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Anne Sentenac

Explore the profile of Anne Sentenac including associated specialties, affiliations and a list of published articles. Areas
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Articles 51
Citations 181
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Recent Articles
1.
Chaumet P, Bon P, Maire G, Sentenac A, Baffou G
Light Sci Appl . 2024 Oct; 13(1):288. PMID: 39394163
Quantitative phase microscopies (QPMs) play a pivotal role in bio-imaging, offering unique insights that complement fluorescence imaging. They provide essential data on mass distribution and transport, inaccessible to fluorescence techniques....
2.
Mazzella L, Mangeat T, Giroussens G, Rogez B, Li H, Creff J, et al.
Light Sci Appl . 2024 Oct; 13(1):285. PMID: 39384765
The ultimate aim of fluorescence microscopy is to achieve high-resolution imaging of increasingly larger biological samples. Extended depth of field presents a potential solution to accelerate imaging of large samples...
3.
Benefice M, Gorlas A, Marthy B, Da Cunha V, Forterre P, Sentenac A, et al.
Biophys J . 2023 Jul; 122(15):3159-3172. PMID: 37393431
Quantitative phase microscopy (QPM) represents a noninvasive alternative to fluorescence microscopy for cell observation with high contrast and for the quantitative measurement of dry mass (DM) and growth rate at...
4.
Chaumet P, Maire G, Sentenac A
J Opt Soc Am A Opt Image Sci Vis . 2022 Oct; 39(8):1462-1467. PMID: 36215591
Replacing Maxwell equations by a scalar wave equation is often used in computational imaging to simulate the light-sample interaction. It significantly reduces the computational burden but provides field maps that...
5.
Mangeat T, Labouesse S, Allain M, Negash A, Martin E, Guenole A, et al.
Cell Rep Methods . 2022 Apr; 1(1):100009. PMID: 35474693
Current super-resolution microscopy (SRM) methods suffer from an intrinsic complexity that might curtail their routine use in cell biology. We describe here random illumination microscopy (RIM) for live-cell imaging at...
6.
Sentenac A, Maire G, Chaumet P
Nat Mater . 2022 Mar; 21(3):269-271. PMID: 35241822
No abstract available.
7.
Heuke S, Sivankutty S, Scotte C, Stockton P, Bartels R, Sentenac A, et al.
Optica . 2021 Dec; 7(5):417-424. PMID: 34926725
For sparse samples or in the presence of ambient light, the signal-to-noise ratio (SNR) performance of single-point-scanning coherent anti-Stokes Raman scattering (CARS) images is not optimized. As an improvement, we...
8.
Heuke S, Rigneault H, Sentenac A
Opt Express . 2021 Mar; 29(3):4230-4239. PMID: 33771007
Fourier ptychography tomography (FPT) is a novel computational technique for coherent imaging in which the sample is numerically reconstructed from images acquired under various illumination directions. FPT is able to...
9.
Rasedujjaman M, Affannoukoue K, Garcia-Seyda N, Robert P, Giovannini H, Chaumet P, et al.
Opt Lett . 2020 Jul; 45(13):3721-3724. PMID: 32630938
Biomedical imaging lacks label-free microscopy techniques able to reconstruct the contour of biological cells in solution, in 3D and with high resolution, as required for the fast diagnosis of numerous...
10.
Matlock A, Sentenac A, Chaumet P, Yi J, Tian L
Biomed Opt Express . 2020 Mar; 11(2):911-926. PMID: 32206398
Reflection phase imaging provides label-free, high-resolution characterization of biological samples, typically using interferometric-based techniques. Here, we investigate reflection phase microscopy from -only measurements under diverse illumination. We evaluate the forward...