Parallel RNA and DNA analysis after deep sequencing (PRDD-seq) reveals cell type-specific lineage patterns in human brain

AY Huang, P Li, RE Rodin, SN Kim… - Proceedings of the …, 2020 - National Acad Sciences
Elucidating the lineage relationships among different cell types is key to understanding
human brain development. Here we developed parallel RNA and DNA analysis after deep …

Parallel RNA and DNA analysis after deep sequencing (PRDD-seq) reveals cell type-specific lineage patterns in human brain

AY Huang, P Li, RE Rodin, SN Kim, Y Dou… - Proceedings of the …, 2020 - cir.nii.ac.jp
抄録< jats: p> Elucidating the lineage relationships among different cell types is key to
understanding human brain development. Here we developed parallel RNA and DNA …

Parallel RNA and DNA analysis after deep sequencing (PRDD-seq) reveals cell type-specific lineage patterns in human brain

AY Huang, P Li, RE Rodin, SN Kim… - Proceedings of the …, 2020 - pubmed.ncbi.nlm.nih.gov
Elucidating the lineage relationships among different cell types is key to understanding
human brain development. Here we developed parallel RNA and DNA analysis after deep …

[PDF][PDF] Parallel RNA and DNA analysis after deep sequencing (PRDD-seq) reveals cell type-specific lineage patterns in human brain

AY Huanga, P Lia, RE Rodina, SN Kima, Y Douj… - walshlab.org
Elucidating the lineage relationships among different cell types is key to understanding
human brain development. Here we developed parallel RNA and DNA analysis after deep …

[PDF][PDF] Parallel RNA and DNA analysis after deep sequencing (PRDD-seq) reveals cell type-specific lineage patterns in human brain

AY Huanga, P Lia, RE Rodina, SN Kima, Y Douj… - projects.iq.harvard.edu
Elucidating the lineage relationships among different cell types is key to understanding
human brain development. Here we developed parallel RNA and DNA analysis after deep …

Parallel RNA and DNA analysis after deep sequencing (PRDD-seq) reveals cell type-specific lineage patterns in human brain

AY Huang, P Li, RE Rodin, SN Kim… - Proceedings of the …, 2020 - ui.adsabs.harvard.edu
Stem cells and progenitors undergo a series of cell divisions to generate the neurons of the
brain, and understanding this sequence is critical to studying the mechanisms that control …

Parallel RNA and DNA analysis after deep sequencing (PRDD-seq) reveals cell type-specific lineage patterns in human brain.

AY Huang, P Li, RE Rodin, SN Kim, Y Dou… - Proceedings of the …, 2020 - europepmc.org
Elucidating the lineage relationships among different cell types is key to understanding
human brain development. Here we developed parallel RNA and DNA analysis after deep …

Parallel RNA and DNA analysis after deep sequencing (PRDD-seq) reveals cell type-specific lineage patterns in human brain

AY Huang, P Li, RE Rodin, SN Kim, Y Dou… - Proceedings of the …, 2020 - JSTOR
Elucidating the lineage relationships among different cell types is key to understanding
human brain development. Here we developed parallel RNA and DNA analysis after deep …

[PDF][PDF] Parallel RNA and DNA analysis after deep sequencing (PRDD-seq) reveals cell type-specific lineage patterns in human brain

AY Huanga, P Lia, RE Rodina, SN Kima, Y Douj… - compbio.hms.harvard.edu
Elucidating the lineage relationships among different cell types is key to understanding
human brain development. Here we developed parallel RNA and DNA analysis after deep …

Parallel RNA and DNA analysis after Deep-sequencing (PRDD-seq) reveals cell type specific lineage patterns in human brain

AY Huang, P Li, RE Rodin, SN Kim, Y Dou, CJ Kenny… - bioRxiv, 2020 - biorxiv.org
Elucidating the lineage relationships among different cell types is key to understanding
human brain development. Here we developed P arallel R NA and D NA analysis after D …