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Faculty

First NameLast NameDepartmentWebsitePhoto UploadClusterInformation
JunLiApplied & Computational Mathematics & Statisticshttps://acms.nd.edu/people/jun-li/
  • Computational Biology & Bioinformatics
Applied Statistics, Bioinformatics, Biostatistics, specialized in modeling, inferring, and testing on large datasets, developing new statistical and machine learning methods for challenging datasets (e.g., RNA-seq)
KaiyuFuChemistry and Biochemistryhttps://chemistry.nd.edu/faculty/kaiyu-fu/
  • Cancer Biology
  • Chemical Biology & Molecular Pharmacology
  • Computational Biology & Bioinformatics
  • Neuroscience
Integration of nanotechnology, advanced materials, and bioanalytical techniques with automated data acquisition and processing to develop biomedical devices that enable point-of-care diagnostics and improve chronic disease management.
KasturiHaldarBiological Scienceshttps://biology.nd.edu/people/faculty/kasturi-haldar/
  • Cellular & Molecular Biology
  • Chemical Biology & Molecular Pharmacology
  • Computational Biology & Bioinformatics
  • Genomics & Proteomics
  • Immunology & Infectious Disease
  • Neuroscience
Understanding disease pathology and developing treatments in rare and neglected diseases
KatharineWhiteChemistry and Biochemistryhttps://chemistry.nd.edu/faculty/katharine-white/
  • Biophysics & Structural Biology
  • Cancer Biology
  • Cellular & Molecular Biology
Cellular pH dynamics; pH-sensitive mechanisms regulating proteins, pathways, and cancer cell behaviors
KatrinaAdamsBiological Scienceshttps://biology.nd.edu/people/katrina-adams/
  • Cellular & Molecular Biology
  • Neuroscience
We ask how different populations of neural stem and glial progenitor cells within the mammalian brain respond to injury and disease including in individuals with Multiple Sclerosis
KelseyGasiorApplied & Computational Mathematics & Statisticshttps://acms.nd.edu/people/kelsey-gasior/
  • Cellular & Molecular Biology
  • Computational Biology & Bioinformatics
Using an interdisciplinary approach to understand the multiscale dynamics controlling spatio-temporal patterns necessary for cellular function
KevinVaughanBiological Scienceshttps://biology.nd.edu/people/faculty/kevin-vaughan/
  • Cancer Biology
  • Cellular & Molecular Biology
  • Genomics & Proteomics
  • Neuroscience
Molecular basis of organelle transport
LaurieLittlepageChemistry and Biochemistryhttps://chemistry.nd.edu/faculty/laurie-littlepage//assets/288367/fullsize/littlepage_laurie_72x63.jpg
  • Biophysics & Structural Biology
  • Cancer Biology
  • Cellular & Molecular Biology
  • Computational Biology & Bioinformatics
  • Genomics & Proteomics
  • Immunology & Infectious Disease
Modeling cancer progression in vivo to develop biomarkers and therapies; contributions of the microenvironment to breast and prostate cancers
MargaretSchwarzPediatrics (IUSM-SB) and Chemistry and Biochemistry (ND)https://chemistry.nd.edu/faculty/adjunct-faculty/margaret-schwarz/
  • Cancer Biology
  • Cellular & Molecular Biology
  • Immunology & Infectious Disease
Anti-angiogenic factors in lung and tumor development
Mariko MorimotoChemistry and Biochemistryhttps://chemistry.nd.edu/faculty/mariko-morimoto/
  • Cancer Biology
  • Cellular & Molecular Biology
  • Chemical Biology & Molecular Pharmacology
  • Immunology & Infectious Disease
Developing chemical approaches to discover and target immune-regulating mechanisms, with a particular focus on glycobiology and chemically induced proximity.