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research unit. The division focuses on uncovering molecular mechanisms of health and disease through advanced imaging and biophysical approaches. The research group hosting this position studies Contractile
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molecular mechanisms underlying amyloid formation from the protein transthyretin. Transthyretin normally functions as a transporter protein of thyroxine and retinol-binding protein (RBP) in the serum and
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Description of the workplace Professor Vasili Hauryliuk is research team manager of the Molecular Enzymology Group at the Department of Experimental Medical Science at Lund University. His research
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aims to address scientific and sectoral gaps in biological imaging from molecular, cellular, and tissue levels to organ and organism levels of organisation. The programme is coordinated by LINXS, Lund
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scientific and sectoral gaps in biological imaging ranging from molecular, through cellular, to tissue, organ and organism levels of organisation, and is coordinated by LINXS Institute of advanced Neutron and
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of its field. With this position, we aim to deepen our work on understanding how various ion channels function at the molecular level. The research will be conducted in close collaboration with Peter
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and sectoral gaps in biological imaging ranging from molecular, through cellular, to tissue, organ and organism levels of organisation, and is coordinated by LINXS Institute of advanced Neutron and X
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of advanced Neutron and X-ray Science. The project will address scientific and sectoral gaps in biological imaging ranging from molecular, through cellular, to tissue, organ and organism levels of organisation
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biological imaging ranging from molecular, through cellular, to tissue, organ and organism levels of organisation, and is coordinated by LINXS Institute of advanced Neutron and X-ray Science. AMBER is funded
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scientific and sectoral gaps in biological imaging ranging from molecular, through cellular, to tissue, organ and organism levels of organisation, and is coordinated by LINXS Institute of advanced Neutron and