A better understanding of the cell-fate transitions that occur in complex cellular ecosystems in normal development and disease could inform cell engineering efforts and lead to improved therapies. However, a major challenge is to simultaneously identify new cell states, and their transitions, to elucidate the gene expression dynamics governing cell-type diversification. Here, we present CellRouter, a multifaceted single-cell analysis platform that identifies complex cell-state transition trajectories by using flow networks to explore the subpopulation structure of multi-dimensional, single-cell omics data. We demonstrate its versatility by applying CellRouter to single-cell RNA sequencing data sets to reconstruct cell-state transition traj...
Tracking the progeny of single cells is necessary for building lineage trees that recapitulate proce...
A major challenge for stem cell engineering is achieving a holistic understanding of the molecular n...
The ability to create pluripotent stem cells (PSCs) from any tissue by a process called reprogrammin...
Single-cell transcriptomic assays have enabled the de novo reconstruction of lineage differentiation...
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 ...
Single-cell transcriptomics has recently emerged as a powerful tool to analyze cellular heterogeneit...
Thesis (Ph.D.)--University of Washington, 2018Development is commonly regarded as a hierarchical bra...
Mapping the paths that stem and progenitor cells take en route to differentiate and elucidating the ...
Developmental hematopoiesis differs from adult and is far less described. In the developing embryo, ...
Function at the organ level manifests itself from a heterogeneous collection of cell types. Cellular...
Cell fate decisions play a pivotal role in development, but technologies for dissecting them are lim...
High-dimensional single cell profiling coupled with computational modeling is emerging as a powerful...
Cellular reprogramming has been recently intensively studied experimentally. We developed a global p...
A fundamental goal of developmental and stem cell biology is to map the developmental history (ontog...
Tracking the progeny of single cells is necessary for building lineage trees that recapitulate proce...
A major challenge for stem cell engineering is achieving a holistic understanding of the molecular n...
The ability to create pluripotent stem cells (PSCs) from any tissue by a process called reprogrammin...
Single-cell transcriptomic assays have enabled the de novo reconstruction of lineage differentiation...
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 ...
Single-cell transcriptomics has recently emerged as a powerful tool to analyze cellular heterogeneit...
Thesis (Ph.D.)--University of Washington, 2018Development is commonly regarded as a hierarchical bra...
Mapping the paths that stem and progenitor cells take en route to differentiate and elucidating the ...
Developmental hematopoiesis differs from adult and is far less described. In the developing embryo, ...
Function at the organ level manifests itself from a heterogeneous collection of cell types. Cellular...
Cell fate decisions play a pivotal role in development, but technologies for dissecting them are lim...
High-dimensional single cell profiling coupled with computational modeling is emerging as a powerful...
Cellular reprogramming has been recently intensively studied experimentally. We developed a global p...
A fundamental goal of developmental and stem cell biology is to map the developmental history (ontog...
Tracking the progeny of single cells is necessary for building lineage trees that recapitulate proce...
A major challenge for stem cell engineering is achieving a holistic understanding of the molecular n...
The ability to create pluripotent stem cells (PSCs) from any tissue by a process called reprogrammin...