Light sheet-based fluorescence microscopy (LSFM) reduces phototoxic effects and provides new means for the modern life sciences
暂无分享,去创建一个
Ernst H. K. Stelzer | Philippe Girard | Francesco Pampaloni | Nari Ansari | F. Pampaloni | E. Stelzer | P. Girard | N. Ansari
[1] J. Merchuk,et al. Hepatocyte behavior within three-dimensional porous alginate scaffolds. , 2000, Biotechnology and bioengineering.
[2] Philipp J. Keller,et al. Reconstruction of Zebrafish Early Embryonic Development by Scanned Light Sheet Microscopy , 2008, Science.
[3] L. Griffith,et al. Capturing complex 3D tissue physiology in vitro , 2006, Nature Reviews Molecular Cell Biology.
[4] Jan Huisken,et al. Selective plane illumination microscopy techniques in developmental biology , 2009, Development.
[5] M. Davidson,et al. Rapid three-dimensional isotropic imaging of living cells using Bessel beam plane illumination , 2011, Nature Methods.
[6] P. Verveer,et al. High-resolution three-dimensional imaging of large specimens with light sheet–based microscopy , 2007, Nature Methods.
[7] Jan Huisken,et al. Multiple imaging axis microscopy improves resolution for thick-sample applications. , 2003, Optics letters.
[8] Stephan Saalfeld,et al. Software for bead-based registration of selective plane illumination microscopy data , 2010, Nature Methods.
[9] Thorsten Wohland,et al. Single plane illumination fluorescence correlation spectroscopy (SPIM-FCS) probes inhomogeneous three-dimensional environments. , 2010, Optics express.
[10] Stephan Saalfeld,et al. Globally optimal stitching of tiled 3D microscopic image acquisitions , 2009, Bioinform..
[11] Philipp J. Keller,et al. Fast, high-contrast imaging of animal development with scanned light sheet–based structured-illumination microscopy , 2010, Nature Methods.
[12] F. Pampaloni,et al. The third dimension bridges the gap between cell culture and live tissue , 2007, Nature Reviews Molecular Cell Biology.
[13] Steffen Lindek,et al. Fundamental reduction of the observation volume in far-field light microscopy by detection orthogonal to the illumination axis: confocal theta microscopy , 1994 .
[14] Juergen Friedrich,et al. Spheroid-based drug screen: considerations and practical approach , 2009, Nature Protocols.
[15] Francesco Pampaloni,et al. Three-dimensional tissue models for drug discovery and toxicology. , 2009, Recent patents on biotechnology.
[16] Philipp J. Keller,et al. Three-dimensional preparation and imaging reveal intrinsic microtubule properties , 2007, Nature Methods.
[17] F. Del Bene,et al. Optical Sectioning Deep Inside Live Embryos by Selective Plane Illumination Microscopy , 2004, Science.
[18] A. Schierloh,et al. Ultramicroscopy: three-dimensional visualization of neuronal networks in the whole mouse brain , 2007, Nature Methods.
[19] Ulrich Kubitscheck,et al. Single-molecule tracking in eukaryotic cell nuclei , 2006, Analytical and bioanalytical chemistry.
[20] T. Holy,et al. Fast Three-Dimensional Fluorescence Imaging of Activity in Neural Populations by Objective-Coupled Planar Illumination Microscopy , 2008, Neuron.
[21] John V. Small,et al. Mechanosensing in actin stress fibers revealed by a close correlation between force and protein localization , 2009, Journal of Cell Science.
[22] Diego Mantovani,et al. Bioreactors for tissue engineering: focus on mechanical constraints. A comparative review. , 2006, Tissue engineering.
[23] Alexander Rohrbach,et al. A Line Scanned Light-sheet Microscope with Phase Shaped Self-reconstructing Beams References and Links , 2022 .
[24] Julien Colombelli,et al. Three-dimensional laser microsurgery in light-sheet based microscopy (SPIM). , 2007, Optics express.
[25] Aristides B. Arrenberg,et al. Optogenetic Control of Cardiac Function , 2010, Science.
[26] Martin Fussenegger,et al. Method for generation of homogeneous multicellular tumor spheroids applicable to a wide variety of cell types. , 2003, Biotechnology and bioengineering.