Photoacoustic imaging beyond the acoustic diffraction-limit with dynamic speckle illumination and sparse joint support recovery
Explore this paper's citation graph
Summary
An approach to boost reconstruction fidelity and resolution, while reducing the number of acquired images by utilizing a compressed sensing computational reconstruction framework that takes into account prior knowledge of the system response and sparsity of the target structure is proposed.
- Type
- article
- Published
- 2016-12-25
- Cited by
- 44
- References
- 41
- OpenAlex
- https://openalex.org/W28380755
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1485685
Keywords
Computer science
References
- An Introduction To Compressive Sampling
- Compressed Sensing
- Sampling Theory: Beyond Bandlimited Systems
- Sparsity-based single-shot subwavelength coherent diffractive imaging
- Sub-Rayleigh Imaging via Speckle Illumination
- Universal back-projection algorithm for photoacoustic computed tomography
- Sub-diffraction-limit imaging by stochastic optical reconstruction microscopy (STORM)
- Super-resolution and reconstruction of sparse sub-wavelength images.
- Photoacoustic Tomography: In Vivo Imaging from Organelles to Organs
- Faster STORM Using Compressed Sensing
- Imaging Intracellular Fluorescent Proteins at Nanometer Resolution
- Synthetic aperture superresolution by speckle pattern projection.
- Going deeper than microscopy: the optical imaging frontier in biology
- Imaging With Nature: Compressive Imaging Using a Multiply Scattering Medium
- Sparsity-based single-shot sub-wavelength coherent diffractive imaging
- Nonlinear structured-illumination microscopy: wide-field fluorescence imaging with theoretically unlimited resolution.
- Compressive ghost imaging
- Improving visibility in photoacoustic imaging using dynamic speckle illumination.
- Fluorescent microscopy beyond diffraction limits using speckle illumination and joint support recovery
- Structured illumination microscopy using unknown speckle patterns
Cited by
- Imaging with Scattered Light
- Super-resolution photoacoustic imaging via flow-induced absorption fluctuations
- Overcoming the acoustic diffraction limit in photoacoustic imaging by the localization of flowing absorbers.
- Super-resolution thermographic imaging using blind structured illumination
- 13-fold resolution gain through turbid layer via translated unknown speckle illumination.
- Dictionary learning-based reverberation removal enables depth-resolved photoacoustic microscopy of cortical microvasculature in the mouse brain
- Development of Microscopy Systems for Super-Resolution, Whole-Slide, Hyperspectral, and Confocal Imaging
- Blind structured illumination as excitation for super-resolution photothermal radiometry
- A linear state space model for photoacoustic imaging in an acoustic attenuating media
- Fast analysis method for stochastic optical reconstruction microscopy using multiple measurement vector model sparse Bayesian learning.
- Compressive three-dimensional super-resolution microscopy with speckle-saturated fluorescence excitation
- Acousto-optic tomography beyond the acoustic diffraction-limit using speckle decorrelation
- Resolution Limits in Photoacoustic Imaging Caused by Acoustic Attenuation
- Noise Filtering in High-Resolution Satellite Images Using Composite Multiresolution Transforms
- Label-free STORM principle realized by super-Rayleigh speckle in photoacoustic imaging.
- Super-resolution photoacoustic and ultrasound imaging with sparse arrays
- Photoacoustic Super-Resolution Imaging using Laser Activation of Low-Boiling-Point Dye-Coated Nanodroplets in vitro and in vivo
- Contrast-Enhanced Photoacoustic Imaging of Low-boiling-point Phase-Change Nanodroplets
- Simultaneous dictionary learning and reconstruction from subsampled data in photoacoustic microscopy
- Acousto optic imaging beyond the acoustic diffraction limit using speckle decorrelation
Related papers
No related papers recorded.