Area of research
Molecular Biology · Genetics
Research interest
Research interests include Single-cell and spatial transcriptomics, Genetics and Neurodevelopmental Disorders, Autism Spectrum Disorder Research, and Congenital heart defects research.
Assigning Targetable Molecular Pathways to Transdiagnostic Subgroups Across Autism and Related Neurodevelopmental Disorders
Opportunities and challenges of single-cell and spatially resolved genomics methods for neuroscience discovery
Implementation and validation of single-cell genomics experiments in neuroscience
Applying single-cell and single-nucleus genomics to studies of cellular heterogeneity and cell fate transitions in the nervous system
Molecular features driving cellular complexity of human brain evolution
Association between resting-state functional brain connectivity and gene expression is altered in autism spectrum disorder
Cellular transcriptomics reveals evolutionary identities of songbird vocal circuits
Evolution of DNA methylation in the human brain
NPAS4 regulates the transcriptional response of the suprachiasmatic nucleus to light and circadian behavior
An essential role for MEF2C in the cortical response to loss of sleep in mice
Epigenetic inheritance of circadian period in clonal cells
Cell type-specific epigenetic links to schizophrenia risk in the brain
Accelerated evolution of oligodendrocytes in the human brain
Western Zika Virus in Human Fetal Neural Progenitors Persists Long Term with Partial Cytopathic and Limited Immunogenic Effects
ELAVL2-regulated transcriptional and splicing networks in human neurons link neurodevelopment and autism
Comparative Methylome Analyses Identify Epigenetic Regulatory Loci of Human Brain Evolution
Correspondence between Resting-State Activity and Brain Gene Expression
Cycling Transcriptional Networks Optimize Energy Utilization on a Genome Scale
Human-Specific Transcriptional Networks in the Brain
RBFOX1 regulates both splicing and transcriptional networks in human neuronal development
Divergent Whole-Genome Methylation Maps of Human and Chimpanzee Brains Reveal Epigenetic Basis of Human Regulatory Evolution