Area of research
Molecular Biology · Computational Theory and Mathematics
Research interest
Research interests include Biology, Genome-wide association study, Genetics, Computational biology, Single-nucleotide polymorphism, and Imputation (statistics).
RosettaSX: Reliable gene expression signature scoring of cancer models and patients
Genome-wide association meta-analysis of corneal curvature identifies novel loci and shared genetic influences across axial length and refractive error
Genetic Interactions and Tissue Specificity Modulate the Association of Mutations with Drug Response
Expressional analysis of disease-relevant signalling-pathways in primary tumours and metastasis of head and neck cancers
Comparison of HapMap and 1000 Genomes Reference Panels in a Large-Scale Genome-Wide Association Study
Haplotype reference consortium panel: Practical implications of imputations with large reference panels
Dissolution and dissolution/permeation experiments for predicting systemic exposure following oral administration of the BCS class II drug clarithromycin
Meta-analysis of gene–environment-wide association scans accounting for education level identifies additional loci for refractive error
Genome-wide association study with additional genetic and post-transcriptional analyses reveals novel regulators of plasma factor XI levels
Optimization of the Ussing chamber setup with excised rat intestinal segments for dissolution/permeation experiments of poorly soluble drugs
A meta-analysis of 120 246 individuals identifies 18 new loci for fibrinogen concentration
Gene expression patterns underlying parasite‐induced alterations in host behaviour and life history
Systemic PaO2 Oscillations Cause Mild Brain Injury in a Pig Model
Distribution, genetic and cardiovascular determinants of FVIII:c — Data from the population-based Gutenberg Health Study
A Systems Level Analysis Reveals Transcriptomic and Proteomic Complexity in Ixodes Ricinus Midgut and Salivary Glands During Early Attachment and Feeding
Dynamic Oscillation of Translation and Stress Granule Formation Mark the Cellular Response to Virus Infection