Non-uniform image reconstruction for fast photoacoustic microscopy of histology imaging

被引:1
|
作者
Zhou, Ling Xiao [1 ]
Xia, Yu [1 ]
Dai, Renxiang [1 ]
Liu, An Ran [1 ]
Zhu, Si Wei [2 ]
Shi, Peng [1 ]
Song, Wei [1 ]
Yuan, Xiao Cong [1 ]
机构
[1] Shenchen Univ, Nanophoton Res Ctr, Shenchen Key Lab Microscale Opt Format Technol, Inst Microscale Optoelect, Shenchen 518060, Peoples R China
[2] Nankai Univ, Inst Translat Med, Tianjin Union Med Ctr, Tianjin 300121, Peoples R China
基金
中国国家自然科学基金;
关键词
Image sampling - Medical imaging - Photoacoustic effect;
D O I
10.1364/BOE.487622
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Photoacoustic microscopic imaging utilizes the characteristic optical absorption properties of pigmented materials in tissues to enable label-free observation of fine morphological and structural features. Since DNA/RNA can strongly absorb ultraviolet light, ultraviolet photoacoustic microscopy can highlight the cell nucleus without complicated sample preparations such as staining, which is comparable to the standard pathological images. Further improvements in the imaging acquisition speed are critical to advancing the clinical translation of photoacoustic histology imaging technology. However, improving the imaging speed with additional hardware is hampered by considerable costs and complex design. In this work, considering heavy redundancy in the biological photoacoustic images that overconsume the computing power, we propose an image reconstruction framework called non-uniform image reconstruction (NFSR), which exploits an object detection network to reconstruct low-sampled photoacoustic histology images into high-resolution images. The sampling speed of photoacoustic histology imaging is significantly improved, saving 90% of the time cost. Furthermore, NFSR focuses on the reconstruction of the region of interest while maintaining high PSNR and SSIM evaluation indicators of more than 99% but reducing the overall computation by 60%.
引用
收藏
页码:2080 / 2090
页数:11
相关论文
共 50 条
  • [41] Fast reconstruction of non-uniform sampling multidimensional NMR spectroscopy via a deep neural network
    Luo, Jie
    Zeng, Qing
    Wu, Ke
    Lin, Yanqin
    JOURNAL OF MAGNETIC RESONANCE, 2020, 317
  • [42] THE IMAGING METHOD OF THE NON-UNIFORM MOVEMENT FOR GEOSAR
    Wang, Zhuoqun
    Jiang, Yicheng
    Li, Yajun
    2014 12TH INTERNATIONAL CONFERENCE ON SIGNAL PROCESSING (ICSP), 2014, : 756 - 759
  • [43] HDR Imaging under Non-uniform Blurring
    Vijay, C. S.
    Chandramouli, Paramanand
    Ambasamudram, Rajagopalan
    COMPUTER VISION - ECCV 2012, PT II, 2012, 7584 : 451 - 460
  • [44] The non-uniform analysis in the infrared imaging system
    Wu, ZM
    Liu, QF
    Zhou, LM
    Liu, Y
    Jiang, YD
    ISAS/CITSA 2004: INTERNATIONAL CONFERENCE ON CYBERNETICS AND INFORMATION TECHNOLOGIES, SYSTEMS AND APPLICATIONS AND 10TH INTERNATIONAL CONFERENCE ON INFORMATION SYSTEMS ANALYSIS AND SYNTHESIS, VOL 4, PROCEEDINGS, 2004, : 186 - 188
  • [45] Automated full-breast photoacoustic tomography with non-uniform illumination
    Kelly, Corey J.
    Salcudean, Septimiu E.
    PHOTONS PLUS ULTRASOUND: IMAGING AND SENSING 2018, 2018, 10494
  • [46] NON-UNIFORM SAMPLING FOR COMPRESSIVE CYCLIC SPECTRUM RECONSTRUCTION
    Ariananda, Dyonisius Dony
    Leus, Geert
    2014 IEEE INTERNATIONAL CONFERENCE ON ACOUSTICS, SPEECH AND SIGNAL PROCESSING (ICASSP), 2014,
  • [47] Efficient reconstruction from non-uniform point sets
    Vucini, Erald
    Moeller, Torsten
    Groeller, M. Eduard
    VISUAL COMPUTER, 2008, 24 (7-9): : 555 - 563
  • [48] Jigsaw: A Slice-and-Dice Approach to Non-uniform FFT Acceleration for MRI Image Reconstruction
    West, Brendan L.
    Fessler, Jeffrey A.
    Wenisch, Thomas F.
    2021 IEEE 35TH INTERNATIONAL PARALLEL AND DISTRIBUTED PROCESSING SYMPOSIUM (IPDPS), 2021, : 714 - 723
  • [49] Super resolution SPECT reconstruction with non-uniform attenuation
    Yan, Ziye
    Lu, Yao
    Wen, Junhai
    Li, Cuifen
    COMPUTERS IN BIOLOGY AND MEDICINE, 2012, 42 (06) : 651 - 656
  • [50] Efficient reconstruction from non-uniform point sets
    Erald Vuçini
    Torsten Möller
    M. Eduard Gröller
    The Visual Computer, 2008, 24 : 555 - 563