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Brendan L O'Connell

Showing results (1-10 of 20) with videos related to

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Biorxiv : the Preprint Server for Biology|August 30, 2024
Single-cell DNA methylation analysis tool Amethyst reveals distinct noncanonical methylation patterns in human glial cellsLauren E Rylaarsdam, Ruth V Nichols, Brendan L O'Connell, et al.
Genome Biology|July 10, 2024
sciMET-cap: high-throughput single-cell methylation analysis with a reduced sequencing burdenSonia N Acharya, Ruth V Nichols, Lauren E Rylaarsdam, et al.
Biorxiv : the Preprint Server for Biology|July 28, 2023
sciMET-cap: High-throughput single-cell methylation analysis with a reduced sequencing burdenSonia N Acharya, Ruth V Nichols, Lauren E Rylaarsdam, et al.
Cell Genomics|December 25, 2024
Atlas-scale single-cell DNA methylation profiling with sciMETv3Ruth V Nichols, Lauren E Rylaarsdam, Brendan L O'Connell, et al.
Biorxiv : the Preprint Server for Biology|June 22, 2026
Early postnatal DNA methylation dynamics define neuronal subtypes and are disrupted by MECP2 lossLauren E Rylaarsdam, Ruth V Nichols, Brendan L O'Connell, et al.
Communications Biology|October 14, 2025
Single-cell DNA methylation analysis tool Amethyst resolves distinct non-CG methylation patterns in human astrocytes and oligodendrocytesLauren E Rylaarsdam, Benjamin W Skubi, Ruth V Nichols, et al.
The CRISPR Journal|July 14, 2022
Cas12a-Capture: A Novel, Low-Cost, and Scalable Method for Targeted SequencingTaylor L Mighell, Andrew Nishida, Brendan L O'Connell, et al.
Ecology|July 24, 2024
Increased intake of tree forage by moose is associated with intake of crops rich in nonstructural carbohydratesAnnika M Felton, Robert Spitzer, David Raubenheimer, et al.
Nature Communications|December 9, 2022
High-throughput robust single-cell DNA methylation profiling with sciMETv2Ruth V Nichols, Brendan L O'Connell, Ryan M Mulqueen, et al.
Genome Research|February 15, 2023
Atlas-scale single-cell chromatin accessibility using nanowell-based combinatorial indexingBrendan L O'Connell, Ruth V Nichols, Dmitry Pokholok, et al.
Pageof 2

Showing results (1-10 of 20) with videos related to

Sort By:
Pageof 2
Biorxiv : the Preprint Server for Biology|August 30, 2024
Single-cell DNA methylation analysis tool Amethyst reveals distinct noncanonical methylation patterns in human glial cellsLauren E Rylaarsdam, Ruth V Nichols, Brendan L O'Connell, et al.
Genome Biology|July 10, 2024
sciMET-cap: high-throughput single-cell methylation analysis with a reduced sequencing burdenSonia N Acharya, Ruth V Nichols, Lauren E Rylaarsdam, et al.
Biorxiv : the Preprint Server for Biology|July 28, 2023
sciMET-cap: High-throughput single-cell methylation analysis with a reduced sequencing burdenSonia N Acharya, Ruth V Nichols, Lauren E Rylaarsdam, et al.
Cell Genomics|December 25, 2024
Atlas-scale single-cell DNA methylation profiling with sciMETv3Ruth V Nichols, Lauren E Rylaarsdam, Brendan L O'Connell, et al.
Biorxiv : the Preprint Server for Biology|June 22, 2026
Early postnatal DNA methylation dynamics define neuronal subtypes and are disrupted by MECP2 lossLauren E Rylaarsdam, Ruth V Nichols, Brendan L O'Connell, et al.
Communications Biology|October 14, 2025
Single-cell DNA methylation analysis tool Amethyst resolves distinct non-CG methylation patterns in human astrocytes and oligodendrocytesLauren E Rylaarsdam, Benjamin W Skubi, Ruth V Nichols, et al.
The CRISPR Journal|July 14, 2022
Cas12a-Capture: A Novel, Low-Cost, and Scalable Method for Targeted SequencingTaylor L Mighell, Andrew Nishida, Brendan L O'Connell, et al.
Ecology|July 24, 2024
Increased intake of tree forage by moose is associated with intake of crops rich in nonstructural carbohydratesAnnika M Felton, Robert Spitzer, David Raubenheimer, et al.
Nature Communications|December 9, 2022
High-throughput robust single-cell DNA methylation profiling with sciMETv2Ruth V Nichols, Brendan L O'Connell, Ryan M Mulqueen, et al.
Genome Research|February 15, 2023
Atlas-scale single-cell chromatin accessibility using nanowell-based combinatorial indexingBrendan L O'Connell, Ruth V Nichols, Dmitry Pokholok, et al.
Pageof 2