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that feed a tumor. Nanobubbles, a new generation of ultrasound contrast agent far smaller than those used today, promise to change that by reaching into the tumor tissue itself. We are looking for a motivated
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Are you fascinated by scientific and technological innovations in mechano-driven cartilage tissue engineering? Are you driven to develop novel in silico frameworks that deepen mechanistic
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the Department of Microelectronics at Delft University of Technology in the Netherlands. Our research aims to develop multifunctional and multidimensional bioelectronic interfaces that can address fundamental
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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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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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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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PhD candidate for the project "Modulation of inflammatory Dendritic cell subsets in atherosclerosis"
for intervention. You will make use of available human atherosclerotic tissue and datasets, design and perform in vitro studies and validate findings in vivo. What you bring We are looking for an enthusiastic
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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