Bayesian localization microscopy based on intensity distribution of fluorophores
Protein & Cell
; (12): 211-220, 2015.
Article
em En
| WPRIM
| ID: wpr-757600
Biblioteca responsável:
WPRO
ABSTRACT
Super-resolution microscopy techniques have overcome the limit of optical diffraction. Recently, the Bayesian analysis of Bleaching and Blinking data (3B) method has emerged as an important tool to obtain super-resolution fluorescence images. 3B uses the change in information caused by adding or removing fluorophores in the cell to fit the data. When adding a new fluorophore, 3B selects a random initial position, optimizes this position and then determines its reliability. However, the fluorophores are not evenly distributed in the entire image region, and the fluorescence intensity at a given position positively correlates with the probability of observing a fluorophore at this position. In this paper, we present a Bayesian analysis of Bleaching and Blinking microscopy method based on fluorescence intensity distribution (FID3B). We utilize the intensity distribution to select more reliable positions as the initial positions of fluorophores. This approach can improve the reconstruction results and significantly reduce the computational time. We validate the performance of our method using both simulated data and experimental data from cellular structures. The results confirm the effectiveness of our method.
Texto completo:
1
Índice:
WPRIM
Assunto principal:
Simulação por Computador
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Chlorocebus aethiops
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Teorema de Bayes
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Células COS
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Proteínas de Fluorescência Verde
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Imagem Molecular
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Metabolismo
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Métodos
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Microscopia de Fluorescência
Tipo de estudo:
Prognostic_studies
Limite:
Animals
Idioma:
En
Revista:
Protein & Cell
Ano de publicação:
2015
Tipo de documento:
Article