A mathematical framework for human neutrophil state transitions inferred from single-cell RNA sequence data

Neutrophils, the most abundant immune cells in the human circulation, play a central role in the innate immune system. While neutrophil heterogeneity is a topic of increasing research interest, few efforts have been made to model the dynamics of neutro…

A mathematical framework for human neutrophil state transitions inferred from single-cell RNA sequence data

Neutrophils, the most abundant immune cells in the human circulation, play a central role in the innate immune system. While neutrophil heterogeneity is a topic of increasing research interest, few efforts have been made to model the dynamics of neutro…

A mathematical framework for human neutrophil state transitions inferred from single-cell RNA sequence data

Neutrophils, the most abundant immune cells in the human circulation, play a central role in the innate immune system. While neutrophil heterogeneity is a topic of increasing research interest, few efforts have been made to model the dynamics of neutro…

A mathematical framework for human neutrophil state transitions inferred from single-cell RNA sequence data

Neutrophils, the most abundant immune cells in the human circulation, play a central role in the innate immune system. While neutrophil heterogeneity is a topic of increasing research interest, few efforts have been made to model the dynamics of neutro…

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nginx/1.24.0 (Ubuntu)