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Diffraction phase microscopy: principles and applications in materials and life sciences
Label-Free Characterization of Emerging Human Neuronal Networks
Effects of spatial coherence in diffraction phase microscopy
Highly sensitive quantitative imaging for monitoring single cancer cell growth kinetics and drug response
Nanoscale topography and spatial light modulator characterization using wide-field quantitative phase imaging
T. Kim*, R. Zhou*, M. Mir, S. D. Babacan, P. S. Carney, L. L. Goddard and G. Popescu, White-light diffraction tomography of unlabelled live cells, Nature Photonics (2014)
G. Popescu, K. Park*, M. Mir* and R. Bashir, New Technologies for Measuring Single Cell Mass, Lab. Chip, 14, 646-652 (2014)
V. Crecea, B. W. Graf, T. Kim, G. Popescu and S. A. Boppart, High Resolution Phase-Sensitive Magnetomotive Optical Coherence Microscopy for Tracking Magnetic Microbeads and Cellular Mechanics, IEEE JSTQE, PP (99), 1 (2013)
T. Kim, R. Zhu, T. Nguyen, R. Zhou, C. Edwards, L. Goddard and G. Popescu, Deterministic signal associated with a random field, Opt.Exp., 21(18), 20806-20820 (2013)
T. Nguyen, and G. Popescu, Spatial Light Interference Microscopy (SLIM) using twisted-nematic liquid-crystal modulation, Biomed. Opt. Exp., 4(9), 1571-1583 (2013)
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