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New technologies for 21st century plant scienceCapturing the surface texture and shape of pollen: a comparison of microscopy techniquesA Versatile Optical Clearing Protocol for Deep Tissue Imaging of Fluorescent Proteins in Arabidopsis thalianaPerfluorodecalin enhances in vivo confocal microscopy resolution of Arabidopsis thaliana mesophyllKnockin' on pollen's door: live cell imaging of early polarization events in germinating Arabidopsis pollenHide and seek: uncloaking the vegetative shoot apex of Arabidopsis thaliana.High-contrast three-dimensional imaging of the Arabidopsis leaf enables the analysis of cell dimensions in the epidermis and mesophyll.In vivo label-free mapping of the effect of a photosystem II inhibiting herbicide in plants using chlorophyll fluorescence lifetime.Multiphoton imaging of freezing and heating effects in plant leaves.Extracellular localization of the diterpene sclareol in clary sage (Salvia sclarea L., Lamiaceae).Emergence and patterning of the five cell types of the Zea mays anther loculeAn update: improvements in imaging perfluorocarbon-mounted plant leaves with implications for studies of plant pathology, physiology, development and cell biology.Two-photon imaging with longer wavelength excitation in intact Arabidopsis tissues.Optimisation approaches for concurrent transmitted light imaging during confocal microscopy.Pollen tube growth: where does the energy come from?ClearSee: a rapid optical clearing reagent for whole-plant fluorescence imagingImaging fertilization in flowering plants, not so abominable after all.On the fast lane: mitochondria structure, dynamics and function in growing pollen tubes.Temporal and Spatial Variability of Fungal Structures and Host Responses in an Incompatible Rust-Wheat Interaction.Spatiotemporal deep imaging of syncytium induced by the soybean cyst nematode Heterodera glycines.Influence of Vacuum Cooling on Escherichia coli O157:H7 Infiltration in Fresh Leafy Greens via a Multiphoton-Imaging Approach.Fluorescence anisotropy of tyrosinate anion using one-, two- and three-photon excitation: tyrosinate anion fluorescenceRatiometric detection of viscosity using a two-photon fluorescent sensor.An optical clearing technique for plant tissues allowing deep imaging and compatible with fluorescence microscopy.Technical Review: Microscopy and Image Processing Tools to Analyze Plant Chromatin: Practical Considerations.In vivo monitoring of intracellular chloroplast movements in intact leaves of C4 plants using two-photon microscopy.A direction-selective local-thresholding method, DSLT, in combination with a dye-based method for automated three-dimensional segmentation of cells and airspaces in developing leaves.Sub-cellular markers highlight intracellular dynamics of membrane proteins in response to abiotic treatments in rice.
P2860
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P2860
description
2004 nî lūn-bûn
@nan
2004年の論文
@ja
2004年論文
@yue
2004年論文
@zh-hant
2004年論文
@zh-hk
2004年論文
@zh-mo
2004年論文
@zh-tw
2004年论文
@wuu
2004年论文
@zh
2004年论文
@zh-cn
name
Imaging plant cells by two-photon excitation.
@ast
Imaging plant cells by two-photon excitation.
@en
type
label
Imaging plant cells by two-photon excitation.
@ast
Imaging plant cells by two-photon excitation.
@en
prefLabel
Imaging plant cells by two-photon excitation.
@ast
Imaging plant cells by two-photon excitation.
@en
P1433
P1476
Imaging plant cells by two-photon excitation.
@en
P2093
José A Feijó
Nuno Moreno
P2888
P356
10.1007/S00709-003-0026-2
P577
2004-03-04T00:00:00Z