| Literature DB >> 22254180 |
Vijay Raj Singh1, Heejin Choi, Elijah Y S Yew, Dipanjan Bhattacharya, Luo Yuan, Colin J R Sheppard, Jagath C Rajapakse, George Barbastathis, Peter T C So.
Abstract
In this paper, we report a method for 3D visualization of a biological specimen utilizing a structured light wide-field microscopic imaging system. This method improves on existing structured light imaging modalities by reassigning fluorescence photons generated from off-focal plane excitation, improving in-focus signal strength. Utilizing a maximum likelihood approach, we identify the most likely fluorophore distribution in 3D that will produce the observed image stacks under structured and uniform illumination using an iterative maximization algorithm. Our results show the optical sectioning capability of tissue specimens while mostly preserving image stack photon count, which is usually not achievable with other existing structured light imaging methods. 2011 Optical Society of AmericaEntities:
Keywords: (100.3020) Image reconstruction-restoration; (110.6880) Three-dimensional image acquisition; (180.2520) Fluorescence microscopy; (180.6900) Three-dimensional microscopy
Year: 2011 PMID: 22254180 PMCID: PMC3255338 DOI: 10.1364/BOE.3.000206
Source DB: PubMed Journal: Biomed Opt Express ISSN: 2156-7085 Impact factor: 3.732
Fig. 1Schematic of structured light imaging based wide field fluorescence microscope system
Fig. 2Algorithm of photon reassignment process.
Fig. 3(a)–(c) Uniform and (d)–(f) structured images of fluorescence beads at object axial positions 24 μm, 48 μm, and 79 μm, respectively; (g)–(i) are the corresponding HiLo microscopy images, (j)–(l) are the reconstructed images using proposed model, and (m)–(o) are the deconvolution images.
Fig. 4(a) Line intensity plot showing the performance of the proposed method, (b) Analysis of the in-focus and background signals, (c) SNR and SBR plots.
Evaluation of image parameters
| HiLo | Maximized | Uniform | |
|---|---|---|---|
| SNR | 53.37 | 62.07 | 54.88 |
| SBR | 11.8 ± 0.61 | 16.1 ± 2.33 | 3.3 ± 0.05 |
| Contrast | 0.91 | 0.93 | 0.43 |
Fig. 5(a) and (d) Wide field fluorescence uniform images of zebrafish intestine; (b) and (e) are the corresponding reconstructed images, for tissue axial positions 36 μm and 51 μm, respectively; (c) and (f) show the line profile of intensity values