Results 221 to 230 of about 160,406 (282)
Biocompatibility of Hydrogels for Glomerular 3D Co-Culture: A Comparative Analysis. [PDF]
Eichermüller J +16 more
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On the importance of simultaneous label-free multimodal nonlinear optical imaging for biomedical applications. [PDF]
De la Cadena A +3 more
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Exploiting negative photochromism to harness a four-photon-like fluorescence response with two-photon excitation. [PDF]
Benitez-Martin C +7 more
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Three-Dimensional Architecture of Placental Villous Branching in the Normal Human Placenta: A Scoping Review. [PDF]
Sinou N +5 more
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LipoTag: A minimal motif for live and functional imaging of plant cell membranes.
Sprakel J +11 more
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Speed scaling in multiphoton fluorescence microscopy
Nature Photonics, 2021After over 30 years of advances, multiphoton microscopy (MPM) is now instrumental in a wide range of in vivo biological imaging applications. However, it has, until recently, remained not achievable or affordable to meet the unmet need for fast monitoring of biological dynamics and large-scale examination of biological heterogeneity.
Jianglai Wu, Na Ji, Kevin K Tsia
exaly +3 more sources
Multiphoton fluorescence microscopy for in vivo imaging
Multiphoton fluorescence microscopy (MPFM) has been a game-changer for optical imaging, particularly for studying biological tissues deep within living organisms.
Chris Xu +4 more
semanticscholar +7 more sources
Chemical Communications, 2021
A small-sized chromophore, BTTA-2OH, manifesting favorable solubility, large two-photon excitation efficiency, and good fluorescence photostability was synthesized to label the membrane of living cells for visualizing the dynamic movement of membrane ...
Wei Lee +7 more
semanticscholar +1 more source
A small-sized chromophore, BTTA-2OH, manifesting favorable solubility, large two-photon excitation efficiency, and good fluorescence photostability was synthesized to label the membrane of living cells for visualizing the dynamic movement of membrane ...
Wei Lee +7 more
semanticscholar +1 more source
Image reconstruction for multiphoton fluorescence microscopy
Applied Physics Letters, 2008We present a general image reconstruction methodology for multiphoton fluorescence microscopy. The method is primarily based on Markov random field modeling of the detected image data. Evaluation on two-photon-excitation-(TPE) and two-photon-excited-4PI-microscopy images shows high quality artifact-free reconstruction.
MONDAL P. P +2 more
openaire +2 more sources

