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Nichaluk Leartprapun
Nichaluk Leartprapun
Massachusetts General Hospital, Harvard Medical School
Verified email at mgh.harvard.edu
Title
Cited by
Cited by
Year
Photonic force optical coherence elastography for three-dimensional mechanical microscopy
N Leartprapun, RR Iyer, GR Untracht, JA Mulligan, SG Adie
Nature Communications 9 (1), 2079, 2018
392018
Model-independent quantification of soft tissue viscoelasticity with dynamic optical coherence elastography
N Leartprapun, R Iyer, SG Adie
Optical Coherence Tomography and Coherence Domain Optical Methods in …, 2017
162017
Spatial localization of mechanical excitation affects spatial resolution, contrast, and contrast-to-noise ratio in acoustic radiation force optical coherence elastography
N Leartprapun, RR Iyer, CD Mackey, SG Adie
Biomedical Optics Express 10 (11), 5877-5904, 2019
132019
Spectroscopic photonic force optical coherence elastography
Y Lin, N Leartprapun, SG Adie
Optics letters 44 (19), 4897-4900, 2019
132019
Microrheological quantification of viscoelastic properties with photonic force optical coherence elastography
N Leartprapun, Y Lin, SG Adie
Optics Express 27 (16), 22615-22630, 2019
122019
Light-sheet photonic force optical coherence elastography for high-throughput quantitative 3D micromechanical imaging
Y Lin, N Leartprapun, JC Luo, SG Adie
Nature Communications 13 (1), 3465, 2022
112022
Computational 4D-OCM for label-free imaging of collective cell invasion and force-mediated deformations in collagen
JA Mulligan, L Ling, N Leartprapun, C Fischbach, SG Adie
Scientific reports 11 (1), 2814, 2021
112021
Depth-resolved measurement of optical radiation-pressure forces with optical coherence tomography
N Leartprapun, RR Iyer, SG Adie
Optics Express 26 (3), 2410-2426, 2018
112018
Recent advances in optical elastography and emerging opportunities in the basic sciences and translational medicine
N Leartprapun, SG Adie
Biomedical Optics Express 14 (1), 208-248, 2023
102023
Optical sensing based on measurements of displacements induced by optical forces in viscoelastic media using phase-sensitive optical coherence tomography
S Adie, G Untracht, N Leartprapun
US Patent 10,197,379, 2019
92019
Optical sensing based on measurements of displacements induced by optical scattering forces in viscoelastic media using phase-sensitive optical coherence tomography
S Adie, G Untracht, N Leartprapun
US Patent 10,072,920, 2018
72018
Resolution-enhanced OCT and expanded framework of information capacity and resolution in coherent imaging
N Leartprapun, SG Adie
Scientific Reports 11 (1), 20541, 2021
32021
Investigation of multiple scattering in space and spatial-frequency domains: with application to the analysis of aberration-diverse optical coherence tomography
M Wu, S Liu, N Leartprapun, S Adie
Biomedical Optics Express 12 (12), 7478-7499, 2021
22021
Regeneration of collecting lymphatic vessels following injury
MS Razavi, PJ Lei, Z Amoozgar, N Leartprapun, SK Nadkarni, JW Baish, ...
Research Square, 2023
12023
Speckle rheological spectroscopy reveals wideband viscoelastic spectra of biological tissues
N Leartprapun, Z Zeng, Z Hajjarian, V Bossuyt, SK Nadkarni
bioRxiv, 2023
12023
High-throughput lightsheet optical manipulation and measurement with optical coherence tomography
Y Lin, N Leartprapun, SG Adie
Optical Coherence Tomography, OTu1E. 4, 2020
12020
Design and characterization of a multimodal system for 3D structural and mechanical imaging (Conference Presentation)
RR Iyer, N Leartprapun, SG Adie
Optical Elastography and Tissue Biomechanics V 10496, 104960F, 2018
12018
Investigating frequency-dependent viscoelastic spectra of the tumor microenvironment with wideband laser speckle rheological microscopy
N Leartprapun, J Koh, SK Nadkarni
Optical Elastography and Tissue Biomechanics XI, PC128440P, 2024
2024
Combined optical coherence microscopy and confocal microscopy of a 3D, co-culture model of aortic valve calcification
S Balakrishnan, M McFetridge, KM Driscoll, Y Lin, N Leartprapun, ...
Diagnostic and Therapeutic Applications of Light in Cardiology 2024 12819 …, 2024
2024
Wideband laser speckle rheological microscopy (SHEAR) to investigate elastic and viscous properties of tissues for orthopedic applications
N Leartprapun, F Guastaldi, J Koh, RW Redmond, SK Nadkarni
Biomedical Applications of Light Scattering XIV, PC128560E, 2024
2024
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