To understand stem cell differentiation along multiple lineages, it is necessary to resolve heterogeneous cellular states and the ancestral relationships between them. We developed a robotic miniaturized CEL-Seq2 implementation to carry out deep single-cell RNA-seq of ∼2,000 mouse hematopoietic progenitors enriched for lymphoid lineages, and used an improved clustering algorithm, RaceID3, to identify cell types. To resolve subtle transcriptome differences indicative of lineage biases, we developed FateID, an iterative supervised learning algorithm for the probabilistic quantification of cell fate bias in progenitor populations. Here we used FateID to delineate domains of fate bias and enable the derivation of high-resolution differentiation...
Ontogeny describes the emergence of complex multicellular organisms from single totipotent cells. Th...
Motivation: Transcriptional regulatory networks controlling cell fate decisions in mammalian embryon...
Despite being the object of intense study, embryonic development has been difficult to model due to ...
To understand stem cell differentiation along multiple lineages, it is necessary to resolve heteroge...
Maintenance of the blood system requires balanced cell fate decisions by hematopoietic stem and prog...
Cellular differentiation is a common underlying feature of all multicellularorganisms through which ...
SummaryAdult mitotic tissues like the intestine, skin, and blood undergo constant turnover throughou...
Adult mitotic tissues like the intestine, skin, and blood undergo constant turnover throughout the l...
Pluripotent stem cell research is an active, often controversial field focused on a special type of ...
Motivation: Cell fate decisions have a strong stochastic component. The identification of the underl...
Hematopoietic stem cells (HSC) must constantly replenish the blood system by making billions of new ...
Abstract Existing computational methods that use single-cell RNA-sequencing (scRNA-seq) for cell fa...
Cell fate decisions play a pivotal role in development, but technologies for dissecting them are lim...
A better understanding of the cell-fate transitions that occur in complex cellular ecosystems in nor...
The generation of cellular heterogeneity is an essential feature of immune responses. Understanding ...
Ontogeny describes the emergence of complex multicellular organisms from single totipotent cells. Th...
Motivation: Transcriptional regulatory networks controlling cell fate decisions in mammalian embryon...
Despite being the object of intense study, embryonic development has been difficult to model due to ...
To understand stem cell differentiation along multiple lineages, it is necessary to resolve heteroge...
Maintenance of the blood system requires balanced cell fate decisions by hematopoietic stem and prog...
Cellular differentiation is a common underlying feature of all multicellularorganisms through which ...
SummaryAdult mitotic tissues like the intestine, skin, and blood undergo constant turnover throughou...
Adult mitotic tissues like the intestine, skin, and blood undergo constant turnover throughout the l...
Pluripotent stem cell research is an active, often controversial field focused on a special type of ...
Motivation: Cell fate decisions have a strong stochastic component. The identification of the underl...
Hematopoietic stem cells (HSC) must constantly replenish the blood system by making billions of new ...
Abstract Existing computational methods that use single-cell RNA-sequencing (scRNA-seq) for cell fa...
Cell fate decisions play a pivotal role in development, but technologies for dissecting them are lim...
A better understanding of the cell-fate transitions that occur in complex cellular ecosystems in nor...
The generation of cellular heterogeneity is an essential feature of immune responses. Understanding ...
Ontogeny describes the emergence of complex multicellular organisms from single totipotent cells. Th...
Motivation: Transcriptional regulatory networks controlling cell fate decisions in mammalian embryon...
Despite being the object of intense study, embryonic development has been difficult to model due to ...