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Sarah M Goggin

Showing results (1-10 of 6) with videos related to

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Genome Biology|September 16, 2024
ESCHR: a hyperparameter-randomized ensemble approach for robust clustering across diverse datasetsSarah M Goggin, Eli R Zunder
Biorxiv : the Preprint Server for Biology|January 8, 2024
A hyperparameter-randomized ensemble approach for robust clustering across diverse datasetsSarah M Goggin, Eli R Zunder
Nature Communications|December 21, 2018
High-resolution genome-wide functional dissection of transcriptional regulatory regions and nucleotides in humanXinchen Wang, Liang He, Sarah M Goggin, et al.
Nature Protocols|January 15, 2020
FLOW-MAP: a graph-based, force-directed layout algorithm for trajectory mapping in single-cell time course datasetsMelissa E Ko, Corey M Williams, Kristen I Fread, et al.
Nature Neuroscience|December 18, 2024
A single-cell mass cytometry-based atlas of the developing mouse brainAmy L Van Deusen, Sushanth Kumar, O Yipkin Calhan, et al.
Nature Neuroscience|October 27, 2022
A developmental atlas of somatosensory diversification and maturation in the dorsal root ganglia by single-cell mass cytometryAustin B Keeler, Amy L Van Deusen, Irene C Gadani, et al.
Pageof 1

Showing results (1-10 of 6) with videos related to

Sort By:
Pageof 1
Genome Biology|September 16, 2024
ESCHR: a hyperparameter-randomized ensemble approach for robust clustering across diverse datasetsSarah M Goggin, Eli R Zunder
Biorxiv : the Preprint Server for Biology|January 8, 2024
A hyperparameter-randomized ensemble approach for robust clustering across diverse datasetsSarah M Goggin, Eli R Zunder
Nature Communications|December 21, 2018
High-resolution genome-wide functional dissection of transcriptional regulatory regions and nucleotides in humanXinchen Wang, Liang He, Sarah M Goggin, et al.
Nature Protocols|January 15, 2020
FLOW-MAP: a graph-based, force-directed layout algorithm for trajectory mapping in single-cell time course datasetsMelissa E Ko, Corey M Williams, Kristen I Fread, et al.
Nature Neuroscience|December 18, 2024
A single-cell mass cytometry-based atlas of the developing mouse brainAmy L Van Deusen, Sushanth Kumar, O Yipkin Calhan, et al.
Nature Neuroscience|October 27, 2022
A developmental atlas of somatosensory diversification and maturation in the dorsal root ganglia by single-cell mass cytometryAustin B Keeler, Amy L Van Deusen, Irene C Gadani, et al.
Pageof 1