Area of research
Molecular Biology · Nephrology
Research interest
Research focused on Computational biology and Transcriptome, with related work in Morphogenesis, Oligodendrocyte, Tumor microenvironment. Notable publications include 'Gene expression cartography', 'Open-ST: High-resolution spatial transcriptomics in 3D', and 'Defective metabolic programming impairs early neuronal morphogenesis in neural cultures and an organoid model of Leigh syndrome'.
Interleukin-12 signaling drives Alzheimer’s disease pathology through disrupting neuronal and oligodendrocyte homeostasis
Combining spatial transcriptomics and ECM imaging in 3D for mapping cellular interactions in the tumor microenvironment
Scalable image-based visualization and alignment of spatial transcriptomics datasets
Spatiotemporal dynamics of tumor microenvironment remodeling
Open-ST: High-resolution spatial transcriptomics in 3D
Single-cell transcriptomics reveals common epithelial response patterns in human acute kidney injury
Spacemake: processing and analysis of large-scale spatial transcriptomics data
Defective metabolic programming impairs early neuronal morphogenesis in neural cultures and an organoid model of Leigh syndrome
NovoSpaRc: flexible spatial reconstruction of single-cell gene expression with optimal transport
Gene selection for optimal prediction of cell position in tissues from single-cell transcriptomics data
Gene expression cartography