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  • BCRT Regenerative medicine

    Regenerative Hepatology

    Ludovic Vallier

    The objective of our research group is to acquire the basic knowledge necessary to develop new therapies against diseases affecting the liver. For that, we use stem cells to model embryonic development in vitro and to produce liver cells with an interest for cell therapy.

  • Digital Medicine

    Mathematical modelling of neuronal learning

    Robert Gütig

    The Gütig lab uses analytical and numerical modeling techniques to identify the computational principles underlying spike based information processing and learning in central nervous systems and to understand how these principles are implemented by biological processes. Specifically, the lab focuses on the role of action potential timing in sensory…

  • Regenerative medicine

    Bone Healing

    Katharina Schmidt-Bleek

    Bone is an interesting tissue from the researchers view as it is able to regenerate after injury. However, even today and with an adequate treatment 5-20% of all fractured patients experience a delayed or non-union.

  • BCRT Regenerative medicine

    Computational Mechanobiology

    Sara Checa Esteban

    Tissues in the musculoskeletal system are exquisitely designed with superb mechanical properties. The tissues are also able to adapt to withstand changing mechanical conditions. The Computational Mechanobiology Group is focused on understanding these two exciting features. Using computer modeling techniques, we seek to understand the mechanical…

  • Genetics/Genomics Digital Medicine

    Medical Omics

    Sören Lukassen

    The Medical Omics lab aims to improve healthcare and basic research by providing artificial intelligence-driven tools for the analysis of large biomedical datasets. For comprehensive insights in disease entities, we aim to include multiple layers of data, such as single-cell RNA sequencing, methylomics data and medical imaging. In close…

  • Digital Medicine

    Computational Medicine

    Claudia Langenberg

    Common metabolic disorders such as obesity, insulin resistance and type 2 diabetes have both environmental and genetic causes. We now know that many sections of the genome influence the risk of weight gain or adverse fat distribution, in addition to the important roles played by lack of physical activity and excessive intake of high-calorie foods.…

  • Cell Biology/Single Cells

    Systems Hematology, Stem Cells & Precision Medicine

    Simon Haas

    The Haas group develops and applies novel multimodal single-cell and spatially-resolved technologies to study the complex etiology of hematological cancers and their interaction with the immune system.

  • Cell Biology/Single Cells

    Stem Cell Dynamics & Mitochondrial Genomics

    Leif Ludwig

    Hematopoiesis describes the process of blood formation and is sustained by the activity of hematopoietic stem and progenitor cells throughout our lifetime. While our understanding of stem cell biology continues to grow, it still remains challenging to study the in vivo activity of individual stem cells in humans.