activity
20172019
most citedHigh-resolution transport-of-intensity quantitative phase microscopy with annular illumination

13 citations · 21 across the 4 of their papers we have counts for

collaborators

7 papers

eess.IV2019

On a universal solution to the transport-of-intensity equation

Jialin Zhang, Qian Chen, Jiasong Sun +2

Transport-of-intensity equation (TIE) is one of the most well-known approaches for phase retrieval and quantitative phase imaging. It directly recovers the quantitative phase distr…

physics.optics20196 cited

Resolution analysis in a lens-free on-chip digital holographic microscope

Jialin Zhang, Jiasong Sun, Qian Chen +1

Lens-free on-chip digital holographic microscopy (LFOCDHM) is a modern imaging technique whereby the sample is placed directly onto or very close to the digital sensor, and illumin…

eess.IV2018

Optimal illumination pattern for transport-of-intensity quantitative phase microscopy

Jiaji Li, Qian Chen, Jiasong Sun +3

The transport-of-intensity equation (TIE) is a well-established non-interferometric phase retrieval approach, which enables quantitative phase imaging (QPI) of transparent sample s…

physics.optics2018

Three-dimensional optical diffraction tomographic microscopy with optimal frequency combination with partially coherent illuminations

Jiaji Li, Qian Chen Jiasong Sun, Jialin Zhang +2

We demonstrate a three-dimensional (3D) optical diffraction tomographic technique with optimal frequency combination (OFC-ODT) for the 3D quantitative phase imaging of unlabeled sp…

physics.optics20172 cited

Highly efficient quantitative phase microscopy using programmable annular LED illumination

Jiaji Li, Qian Chen, Jialin Zhang +3

In this work, we present a highly efficient quantitative phase imaging (QPI) approach using programmable annular LED illumination based on traditional bright-field microscope. As a…

physics.optics2017

Adaptive pixel-super-resolved lensfree holography for wide-field on-chip microscopy

Jialin Zhang, Jiasong Sun, Qian Chen +2

High-resolution wide field-of-view (FOV) microscopic imaging plays an essential role in various fields of biomedicine, engineering, and physical sciences. As an alternative to conv…