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: The focus of the research is to understand the molecular and cellular mechanisms underlying the development of the spinal cord and the consequences of abnormal development for animal behaviour using the mouse
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harmonic generation. The project involves pulse compression in a multipass cell, pulse shaping in both time and frequency domains, beam shaping using spatial light modulators (SLMs), and generation of new
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University of Copenhagen). References: Mets et al. Cell Host Microbe 2024 Ernits et al. 2023 Zhang et al. Nature 2022 Kurata et al. Mol. Cell 2021 Description of the AMBER project context This post-doctoral
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at single-cell scale in microfluidics-based soil chips, in different conditions, representing those encountered in real soils. The postdoc will collaborate with other participants within the project
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The Department of Molecular Biosciences, Wenner-Gren Institute (MBW) conducts experimental basic research in molecular cell biology, integrative biology and infection and immune biology. The
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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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background in immunology. Proficiency in molecular and cellular biology, including multicolor flow cytometry, is essential. Previous experience with mouse handling is highly desirable. The successful applicant
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range of disciplines in plant biology, including ecology, computational biology, genetics, physiology, biochemistry, cell biology and molecular biology (see www.upsc.se). The postdoctoral scholarship
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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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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 by the EU