版: 2015-03-23   

血管内光声成像图像重建的研究现状

Review of Image Reconstruction for Intravascular Photoacoustic Imaging
作者单位
华北电力大学 电子与通信工程系, 河北 保定 071003
引用该论文

孙正, 韩朵朵, 王健健. 血管内光声成像图像重建的研究现状[J]. 光电工程, 2015, 42(3): 20.

SUN Zheng, HAN Duoduo, WANG Jianjian. Review of Image Reconstruction for Intravascular Photoacoustic Imaging[J]. Opto-Electronic Engineering, 2015, 42(3): 20.

参考文献

[1] 龚小竞, 孟静, 白晓淞, 等. 医学光声层析成像技术及其临床应用研究进展 [J]. 中国医疗器械信息, 2013, 19(3): 1-6.

    GONG Xiaojing, MENG Jing, BAI Xiaosong, et al. Medical Photoacoustic Tomography and Its Clinical Applications [J]. China Medical Device Information, 2013, 19(3): 1-6.

[2] 武德崴, 俞梦越. 冠状动脉光学相干断层成像与血管内超声成像临床应用进展 [J]. 心血管病学进展, 2014, 47(1): 16-20.

    WU Dewai, YU Mengyue. Advances in Clinical Application of Coronary Optical Coherence Tomography and Coronary Intravascular Ultrasound Imaging [J]. Advances in Cardiovascular Diseases, 2014, 47(1): 16-20.

[3] 何军锋, 谭毅. 光声成像技术在生物医学中的研究进展 [J]. 激光技术, 2007, 31(5): 530-533.

    HE Junfeng, TAN Yi. Development of Photoacoustic Imaging Technology in Biomedicine [J]. Laser Technology, 2007, 31(5): 530-533.

[4] 孙明健. 光声成像系统信号采集与图像重建研究 [D]. 哈尔滨: 哈尔滨工业大学, 2011: 3-5.

    SUN Mingjian. Research of Singal Acquisition and Image Reconstruction on Photoacoustic Imaging System [D]. Harbin: Harbin Institute of Technology, 2011: 3-5.

[5] 邢达, 向良忠. 生物组织的光声成像技术及其在生物医学中的应用 [J]. 激光与光电子学进展, 2007, 44(8): 26-33.

    XING Da, XIANG Liangzhong. Photoacoustic Imaging Technique of Tissue and Its Applications in Biomedicine [J]. Laser & Optoelectronics Progress, 2007, 44(8): 26-33.

[6] 龚小竞, 孟静, 陈健桦. 生物医学光声成像技术及其临床应用进展 [J]. 集成技术, 2013, 2(5): 53-59.

    GONG Xiaojing, MENG Jing, CHEN Jianhua. Biomedical Photoacoustic Tomography Technology and Its Clinical Applications [J]. Journal of Integration Technology, 2013, 2(5): 53-59.

[7] 袁毅. 光声内窥与显微成像系统及其在生物医学中的应用 [D]. 广州: 华南师范大学, 2012: 29-30.

    YUAN Yi. Photoacoustic Endoscopy and Microscopy Imaging System and Application in Biomedical [D]. Guangzhou: South China Normal University, 2012: 29-30.

[8] Sethuraman S, Amirian J H, Litovsky S H, et al. Ex Vivo Characterization of Atherosclerosis Using Intravascular Photoacoustic Imaging [J]. Optics Express(S1094-4087), 2008, 16(5): 3362-3367.

[9] Jansen K, Antonius F W, Van Der Steen, et al. Intravascular Photoacoustic Imaging of Human Coronary Atherosclerosis [J]. Optics Letters(S1671-7694), 2011, 36(5): 597-599.

[10] WANG Bo, Karpiouk A, Yeager D, et al. In Vivo Intravascular Ultrasound-guided Photoacoustic Imaging of Lipid in Plaques Using An Animal Model of Atherosclerosis [J]. Ultrasound in Medicine and Biology(S0301-5629), 2012, 38(12): 2098-2103.

[11] 杨思华, 袁毅, 刑达. 一种血管内光声超声双模成像内窥镜装置及其成像方法: 中国, 101912250 [P]. 2012-1-4.

[12] BAI Xiaosong, GONG Xiaojing, Hau W, et al. Intravascular Optical-resolution Photoacoustic Tomography with A 1.1 mm Diameter Catheter [J]. Plos One(S1932-6203), 2014, 9(3): e92463-e92463.

[13] Sheu Y L, Chou C Y, Hsieh B Y. Image Reconstruction in Intravascular Photoacoustic Imaging [J]. IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control(S0885-3010), 2011, 58(10): 2067-2077.

[14] WANG Lihong. Tutorial on Photoacoustic Microscopy and Computed Tomography [J]. IEEE Journal of Selected Topics in Quantum Electronics(S1558-4542), 2008, 14(1): 171-179.

[15] 宋智源. 光声成像技术的重建算法与实验研究 [D]. 天津: 天津大学, 2008: 25-40.

    SONG Zhiyuan. Research on the Reconstruction Algorithm and Experiments of Photoacoustic Imaging Technology [D]. Tianjing: Tianjing University, 2008: 25-40.

[16] XU Minghua, WANG Lihong. Time-domain Reconstruction for Thermoacoustic Tomography in A Spherical Geometry [J]. IEEE Transactions on Medical Imaging(S0278-0062), 2002, 21(7): 814-822.

[17] YUAN Xu, FENG Dazi, WANG Lihong. Exact Frequency-domain Feconstruction for Fhermoacoustic Tomography-I: Planar Geometry [J]. IEEE Transactions on Medical Imaging(S0278-0062), 2002, 21(7): 823-828.

[18] YUAN Xu, XU Minghua, WANG Lihong. Exact Frequency-domain Reconstruction for Thermoacoustic Tomography-II: Cylindrical Geometry [J]. IEEE Transactions on Medical Imaging(S0278-0062), 2002, 21(7): 829-833.

[19] Hristova Y, Kuchment P, Nguyen L V. Reconstruction and Time Reversal in Thermoacoustic Tomography in Acoustically Homogeneous and in Homogeneous Media [J]. Inverse Problems(S0266-5611), 2008, 24(5): 05500601-05500625.

[20] Hristova Y. Time Reversal in Thermoacoustic Tomography-An Error Estimate [J]. Inverse Problems(S0266-5611), 2009, 25(5): 55008-55021.

[21] YUAN Xu, WANG Lihong. Time Reversal and Its Application to Tomography with Diffracting Sources [J]. Physical Review Letters(S0031-9007), 2004, 92(3): 03390201-03390204.

[22] 张弛, 汪源源. 对小尺度生物体热声成像的反卷积重建法 [J]. 航天医学与医学工程, 2008, 21(5): 420-424.

    ZHANG Chi, WANG Yuanyuan. Deconvolution Reconstruction of Thermoacoustic Imaging for Small-scale Objects [J]. Space Medicine & Medical Engineering, 2008, 21(5): 420-424.

[23] Kruger R A, LIU Pingyu, Fang Y R, et al. Photoacoustic Ultrasound (PAUS) Reconstruction Tomography [J]. Medical Physics(S0094-2405), 1995, 22(10): 1605-1609.

[24] XU Minghua, WANG Lihong. Pulsed-microwave-induced Thermoacoustic Tomography: Filtered Back Projection in a Circular Measurement Configuration [J]. Medical Physics(S0094-2405), 2002, 29(8): 1661-1669.

[25] PAN Xiaochuan, Anastasio M A. Minimal-scan Filtered Back propagation Algorithms for Diffraction Tomography [J]. Journal of the Optical Society of America A(S1084-7529), 1999, 16(12): 2896-2903.

[26] ZENG Yaguang, XING Da, TAN Ying. Photoacoustic and Ultrasonic Co-image with the Electronically Phase-controlled Focusing [C]//Proceedings of SPIE International Conference on Polarization: Measurement, Analysis and Remote Sensing VI. Orlando, Florida, April 15-18, 2004. United States: SPIE, 2004: 152-158.

[27] Kostli K P, Beard P C. Two-dimensional Photoacoustic Imaging by Use of Fourier-transform Image Reconstruction and A Detector with An Anisotropic Response [J]. Applied Optics(S1559-128X), 2003, 42(10): 1899-1908.

[28] Niederhauser J J, Jaeger M, Lemor R, et a1. Combined Ultrasound and Optoacoustic System for Real-time High-contrast Vascular Imaging in Vivo [J]. IEEE Transactions on Medical Imaging(S0278-0062), 2005, 24(4): 436-440.

[29] 陈玲玲, 周宁, 殷永刁, 等. 插值方法在光声图像重建中的应用 [J]. 计算机与数字工程, 2013, 41(10): 1676-1694.

    CHEN Lingling, ZHOU Ning, YIN Yongdiao, et al. Application of Interpolation Method in Photoacoustic Image Reconstmction [J]. Computer & Digital Engineering, 2013, 41(10): 1676-1694.

[30] 杨迪武, 刑达, 王毅, 等. 基于代数重建算法的有限角度扫描的光声成像 [J]. 光学学报, 2005, 25(6): 772-776.

    YANG Diwu, XING Da. WAGN Yi, et al. Limited-view Scanning Photoacoustic Imaging Based on Algebraic Reconstruction Techniques [J]. Acta Optica Sinica, 2005, 25(6): 772-776.

[31] 向良忠, 邢达, 谷怀民, 等. 改进的同步迭代算法在光声血管成像中的应用 [J]. 物理学报, 2007, 56(7): 3911-3916.

[32] Provost J, Lesage F. The Application of Compressed Sensing for Photoacoustic Tomography [J]. IEEE Transactions on Medical Imaging(S0278-0062), 2009, 28(4): 585-594.

[33] GUO Zijian, LI Changhui, SONG Liang, et al. Compressed Sensing in Photoacoustic Tomography in Vivo [J]. Journal of Biomedical Optical(S1083-3668), 2010, 15(2): 1-6.

[34] ZHANG Chi, WANG Yuanyuan. Deconvolution Reconstruction of Full-view and Limited-view Photoacoustic Tomography: A Simulation Study [J]. Journal of the Optical Society of America A(S1084-7529), 2008, 25(10): 2436-2443.

[35] 张弛. 光声成像的图像重建算法研究 [D]. 上海: 复旦大学, 2009: 7-56.

[36] Patch S K. Thermoacoustic Tomography-consistency Conditions and the Partial Scan Problem [J]. Physics in Medicine and Biology(S0031-9155), 2004, 49(11): 2305-2315.

[37] JIANG Huabei, YUAN Zhen, GU Xuejun. Spatially Varying Optical and Acoustic Property Reconstruction Using Finite-element-based Photoacoustic Tomography [J]. Journal of the Optical Society of America A(S1084-7529), 2006, 23(4): 878-888.

[38] JIN Xing, WANG Lihong. Thermoacoustic Tomography with Correction for Acoustic Speed Variations [J]. Physics in Medicine and Biology(S0031-9155), 2006, 51(24): 6437-6448.

[39] Anastasio M A, ZHANG Jin, PAN Xiaochuan. Image Reconstruction in Thermoacoustic Tomography with Compensation for Acoustic Heterogeneities [C]// Proceedings of SPIE International Conference on Medical Imaging 2005: Ultrasonic Imaging and Signal Processing. San Diego, California, February 15-17, 2005. United States: SPIE, 2005: 298-304.

[40] ZHANG Jin, WANG Kun, YANG Yongyi, et a1. Simultaneous Reconstruction of Speed-of-sound and Optical Absorption Properties in Photoacoustic Tomography via A Time-domain Iterative Algorithm [C]// Proceedings of SPIE International Conference on Imaging and Sensing 2008: Biomedical Thermoacoustics, Optoacoustics, and Acousto-optics. San Jose, California, January 19-22, 2008. USA: SPIE, 2008: 68561F-1-8.

[41] ZHANG Jin, Anastasio M A. Reconstruction of speed-of-sound and electromagnetic absorption distributions in photoacoustic tomography [C]// Proceedings of SPIE International Conference Imaging and Sensing 2006 : Biomedical Thermoacoustics, Optoacoustics, and Acousto-optics. San Jose, California, January 21-23, 2006. USA: SPIE, 2006: 339-345.

[42] YUAN Xu, WANG Lihong, Ambartsoumian G, et a1. Reconstructions in Limited-view Thermoacoustic Tomography [J]. Medical Physics(S0094-2405), 2004, 31(4): 724-733.

[43] 张弛, 汪源源. 声速不均匀介质的光声成像重建算法 [J]. 光学学报, 2008, 28(12): 2296-2301.

    ZHANG Chi, WANG Yuanyuan. Reconstruction Algorithm of Photoacoustic Tomography with Acoustic Speed Heterogeneity [J]. Acta Optica Sinica, 2008, 28(12): 2296-2301 .

[44] JIANG Huabei, YUAN Zhen, GU Xuejun. Spatially Varying Optical and Acoustic Property Reconstruction Using Finite Element-based Photoacoustic Tomography [J]. Journal of the Optical Society of America A-optics Image Science and Vision(S0030-3941), 2006, 23(4): 878-888.

[45] YUAN Xu, WANG Lihong. Effects of Acoustic Heterogeneity in Breast Thermoacoustic Tomography [J]. IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control(S0885-3010), 2003, 50(9): 1134-1146.

孙正, 韩朵朵, 王健健. 血管内光声成像图像重建的研究现状[J]. 光电工程, 2015, 42(3): 20. SUN Zheng, HAN Duoduo, WANG Jianjian. Review of Image Reconstruction for Intravascular Photoacoustic Imaging[J]. Opto-Electronic Engineering, 2015, 42(3): 20.

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