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Nature methods

Showing results (1401-1410 of 3,365) with videos related to

Pageof 337
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Nature Methods|January 22, 2019
A genetically encoded near-infrared fluorescent calcium ion indicatorYong Qian, Kiryl D Piatkevich, Benedict Mc Larney, et al.
Nature Methods|October 31, 2019
Author Correction: Genome-wide high-throughput screening of T cell epitopesArunima Singh
Nature Methods|October 30, 2019
Biological plasticity rescues target activity in CRISPR knock outsArne H Smits, Frederik Ziebell, Gerard Joberty, et al.
Nature Methods|December 1, 2020
diaPASEF: parallel accumulation-serial fragmentation combined with data-independent acquisitionFlorian Meier, Andreas-David Brunner, Max Frank, et al.
Nature Methods|December 1, 2020
Non-uniform refinement: adaptive regularization improves single-particle cryo-EM reconstructionAli Punjani, Haowei Zhang, David J Fleet
Nature Methods|February 20, 2018
Quantitative mapping and minimization of super-resolution optical imaging artifactsSiân Culley, David Albrecht, Caron Jacobs, et al.
Nature Methods|February 20, 2018
On the design of CRISPR-based single-cell molecular screensAndrew J Hill, José L McFaline-Figueroa, Lea M Starita, et al.
Nature Methods|February 20, 2018
Identifying the favored mutation in a positive selective sweepAli Akbari, Joseph J Vitti, Arya Iranmehr, et al.
Nature Methods|January 24, 2020
Publisher Correction: Amplification-free single-cell whole-genome sequencing gets a makeoverVesna Todorovic
Nature Methods|August 29, 2014
A critique of methods for temperature imaging in single cellsGuillaume Baffou, Hervé Rigneault, Didier Marguet, et al.
Pageof 337

Showing results (1401-1410 of 3,365) with videos related to

Sort By:
Pageof 337
Nature Methods|January 22, 2019
A genetically encoded near-infrared fluorescent calcium ion indicatorYong Qian, Kiryl D Piatkevich, Benedict Mc Larney, et al.
Nature Methods|October 31, 2019
Author Correction: Genome-wide high-throughput screening of T cell epitopesArunima Singh
Nature Methods|October 30, 2019
Biological plasticity rescues target activity in CRISPR knock outsArne H Smits, Frederik Ziebell, Gerard Joberty, et al.
Nature Methods|December 1, 2020
diaPASEF: parallel accumulation-serial fragmentation combined with data-independent acquisitionFlorian Meier, Andreas-David Brunner, Max Frank, et al.
Nature Methods|December 1, 2020
Non-uniform refinement: adaptive regularization improves single-particle cryo-EM reconstructionAli Punjani, Haowei Zhang, David J Fleet
Nature Methods|February 20, 2018
Quantitative mapping and minimization of super-resolution optical imaging artifactsSiân Culley, David Albrecht, Caron Jacobs, et al.
Nature Methods|February 20, 2018
On the design of CRISPR-based single-cell molecular screensAndrew J Hill, José L McFaline-Figueroa, Lea M Starita, et al.
Nature Methods|February 20, 2018
Identifying the favored mutation in a positive selective sweepAli Akbari, Joseph J Vitti, Arya Iranmehr, et al.
Nature Methods|January 24, 2020
Publisher Correction: Amplification-free single-cell whole-genome sequencing gets a makeoverVesna Todorovic
Nature Methods|August 29, 2014
A critique of methods for temperature imaging in single cellsGuillaume Baffou, Hervé Rigneault, Didier Marguet, et al.
Pageof 337