Area of research
Molecular Biology · Ophthalmology
Research interest
Research focused on Cell biology and Computational biology, with related work in Epiblast, Genome, Chromatin. Notable publications include 'Complex multi-enhancer contacts captured by genome architecture mapping', 'Heterogeneity in Oct4 and Sox2 Targets Biases Cell Fate in 4-Cell Mouse Embryos', and 'Normalizing single-cell RNA sequencing data: challenges and opportunities'.
Niche-derived Semaphorin 4A safeguards functional identity of myeloid-biased hematopoietic stem cells
<i>Community</i> assesses differential cell communication using large multi-sample case-control scRNAseq datasets
Multiplex-GAM: genome-wide identification of chromatin contacts yields insights overlooked by Hi-C
Characterization of a common progenitor pool of the epicardium and myocardium
Cell competition acts as a purifying selection to eliminate cells with mitochondrial defects during early mouse development
Using single‐cell genomics to understand developmental processes and cell fate decisions
Complex multi-enhancer contacts captured by genome architecture mapping
Normalizing single-cell RNA sequencing data: challenges and opportunities
Single-Cell Landscape of Transcriptional Heterogeneity and Cell Fate Decisions during Mouse Early Gastrulation
Pluripotent state transitions coordinate morphogenesis in mouse and human embryos
Defining murine organogenesis at single-cell resolution reveals a role for the leukotriene pathway in regulating blood progenitor formation
Mosaic autosomal aneuploidies are detectable from single-cell RNAseq data
Heterogeneity in Oct4 and Sox2 Targets Biases Cell Fate in 4-Cell Mouse Embryos