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Nature methods

Showing results (541-550 of 6,393) with videos related to

Pageof 640
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Nature Methods|March 25, 2014
FIREWACh: high-throughput functional detection of transcriptional regulatory modules in mammalian cellsMatthew Murtha, Zeynep Tokcaer-Keskin, Zuojian Tang, et al.
Nature Methods|February 1, 2017
Cool and dynamic: single-molecule fluorescence-based structural biologyTimothy D Craggs
Nature Methods|February 1, 2017
Multicut brings automated neurite segmentation closer to human performanceThorsten Beier, Constantin Pape, Nasim Rahaman, et al.
Nature Methods|February 1, 2017
How best to identify chromosomal interactions: a comparison of approachesJames O J Davies, A Marieke Oudelaar, Douglas R Higgs, et al.
Nature Methods|January 31, 2017
Building ProteomeTools based on a complete synthetic human proteomeDaniel P Zolg, Mathias Wilhelm, Karsten Schnatbaum, et al.
Nature Methods|March 20, 2019
Scalable analysis of cell-type composition from single-cell transcriptomics using deep recurrent learningYue Deng, Feng Bao, Qionghai Dai, et al.
Nature Methods|March 20, 2019
SIRIUS 4: a rapid tool for turning tandem mass spectra into metabolite structure informationKai Dührkop, Markus Fleischauer, Marcus Ludwig, et al.
Nature Methods|February 14, 2014
Protein nanopores to detect DNA methylationNatalie de Souza
Nature Methods|February 14, 2014
Singled out for sequencingKelly Rae Chi
Nature Methods|February 14, 2014
CRISPRs and epigenome editingNicole Rusk
Pageof 640

Showing results (541-550 of 6,393) with videos related to

Sort By:
Pageof 640
Nature Methods|March 25, 2014
FIREWACh: high-throughput functional detection of transcriptional regulatory modules in mammalian cellsMatthew Murtha, Zeynep Tokcaer-Keskin, Zuojian Tang, et al.
Nature Methods|February 1, 2017
Cool and dynamic: single-molecule fluorescence-based structural biologyTimothy D Craggs
Nature Methods|February 1, 2017
Multicut brings automated neurite segmentation closer to human performanceThorsten Beier, Constantin Pape, Nasim Rahaman, et al.
Nature Methods|February 1, 2017
How best to identify chromosomal interactions: a comparison of approachesJames O J Davies, A Marieke Oudelaar, Douglas R Higgs, et al.
Nature Methods|January 31, 2017
Building ProteomeTools based on a complete synthetic human proteomeDaniel P Zolg, Mathias Wilhelm, Karsten Schnatbaum, et al.
Nature Methods|March 20, 2019
Scalable analysis of cell-type composition from single-cell transcriptomics using deep recurrent learningYue Deng, Feng Bao, Qionghai Dai, et al.
Nature Methods|March 20, 2019
SIRIUS 4: a rapid tool for turning tandem mass spectra into metabolite structure informationKai Dührkop, Markus Fleischauer, Marcus Ludwig, et al.
Nature Methods|February 14, 2014
Protein nanopores to detect DNA methylationNatalie de Souza
Nature Methods|February 14, 2014
Singled out for sequencingKelly Rae Chi
Nature Methods|February 14, 2014
CRISPRs and epigenome editingNicole Rusk
Pageof 640