Color-coded light-emitting diode (LED) microscopy (cLEDscope) is a novel computational microscopy technique capable of multi-contrast and quantitative phase imaging of biological specimens using color-multiplexed illumination. Using specially designed LED patterns, it is capable of recording multiple differential phase contrast (DPC) images in a single exposure and employs a computational algorithm to retrieve the phase distribution of the specimens. Herein, we describe the detailed procedures in the cLEDscope implementation for quantitative phase imaging. Several notable features and caveats in the cLEDscope setup and image processing are also outlined. The imaging model is derived for our specific configuration, and the associated phase-r...
Quantitative Phase Imaging (QPI) techniques are a set of microscopy techniques that allow us to obs...
We demonstrate a single-camera imaging system that can simultaneously acquire brightfield, darkfield...
We demonstrate a single-camera imaging system that can simultaneously acquire brightfield, darkfield...
Quantitative optical microscopy continues to be a powerful tool for biomedical research and the scie...
Quantitative optical microscopy continues to be a powerful tool for biomedical research and the scie...
Quantitative optical microscopy continues to be a powerful tool for biomedical research and the scie...
Illumination-based differential phase contrast (DPC) is a phase imaging method that uses a pair of i...
We present a new technique for quantitative phase and amplitude microscopy from a single color image...
We present a new technique for quantitative phase and amplitude microscopy from a single color image...
Phase contrast microscopy reveals transparent objects under optical microscopes, and has been widely...
Dynamic movements of human sperm cells Originally published in Optics Express on 03 April 2017 (oe-2...
Phase contrast microscopy reveals transparent objects under optical microscopes, and has been widely...
We demonstrate 3D differential phase-contrast (DPC) microscopy, based on computational illumination ...
The combination of multiple imaging modalities in a single microscopy system can enable new insights...
We demonstrate a single-camera imaging system that can simultaneously acquire brightfield, darkfield...
Quantitative Phase Imaging (QPI) techniques are a set of microscopy techniques that allow us to obs...
We demonstrate a single-camera imaging system that can simultaneously acquire brightfield, darkfield...
We demonstrate a single-camera imaging system that can simultaneously acquire brightfield, darkfield...
Quantitative optical microscopy continues to be a powerful tool for biomedical research and the scie...
Quantitative optical microscopy continues to be a powerful tool for biomedical research and the scie...
Quantitative optical microscopy continues to be a powerful tool for biomedical research and the scie...
Illumination-based differential phase contrast (DPC) is a phase imaging method that uses a pair of i...
We present a new technique for quantitative phase and amplitude microscopy from a single color image...
We present a new technique for quantitative phase and amplitude microscopy from a single color image...
Phase contrast microscopy reveals transparent objects under optical microscopes, and has been widely...
Dynamic movements of human sperm cells Originally published in Optics Express on 03 April 2017 (oe-2...
Phase contrast microscopy reveals transparent objects under optical microscopes, and has been widely...
We demonstrate 3D differential phase-contrast (DPC) microscopy, based on computational illumination ...
The combination of multiple imaging modalities in a single microscopy system can enable new insights...
We demonstrate a single-camera imaging system that can simultaneously acquire brightfield, darkfield...
Quantitative Phase Imaging (QPI) techniques are a set of microscopy techniques that allow us to obs...
We demonstrate a single-camera imaging system that can simultaneously acquire brightfield, darkfield...
We demonstrate a single-camera imaging system that can simultaneously acquire brightfield, darkfield...