Отрывок: 485 dB and 1.814 dB respectively. 3. Simulation data analysis To evaluate the CS reconstruction for CIW, 20 frames of simulated super-resolution image with known true mo- lecular positions and their corresponding CR frames were generated. The simulation randomly placed molecules in a grid region. The molecular density was 6.304 m –2. Fig. 4a is a CR frame without noise. Fig. 4b is a CI frame without noise. Fig. 4c is the true super- resolution image. a)...
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dc.contributor.authorCheng, T.-
dc.contributor.authorChenchen, T.-
dc.date.accessioned2023-12-29 13:02:34-
dc.date.available2023-12-29 13:02:34-
dc.date.issued2023-08-
dc.identifierDspace\SGAU\20231228\107769ru
dc.identifier.citationCheng T, Chenchen T. Super-resolution microscopy based on interpolation and wide spectrum de-noising. Computer Optics 2023; 47(4): 614-619. DOI: 10.18287/2412-6179-CO-1272.ru
dc.identifier.urihttps://dx.doi.org/10.18287/2412-6179-CO-1272-
dc.identifier.urihttp://repo.ssau.ru/handle/Zhurnal-Komputernaya-optika/Superresolution-microscopy-based-on-interpolation-and-wide-spectrum-denoising-107769-
dc.description.abstractIn the conventional single-molecule localizations and super-resolution microscopy, the pixel size of a raw image is approximately equal to the standard deviation of the point spread function. Such a raw image is referred to herein as a conventional raw image, based on which better single molecule localization effect and efficiency can be achieved. It is found that both interpolation and de-noising can effectively improve the Signal to Noise Ratio of the conventional raw image. The conventional raw image, the de-noised, the interpolated and the de-noised interpolated are compared and analyzed and compressed sensing is used for super-resolution reconstruction. The simulation results show that both the highest Signal to Noise Ratio and the best super-resolution reconstruction can be obtained by de-noising the interpolated conventional raw image. This method also renders the best super-resolution reconstruction and minimum gradient in the real experiment. De-noising the interpolated conventional raw image is an effective method to improve the super-resolution microscopy.ru
dc.description.sponsorshipThe work was funded by Guangxi National Natural Science Foundation (2022GXNSFAA035593), National Natural Science Foundation of China (81660296, 41461082).ru
dc.language.isoenru
dc.publisherСамарский национальный исследовательский университетru
dc.relation.ispartofseries47;4-
dc.subjectsuper-resolution microscopyru
dc.subjectinterpolationru
dc.subjectde-noisingru
dc.subjectpoint spread functionru
dc.subjectcompressed sensingru
dc.titleSuper-resolution microscopy based on interpolation and wide spectrum de-noisingru
dc.typeArticleru
dc.textpart485 dB and 1.814 dB respectively. 3. Simulation data analysis To evaluate the CS reconstruction for CIW, 20 frames of simulated super-resolution image with known true mo- lecular positions and their corresponding CR frames were generated. The simulation randomly placed molecules in a grid region. The molecular density was 6.304 m –2. Fig. 4a is a CR frame without noise. Fig. 4b is a CI frame without noise. Fig. 4c is the true super- resolution image. a)...-
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