N. Vladimirov, Y. Mu, T. Kawashima, D. V. Bennett, C.-T. Yang, L. L. Looger, P. J. Keller, J. Freeman, and M. B. Ahrens, “Light-sheet functional imaging in fictively behaving zebrafish,” Nat. Methods 11(9), 883–884 (2014).
[Crossref]
M. C. Müllenbroich, L. Turrini, L. Silvestri, T. Alterini, A. Gheisari, N. Tiso, F. Vanzi, L. Sacconi, and F. S. Pavone, “Bessel Beam Illumination Reduces Random and Systematic Errors in Quantitative Functional Studies Using Light-Sheet Microscopy,” Front. Cell. Neurosci. 12, 315 (2018).
[Crossref]
S. Psilodimitrakopoulos, V. Petegnief, G. Soria, I. Amat-Roldan, D. Artigas, A. M. Planas, and P. Loza-Alvarez, “Polarization second harmonic generation (PSHG) imaging of neurons: estimating the effective orientation of the SHG source in axons,” in Multiphoton Microscopy in the Biomedical Sciences X (International Society for Optics and Photonics, 2010), Vol. 7569, p. 75692W.
A. Anantharam, B. Onoa, R. H. Edwards, R. W. Holz, and D. Axelrod, “Localized topological changes of the plasma membrane upon exocytosis visualized by polarized TIRFM,” J. Cell Biol. 188(3), 415–428 (2010).
[Crossref]
J. Palero, S. I. C. O. Santos, D. Artigas, and P. Loza-Alvarez, “A simple scanless two-photon fluorescence microscope using selective plane illumination,” Opt. Express 18(8), 8491–8498 (2010).
[Crossref]
S. Psilodimitrakopoulos, V. Petegnief, G. Soria, I. Amat-Roldan, D. Artigas, A. M. Planas, and P. Loza-Alvarez, “Polarization second harmonic generation (PSHG) imaging of neurons: estimating the effective orientation of the SHG source in axons,” in Multiphoton Microscopy in the Biomedical Sciences X (International Society for Optics and Photonics, 2010), Vol. 7569, p. 75692W.
C. L. Asbury, J. L. Uy, and G. van den Engh, “Polarization of scatter and fluorescence signals in flow cytometry,” Cytometry 40(2), 88–101 (2000).
[Crossref]
A. Anantharam, B. Onoa, R. H. Edwards, R. W. Holz, and D. Axelrod, “Localized topological changes of the plasma membrane upon exocytosis visualized by polarized TIRFM,” J. Cell Biol. 188(3), 415–428 (2010).
[Crossref]
E. H. Hellen and D. Axelrod, ““Fluorescence emission at dielectric and metal-film interfaces,” J. Opt. Soc. Am. B 4(3), 337–350 (1987).
[Crossref]
G. Malkinson, P. Mahou, É. Chaudan, T. Gacoin, A. Y. Sonay, P. Pantazis, E. Beaurepaire, and W. Supatto, “Fast In Vivo Imaging of SHG Nanoprobes with Multiphoton Light-Sheet Microscopy,” ACS Photonics 7(4), 1036–1049 (2020).
[Crossref]
S. Wolf, W. Supatto, G. Debrégeas, P. Mahou, S. G. Kruglik, J.-M. Sintes, E. Beaurepaire, and R. Candelier, “Whole-brain functional imaging with two-photon light-sheet microscopy,” Nat. Methods 12(5), 379–380 (2015).
[Crossref]
J. Huisken, J. Swoger, F. D. Bene, J. Wittbrodt, and E. H. K. Stelzer, “Optical Sectioning Deep Inside Live Embryos by Selective Plane Illumination Microscopy,” Science 305(5686), 1007–1009 (2004).
[Crossref]
N. Vladimirov, Y. Mu, T. Kawashima, D. V. Bennett, C.-T. Yang, L. L. Looger, P. J. Keller, J. Freeman, and M. B. Ahrens, “Light-sheet functional imaging in fictively behaving zebrafish,” Nat. Methods 11(9), 883–884 (2014).
[Crossref]
T. Kalwarczyk, N. Ziȩbacz, A. Bielejewska, E. Zaboklicka, K. Koynov, J. Szymański, A. Wilk, A. Patkowski, J. Gapiński, H.-J. Butt, and R. Hołyst, “Comparative Analysis of Viscosity of Complex Liquids and Cytoplasm of Mammalian Cells at the Nanoscale,” Nano Lett. 11(5), 2157–2163 (2011).
[Crossref]
C. Vinegoni, P. Fumene Feruglio, C. Brand, S. Lee, A. E. Nibbs, S. Stapleton, S. Shah, I. Gryczynski, T. Reiner, R. Mazitschek, and R. Weissleder, “Measurement of drug-target engagement in live cells by two-photon fluorescence anisotropy imaging,” Nat. Protoc. 12(7), 1472–1497 (2017).
[Crossref]
A. Kress, X. Wang, H. Ranchon, J. Savatier, H. Rigneault, P. Ferrand, and S. Brasselet, “Mapping the Local Organization of Cell Membranes Using Excitation-Polarization-Resolved Confocal Fluorescence Microscopy,” Biophys. J. 105(1), 127–136 (2013).
[Crossref]
S. Brasselet, “Polarization-resolved nonlinear microscopy: application to structural molecular and biological imaging,” Adv. Opt. Photonics 3(3), 205 (2011).
[Crossref]
A. Gasecka, T.-J. Han, C. Favard, B. R. Cho, and S. Brasselet, “Quantitative Imaging of Molecular Order in Lipid Membranes Using Two-Photon Fluorescence Polarimetry,” Biophys. J. 97(10), 2854–2862 (2009).
[Crossref]
I. Micu, C. Brideau, L. Lu, and P. K. Stys, “Effects of laser polarization on responses of the fluorescent Ca2+ indicator X-Rhod-1 in neurons and myelin,” Neurophotonics 4(2), 025002 (2017).
[Crossref]
A. Kuznetsova, P. B. Brockhoff, and R. H. B. Christensen, “lmerTest Package: Tests in Linear Mixed Effects Models,” J. Stat. Soft. 82, 13 (2017).
[Crossref]
A. Gałecki and T. Burzykowski, Linear Mixed-Effects Models Using R: A Step-by-Step Approach, Springer Texts in Statistics (Springer-Verlag, 2013).
T. Kalwarczyk, N. Ziȩbacz, A. Bielejewska, E. Zaboklicka, K. Koynov, J. Szymański, A. Wilk, A. Patkowski, J. Gapiński, H.-J. Butt, and R. Hołyst, “Comparative Analysis of Viscosity of Complex Liquids and Cytoplasm of Mammalian Cells at the Nanoscale,” Nano Lett. 11(5), 2157–2163 (2011).
[Crossref]
S. Wolf, W. Supatto, G. Debrégeas, P. Mahou, S. G. Kruglik, J.-M. Sintes, E. Beaurepaire, and R. Candelier, “Whole-brain functional imaging with two-photon light-sheet microscopy,” Nat. Methods 12(5), 379–380 (2015).
[Crossref]
G. de Vito, V. Cappello, I. Tonazzini, M. Cecchini, and V. Piazza, “RP-CARS reveals molecular spatial order anomalies in myelin of an animal model of Krabbe disease,” J. Biophotonics 10(3), 385–393 (2017).
[Crossref]
G. de Vito, V. Cappello, I. Tonazzini, M. Cecchini, and V. Piazza, “RP-CARS reveals molecular spatial order anomalies in myelin of an animal model of Krabbe disease,” J. Biophotonics 10(3), 385–393 (2017).
[Crossref]
Z. Lavagnino, G. Sancataldo, M. d’Amora, P. Follert, D. De Pietri Tonelli, A. Diaspro, and F. Cella Zanacchi, “4D (x-y-z-t) imaging of thick biological samples by means of Two-Photon inverted Selective Plane Illumination Microscopy (2PE-iSPIM),” Sci. Rep. 6(1), 23923 (2016).
[Crossref]
G. Malkinson, P. Mahou, É. Chaudan, T. Gacoin, A. Y. Sonay, P. Pantazis, E. Beaurepaire, and W. Supatto, “Fast In Vivo Imaging of SHG Nanoprobes with Multiphoton Light-Sheet Microscopy,” ACS Photonics 7(4), 1036–1049 (2020).
[Crossref]
H. Mojzisova, J. Olesiak, M. Zielinski, K. Matczyszyn, D. Chauvat, and J. Zyss, “Polarization-Sensitive Two-Photon Microscopy Study of the Organization of Liquid-Crystalline DNA,” Biophys. J. 97(8), 2348–2357 (2009).
[Crossref]
A. Gasecka, T.-J. Han, C. Favard, B. R. Cho, and S. Brasselet, “Quantitative Imaging of Molecular Order in Lipid Membranes Using Two-Photon Fluorescence Polarimetry,” Biophys. J. 97(10), 2854–2862 (2009).
[Crossref]
T. V. Truong, W. Supatto, D. S. Koos, J. M. Choi, and S. E. Fraser, “Deep and fast live imaging with two-photon scanned light-sheet microscopy,” Nat. Methods 8(9), 757–760 (2011).
[Crossref]
A. Kuznetsova, P. B. Brockhoff, and R. H. B. Christensen, “lmerTest Package: Tests in Linear Mixed Effects Models,” J. Stat. Soft. 82, 13 (2017).
[Crossref]
Z. Lavagnino, G. Sancataldo, M. d’Amora, P. Follert, D. De Pietri Tonelli, A. Diaspro, and F. Cella Zanacchi, “4D (x-y-z-t) imaging of thick biological samples by means of Two-Photon inverted Selective Plane Illumination Microscopy (2PE-iSPIM),” Sci. Rep. 6(1), 23923 (2016).
[Crossref]
Z. Lavagnino, G. Sancataldo, M. d’Amora, P. Follert, D. De Pietri Tonelli, A. Diaspro, and F. Cella Zanacchi, “4D (x-y-z-t) imaging of thick biological samples by means of Two-Photon inverted Selective Plane Illumination Microscopy (2PE-iSPIM),” Sci. Rep. 6(1), 23923 (2016).
[Crossref]
G. Sancataldo, V. Gavryusev, G. de Vito, L. Turrini, M. Locatelli, C. Fornetto, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Flexible Multi-Beam Light-Sheet Fluorescence Microscope for Live Imaging Without Striping Artifacts,” Front. Neuroanat. 13, 7 (2019).
[Crossref]
V. Gavryusev, G. Sancataldo, P. Ricci, A. Montalbano, C. Fornetto, L. Turrini, A. Laurino, L. Pesce, G. de Vito, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Dual-beam confocal light-sheet microscopy via flexible acousto-optic deflector,” J. Biomed. Opt. 24(10), 106504 (2019).
[Crossref]
G. de Vito, V. Cappello, I. Tonazzini, M. Cecchini, and V. Piazza, “RP-CARS reveals molecular spatial order anomalies in myelin of an animal model of Krabbe disease,” J. Biophotonics 10(3), 385–393 (2017).
[Crossref]
G. de Vito, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, L. Turrini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon high-speed light-sheet volumetric imaging of brain activity during sleep in zebrafish larvae,” in Neural Imaging and Sensing 2020 (International Society for Optics and Photonics, 2020), Vol. 11226, p. 1122604.
G. de Vito, L. Turrini, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, E. Trabalzini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon light-sheet microscopy for high-speed whole-brain functional imaging of zebrafish neuronal physiology and pathology,” in Neurophotonics (International Society for Optics and Photonics, 2020), Vol. 11360, p. 1136004.
S. Wolf, W. Supatto, G. Debrégeas, P. Mahou, S. G. Kruglik, J.-M. Sintes, E. Beaurepaire, and R. Candelier, “Whole-brain functional imaging with two-photon light-sheet microscopy,” Nat. Methods 12(5), 379–380 (2015).
[Crossref]
Z. Lavagnino, G. Sancataldo, M. d’Amora, P. Follert, D. De Pietri Tonelli, A. Diaspro, and F. Cella Zanacchi, “4D (x-y-z-t) imaging of thick biological samples by means of Two-Photon inverted Selective Plane Illumination Microscopy (2PE-iSPIM),” Sci. Rep. 6(1), 23923 (2016).
[Crossref]
Z. Lavagnino, F. C. Zanacchi, E. Ronzitti, and A. Diaspro, “Two-photon excitation selective plane illumination microscopy (2PE-SPIM) of highly scattering samples: characterization and application,” Opt. Express 21(5), 5998–6008 (2013).
[Crossref]
F. C. Zanacchi, Z. Lavagnino, M. Pesce, F. Difato, E. Ronzitti, and A. Diaspro, “Two-photon fluorescence excitation within a light sheet based microscopy architecture,” in Multiphoton Microscopy in the Biomedical Sciences XI (International Society for Optics and Photonics, 2011), Vol. 7903, p. 79032W.
F. C. Zanacchi, Z. Lavagnino, M. Pesce, F. Difato, E. Ronzitti, and A. Diaspro, “Two-photon fluorescence excitation within a light sheet based microscopy architecture,” in Multiphoton Microscopy in the Biomedical Sciences XI (International Society for Optics and Photonics, 2011), Vol. 7903, p. 79032W.
C. Lorenzo, C. Frongia, R. Jorand, J. Fehrenbach, P. Weiss, A. Maandhui, G. Gay, B. Ducommun, and V. Lobjois, “Live cell division dynamics monitoring in 3D large spheroid tumor models using light sheet microscopy,” Cell Div. 6(1), 22 (2011).
[Crossref]
A. Anantharam, B. Onoa, R. H. Edwards, R. W. Holz, and D. Axelrod, “Localized topological changes of the plasma membrane upon exocytosis visualized by polarized TIRFM,” J. Cell Biol. 188(3), 415–428 (2010).
[Crossref]
G. de Vito, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, L. Turrini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon high-speed light-sheet volumetric imaging of brain activity during sleep in zebrafish larvae,” in Neural Imaging and Sensing 2020 (International Society for Optics and Photonics, 2020), Vol. 11226, p. 1122604.
G. de Vito, L. Turrini, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, E. Trabalzini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon light-sheet microscopy for high-speed whole-brain functional imaging of zebrafish neuronal physiology and pathology,” in Neurophotonics (International Society for Optics and Photonics, 2020), Vol. 11360, p. 1136004.
A. Gasecka, T.-J. Han, C. Favard, B. R. Cho, and S. Brasselet, “Quantitative Imaging of Molecular Order in Lipid Membranes Using Two-Photon Fluorescence Polarimetry,” Biophys. J. 97(10), 2854–2862 (2009).
[Crossref]
C. Lorenzo, C. Frongia, R. Jorand, J. Fehrenbach, P. Weiss, A. Maandhui, G. Gay, B. Ducommun, and V. Lobjois, “Live cell division dynamics monitoring in 3D large spheroid tumor models using light sheet microscopy,” Cell Div. 6(1), 22 (2011).
[Crossref]
A. Kress, X. Wang, H. Ranchon, J. Savatier, H. Rigneault, P. Ferrand, and S. Brasselet, “Mapping the Local Organization of Cell Membranes Using Excitation-Polarization-Resolved Confocal Fluorescence Microscopy,” Biophys. J. 105(1), 127–136 (2013).
[Crossref]
Z. Lavagnino, G. Sancataldo, M. d’Amora, P. Follert, D. De Pietri Tonelli, A. Diaspro, and F. Cella Zanacchi, “4D (x-y-z-t) imaging of thick biological samples by means of Two-Photon inverted Selective Plane Illumination Microscopy (2PE-iSPIM),” Sci. Rep. 6(1), 23923 (2016).
[Crossref]
G. Sancataldo, V. Gavryusev, G. de Vito, L. Turrini, M. Locatelli, C. Fornetto, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Flexible Multi-Beam Light-Sheet Fluorescence Microscope for Live Imaging Without Striping Artifacts,” Front. Neuroanat. 13, 7 (2019).
[Crossref]
V. Gavryusev, G. Sancataldo, P. Ricci, A. Montalbano, C. Fornetto, L. Turrini, A. Laurino, L. Pesce, G. de Vito, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Dual-beam confocal light-sheet microscopy via flexible acousto-optic deflector,” J. Biomed. Opt. 24(10), 106504 (2019).
[Crossref]
L. Turrini, C. Fornetto, G. Marchetto, M. C. Müllenbroich, N. Tiso, A. Vettori, F. Resta, A. Masi, G. Mannaioni, F. S. Pavone, and F. Vanzi, “Optical mapping of neuronal activity during seizures in zebrafish,” Sci. Rep. 7(1), 3025 (2017).
[Crossref]
G. de Vito, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, L. Turrini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon high-speed light-sheet volumetric imaging of brain activity during sleep in zebrafish larvae,” in Neural Imaging and Sensing 2020 (International Society for Optics and Photonics, 2020), Vol. 11226, p. 1122604.
G. de Vito, L. Turrini, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, E. Trabalzini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon light-sheet microscopy for high-speed whole-brain functional imaging of zebrafish neuronal physiology and pathology,” in Neurophotonics (International Society for Optics and Photonics, 2020), Vol. 11360, p. 1136004.
T. V. Truong, W. Supatto, D. S. Koos, J. M. Choi, and S. E. Fraser, “Deep and fast live imaging with two-photon scanned light-sheet microscopy,” Nat. Methods 8(9), 757–760 (2011).
[Crossref]
N. Vladimirov, Y. Mu, T. Kawashima, D. V. Bennett, C.-T. Yang, L. L. Looger, P. J. Keller, J. Freeman, and M. B. Ahrens, “Light-sheet functional imaging in fictively behaving zebrafish,” Nat. Methods 11(9), 883–884 (2014).
[Crossref]
C. Lorenzo, C. Frongia, R. Jorand, J. Fehrenbach, P. Weiss, A. Maandhui, G. Gay, B. Ducommun, and V. Lobjois, “Live cell division dynamics monitoring in 3D large spheroid tumor models using light sheet microscopy,” Cell Div. 6(1), 22 (2011).
[Crossref]
C. Vinegoni, P. Fumene Feruglio, C. Brand, S. Lee, A. E. Nibbs, S. Stapleton, S. Shah, I. Gryczynski, T. Reiner, R. Mazitschek, and R. Weissleder, “Measurement of drug-target engagement in live cells by two-photon fluorescence anisotropy imaging,” Nat. Protoc. 12(7), 1472–1497 (2017).
[Crossref]
V. Nucciotti, C. Stringari, L. Sacconi, F. Vanzi, L. Fusi, M. Linari, G. Piazzesi, V. Lombardi, and F. S. Pavone, “Probing myosin structural conformation in vivo by second-harmonic generation microscopy,” Proc. Natl. Acad. Sci. U. S. A. 107(17), 7763–7768 (2010).
[Crossref]
G. Malkinson, P. Mahou, É. Chaudan, T. Gacoin, A. Y. Sonay, P. Pantazis, E. Beaurepaire, and W. Supatto, “Fast In Vivo Imaging of SHG Nanoprobes with Multiphoton Light-Sheet Microscopy,” ACS Photonics 7(4), 1036–1049 (2020).
[Crossref]
A. Gałecki and T. Burzykowski, Linear Mixed-Effects Models Using R: A Step-by-Step Approach, Springer Texts in Statistics (Springer-Verlag, 2013).
T. Kalwarczyk, N. Ziȩbacz, A. Bielejewska, E. Zaboklicka, K. Koynov, J. Szymański, A. Wilk, A. Patkowski, J. Gapiński, H.-J. Butt, and R. Hołyst, “Comparative Analysis of Viscosity of Complex Liquids and Cytoplasm of Mammalian Cells at the Nanoscale,” Nano Lett. 11(5), 2157–2163 (2011).
[Crossref]
G. Steinbach, I. Pomozi, O. Zsiros, L. Menczel, and G. Garab, “Imaging anisotropy using differential polarization laser scanning confocal microscopy,” Acta Histochem. 111(4), 317–326 (2009).
[Crossref]
A. Gasecka, T.-J. Han, C. Favard, B. R. Cho, and S. Brasselet, “Quantitative Imaging of Molecular Order in Lipid Membranes Using Two-Photon Fluorescence Polarimetry,” Biophys. J. 97(10), 2854–2862 (2009).
[Crossref]
P. Ricci, G. Sancataldo, V. Gavryusev, A. Franceschini, M. C. Müllenbroich, L. Silvestri, and F. S. Pavone, “Fast multi-directional DSLM for confocal detection without striping artifacts,” Biomed. Opt. Express 11(6), 3111–3124 (2020).
[Crossref]
G. Sancataldo, V. Gavryusev, G. de Vito, L. Turrini, M. Locatelli, C. Fornetto, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Flexible Multi-Beam Light-Sheet Fluorescence Microscope for Live Imaging Without Striping Artifacts,” Front. Neuroanat. 13, 7 (2019).
[Crossref]
V. Gavryusev, G. Sancataldo, P. Ricci, A. Montalbano, C. Fornetto, L. Turrini, A. Laurino, L. Pesce, G. de Vito, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Dual-beam confocal light-sheet microscopy via flexible acousto-optic deflector,” J. Biomed. Opt. 24(10), 106504 (2019).
[Crossref]
C. Lorenzo, C. Frongia, R. Jorand, J. Fehrenbach, P. Weiss, A. Maandhui, G. Gay, B. Ducommun, and V. Lobjois, “Live cell division dynamics monitoring in 3D large spheroid tumor models using light sheet microscopy,” Cell Div. 6(1), 22 (2011).
[Crossref]
M. C. Müllenbroich, L. Turrini, L. Silvestri, T. Alterini, A. Gheisari, N. Tiso, F. Vanzi, L. Sacconi, and F. S. Pavone, “Bessel Beam Illumination Reduces Random and Systematic Errors in Quantitative Functional Studies Using Light-Sheet Microscopy,” Front. Cell. Neurosci. 12, 315 (2018).
[Crossref]
M. Göppert-Mayer, “Über Elementarakte mit zwei Quantensprüngen,” Ann. Phys. 401(3), 273–294 (1931).
[Crossref]
A. Nag and D. Goswami, “Polarization induced control of single and two-photon fluorescence,” J. Chem. Phys. 132(15), 154508 (2010).
[Crossref]
C. Vinegoni, P. Fumene Feruglio, C. Brand, S. Lee, A. E. Nibbs, S. Stapleton, S. Shah, I. Gryczynski, T. Reiner, R. Mazitschek, and R. Weissleder, “Measurement of drug-target engagement in live cells by two-photon fluorescence anisotropy imaging,” Nat. Protoc. 12(7), 1472–1497 (2017).
[Crossref]
A. Gasecka, T.-J. Han, C. Favard, B. R. Cho, and S. Brasselet, “Quantitative Imaging of Molecular Order in Lipid Membranes Using Two-Photon Fluorescence Polarimetry,” Biophys. J. 97(10), 2854–2862 (2009).
[Crossref]
R. Swaminathan, C. P. Hoang, and A. S. Verkman, “Photobleaching recovery and anisotropy decay of green fluorescent protein GFP-S65T in solution and cells: cytoplasmic viscosity probed by green fluorescent protein translational and rotational diffusion,” Biophys. J. 72(4), 1900–1907 (1997).
[Crossref]
J. Hohlbein and C. G. Hübner, “Three-dimensional orientation determination of the emission dipoles of single molecules: The shot-noise limit,” J. Chem. Phys. 129(9), 094703 (2008).
[Crossref]
T. Kalwarczyk, N. Ziȩbacz, A. Bielejewska, E. Zaboklicka, K. Koynov, J. Szymański, A. Wilk, A. Patkowski, J. Gapiński, H.-J. Butt, and R. Hołyst, “Comparative Analysis of Viscosity of Complex Liquids and Cytoplasm of Mammalian Cells at the Nanoscale,” Nano Lett. 11(5), 2157–2163 (2011).
[Crossref]
A. Anantharam, B. Onoa, R. H. Edwards, R. W. Holz, and D. Axelrod, “Localized topological changes of the plasma membrane upon exocytosis visualized by polarized TIRFM,” J. Cell Biol. 188(3), 415–428 (2010).
[Crossref]
K. Wang, N. G. Horton, and C. Xu, “Going Deep: Brain Imaging with Multi-Photon Microscopy,” Opt. Photonics News 24(11), 32–39 (2013).
[Crossref]
J. Hohlbein and C. G. Hübner, “Three-dimensional orientation determination of the emission dipoles of single molecules: The shot-noise limit,” J. Chem. Phys. 129(9), 094703 (2008).
[Crossref]
J. Huisken, J. Swoger, F. D. Bene, J. Wittbrodt, and E. H. K. Stelzer, “Optical Sectioning Deep Inside Live Embryos by Selective Plane Illumination Microscopy,” Science 305(5686), 1007–1009 (2004).
[Crossref]
C. Lorenzo, C. Frongia, R. Jorand, J. Fehrenbach, P. Weiss, A. Maandhui, G. Gay, B. Ducommun, and V. Lobjois, “Live cell division dynamics monitoring in 3D large spheroid tumor models using light sheet microscopy,” Cell Div. 6(1), 22 (2011).
[Crossref]
T. Kalwarczyk, N. Ziȩbacz, A. Bielejewska, E. Zaboklicka, K. Koynov, J. Szymański, A. Wilk, A. Patkowski, J. Gapiński, H.-J. Butt, and R. Hołyst, “Comparative Analysis of Viscosity of Complex Liquids and Cytoplasm of Mammalian Cells at the Nanoscale,” Nano Lett. 11(5), 2157–2163 (2011).
[Crossref]
N. Vladimirov, Y. Mu, T. Kawashima, D. V. Bennett, C.-T. Yang, L. L. Looger, P. J. Keller, J. Freeman, and M. B. Ahrens, “Light-sheet functional imaging in fictively behaving zebrafish,” Nat. Methods 11(9), 883–884 (2014).
[Crossref]
N. Vladimirov, Y. Mu, T. Kawashima, D. V. Bennett, C.-T. Yang, L. L. Looger, P. J. Keller, J. Freeman, and M. B. Ahrens, “Light-sheet functional imaging in fictively behaving zebrafish,” Nat. Methods 11(9), 883–884 (2014).
[Crossref]
T. V. Truong, W. Supatto, D. S. Koos, J. M. Choi, and S. E. Fraser, “Deep and fast live imaging with two-photon scanned light-sheet microscopy,” Nat. Methods 8(9), 757–760 (2011).
[Crossref]
T. Kalwarczyk, N. Ziȩbacz, A. Bielejewska, E. Zaboklicka, K. Koynov, J. Szymański, A. Wilk, A. Patkowski, J. Gapiński, H.-J. Butt, and R. Hołyst, “Comparative Analysis of Viscosity of Complex Liquids and Cytoplasm of Mammalian Cells at the Nanoscale,” Nano Lett. 11(5), 2157–2163 (2011).
[Crossref]
A. Kress, X. Wang, H. Ranchon, J. Savatier, H. Rigneault, P. Ferrand, and S. Brasselet, “Mapping the Local Organization of Cell Membranes Using Excitation-Polarization-Resolved Confocal Fluorescence Microscopy,” Biophys. J. 105(1), 127–136 (2013).
[Crossref]
S. Wolf, W. Supatto, G. Debrégeas, P. Mahou, S. G. Kruglik, J.-M. Sintes, E. Beaurepaire, and R. Candelier, “Whole-brain functional imaging with two-photon light-sheet microscopy,” Nat. Methods 12(5), 379–380 (2015).
[Crossref]
A. Kuznetsova, P. B. Brockhoff, and R. H. B. Christensen, “lmerTest Package: Tests in Linear Mixed Effects Models,” J. Stat. Soft. 82, 13 (2017).
[Crossref]
J. R. Lakowicz, Principles of Fluorescence Spectroscopy (Springer Science & Business Media, 2013).
V. Gavryusev, G. Sancataldo, P. Ricci, A. Montalbano, C. Fornetto, L. Turrini, A. Laurino, L. Pesce, G. de Vito, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Dual-beam confocal light-sheet microscopy via flexible acousto-optic deflector,” J. Biomed. Opt. 24(10), 106504 (2019).
[Crossref]
Z. Lavagnino, G. Sancataldo, M. d’Amora, P. Follert, D. De Pietri Tonelli, A. Diaspro, and F. Cella Zanacchi, “4D (x-y-z-t) imaging of thick biological samples by means of Two-Photon inverted Selective Plane Illumination Microscopy (2PE-iSPIM),” Sci. Rep. 6(1), 23923 (2016).
[Crossref]
Z. Lavagnino, F. C. Zanacchi, E. Ronzitti, and A. Diaspro, “Two-photon excitation selective plane illumination microscopy (2PE-SPIM) of highly scattering samples: characterization and application,” Opt. Express 21(5), 5998–6008 (2013).
[Crossref]
F. C. Zanacchi, Z. Lavagnino, M. Pesce, F. Difato, E. Ronzitti, and A. Diaspro, “Two-photon fluorescence excitation within a light sheet based microscopy architecture,” in Multiphoton Microscopy in the Biomedical Sciences XI (International Society for Optics and Photonics, 2011), Vol. 7903, p. 79032W.
C. Vinegoni, P. Fumene Feruglio, C. Brand, S. Lee, A. E. Nibbs, S. Stapleton, S. Shah, I. Gryczynski, T. Reiner, R. Mazitschek, and R. Weissleder, “Measurement of drug-target engagement in live cells by two-photon fluorescence anisotropy imaging,” Nat. Protoc. 12(7), 1472–1497 (2017).
[Crossref]
V. Nucciotti, C. Stringari, L. Sacconi, F. Vanzi, L. Fusi, M. Linari, G. Piazzesi, V. Lombardi, and F. S. Pavone, “Probing myosin structural conformation in vivo by second-harmonic generation microscopy,” Proc. Natl. Acad. Sci. U. S. A. 107(17), 7763–7768 (2010).
[Crossref]
C. Lorenzo, C. Frongia, R. Jorand, J. Fehrenbach, P. Weiss, A. Maandhui, G. Gay, B. Ducommun, and V. Lobjois, “Live cell division dynamics monitoring in 3D large spheroid tumor models using light sheet microscopy,” Cell Div. 6(1), 22 (2011).
[Crossref]
G. Sancataldo, V. Gavryusev, G. de Vito, L. Turrini, M. Locatelli, C. Fornetto, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Flexible Multi-Beam Light-Sheet Fluorescence Microscope for Live Imaging Without Striping Artifacts,” Front. Neuroanat. 13, 7 (2019).
[Crossref]
V. Nucciotti, C. Stringari, L. Sacconi, F. Vanzi, L. Fusi, M. Linari, G. Piazzesi, V. Lombardi, and F. S. Pavone, “Probing myosin structural conformation in vivo by second-harmonic generation microscopy,” Proc. Natl. Acad. Sci. U. S. A. 107(17), 7763–7768 (2010).
[Crossref]
N. Vladimirov, Y. Mu, T. Kawashima, D. V. Bennett, C.-T. Yang, L. L. Looger, P. J. Keller, J. Freeman, and M. B. Ahrens, “Light-sheet functional imaging in fictively behaving zebrafish,” Nat. Methods 11(9), 883–884 (2014).
[Crossref]
C. Lorenzo, C. Frongia, R. Jorand, J. Fehrenbach, P. Weiss, A. Maandhui, G. Gay, B. Ducommun, and V. Lobjois, “Live cell division dynamics monitoring in 3D large spheroid tumor models using light sheet microscopy,” Cell Div. 6(1), 22 (2011).
[Crossref]
J. Palero, S. I. C. O. Santos, D. Artigas, and P. Loza-Alvarez, “A simple scanless two-photon fluorescence microscope using selective plane illumination,” Opt. Express 18(8), 8491–8498 (2010).
[Crossref]
S. Psilodimitrakopoulos, V. Petegnief, G. Soria, I. Amat-Roldan, D. Artigas, A. M. Planas, and P. Loza-Alvarez, “Polarization second harmonic generation (PSHG) imaging of neurons: estimating the effective orientation of the SHG source in axons,” in Multiphoton Microscopy in the Biomedical Sciences X (International Society for Optics and Photonics, 2010), Vol. 7569, p. 75692W.
I. Micu, C. Brideau, L. Lu, and P. K. Stys, “Effects of laser polarization on responses of the fluorescent Ca2+ indicator X-Rhod-1 in neurons and myelin,” Neurophotonics 4(2), 025002 (2017).
[Crossref]
C. Lorenzo, C. Frongia, R. Jorand, J. Fehrenbach, P. Weiss, A. Maandhui, G. Gay, B. Ducommun, and V. Lobjois, “Live cell division dynamics monitoring in 3D large spheroid tumor models using light sheet microscopy,” Cell Div. 6(1), 22 (2011).
[Crossref]
F. Maderspacher and C. Nüsslein-Volhard, “Formation of the adult pigment pattern in zebrafish requires leopard and obelix dependent cell interactions,” Development 130(15), 3447–3457 (2003).
[Crossref]
D. Magde, G. E. Rojas, and P. G. Seybold, “Solvent Dependence of the Fluorescence Lifetimes of Xanthene Dyes,” Photochem. Photobiol. 70(5), 737–744 (1999).
[Crossref]
G. Malkinson, P. Mahou, É. Chaudan, T. Gacoin, A. Y. Sonay, P. Pantazis, E. Beaurepaire, and W. Supatto, “Fast In Vivo Imaging of SHG Nanoprobes with Multiphoton Light-Sheet Microscopy,” ACS Photonics 7(4), 1036–1049 (2020).
[Crossref]
S. Wolf, W. Supatto, G. Debrégeas, P. Mahou, S. G. Kruglik, J.-M. Sintes, E. Beaurepaire, and R. Candelier, “Whole-brain functional imaging with two-photon light-sheet microscopy,” Nat. Methods 12(5), 379–380 (2015).
[Crossref]
G. Malkinson, P. Mahou, É. Chaudan, T. Gacoin, A. Y. Sonay, P. Pantazis, E. Beaurepaire, and W. Supatto, “Fast In Vivo Imaging of SHG Nanoprobes with Multiphoton Light-Sheet Microscopy,” ACS Photonics 7(4), 1036–1049 (2020).
[Crossref]
L. Turrini, C. Fornetto, G. Marchetto, M. C. Müllenbroich, N. Tiso, A. Vettori, F. Resta, A. Masi, G. Mannaioni, F. S. Pavone, and F. Vanzi, “Optical mapping of neuronal activity during seizures in zebrafish,” Sci. Rep. 7(1), 3025 (2017).
[Crossref]
L. Turrini, C. Fornetto, G. Marchetto, M. C. Müllenbroich, N. Tiso, A. Vettori, F. Resta, A. Masi, G. Mannaioni, F. S. Pavone, and F. Vanzi, “Optical mapping of neuronal activity during seizures in zebrafish,” Sci. Rep. 7(1), 3025 (2017).
[Crossref]
L. Turrini, C. Fornetto, G. Marchetto, M. C. Müllenbroich, N. Tiso, A. Vettori, F. Resta, A. Masi, G. Mannaioni, F. S. Pavone, and F. Vanzi, “Optical mapping of neuronal activity during seizures in zebrafish,” Sci. Rep. 7(1), 3025 (2017).
[Crossref]
H. Mojzisova, J. Olesiak, M. Zielinski, K. Matczyszyn, D. Chauvat, and J. Zyss, “Polarization-Sensitive Two-Photon Microscopy Study of the Organization of Liquid-Crystalline DNA,” Biophys. J. 97(8), 2348–2357 (2009).
[Crossref]
C. Vinegoni, P. Fumene Feruglio, C. Brand, S. Lee, A. E. Nibbs, S. Stapleton, S. Shah, I. Gryczynski, T. Reiner, R. Mazitschek, and R. Weissleder, “Measurement of drug-target engagement in live cells by two-photon fluorescence anisotropy imaging,” Nat. Protoc. 12(7), 1472–1497 (2017).
[Crossref]
G. de Vito, L. Turrini, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, E. Trabalzini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon light-sheet microscopy for high-speed whole-brain functional imaging of zebrafish neuronal physiology and pathology,” in Neurophotonics (International Society for Optics and Photonics, 2020), Vol. 11360, p. 1136004.
G. de Vito, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, L. Turrini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon high-speed light-sheet volumetric imaging of brain activity during sleep in zebrafish larvae,” in Neural Imaging and Sensing 2020 (International Society for Optics and Photonics, 2020), Vol. 11226, p. 1122604.
G. Steinbach, I. Pomozi, O. Zsiros, L. Menczel, and G. Garab, “Imaging anisotropy using differential polarization laser scanning confocal microscopy,” Acta Histochem. 111(4), 317–326 (2009).
[Crossref]
I. Micu, C. Brideau, L. Lu, and P. K. Stys, “Effects of laser polarization on responses of the fluorescent Ca2+ indicator X-Rhod-1 in neurons and myelin,” Neurophotonics 4(2), 025002 (2017).
[Crossref]
H. Mojzisova, J. Olesiak, M. Zielinski, K. Matczyszyn, D. Chauvat, and J. Zyss, “Polarization-Sensitive Two-Photon Microscopy Study of the Organization of Liquid-Crystalline DNA,” Biophys. J. 97(8), 2348–2357 (2009).
[Crossref]
V. Gavryusev, G. Sancataldo, P. Ricci, A. Montalbano, C. Fornetto, L. Turrini, A. Laurino, L. Pesce, G. de Vito, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Dual-beam confocal light-sheet microscopy via flexible acousto-optic deflector,” J. Biomed. Opt. 24(10), 106504 (2019).
[Crossref]
N. Vladimirov, Y. Mu, T. Kawashima, D. V. Bennett, C.-T. Yang, L. L. Looger, P. J. Keller, J. Freeman, and M. B. Ahrens, “Light-sheet functional imaging in fictively behaving zebrafish,” Nat. Methods 11(9), 883–884 (2014).
[Crossref]
G. de Vito, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, L. Turrini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon high-speed light-sheet volumetric imaging of brain activity during sleep in zebrafish larvae,” in Neural Imaging and Sensing 2020 (International Society for Optics and Photonics, 2020), Vol. 11226, p. 1122604.
G. de Vito, L. Turrini, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, E. Trabalzini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon light-sheet microscopy for high-speed whole-brain functional imaging of zebrafish neuronal physiology and pathology,” in Neurophotonics (International Society for Optics and Photonics, 2020), Vol. 11360, p. 1136004.
P. Ricci, G. Sancataldo, V. Gavryusev, A. Franceschini, M. C. Müllenbroich, L. Silvestri, and F. S. Pavone, “Fast multi-directional DSLM for confocal detection without striping artifacts,” Biomed. Opt. Express 11(6), 3111–3124 (2020).
[Crossref]
M. C. Müllenbroich, L. Turrini, L. Silvestri, T. Alterini, A. Gheisari, N. Tiso, F. Vanzi, L. Sacconi, and F. S. Pavone, “Bessel Beam Illumination Reduces Random and Systematic Errors in Quantitative Functional Studies Using Light-Sheet Microscopy,” Front. Cell. Neurosci. 12, 315 (2018).
[Crossref]
L. Turrini, C. Fornetto, G. Marchetto, M. C. Müllenbroich, N. Tiso, A. Vettori, F. Resta, A. Masi, G. Mannaioni, F. S. Pavone, and F. Vanzi, “Optical mapping of neuronal activity during seizures in zebrafish,” Sci. Rep. 7(1), 3025 (2017).
[Crossref]
A. Nag and D. Goswami, “Polarization induced control of single and two-photon fluorescence,” J. Chem. Phys. 132(15), 154508 (2010).
[Crossref]
T. A. Nguyen, H. L. Puhl, A. K. Pham, and S. S. Vogel, “Auto-FPFA: An Automated Microscope for Characterizing Genetically Encoded Biosensors,” Sci. Rep. 8(1), 7374 (2018).
[Crossref]
C. Vinegoni, P. Fumene Feruglio, C. Brand, S. Lee, A. E. Nibbs, S. Stapleton, S. Shah, I. Gryczynski, T. Reiner, R. Mazitschek, and R. Weissleder, “Measurement of drug-target engagement in live cells by two-photon fluorescence anisotropy imaging,” Nat. Protoc. 12(7), 1472–1497 (2017).
[Crossref]
V. Nucciotti, C. Stringari, L. Sacconi, F. Vanzi, L. Fusi, M. Linari, G. Piazzesi, V. Lombardi, and F. S. Pavone, “Probing myosin structural conformation in vivo by second-harmonic generation microscopy,” Proc. Natl. Acad. Sci. U. S. A. 107(17), 7763–7768 (2010).
[Crossref]
F. Maderspacher and C. Nüsslein-Volhard, “Formation of the adult pigment pattern in zebrafish requires leopard and obelix dependent cell interactions,” Development 130(15), 3447–3457 (2003).
[Crossref]
M. Zimmerley, R. Younger, T. Valenton, D. C. Oertel, J. L. Ward, and E. O. Potma, “Molecular Orientation in Dry and Hydrated Cellulose Fibers: A Coherent Anti-Stokes Raman Scattering Microscopy Study,” J. Phys. Chem. B 114(31), 10200–10208 (2010).
[Crossref]
H. Mojzisova, J. Olesiak, M. Zielinski, K. Matczyszyn, D. Chauvat, and J. Zyss, “Polarization-Sensitive Two-Photon Microscopy Study of the Organization of Liquid-Crystalline DNA,” Biophys. J. 97(8), 2348–2357 (2009).
[Crossref]
A. Anantharam, B. Onoa, R. H. Edwards, R. W. Holz, and D. Axelrod, “Localized topological changes of the plasma membrane upon exocytosis visualized by polarized TIRFM,” J. Cell Biol. 188(3), 415–428 (2010).
[Crossref]
G. Malkinson, P. Mahou, É. Chaudan, T. Gacoin, A. Y. Sonay, P. Pantazis, E. Beaurepaire, and W. Supatto, “Fast In Vivo Imaging of SHG Nanoprobes with Multiphoton Light-Sheet Microscopy,” ACS Photonics 7(4), 1036–1049 (2020).
[Crossref]
T. Kalwarczyk, N. Ziȩbacz, A. Bielejewska, E. Zaboklicka, K. Koynov, J. Szymański, A. Wilk, A. Patkowski, J. Gapiński, H.-J. Butt, and R. Hołyst, “Comparative Analysis of Viscosity of Complex Liquids and Cytoplasm of Mammalian Cells at the Nanoscale,” Nano Lett. 11(5), 2157–2163 (2011).
[Crossref]
P. Ricci, G. Sancataldo, V. Gavryusev, A. Franceschini, M. C. Müllenbroich, L. Silvestri, and F. S. Pavone, “Fast multi-directional DSLM for confocal detection without striping artifacts,” Biomed. Opt. Express 11(6), 3111–3124 (2020).
[Crossref]
G. Sancataldo, V. Gavryusev, G. de Vito, L. Turrini, M. Locatelli, C. Fornetto, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Flexible Multi-Beam Light-Sheet Fluorescence Microscope for Live Imaging Without Striping Artifacts,” Front. Neuroanat. 13, 7 (2019).
[Crossref]
V. Gavryusev, G. Sancataldo, P. Ricci, A. Montalbano, C. Fornetto, L. Turrini, A. Laurino, L. Pesce, G. de Vito, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Dual-beam confocal light-sheet microscopy via flexible acousto-optic deflector,” J. Biomed. Opt. 24(10), 106504 (2019).
[Crossref]
M. C. Müllenbroich, L. Turrini, L. Silvestri, T. Alterini, A. Gheisari, N. Tiso, F. Vanzi, L. Sacconi, and F. S. Pavone, “Bessel Beam Illumination Reduces Random and Systematic Errors in Quantitative Functional Studies Using Light-Sheet Microscopy,” Front. Cell. Neurosci. 12, 315 (2018).
[Crossref]
L. Turrini, C. Fornetto, G. Marchetto, M. C. Müllenbroich, N. Tiso, A. Vettori, F. Resta, A. Masi, G. Mannaioni, F. S. Pavone, and F. Vanzi, “Optical mapping of neuronal activity during seizures in zebrafish,” Sci. Rep. 7(1), 3025 (2017).
[Crossref]
V. Nucciotti, C. Stringari, L. Sacconi, F. Vanzi, L. Fusi, M. Linari, G. Piazzesi, V. Lombardi, and F. S. Pavone, “Probing myosin structural conformation in vivo by second-harmonic generation microscopy,” Proc. Natl. Acad. Sci. U. S. A. 107(17), 7763–7768 (2010).
[Crossref]
G. de Vito, L. Turrini, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, E. Trabalzini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon light-sheet microscopy for high-speed whole-brain functional imaging of zebrafish neuronal physiology and pathology,” in Neurophotonics (International Society for Optics and Photonics, 2020), Vol. 11360, p. 1136004.
G. de Vito, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, L. Turrini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon high-speed light-sheet volumetric imaging of brain activity during sleep in zebrafish larvae,” in Neural Imaging and Sensing 2020 (International Society for Optics and Photonics, 2020), Vol. 11226, p. 1122604.
V. Gavryusev, G. Sancataldo, P. Ricci, A. Montalbano, C. Fornetto, L. Turrini, A. Laurino, L. Pesce, G. de Vito, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Dual-beam confocal light-sheet microscopy via flexible acousto-optic deflector,” J. Biomed. Opt. 24(10), 106504 (2019).
[Crossref]
F. C. Zanacchi, Z. Lavagnino, M. Pesce, F. Difato, E. Ronzitti, and A. Diaspro, “Two-photon fluorescence excitation within a light sheet based microscopy architecture,” in Multiphoton Microscopy in the Biomedical Sciences XI (International Society for Optics and Photonics, 2011), Vol. 7903, p. 79032W.
S. Psilodimitrakopoulos, V. Petegnief, G. Soria, I. Amat-Roldan, D. Artigas, A. M. Planas, and P. Loza-Alvarez, “Polarization second harmonic generation (PSHG) imaging of neurons: estimating the effective orientation of the SHG source in axons,” in Multiphoton Microscopy in the Biomedical Sciences X (International Society for Optics and Photonics, 2010), Vol. 7569, p. 75692W.
T. A. Nguyen, H. L. Puhl, A. K. Pham, and S. S. Vogel, “Auto-FPFA: An Automated Microscope for Characterizing Genetically Encoded Biosensors,” Sci. Rep. 8(1), 7374 (2018).
[Crossref]
G. de Vito, V. Cappello, I. Tonazzini, M. Cecchini, and V. Piazza, “RP-CARS reveals molecular spatial order anomalies in myelin of an animal model of Krabbe disease,” J. Biophotonics 10(3), 385–393 (2017).
[Crossref]
V. Nucciotti, C. Stringari, L. Sacconi, F. Vanzi, L. Fusi, M. Linari, G. Piazzesi, V. Lombardi, and F. S. Pavone, “Probing myosin structural conformation in vivo by second-harmonic generation microscopy,” Proc. Natl. Acad. Sci. U. S. A. 107(17), 7763–7768 (2010).
[Crossref]
S. Psilodimitrakopoulos, V. Petegnief, G. Soria, I. Amat-Roldan, D. Artigas, A. M. Planas, and P. Loza-Alvarez, “Polarization second harmonic generation (PSHG) imaging of neurons: estimating the effective orientation of the SHG source in axons,” in Multiphoton Microscopy in the Biomedical Sciences X (International Society for Optics and Photonics, 2010), Vol. 7569, p. 75692W.
G. Steinbach, I. Pomozi, O. Zsiros, L. Menczel, and G. Garab, “Imaging anisotropy using differential polarization laser scanning confocal microscopy,” Acta Histochem. 111(4), 317–326 (2009).
[Crossref]
M. Zimmerley, R. Younger, T. Valenton, D. C. Oertel, J. L. Ward, and E. O. Potma, “Molecular Orientation in Dry and Hydrated Cellulose Fibers: A Coherent Anti-Stokes Raman Scattering Microscopy Study,” J. Phys. Chem. B 114(31), 10200–10208 (2010).
[Crossref]
S. Psilodimitrakopoulos, V. Petegnief, G. Soria, I. Amat-Roldan, D. Artigas, A. M. Planas, and P. Loza-Alvarez, “Polarization second harmonic generation (PSHG) imaging of neurons: estimating the effective orientation of the SHG source in axons,” in Multiphoton Microscopy in the Biomedical Sciences X (International Society for Optics and Photonics, 2010), Vol. 7569, p. 75692W.
T. A. Nguyen, H. L. Puhl, A. K. Pham, and S. S. Vogel, “Auto-FPFA: An Automated Microscope for Characterizing Genetically Encoded Biosensors,” Sci. Rep. 8(1), 7374 (2018).
[Crossref]
A. Kress, X. Wang, H. Ranchon, J. Savatier, H. Rigneault, P. Ferrand, and S. Brasselet, “Mapping the Local Organization of Cell Membranes Using Excitation-Polarization-Resolved Confocal Fluorescence Microscopy,” Biophys. J. 105(1), 127–136 (2013).
[Crossref]
C. Vinegoni, P. Fumene Feruglio, C. Brand, S. Lee, A. E. Nibbs, S. Stapleton, S. Shah, I. Gryczynski, T. Reiner, R. Mazitschek, and R. Weissleder, “Measurement of drug-target engagement in live cells by two-photon fluorescence anisotropy imaging,” Nat. Protoc. 12(7), 1472–1497 (2017).
[Crossref]
L. Turrini, C. Fornetto, G. Marchetto, M. C. Müllenbroich, N. Tiso, A. Vettori, F. Resta, A. Masi, G. Mannaioni, F. S. Pavone, and F. Vanzi, “Optical mapping of neuronal activity during seizures in zebrafish,” Sci. Rep. 7(1), 3025 (2017).
[Crossref]
P. Ricci, G. Sancataldo, V. Gavryusev, A. Franceschini, M. C. Müllenbroich, L. Silvestri, and F. S. Pavone, “Fast multi-directional DSLM for confocal detection without striping artifacts,” Biomed. Opt. Express 11(6), 3111–3124 (2020).
[Crossref]
V. Gavryusev, G. Sancataldo, P. Ricci, A. Montalbano, C. Fornetto, L. Turrini, A. Laurino, L. Pesce, G. de Vito, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Dual-beam confocal light-sheet microscopy via flexible acousto-optic deflector,” J. Biomed. Opt. 24(10), 106504 (2019).
[Crossref]
G. de Vito, L. Turrini, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, E. Trabalzini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon light-sheet microscopy for high-speed whole-brain functional imaging of zebrafish neuronal physiology and pathology,” in Neurophotonics (International Society for Optics and Photonics, 2020), Vol. 11360, p. 1136004.
G. de Vito, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, L. Turrini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon high-speed light-sheet volumetric imaging of brain activity during sleep in zebrafish larvae,” in Neural Imaging and Sensing 2020 (International Society for Optics and Photonics, 2020), Vol. 11226, p. 1122604.
A. Kress, X. Wang, H. Ranchon, J. Savatier, H. Rigneault, P. Ferrand, and S. Brasselet, “Mapping the Local Organization of Cell Membranes Using Excitation-Polarization-Resolved Confocal Fluorescence Microscopy,” Biophys. J. 105(1), 127–136 (2013).
[Crossref]
D. Magde, G. E. Rojas, and P. G. Seybold, “Solvent Dependence of the Fluorescence Lifetimes of Xanthene Dyes,” Photochem. Photobiol. 70(5), 737–744 (1999).
[Crossref]
Z. Lavagnino, F. C. Zanacchi, E. Ronzitti, and A. Diaspro, “Two-photon excitation selective plane illumination microscopy (2PE-SPIM) of highly scattering samples: characterization and application,” Opt. Express 21(5), 5998–6008 (2013).
[Crossref]
F. C. Zanacchi, Z. Lavagnino, M. Pesce, F. Difato, E. Ronzitti, and A. Diaspro, “Two-photon fluorescence excitation within a light sheet based microscopy architecture,” in Multiphoton Microscopy in the Biomedical Sciences XI (International Society for Optics and Photonics, 2011), Vol. 7903, p. 79032W.
M. C. Müllenbroich, L. Turrini, L. Silvestri, T. Alterini, A. Gheisari, N. Tiso, F. Vanzi, L. Sacconi, and F. S. Pavone, “Bessel Beam Illumination Reduces Random and Systematic Errors in Quantitative Functional Studies Using Light-Sheet Microscopy,” Front. Cell. Neurosci. 12, 315 (2018).
[Crossref]
V. Nucciotti, C. Stringari, L. Sacconi, F. Vanzi, L. Fusi, M. Linari, G. Piazzesi, V. Lombardi, and F. S. Pavone, “Probing myosin structural conformation in vivo by second-harmonic generation microscopy,” Proc. Natl. Acad. Sci. U. S. A. 107(17), 7763–7768 (2010).
[Crossref]
G. de Vito, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, L. Turrini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon high-speed light-sheet volumetric imaging of brain activity during sleep in zebrafish larvae,” in Neural Imaging and Sensing 2020 (International Society for Optics and Photonics, 2020), Vol. 11226, p. 1122604.
G. de Vito, L. Turrini, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, E. Trabalzini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon light-sheet microscopy for high-speed whole-brain functional imaging of zebrafish neuronal physiology and pathology,” in Neurophotonics (International Society for Optics and Photonics, 2020), Vol. 11360, p. 1136004.
P. Ricci, G. Sancataldo, V. Gavryusev, A. Franceschini, M. C. Müllenbroich, L. Silvestri, and F. S. Pavone, “Fast multi-directional DSLM for confocal detection without striping artifacts,” Biomed. Opt. Express 11(6), 3111–3124 (2020).
[Crossref]
G. Sancataldo, V. Gavryusev, G. de Vito, L. Turrini, M. Locatelli, C. Fornetto, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Flexible Multi-Beam Light-Sheet Fluorescence Microscope for Live Imaging Without Striping Artifacts,” Front. Neuroanat. 13, 7 (2019).
[Crossref]
V. Gavryusev, G. Sancataldo, P. Ricci, A. Montalbano, C. Fornetto, L. Turrini, A. Laurino, L. Pesce, G. de Vito, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Dual-beam confocal light-sheet microscopy via flexible acousto-optic deflector,” J. Biomed. Opt. 24(10), 106504 (2019).
[Crossref]
Z. Lavagnino, G. Sancataldo, M. d’Amora, P. Follert, D. De Pietri Tonelli, A. Diaspro, and F. Cella Zanacchi, “4D (x-y-z-t) imaging of thick biological samples by means of Two-Photon inverted Selective Plane Illumination Microscopy (2PE-iSPIM),” Sci. Rep. 6(1), 23923 (2016).
[Crossref]
G. de Vito, L. Turrini, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, E. Trabalzini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon light-sheet microscopy for high-speed whole-brain functional imaging of zebrafish neuronal physiology and pathology,” in Neurophotonics (International Society for Optics and Photonics, 2020), Vol. 11360, p. 1136004.
G. de Vito, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, L. Turrini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon high-speed light-sheet volumetric imaging of brain activity during sleep in zebrafish larvae,” in Neural Imaging and Sensing 2020 (International Society for Optics and Photonics, 2020), Vol. 11226, p. 1122604.
P. A. Santi, “Light Sheet Fluorescence Microscopy: A Review,” J. Histochem. Cytochem. 59(2), 129–138 (2011).
[Crossref]
A. Kress, X. Wang, H. Ranchon, J. Savatier, H. Rigneault, P. Ferrand, and S. Brasselet, “Mapping the Local Organization of Cell Membranes Using Excitation-Polarization-Resolved Confocal Fluorescence Microscopy,” Biophys. J. 105(1), 127–136 (2013).
[Crossref]
D. Magde, G. E. Rojas, and P. G. Seybold, “Solvent Dependence of the Fluorescence Lifetimes of Xanthene Dyes,” Photochem. Photobiol. 70(5), 737–744 (1999).
[Crossref]
C. Vinegoni, P. Fumene Feruglio, C. Brand, S. Lee, A. E. Nibbs, S. Stapleton, S. Shah, I. Gryczynski, T. Reiner, R. Mazitschek, and R. Weissleder, “Measurement of drug-target engagement in live cells by two-photon fluorescence anisotropy imaging,” Nat. Protoc. 12(7), 1472–1497 (2017).
[Crossref]
B. R. Sorensen and M. A. Shea, “Calcium binding decreases the stokes radius of calmodulin and mutants R74A, R90A, and R90G,” Biophys. J. 71(6), 3407–3420 (1996).
[Crossref]
H. Siedentopf and R. Zsigmondy, “Visualisation and determination of size of ultra microscopic particles, with special use of Goldrubin glasses,” Ann. Phys. 315(1), 1–39 (1902).
[Crossref]
P. Ricci, G. Sancataldo, V. Gavryusev, A. Franceschini, M. C. Müllenbroich, L. Silvestri, and F. S. Pavone, “Fast multi-directional DSLM for confocal detection without striping artifacts,” Biomed. Opt. Express 11(6), 3111–3124 (2020).
[Crossref]
G. Sancataldo, V. Gavryusev, G. de Vito, L. Turrini, M. Locatelli, C. Fornetto, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Flexible Multi-Beam Light-Sheet Fluorescence Microscope for Live Imaging Without Striping Artifacts,” Front. Neuroanat. 13, 7 (2019).
[Crossref]
V. Gavryusev, G. Sancataldo, P. Ricci, A. Montalbano, C. Fornetto, L. Turrini, A. Laurino, L. Pesce, G. de Vito, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Dual-beam confocal light-sheet microscopy via flexible acousto-optic deflector,” J. Biomed. Opt. 24(10), 106504 (2019).
[Crossref]
M. C. Müllenbroich, L. Turrini, L. Silvestri, T. Alterini, A. Gheisari, N. Tiso, F. Vanzi, L. Sacconi, and F. S. Pavone, “Bessel Beam Illumination Reduces Random and Systematic Errors in Quantitative Functional Studies Using Light-Sheet Microscopy,” Front. Cell. Neurosci. 12, 315 (2018).
[Crossref]
G. de Vito, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, L. Turrini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon high-speed light-sheet volumetric imaging of brain activity during sleep in zebrafish larvae,” in Neural Imaging and Sensing 2020 (International Society for Optics and Photonics, 2020), Vol. 11226, p. 1122604.
G. de Vito, L. Turrini, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, E. Trabalzini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon light-sheet microscopy for high-speed whole-brain functional imaging of zebrafish neuronal physiology and pathology,” in Neurophotonics (International Society for Optics and Photonics, 2020), Vol. 11360, p. 1136004.
S. Wolf, W. Supatto, G. Debrégeas, P. Mahou, S. G. Kruglik, J.-M. Sintes, E. Beaurepaire, and R. Candelier, “Whole-brain functional imaging with two-photon light-sheet microscopy,” Nat. Methods 12(5), 379–380 (2015).
[Crossref]
G. Malkinson, P. Mahou, É. Chaudan, T. Gacoin, A. Y. Sonay, P. Pantazis, E. Beaurepaire, and W. Supatto, “Fast In Vivo Imaging of SHG Nanoprobes with Multiphoton Light-Sheet Microscopy,” ACS Photonics 7(4), 1036–1049 (2020).
[Crossref]
B. R. Sorensen and M. A. Shea, “Calcium binding decreases the stokes radius of calmodulin and mutants R74A, R90A, and R90G,” Biophys. J. 71(6), 3407–3420 (1996).
[Crossref]
S. Psilodimitrakopoulos, V. Petegnief, G. Soria, I. Amat-Roldan, D. Artigas, A. M. Planas, and P. Loza-Alvarez, “Polarization second harmonic generation (PSHG) imaging of neurons: estimating the effective orientation of the SHG source in axons,” in Multiphoton Microscopy in the Biomedical Sciences X (International Society for Optics and Photonics, 2010), Vol. 7569, p. 75692W.
C. Vinegoni, P. Fumene Feruglio, C. Brand, S. Lee, A. E. Nibbs, S. Stapleton, S. Shah, I. Gryczynski, T. Reiner, R. Mazitschek, and R. Weissleder, “Measurement of drug-target engagement in live cells by two-photon fluorescence anisotropy imaging,” Nat. Protoc. 12(7), 1472–1497 (2017).
[Crossref]
G. Steinbach, I. Pomozi, O. Zsiros, L. Menczel, and G. Garab, “Imaging anisotropy using differential polarization laser scanning confocal microscopy,” Acta Histochem. 111(4), 317–326 (2009).
[Crossref]
J. Huisken, J. Swoger, F. D. Bene, J. Wittbrodt, and E. H. K. Stelzer, “Optical Sectioning Deep Inside Live Embryos by Selective Plane Illumination Microscopy,” Science 305(5686), 1007–1009 (2004).
[Crossref]
V. Nucciotti, C. Stringari, L. Sacconi, F. Vanzi, L. Fusi, M. Linari, G. Piazzesi, V. Lombardi, and F. S. Pavone, “Probing myosin structural conformation in vivo by second-harmonic generation microscopy,” Proc. Natl. Acad. Sci. U. S. A. 107(17), 7763–7768 (2010).
[Crossref]
I. Micu, C. Brideau, L. Lu, and P. K. Stys, “Effects of laser polarization on responses of the fluorescent Ca2+ indicator X-Rhod-1 in neurons and myelin,” Neurophotonics 4(2), 025002 (2017).
[Crossref]
G. Malkinson, P. Mahou, É. Chaudan, T. Gacoin, A. Y. Sonay, P. Pantazis, E. Beaurepaire, and W. Supatto, “Fast In Vivo Imaging of SHG Nanoprobes with Multiphoton Light-Sheet Microscopy,” ACS Photonics 7(4), 1036–1049 (2020).
[Crossref]
S. Wolf, W. Supatto, G. Debrégeas, P. Mahou, S. G. Kruglik, J.-M. Sintes, E. Beaurepaire, and R. Candelier, “Whole-brain functional imaging with two-photon light-sheet microscopy,” Nat. Methods 12(5), 379–380 (2015).
[Crossref]
T. V. Truong, W. Supatto, D. S. Koos, J. M. Choi, and S. E. Fraser, “Deep and fast live imaging with two-photon scanned light-sheet microscopy,” Nat. Methods 8(9), 757–760 (2011).
[Crossref]
R. Swaminathan, C. P. Hoang, and A. S. Verkman, “Photobleaching recovery and anisotropy decay of green fluorescent protein GFP-S65T in solution and cells: cytoplasmic viscosity probed by green fluorescent protein translational and rotational diffusion,” Biophys. J. 72(4), 1900–1907 (1997).
[Crossref]
J. Huisken, J. Swoger, F. D. Bene, J. Wittbrodt, and E. H. K. Stelzer, “Optical Sectioning Deep Inside Live Embryos by Selective Plane Illumination Microscopy,” Science 305(5686), 1007–1009 (2004).
[Crossref]
T. Kalwarczyk, N. Ziȩbacz, A. Bielejewska, E. Zaboklicka, K. Koynov, J. Szymański, A. Wilk, A. Patkowski, J. Gapiński, H.-J. Butt, and R. Hołyst, “Comparative Analysis of Viscosity of Complex Liquids and Cytoplasm of Mammalian Cells at the Nanoscale,” Nano Lett. 11(5), 2157–2163 (2011).
[Crossref]
V. Gavryusev, G. Sancataldo, P. Ricci, A. Montalbano, C. Fornetto, L. Turrini, A. Laurino, L. Pesce, G. de Vito, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Dual-beam confocal light-sheet microscopy via flexible acousto-optic deflector,” J. Biomed. Opt. 24(10), 106504 (2019).
[Crossref]
G. Sancataldo, V. Gavryusev, G. de Vito, L. Turrini, M. Locatelli, C. Fornetto, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Flexible Multi-Beam Light-Sheet Fluorescence Microscope for Live Imaging Without Striping Artifacts,” Front. Neuroanat. 13, 7 (2019).
[Crossref]
M. C. Müllenbroich, L. Turrini, L. Silvestri, T. Alterini, A. Gheisari, N. Tiso, F. Vanzi, L. Sacconi, and F. S. Pavone, “Bessel Beam Illumination Reduces Random and Systematic Errors in Quantitative Functional Studies Using Light-Sheet Microscopy,” Front. Cell. Neurosci. 12, 315 (2018).
[Crossref]
L. Turrini, C. Fornetto, G. Marchetto, M. C. Müllenbroich, N. Tiso, A. Vettori, F. Resta, A. Masi, G. Mannaioni, F. S. Pavone, and F. Vanzi, “Optical mapping of neuronal activity during seizures in zebrafish,” Sci. Rep. 7(1), 3025 (2017).
[Crossref]
G. de Vito, L. Turrini, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, E. Trabalzini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon light-sheet microscopy for high-speed whole-brain functional imaging of zebrafish neuronal physiology and pathology,” in Neurophotonics (International Society for Optics and Photonics, 2020), Vol. 11360, p. 1136004.
G. de Vito, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, L. Turrini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon high-speed light-sheet volumetric imaging of brain activity during sleep in zebrafish larvae,” in Neural Imaging and Sensing 2020 (International Society for Optics and Photonics, 2020), Vol. 11226, p. 1122604.
G. de Vito, V. Cappello, I. Tonazzini, M. Cecchini, and V. Piazza, “RP-CARS reveals molecular spatial order anomalies in myelin of an animal model of Krabbe disease,” J. Biophotonics 10(3), 385–393 (2017).
[Crossref]
G. de Vito, L. Turrini, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, E. Trabalzini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon light-sheet microscopy for high-speed whole-brain functional imaging of zebrafish neuronal physiology and pathology,” in Neurophotonics (International Society for Optics and Photonics, 2020), Vol. 11360, p. 1136004.
T. V. Truong, W. Supatto, D. S. Koos, J. M. Choi, and S. E. Fraser, “Deep and fast live imaging with two-photon scanned light-sheet microscopy,” Nat. Methods 8(9), 757–760 (2011).
[Crossref]
G. Sancataldo, V. Gavryusev, G. de Vito, L. Turrini, M. Locatelli, C. Fornetto, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Flexible Multi-Beam Light-Sheet Fluorescence Microscope for Live Imaging Without Striping Artifacts,” Front. Neuroanat. 13, 7 (2019).
[Crossref]
V. Gavryusev, G. Sancataldo, P. Ricci, A. Montalbano, C. Fornetto, L. Turrini, A. Laurino, L. Pesce, G. de Vito, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Dual-beam confocal light-sheet microscopy via flexible acousto-optic deflector,” J. Biomed. Opt. 24(10), 106504 (2019).
[Crossref]
M. C. Müllenbroich, L. Turrini, L. Silvestri, T. Alterini, A. Gheisari, N. Tiso, F. Vanzi, L. Sacconi, and F. S. Pavone, “Bessel Beam Illumination Reduces Random and Systematic Errors in Quantitative Functional Studies Using Light-Sheet Microscopy,” Front. Cell. Neurosci. 12, 315 (2018).
[Crossref]
L. Turrini, C. Fornetto, G. Marchetto, M. C. Müllenbroich, N. Tiso, A. Vettori, F. Resta, A. Masi, G. Mannaioni, F. S. Pavone, and F. Vanzi, “Optical mapping of neuronal activity during seizures in zebrafish,” Sci. Rep. 7(1), 3025 (2017).
[Crossref]
G. de Vito, L. Turrini, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, E. Trabalzini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon light-sheet microscopy for high-speed whole-brain functional imaging of zebrafish neuronal physiology and pathology,” in Neurophotonics (International Society for Optics and Photonics, 2020), Vol. 11360, p. 1136004.
G. de Vito, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, L. Turrini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon high-speed light-sheet volumetric imaging of brain activity during sleep in zebrafish larvae,” in Neural Imaging and Sensing 2020 (International Society for Optics and Photonics, 2020), Vol. 11226, p. 1122604.
C. L. Asbury, J. L. Uy, and G. van den Engh, “Polarization of scatter and fluorescence signals in flow cytometry,” Cytometry 40(2), 88–101 (2000).
[Crossref]
M. Zimmerley, R. Younger, T. Valenton, D. C. Oertel, J. L. Ward, and E. O. Potma, “Molecular Orientation in Dry and Hydrated Cellulose Fibers: A Coherent Anti-Stokes Raman Scattering Microscopy Study,” J. Phys. Chem. B 114(31), 10200–10208 (2010).
[Crossref]
C. L. Asbury, J. L. Uy, and G. van den Engh, “Polarization of scatter and fluorescence signals in flow cytometry,” Cytometry 40(2), 88–101 (2000).
[Crossref]
G. Sancataldo, V. Gavryusev, G. de Vito, L. Turrini, M. Locatelli, C. Fornetto, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Flexible Multi-Beam Light-Sheet Fluorescence Microscope for Live Imaging Without Striping Artifacts,” Front. Neuroanat. 13, 7 (2019).
[Crossref]
V. Gavryusev, G. Sancataldo, P. Ricci, A. Montalbano, C. Fornetto, L. Turrini, A. Laurino, L. Pesce, G. de Vito, N. Tiso, F. Vanzi, L. Silvestri, and F. S. Pavone, “Dual-beam confocal light-sheet microscopy via flexible acousto-optic deflector,” J. Biomed. Opt. 24(10), 106504 (2019).
[Crossref]
M. C. Müllenbroich, L. Turrini, L. Silvestri, T. Alterini, A. Gheisari, N. Tiso, F. Vanzi, L. Sacconi, and F. S. Pavone, “Bessel Beam Illumination Reduces Random and Systematic Errors in Quantitative Functional Studies Using Light-Sheet Microscopy,” Front. Cell. Neurosci. 12, 315 (2018).
[Crossref]
L. Turrini, C. Fornetto, G. Marchetto, M. C. Müllenbroich, N. Tiso, A. Vettori, F. Resta, A. Masi, G. Mannaioni, F. S. Pavone, and F. Vanzi, “Optical mapping of neuronal activity during seizures in zebrafish,” Sci. Rep. 7(1), 3025 (2017).
[Crossref]
V. Nucciotti, C. Stringari, L. Sacconi, F. Vanzi, L. Fusi, M. Linari, G. Piazzesi, V. Lombardi, and F. S. Pavone, “Probing myosin structural conformation in vivo by second-harmonic generation microscopy,” Proc. Natl. Acad. Sci. U. S. A. 107(17), 7763–7768 (2010).
[Crossref]
G. de Vito, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, L. Turrini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon high-speed light-sheet volumetric imaging of brain activity during sleep in zebrafish larvae,” in Neural Imaging and Sensing 2020 (International Society for Optics and Photonics, 2020), Vol. 11226, p. 1122604.
G. de Vito, L. Turrini, C. Fornetto, P. Ricci, C. Müllenbroich, G. Sancataldo, E. Trabalzini, G. Mazzamuto, N. Tiso, L. Sacconi, D. Fanelli, L. Silvestri, F. Vanzi, and F. S. Pavone, “Two-photon light-sheet microscopy for high-speed whole-brain functional imaging of zebrafish neuronal physiology and pathology,” in Neurophotonics (International Society for Optics and Photonics, 2020), Vol. 11360, p. 1136004.
R. Swaminathan, C. P. Hoang, and A. S. Verkman, “Photobleaching recovery and anisotropy decay of green fluorescent protein GFP-S65T in solution and cells: cytoplasmic viscosity probed by green fluorescent protein translational and rotational diffusion,” Biophys. J. 72(4), 1900–1907 (1997).
[Crossref]
L. Turrini, C. Fornetto, G. Marchetto, M. C. Müllenbroich, N. Tiso, A. Vettori, F. Resta, A. Masi, G. Mannaioni, F. S. Pavone, and F. Vanzi, “Optical mapping of neuronal activity during seizures in zebrafish,” Sci. Rep. 7(1), 3025 (2017).
[Crossref]
C. Vinegoni, P. Fumene Feruglio, C. Brand, S. Lee, A. E. Nibbs, S. Stapleton, S. Shah, I. Gryczynski, T. Reiner, R. Mazitschek, and R. Weissleder, “Measurement of drug-target engagement in live cells by two-photon fluorescence anisotropy imaging,” Nat. Protoc. 12(7), 1472–1497 (2017).
[Crossref]
N. Vladimirov, Y. Mu, T. Kawashima, D. V. Bennett, C.-T. Yang, L. L. Looger, P. J. Keller, J. Freeman, and M. B. Ahrens, “Light-sheet functional imaging in fictively behaving zebrafish,” Nat. Methods 11(9), 883–884 (2014).
[Crossref]
T. A. Nguyen, H. L. Puhl, A. K. Pham, and S. S. Vogel, “Auto-FPFA: An Automated Microscope for Characterizing Genetically Encoded Biosensors,” Sci. Rep. 8(1), 7374 (2018).
[Crossref]
K. Wang, N. G. Horton, and C. Xu, “Going Deep: Brain Imaging with Multi-Photon Microscopy,” Opt. Photonics News 24(11), 32–39 (2013).
[Crossref]
A. Kress, X. Wang, H. Ranchon, J. Savatier, H. Rigneault, P. Ferrand, and S. Brasselet, “Mapping the Local Organization of Cell Membranes Using Excitation-Polarization-Resolved Confocal Fluorescence Microscopy,” Biophys. J. 105(1), 127–136 (2013).
[Crossref]
M. Zimmerley, R. Younger, T. Valenton, D. C. Oertel, J. L. Ward, and E. O. Potma, “Molecular Orientation in Dry and Hydrated Cellulose Fibers: A Coherent Anti-Stokes Raman Scattering Microscopy Study,” J. Phys. Chem. B 114(31), 10200–10208 (2010).
[Crossref]
C. Lorenzo, C. Frongia, R. Jorand, J. Fehrenbach, P. Weiss, A. Maandhui, G. Gay, B. Ducommun, and V. Lobjois, “Live cell division dynamics monitoring in 3D large spheroid tumor models using light sheet microscopy,” Cell Div. 6(1), 22 (2011).
[Crossref]
C. Vinegoni, P. Fumene Feruglio, C. Brand, S. Lee, A. E. Nibbs, S. Stapleton, S. Shah, I. Gryczynski, T. Reiner, R. Mazitschek, and R. Weissleder, “Measurement of drug-target engagement in live cells by two-photon fluorescence anisotropy imaging,” Nat. Protoc. 12(7), 1472–1497 (2017).
[Crossref]
M. Westerfield, The Zebrafish Book: A Guide for the Laboratory Use of Zebrafish (Danio Rerio), 4th ed. (Univ. of Oregon Press, 2000).
T. Kalwarczyk, N. Ziȩbacz, A. Bielejewska, E. Zaboklicka, K. Koynov, J. Szymański, A. Wilk, A. Patkowski, J. Gapiński, H.-J. Butt, and R. Hołyst, “Comparative Analysis of Viscosity of Complex Liquids and Cytoplasm of Mammalian Cells at the Nanoscale,” Nano Lett. 11(5), 2157–2163 (2011).
[Crossref]
J. Huisken, J. Swoger, F. D. Bene, J. Wittbrodt, and E. H. K. Stelzer, “Optical Sectioning Deep Inside Live Embryos by Selective Plane Illumination Microscopy,” Science 305(5686), 1007–1009 (2004).
[Crossref]
S. Wolf, W. Supatto, G. Debrégeas, P. Mahou, S. G. Kruglik, J.-M. Sintes, E. Beaurepaire, and R. Candelier, “Whole-brain functional imaging with two-photon light-sheet microscopy,” Nat. Methods 12(5), 379–380 (2015).
[Crossref]
K. Wang, N. G. Horton, and C. Xu, “Going Deep: Brain Imaging with Multi-Photon Microscopy,” Opt. Photonics News 24(11), 32–39 (2013).
[Crossref]
N. Vladimirov, Y. Mu, T. Kawashima, D. V. Bennett, C.-T. Yang, L. L. Looger, P. J. Keller, J. Freeman, and M. B. Ahrens, “Light-sheet functional imaging in fictively behaving zebrafish,” Nat. Methods 11(9), 883–884 (2014).
[Crossref]
M. Zimmerley, R. Younger, T. Valenton, D. C. Oertel, J. L. Ward, and E. O. Potma, “Molecular Orientation in Dry and Hydrated Cellulose Fibers: A Coherent Anti-Stokes Raman Scattering Microscopy Study,” J. Phys. Chem. B 114(31), 10200–10208 (2010).
[Crossref]
T. Kalwarczyk, N. Ziȩbacz, A. Bielejewska, E. Zaboklicka, K. Koynov, J. Szymański, A. Wilk, A. Patkowski, J. Gapiński, H.-J. Butt, and R. Hołyst, “Comparative Analysis of Viscosity of Complex Liquids and Cytoplasm of Mammalian Cells at the Nanoscale,” Nano Lett. 11(5), 2157–2163 (2011).
[Crossref]
Z. Lavagnino, F. C. Zanacchi, E. Ronzitti, and A. Diaspro, “Two-photon excitation selective plane illumination microscopy (2PE-SPIM) of highly scattering samples: characterization and application,” Opt. Express 21(5), 5998–6008 (2013).
[Crossref]
F. C. Zanacchi, Z. Lavagnino, M. Pesce, F. Difato, E. Ronzitti, and A. Diaspro, “Two-photon fluorescence excitation within a light sheet based microscopy architecture,” in Multiphoton Microscopy in the Biomedical Sciences XI (International Society for Optics and Photonics, 2011), Vol. 7903, p. 79032W.
T. Kalwarczyk, N. Ziȩbacz, A. Bielejewska, E. Zaboklicka, K. Koynov, J. Szymański, A. Wilk, A. Patkowski, J. Gapiński, H.-J. Butt, and R. Hołyst, “Comparative Analysis of Viscosity of Complex Liquids and Cytoplasm of Mammalian Cells at the Nanoscale,” Nano Lett. 11(5), 2157–2163 (2011).
[Crossref]
H. Mojzisova, J. Olesiak, M. Zielinski, K. Matczyszyn, D. Chauvat, and J. Zyss, “Polarization-Sensitive Two-Photon Microscopy Study of the Organization of Liquid-Crystalline DNA,” Biophys. J. 97(8), 2348–2357 (2009).
[Crossref]
M. Zimmerley, R. Younger, T. Valenton, D. C. Oertel, J. L. Ward, and E. O. Potma, “Molecular Orientation in Dry and Hydrated Cellulose Fibers: A Coherent Anti-Stokes Raman Scattering Microscopy Study,” J. Phys. Chem. B 114(31), 10200–10208 (2010).
[Crossref]
H. Siedentopf and R. Zsigmondy, “Visualisation and determination of size of ultra microscopic particles, with special use of Goldrubin glasses,” Ann. Phys. 315(1), 1–39 (1902).
[Crossref]
G. Steinbach, I. Pomozi, O. Zsiros, L. Menczel, and G. Garab, “Imaging anisotropy using differential polarization laser scanning confocal microscopy,” Acta Histochem. 111(4), 317–326 (2009).
[Crossref]
H. Mojzisova, J. Olesiak, M. Zielinski, K. Matczyszyn, D. Chauvat, and J. Zyss, “Polarization-Sensitive Two-Photon Microscopy Study of the Organization of Liquid-Crystalline DNA,” Biophys. J. 97(8), 2348–2357 (2009).
[Crossref]