Works matching IS 15487091 AND DT 2015 AND VI 12 AND IP 3
Results: 37
dSysMap: exploring the edgetic role of disease mutations.
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- Nature Methods, 2015, v. 12, n. 3, p. 167, doi. 10.1038/nmeth.3289
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Cell biology: Optogenetic positioning of organelles.
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- Nature Methods, 2015, v. 12, n. 3, p. 173, doi. 10.1038/nmeth.3297
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Imaging: Bigger is better for super-resolution.
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- Nature Methods, 2015, v. 12, n. 3, p. 169, doi. 10.1038/nmeth.3305
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Reporters for sensitive and quantitative measurement of auxin response.
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- Nature Methods, 2015, v. 12, n. 3, p. 207, doi. 10.1038/nmeth.3279
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Microscopy: Fast volumetric imaging in live samples.
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- Nature Methods, 2015, v. 12, n. 3, p. 170, doi. 10.1038/nmeth.3306
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Sensors and probes: A nonblinking quantum dot.
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- Nature Methods, 2015, v. 12, n. 3, p. 174, doi. 10.1038/nmeth.3302
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- Article
Fixation-resistant photoactivatable fluorescent proteins for CLEM.
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- Nature Methods, 2015, v. 12, n. 3, p. 215, doi. 10.1038/nmeth.3225
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Probes: paths to photostability.
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- Nature Methods, 2015, v. 12, n. 3, p. 187, doi. 10.1038/nmeth.3295
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Sequencing: The genome and transcriptome of a single cell.
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- Nature Methods, 2015, v. 12, n. 3, p. 173, doi. 10.1038/nmeth.3299
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Points of Significance: Split plot design.
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- Nature Methods, 2015, v. 12, n. 3, p. 165, doi. 10.1038/nmeth.3293
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Determining the epigenome using DNA alone.
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- Nature Methods, 2015, v. 12, n. 3, p. 191, doi. 10.1038/nmeth.3291
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Coverage recommendations for methylation analysis by whole-genome bisulfite sequencing.
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- Nature Methods, 2015, v. 12, n. 3, p. 230, doi. 10.1038/nmeth.3152
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Ribose-seq: global mapping of ribonucleotides embedded in genomic DNA.
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- Nature Methods, 2015, v. 12, n. 3, p. 251, doi. 10.1038/nmeth.3259
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Software: A visual aid for cellular imaging analysis.
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- Nature Methods, 2015, v. 12, n. 3, p. 175, doi. 10.1038/nmeth.3309
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Inferring biological tasks using Pareto analysis of high-dimensional data.
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- Nature Methods, 2015, v. 12, n. 3, p. 233, doi. 10.1038/nmeth.3254
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Genomics: CRISPR off-target detection.
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- Nature Methods, 2015, v. 12, n. 3, p. 174, doi. 10.1038/nmeth.3301
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Mapping the epigenome.
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- Nature Methods, 2015, v. 12, n. 3, p. 161, doi. 10.1038/nmeth.3315
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The fickle P value generates irreproducible results.
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- Nature Methods, 2015, v. 12, n. 3, p. 179, doi. 10.1038/nmeth.3288
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Imaging: Diamonds for MRI.
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- Nature Methods, 2015, v. 12, n. 3, p. 176, doi. 10.1038/nmeth.3310
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Microscopy: Closing in on video-rate STED nanoscopy.
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- Nature Methods, 2015, v. 12, n. 3, p. 173, doi. 10.1038/nmeth.3300
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- Article
A sensor for quantification of macromolecular crowding in living cells.
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- Nature Methods, 2015, v. 12, n. 3, p. 227, doi. 10.1038/nmeth.3257
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Nanobiotechnology: Cell positioning with acoustic waves.
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- Nature Methods, 2015, v. 12, n. 3, p. 174, doi. 10.1038/nmeth.3304
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Synthetic biology: Complex regulatory control with CRISPR.
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- Nature Methods, 2015, v. 12, n. 3, p. 172, doi. 10.1038/nmeth.3308
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Improved and expanded Q-system reagents for genetic manipulations.
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- Nature Methods, 2015, v. 12, n. 3, p. 219, doi. 10.1038/nmeth.3250
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Targeted exploration and analysis of large cross-platform human transcriptomic compendia.
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- Nature Methods, 2015, v. 12, n. 3, p. 211, doi. 10.1038/nmeth.3249
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Sequence tag-based analysis of microbial population dynamics.
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- Nature Methods, 2015, v. 12, n. 3, p. 223, doi. 10.1038/nmeth.3253
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Imaging: Probing molecular stoichiometry at super-resolution.
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- Nature Methods, 2015, v. 12, n. 3, p. 173, doi. 10.1038/nmeth.3298
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Bioinformatics: Kindred cells among the crowd.
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- Nature Methods, 2015, v. 12, n. 3, p. 170, doi. 10.1038/nmeth.3307
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The Author File: Robert E. Campbell.
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- Nature Methods, 2015, v. 12, n. 3, p. 163, doi. 10.1038/nmeth.3294
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Predicting the human epigenome from DNA motifs.
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- Nature Methods, 2015, v. 12, n. 3, p. 265, doi. 10.1038/nmeth.3065
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Neuroscience: Targeted electrophysiology at any depth.
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- Nature Methods, 2015, v. 12, n. 3, p. 174, doi. 10.1038/nmeth.3303
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Digenome-seq: genome-wide profiling of CRISPR-Cas9 off-target effects in human cells.
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- Nature Methods, 2015, v. 12, n. 3, p. 237, doi. 10.1038/nmeth.3284
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Massively parallel single-amino-acid mutagenesis.
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- Nature Methods, 2015, v. 12, n. 3, p. 203, doi. 10.1038/nmeth.3223
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DIA-Umpire: comprehensive computational framework for data-independent acquisition proteomics.
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- Nature Methods, 2015, v. 12, n. 3, p. 258, doi. 10.1038/nmeth.3255
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A general method to improve fluorophores for live-cell and single-molecule microscopy.
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- Nature Methods, 2015, v. 12, n. 3, p. 244, doi. 10.1038/nmeth.3256
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Real-time deformability cytometry: on-the-fly cell mechanical phenotyping.
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- Nature Methods, 2015, v. 12, n. 3, p. 199, doi. 10.1038/nmeth.3281
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Ratiometric biosensors based on dimerization-dependent fluorescent protein exchange.
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- Nature Methods, 2015, v. 12, n. 3, p. 195, doi. 10.1038/nmeth.3261
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