Three-Dimensional Super-Resolution in Eukaryotic Cells Using the Double-Helix Point Spread Function.

scientific article published in April 2017

Three-Dimensional Super-Resolution in Eukaryotic Cells Using the Double-Helix Point Spread Function. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1016/J.BPJ.2017.02.023
P932PMC publication ID5390298
P698PubMed publication ID28402886

P50authorErnest D. LaueQ37391352
Ana M SantosQ41074768
Srinjan BasuQ55459497
Aleks PonjavicQ63549465
James McCollQ63871303
P2093author name stringDavid Klenerman
Steven F Lee
Simon Davis
Alexander R Carr
P2860cites workTHE EVOLUTION OF ADAPTIVE IMMUNITYQ22255631
Multicolor super-resolution imaging with photo-switchable fluorescent probesQ24642794
Three-dimensional super-resolution imaging by stochastic optical reconstruction microscopyQ24642820
Precise Three-Dimensional Scan-Free Multiple-Particle Tracking over Large Axial Ranges with Tetrapod Point Spread Functions.Q27301041
The Nucleosome Remodeling and Deacetylase Complex NuRD Is Built from Preformed Catalytically Active Sub-modulesQ27309506
High-density three-dimensional localization microscopy across large volumesQ27313460
A quantitative comparison of single-dye tracking analysis tools using Monte Carlo simulationsQ27319086
Remodelling of cortical actin where lytic granules dock at natural killer cell immune synapses revealed by super-resolution microscopyQ27320914
Light sheet microscopy for single molecule tracking in living tissueQ27323175
ADVANCED IMAGING. Extended-resolution structured illumination imaging of endocytic and cytoskeletal dynamicsQ27330874
Structure of the complex between human T-cell receptor, viral peptide and HLA-A2Q27733853
Sub-diffraction-limit imaging by stochastic optical reconstruction microscopy (STORM)Q27860490
Imaging intracellular fluorescent proteins at nanometer resolutionQ27860767
The immunological synapse: a molecular machine controlling T cell activationQ28139151
Three-dimensional segregation of supramolecular activation clusters in T cellsQ28282528
A compact Airy beam light sheet microscope with a tilted cylindrical lens.Q30487392
Imaging with total internal reflection fluorescence microscopy for the cell biologistQ30497128
Isotropic 3D Super-resolution Imaging with a Self-bending Point Spread FunctionQ30597147
Three-dimensional sub-100 nm resolution fluorescence microscopy of thick samplesQ33333439
Three-dimensional, single-molecule fluorescence imaging beyond the diffraction limit by using a double-helix point spread functionQ33408484
Localizing and tracking single nanoscale emitters in three dimensions with high spatiotemporal resolution using a double-helix point spread functionQ33517738
Single-molecule dynamics of enhanceosome assembly in embryonic stem cellsQ33694190
Single-molecule spectroscopy and imaging of biomolecules in living cellsQ33727226
Single-particle tracking: the distribution of diffusion coefficientsQ33915302
Three-dimensional superresolution colocalization of intracellular protein superstructures and the cell surface in live Caulobacter crescentusQ34059523
Single particle tracking. Analysis of diffusion and flow in two-dimensional systemsQ34088040
Fast multicolor 3D imaging using aberration-corrected multifocus microscopy.Q34165618
Easy-DHPSF open-source software for three-dimensional localization of single molecules with precision beyond the optical diffraction limitQ34267084
Three-dimensional localization precision of the double-helix point spread function versus astigmatism and biplane.Q34306179
Mechanisms for T cell receptor triggeringQ34625569
Whole-cell, multicolor superresolution imaging using volumetric multifocus microscopyQ34708806
Subdiffraction-resolution fluorescence imaging with conventional fluorescent probesQ34799135
A general method to improve fluorophores for live-cell and single-molecule microscopyQ35130677
The T cell receptor triggering apparatus is composed of monovalent or monomeric proteins.Q35213464
3D imaging of Sox2 enhancer clusters in embryonic stem cellsQ35240702
Corkscrew point spread function for far-field three-dimensional nanoscale localization of pointlike objectsQ35385940
Wide-field subdiffraction imaging by accumulated binding of diffusing probesQ35539682
Analysis of two-dimensional dissociation constant of laterally mobile cell adhesion moleculesQ35606770
Advances in light-based imaging of three-dimensional cellular ultrastructureQ35803347
Antigen Recognition Is Facilitated by Invadosome-like Protrusions Formed by Memory/Effector T CellsQ35884077
Nanoscopic Cellular Imaging: Confinement Broadens UnderstandingQ36125095
Single-molecule level analysis of the subunit composition of the T cell receptor on live T cellsQ36140749
Quantitative Multicolor Subdiffraction Imaging of Bacterial Protein Ultrastructures in Three DimensionsQ36690739
Remarkably low affinity of CD4/peptide-major histocompatibility complex class II protein interactionsQ36931097
Superresolution imaging reveals nanometer- and micrometer-scale spatial distributions of T-cell receptors in lymph nodesQ37065031
Ultra-High Resolution 3D Imaging of Whole Cells.Q37218547
Three-dimensional localization of T-cell receptors in relation to microvilli using a combination of superresolution microscopiesQ37323186
Polarized release of T-cell-receptor-enriched microvesicles at the immunological synapseQ37629486
CHD4 in the DNA-damage response and cell cycle progression: not so NuRDy nowQ38108666
The changing point-spread function: single-molecule-based super-resolution imagingQ38186555
Single-molecule super-resolution light-sheet microscopyQ38194981
Tracking single molecules at work in living cells.Q38220868
Regulation of vesicular traffic at the T cell immune synapse: lessons from the primary cilium.Q38267911
Imaging live-cell dynamics and structure at the single-molecule levelQ38497903
Single-Molecule Imaging in Living Drosophila Embryos with Reflected Light-Sheet MicroscopyQ38742263
DySCo: quantitating associations of membrane proteins using two-color single-molecule tracking.Q43070642
Characterization of a three-dimensional double-helix point-spread function for fluorescence microscopy in the presence of spherical aberrationQ47904846
Optimal point spread function design for 3D imagingQ50607382
Quantification of cell surface roughness; a method for studying cell mechanical and adhesive propertiesQ52644781
Highly inclined thin illumination enables clear single-molecule imaging in cellsQ53442959
Chromatin fibers are formed by heterogeneous groups of nucleosomes in vivoQ53584742
Plasma membrane topography and interpretation of single-particle tracksQ60709913
ViSP: representing single-particle localizations in three dimensionsQ67484786
Internalization of lymphocyte membrane componentsQ85702067
P433issue7
P407language of work or nameEnglishQ1860
P304page(s)1444-1454
P577publication date2017-04-01
P1433published inBiophysical JournalQ2032955
P1476titleThree-Dimensional Super-Resolution in Eukaryotic Cells Using the Double-Helix Point Spread Function
P478volume112

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cites work (P2860)
Q482767443D single-molecule super-resolution microscopy with a tilted light sheet
Q92916758A cell topography-based mechanism for ligand discrimination by the T cell receptor
Q98735504Considerations of Antibody Geometric Constraints on NK Cell Antibody Dependent Cellular Cytotoxicity
Q55220163Imaging Polarized Secretory Traffic at the Immune Synapse in Living T Lymphocytes.
Q58762017Intrinsic refractive index matched 3D dSTORM with two objectives: Comparison of detection techniques
Q88817303Light sheet approaches for improved precision in 3D localization-based super-resolution imaging in mammalian cells [Invited]
Q57492028Membrane Ultrastructure and T Cell Activation
Q64900728Sensitive light-sheet microscopy in multiwell plates using an AFM cantilever.
Q88615687Single-Molecule Light-Sheet Imaging of Suspended T Cells
Q52571604Tilted Light Sheet Microscopy with 3D Point Spread Functions for Single-Molecule Super-Resolution Imaging in Mammalian Cells.
Q61443420mmSTORM: Multimodal localization based super-resolution microscopy

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