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20172021
most citedMicro Fourier Transform Profilometry (FTP): 3D shape measurement at 10,000 frames per second

272 citations · 336 across the 10 of their papers we have counts for

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6 papers · 1 filter

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…

physics.optics2019

Wide-field high-resolution 3D microscopy with Fourier ptychographic diffraction tomography

Chao Zuo, Jiasong Sun, Jiaji Li +2

We report a computational 3D microscopy technique, termed Fourier ptychographic diffraction tomography (FPDT), that iteratively stitches together numerous variably illuminated, low…

physics.optics2019

High-speed in vitro intensity diffraction tomography

Jiaji Li, Alex Matlock, Yunzhe Li +3

We demonstrate a label-free, scan-free {\it intensity} diffraction tomography technique utilizing annular illumination (aIDT) to rapidly characterize large-volume 3D refractive ind…

physics.optics20193 cited

Optimal illumination scheme for isotropic quantitative differential phase contrast microscopy

Yao Fan, Jiasong Sun, Qian Chen +3

Differential phase contrast microscopy (DPC) provides high-resolution quantitative phase distribution of thin transparent samples under multi-axis asymmetric illuminations. Typical…

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…

physics.optics201713 cited

High-resolution transport-of-intensity quantitative phase microscopy with annular illumination

Chao Zuo, Jiasong Sun, Jiaji Li +3

For quantitative phase imaging (QPI) based on transport-of-intensity equation (TIE), partially coherent illumination provides speckle-free imaging, compatibility with brightfield m…