Tomographic diffractive microscopy with a wavefront sensor.
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Summary
This Letter shows that, using a wavefront sensor, tomographic diffractive microscopy can be implemented easily on a conventional microscope and the number of illuminations can be dramatically decreased if a constrained reconstruction algorithm is used to recover the sample map of permittivity.
- Type
- article
- Published
- 2012-05-15
- Cited by
- 18
- References
- 12
- OpenAlex
- https://openalex.org/W2024911735
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:29256073
Keywords
Optics, Wavefront, Microscopy, Slowness, Tomographic reconstruction
References
- Mirror-assisted tomographic diffractive microscopy with isotropic resolution.
- Experimental inversion of optical diffraction tomography data with a nonlinear algorithm in the multiple scattering regime
- Nanometric resolution using far-field optical tomographic microscopy in the multiple scattering regime
- New approach to optical diffraction tomography yielding a vector equation of diffraction tomography and a novel tomographic microscope
- Superresolution in total internal reflection tomography.
- Optical diffraction tomography for high resolution live cell imaging
- High-speed synthetic aperture microscopy for live cell imaging
- Experimental demonstration of quantitative imaging beyond Abbe's limit with optical diffraction tomography.
- Tomographic diffractive microscopy: basics, techniques and perspectives
- Holographic microscopy and diffractive microtomography of transparent samples
- Simplified approach to diffraction tomography in optical microscopy.
- Quadriwave lateral shearing interferometry for quantitative phase microscopy of living cells.
Cited by
- Resolution improvement in fluorescence and phase optical microscopy
- Plasmon-based tomographic microscopy.
- Tomographic incoherent phase imaging, a diffraction tomography alternative for any white-light microscope
- Dynamic control of illumination beam phase profile in a scanning optical microscope
- Quadriwave lateral shearing interferometry as a quantification tool for microscopy. Application to dry mass determination of living cells, temperature mapping, and vibrational phase imaging
- High-resolution tomographic diffractive microscopy in reflection configuration.
- Electromagnetic wave imaging of targets buried in a cluttered medium using a hybrid inversion-DORT method
- Comparative study of iterative reconstruction algorithms for missing cone problems in optical diffraction tomography.
- Full-polarized tomographic diffraction microscopy achieves a resolution about one-fourth of the wavelength.
- 3D high- and isotropic resolution in tomographic diffractive microscopy by illumination angular scanning, specimen rotation and improved data recombination
- Tomographic diffractive microscopy: Towards high-resolution 3-D real-time data acquisition, image reconstruction and display of unlabeled samples
- Development of Optical Sectioning Microscope using Binary Di raction Hologram
- Tomographic Diffractive Microscopy: A Review of Methods and Recent Developments
- Advances and Overcoming Challenges in Tomographic Diffractive Microscopy
- Recent Advances and Current Trends in Transmission Tomographic Diffraction Microscopy
- Utilizing Optical Phantoms for Biomedical-optics Technology: Recent Advances and Challenges
- Tomographic Diffractive Microscopy: Principles, Implementations, and Applications in Biology
- Beyond Born-Rytov limit for super-resolution optical diffraction tomography
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