• Infrared and Laser Engineering
  • Vol. 50, Issue 11, 20210484 (2021)
Saiwen Zhang1、2, Yaqi Deng1、2, Chong Wang1、2, Xiaoling Leng1、2, Guangfu Zhang1、2, Bing Wen1、2, Yangbao Deng1、2、*, Weishi Tan1、2, Ye Tian1、2, and Wenguo Li1、2
Author Affiliations
  • 11. School of Information and Electronics Engineering, Hunan City University, Yiyang 413000, China
  • 2All-solid-state Energy Storage Materials and Devices Key Laboratory of Hunan Province, Hunan City University, Yiyang 413000, China
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    DOI: 10.3788/IRLA20210484 Cite this Article
    Saiwen Zhang, Yaqi Deng, Chong Wang, Xiaoling Leng, Guangfu Zhang, Bing Wen, Yangbao Deng, Weishi Tan, Ye Tian, Wenguo Li. Research on super-resolution fluorescence microscopy imaging based on multiple measurement vector compressed sensing[J]. Infrared and Laser Engineering, 2021, 50(11): 20210484 Copy Citation Text show less
    Images of fluorescent molecules by simulation generated. (a) A frame image; (b) Wide-field image by 500 frames accumulated
    Fig. 1. Images of fluorescent molecules by simulation generated. (a) A frame image; (b) Wide-field image by 500 frames accumulated
    Images of different pixel sizes by simulation generated. The pixel sizes are (a) 60 nm; (b) 120 nm; (c) 160 nm; (d) 200 nm, respectively
    Fig. 2. Images of different pixel sizes by simulation generated. The pixel sizes are (a) 60 nm; (b) 120 nm; (c) 160 nm; (d) 200 nm, respectively
    Comparison of curves of reconstructed super-resolution images based on different pixel sizes. The pixel sizes are (a) 60 nm; (b) 120 nm;(c) 160 nm; (d) 200 nm, respectively
    Fig. 3. Comparison of curves of reconstructed super-resolution images based on different pixel sizes. The pixel sizes are (a) 60 nm; (b) 120 nm;(c) 160 nm; (d) 200 nm, respectively
    Comparison of curves of reconstructed super-resolution images based on different photons number
    Fig. 4. Comparison of curves of reconstructed super-resolution images based on different photons number
    Comparison of curves of reconstructed super-resolution images based on different background photons number
    Fig. 5. Comparison of curves of reconstructed super-resolution images based on different background photons number
    Comparison of run time curves of reconstructed by 500 small block images (Box size is the size of divided image)
    Fig. 6. Comparison of run time curves of reconstructed by 500 small block images (Box size is the size of divided image)
    Comparison of reconstructions images of L1-H and MMV-CS algorithms based on high-density images. (a) Wide-images of directly accumulated microtubule images by 1500 frames; (b) A frame of 1500 frames; Reconstructions images using (c) L1-H algorithm and (d) MMV-CS algorithm
    Fig. 7. Comparison of reconstructions images of L1-H and MMV-CS algorithms based on high-density images. (a) Wide-images of directly accumulated microtubule images by 1500 frames; (b) A frame of 1500 frames; Reconstructions images using (c) L1-H algorithm and (d) MMV-CS algorithm
    Comparison of intensity curves along the white line in Fig. 7(c), (d)
    Fig. 8. Comparison of intensity curves along the white line in Fig. 7(c), (d)
    Saiwen Zhang, Yaqi Deng, Chong Wang, Xiaoling Leng, Guangfu Zhang, Bing Wen, Yangbao Deng, Weishi Tan, Ye Tian, Wenguo Li. Research on super-resolution fluorescence microscopy imaging based on multiple measurement vector compressed sensing[J]. Infrared and Laser Engineering, 2021, 50(11): 20210484
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