Zobrazeno 1 - 10
of 26
pro vyhledávání: '"Omar E. Olarte"'
Publikováno v:
Methods and Protocols, Vol 2, Iss 3, p 57 (2019)
Light sheet fluorescence microscopy techniques have revolutionized biological microscopy enabling low-phototoxic long-term 3D imaging of living samples. Although there exist many light sheet microscopy (LSM) implementations relying on fluorescence, j
Externí odkaz:
https://doaj.org/article/9788039b678442879a07d518a3c1ba0e
Publikováno v:
Proceedings of the 6th International Conference on Theoretical and Applied Nanoscience and Nanotechnology (TANN'22).
Autor:
Gustavo Castro-Olvera, Jorge Madrid-Wolff, Emilio J. Gualda, Jordi Soriano, Adriaan A. Ludl, Omar E. Olarte, Pablo Loza-Alvarez, Estefanía Estévez-Priego
Publikováno v:
Emerging Topics in Artificial Intelligence (ETAI) 2021.
LSFM is a technique that allows obtaining fast 2D images of biological samples. Its characteristic 90° geometry results in a highly efficient excitation and light collection of the generated signal, minimizing light dose onto the sample and reducing
Autor:
Gustavo Castro-Olvera, Emilio J. Gualda, Estefanía Estévez-Priego, Omar E. Olarte, Jordi Soriano, Pablo Loza-Alvarez, Adriaan A. Ludl, Laurent Ladepeche, Jorge Madrid-Wolff
Publikováno v:
Emerging Topics in Artificial Intelligence 2020.
I will present a Light-sheet fluorescence microscope (LSFM) for fast volumetric imaging during extended periods of time. In this case, the observation arm of the microscope contains an electrically tunable lens (ETL) that is used to shift the focal p
Autor:
Pablo Loza-Alvarez, Ayman El-Tamer, Anastasia Koroleva, Omar E. Olarte, Estefanía Estévez-Priego, S.G. Sokolovsky, H. R. Parri, Eric J. Hill, Jordi Soriano, Edik U. Rafailov, James A Crowe, Boris N. Chichkov, Adriaan-Alexander Ludl, Jorge Madrid-Wolff, David A. Nagel
Publikováno v:
Lab on a Chip
Dipòsit Digital de la UB
Universidad de Barcelona
Dipòsit Digital de la UB
Universidad de Barcelona
Recent progress in the field of human induced pluripotent stem cells (iPSCs) has led to the efficient production of human neuronal cell models for in vitro study. This has the potential to enable the understanding of live human cellular and network f
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::bb071fe36963a9c5e596c57b9049401d
https://publications.aston.ac.uk/id/eprint/41459/1/c9lc01209e.pdf
https://publications.aston.ac.uk/id/eprint/41459/1/c9lc01209e.pdf
Autor:
Jordi Andilla, Omar E. Olarte, Jordi Soriano, Alex Arenas, Clara Granell, Estefanía Estévez-Priego, Daniel Tornero, Pablo Loza-Alvarez, Sara Teller
Publikováno v:
eNeuro
Dipòsit Digital de la UB
Universidad de Barcelona
Dipòsit Digital de la UB
Universidad de Barcelona
Damage in biological neuronal networks triggers a complex functional reorganization whose mechanisms are still poorly understood. To delineate this reorganization process, here we investigate the functional alterations of in vitro rat cortical circui
Publikováno v:
Methods and Protocols
Methods and Protocols, Vol 2, Iss 3, p 57 (2019)
Methods and Protocols, Vol 2, Iss 3, p 57 (2019)
Light sheet fluorescence microscopy techniques have revolutionized biological microscopy enabling low-phototoxic long-term 3D imaging of living samples. Although there exist many light sheet microscopy (LSM) implementations relying on fluorescence, j
Publikováno v:
Biophotonics Congress: Optics in the Life Sciences Congress 2019 (BODA,BRAIN,NTM,OMA,OMP).
Publikováno v:
Optics express. 25(9)
We report a directly blue diode pumped Ti:Sapphire oscillator that generates 5 nJ pulses. This is five times higher pulse energy than previously reported for a directly diode pumped Ti:sapphire laser. With 460 mW of average power at 92 MHz and 82 fs
Publikováno v:
Adaptive Optics and Wavefront Control for Biological Systems III.
Some biological experiments demand the observation of dynamics processes in 3D with high spatiotemporal resolution. The use of wavefront coding to extend the depth-of-field (DOF) of the collection arm of a light-sheet microscope is an interesting alt