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project, we will measure the human mesoscale cerebellar morphology in postmortem brain tissue to provide a ground truth for the independent in-vivo experiments. This project will give you the chance to work
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become part of the Department of Complex Tissue Regeneration (CTR) within the MERLN Institute for Technology-Inspired Regenerative Medicine. You will join an exceptionally skilled team that is being
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glycans. You will combine glycan-based tools, molecular biology, and biochemical or analytical approaches to identify and characterise glycan receptors that drive influenza host and tissue tropism. We
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become part of the Department of Complex Tissue Regeneration (CTR) within the MERLN Institute for Technology-Inspired Regenerative Medicine. You will join an exceptionally skilled team that is being
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innovations in mechano-driven cartilage tissue engineering? Are you driven to develop novel in silico frameworks that deepen mechanistic understanding of tissue growth and inform in vitro experiments? Then you
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Tissue Engineering), a multidisciplinary consortium of 7 Dutch universities. Together, GreenTE will unravel how plants sense and respond to mechanical stimuli. These fundamental insights will be the basis
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-on-brain.eu/ ). You will employ techniques such as organoid cultures (pluripotent stem cell and tissue-derived), transcriptomic analyses, CRISPR-Cas engineering, and other state-of-the-art tools. Your
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expertise in organic chemistry, biocatalysis, lead finding of new biobased blocks, polymer chemistry, polymer physics, polymer engineering, biobased and biomedical materials, tissue engineering, and
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after menopause. However, the mechanisms driving these sex-specific differences remain poorly understood. In this PhD project, you will investigate how adipose tissue-derived signals alter cardiac
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biomedical materials, tissue engineering, and industrial and medical applications. More information can be found via: https://www.maastrichtuniversity.nl/research/institutes/amibm/research/biobased-polymers