Quantitative phase imaging (QPI) is an emerging label-free technique that produces images containing morphological and dynamical information without contrast agents. Unfortunately, the phase is wrapped in most imaging system. Phase unwrapping is the computational process that recovers a more informative image. It is particularly challenging with thick and complex samples such as organoids. Recent works that rely on supervised training show that deep learning is a powerful method to unwrap the phase; however, supervised approaches require large and representative datasets which are difficult to obtain for complex biological samples. Inspired by the concept of deep image priors, we propose a deep-learning-based method that does not need any t...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Cata...
Phase retrieval approaches based on deep learning (DL) provide a framework to obtain phase informati...
Quantitative phase imaging (QPI) yields the spatial phase map of the object’s scattering potential. ...
Phase unwrapping is an important but challenging issue in phase measurement. Even with the research ...
The development of a quantitative phase microscope (QPM) has allowed the ability to acquire real-tim...
Optofluidic time-stretch quantitative phase imaging (OTS-QPI) is a potent tool for biomedical applic...
Quantitative phase imaging has been of interest to the science and engineering community and has bee...
Quantitative phase imaging (QPI) has emerged as a valuable method for investigating cells and tissue...
Quantitative phase imaging (QPI) is a remarkable modality for its wide range of potentials in studyi...
The non-linear equation of phase retrieval appears in many different scenarios, from X-ray imaging t...
Deep learning has been proven to achieve ground-breaking accuracy in various tasks. In this paper, w...
This book introduces time-stretch quantitative phase imaging (TS-QPI), a high-throughput label-free ...
Quantitative Phase Imaging (QPI) is an emerging imaging modality, which has attracted significant i...
Measuring cellular level phenomena is challenging because of the transparent nature of cells and tis...
In MRI, phase maps can provide useful information about parameters such as field inhomogeneity, velo...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Cata...
Phase retrieval approaches based on deep learning (DL) provide a framework to obtain phase informati...
Quantitative phase imaging (QPI) yields the spatial phase map of the object’s scattering potential. ...
Phase unwrapping is an important but challenging issue in phase measurement. Even with the research ...
The development of a quantitative phase microscope (QPM) has allowed the ability to acquire real-tim...
Optofluidic time-stretch quantitative phase imaging (OTS-QPI) is a potent tool for biomedical applic...
Quantitative phase imaging has been of interest to the science and engineering community and has bee...
Quantitative phase imaging (QPI) has emerged as a valuable method for investigating cells and tissue...
Quantitative phase imaging (QPI) is a remarkable modality for its wide range of potentials in studyi...
The non-linear equation of phase retrieval appears in many different scenarios, from X-ray imaging t...
Deep learning has been proven to achieve ground-breaking accuracy in various tasks. In this paper, w...
This book introduces time-stretch quantitative phase imaging (TS-QPI), a high-throughput label-free ...
Quantitative Phase Imaging (QPI) is an emerging imaging modality, which has attracted significant i...
Measuring cellular level phenomena is challenging because of the transparent nature of cells and tis...
In MRI, phase maps can provide useful information about parameters such as field inhomogeneity, velo...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Cata...
Phase retrieval approaches based on deep learning (DL) provide a framework to obtain phase informati...
Quantitative phase imaging (QPI) yields the spatial phase map of the object’s scattering potential. ...