• Chinese Optics Letters
  • Vol. 19, Issue 12, 121702 (2021)
Guangjie Zhang1、2, Yu Sun1、2, Xing Long1、2, Rui Zhang3, Meng Yang3、*, and Changhui Li2、**
Author Affiliations
  • 1Department of Biomedical Engineering, College of Engineering, Peking University, Beijing 100871, China
  • 2College of Future Technology, Peking University, Beijing 100871, China
  • 3Ultrasonography, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing 100730, China
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    DOI: 10.3788/COL202119.121702 Cite this Article Set citation alerts
    Guangjie Zhang, Yu Sun, Xing Long, Rui Zhang, Meng Yang, Changhui Li. Photoacoustic/ultrasound dual modality imaging aided by acoustic reflectors[J]. Chinese Optics Letters, 2021, 19(12): 121702 Copy Citation Text show less
    References

    [1] S. Zackrisson, S. van de Ven, S. S. Gambhir. Light in and sound out: emerging translational strategies for photoacoustic imaging. Cancer Res., 74, 979(2014).

    [2] P. Beard. "Biomedical photoacoustic imaging,". Interf. Focus, 1, 602(2011).

    [3] C. Li, L. V. Wang. Photoacoustic tomography and sensing in biomedicine. Phys. Med. Biol., 54, R59(2009).

    [4] Y. Zhou, J. Yao, L. V. Wang. Tutorial on photoacoustic tomography. J. Biomed. Opt., 21, 061007(2016).

    [5] T. Feng, Y. Zhu, Y. Xie, D. Ta, J. Yuan, Q. Cheng. Feasibility study for bone health assessment based on photoacoustic imaging method. Chin. Opt. Lett., 18, 121704(2020).

    [6] X. Wang, S. Yang. Imaging of human wrist joint by a flexible-transducer-based morphological-adaptive photoacoustic tomography: a feasibility study. Chin. Opt. Lett., 17, 091701(2019).

    [7] L. V. Wang, S. Hu. Photoacoustic tomography: in vivo imaging from organelles to organs. Science, 335, 1458(2012).

    [8] M. C. Li, C. B. Liu, X. J. Gong, R. Q. Zheng, Y. Y. Bai, M. Y. Xing, X. M. Du, X. Y. Liu, J. Zeng, R. Q. Lin, H. C. Zhou, S. J. Wang, G. M. Lu, W. Zhu, C. H. Fang, L. Song. Linear array-based real-time photoacoustic imaging system with a compact coaxial excitation handheld probe for noninvasive sentinel lymph node mapping. Biomed. Opt. Express, 9, 1408(2018).

    [9] Y. Y. Bai, B. Cong, X. J. Gong, L. Song, C. B. Liu. Compact and low-cost handheld quasibright-field linear-array probe design in photoacoustic computed tomography. J. Biomed. Opt., 23, 121606(2018).

    [10] M. Yang, L. Zhao, F. Yang, M. Wang, N. Su, C. Zhao, Y. Gui, Y. Wei, R. Zhang, J. Li, T. Han, X. He, L. Zhu, H. Wu, C. Li, Y. Jiang. Quantitative analysis of breast tumours aided by three-dimensional photoacoustic/ultrasound functional imaging. Sci. Rep., 10, 8047(2020).

    [11] I. Ivankovic, E. Mercep, C. G. Schmedt, X. L. Dean-Ben, D. Razansky. Real-time volumetric assessment of the human carotid artery: handheld multispectral optoacoustic tomography. Radiology, 291, 45(2019).

    [12] F. Knieling, C. Neufert, A. Hartmann, J. Claussen, A. Urich, C. Egger, M. Vetter, S. Fischer, L. Pfeifer, A. Hagel, C. Kielisch, R. S. Görtz, D. Wildner, M. Engel, J. Röther, W. Uter, J. Siebler, R. Atreya, W. Rascher, D. Strobel, M. F. Neurath, M. J. Waldner. Multispectral optoacoustic tomography for assessment of Crohn’s disease activity. New Eng. J. Med., 376, 1292(2017).

    [13] Y. Xu, L. V. Wang, G. Ambartsoumian, P. Kuchment. Reconstructions in limited-view thermoacoustic tomography. Med. Phys., 31, 724(2004).

    [14] C. Tao, X. J. Liu. Reconstruction of high quality photoacoustic tomography with a limited-view scanning. Opt. Express, 18, 2760(2010).

    [15] X. Lin, N. Feng, Y. Qu, D. Chen, Y. Shen, M. Sun. Compressed sensing in synthetic aperture photoacoustic tomography based on a linear-array ultrasound transducer. Chin. Opt. Lett., 15, 101102(2017).

    [16] J. Meng, C. Liu, J. Kim, C. Kim, L. Song. Compressed sensing with a Gaussian scale mixture model for limited view photoacoustic computed tomography in vivo. Technol. Cancer Res. Treat., 17, 1(2018).

    [17] K. H. Jin, M. T. McCann, E. Froustey, M. Unser. Deep convolutional neural network for inverse problems in imaging. IEEE Trans. Image Process., 26, 4509(2017).

    [18] S. Guan, A. A. Khan, S. Sikdar, P. V. Chitnis. Limited-view and sparse photoacoustic tomography for neuroimaging with deep learning. Sci. Rep., 10, 8510(2020).

    [19] B. T. Cox, S. R. Arridge, P. C. Beard. Photoacoustic tomography with a limited-aperture planar sensor and a reverberant cavity. Inverse Probl., 23, S95(2007).

    [20] R. Ellwood, E. Zhang, P. Beard, B. Cox. Photoacoustic imaging using acoustic reflectors to enhance planar arrays. J. Biomed. Opt., 19, 126012(2014).

    [21] B. Huang, J. Xia, K. Maslov, L. Wang. Improving limited-view photoacoustic tomography with an acoustic reflector. J. Biomed. Opt., 18, 110505(2013).

    [22] G. Li, J. Xia, K. Wang, K. Maslov, M. A. Anastasio, L. V. Wang. Tripling the detection view of high-frequency linear-array-based photoacoustic computed tomography by using two planar acoustic reflectors. Quant. Imaging Med. Surg., 5, 57(2014).

    [23] M. Xu, L. V. Wang. Universal back-projection algorithm for photoacoustic computed tomography. Phys. Rev. E, 71, 016706(2005).

    [24] E. Maneas, W. Xia, O. Ogunlade, M. Fonseca, D. I. Nikitichev, A. L. David, S. J. West, S. Ourselin, J. C. Hebden, T. Vercauteren, A. E. Desjardins. Gel wax-based tissue-mimicking phantoms for multispectral photoacoustic imaging. Biomed. Opt. Express, 9, 1151(2018).

    [25] L. Li, L. Zhu, C. Ma, L. Lin, J. Yao, L. Wang, K. Maslov, R. Zhang, W. Chen, J. Shi, L. V. Wang. Single-impulse panoramic photoacoustic computed tomography of small-animal whole-body dynamics at high spatiotemporal resolution. Nat. Biomed. Eng., 1, 0071(2017).

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    Guangjie Zhang, Yu Sun, Xing Long, Rui Zhang, Meng Yang, Changhui Li. Photoacoustic/ultrasound dual modality imaging aided by acoustic reflectors[J]. Chinese Optics Letters, 2021, 19(12): 121702
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