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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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differences in patient sensitivity to therapy. Furthermore, male sex is associated with both higher incidence of GBM and poorer survival outcomes. Thiadiazole is a heterocyclic compound containing one sulphur
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SINTEF. The project aims to develop an automated high-throughput platform for physiologically relevant cell research by combining robotics, microfluidics, advanced sensors, cloud-connected software, and
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relevant cell research by combining robotics, microfluidics, advanced sensors, cloud-connected software, and artificial intelligence. The successful candidate will become part of a multidisciplinary
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cellular models. What you do Your research focuses on understanding how adipose tissue-derived signals contribute to sex-specific differences in diabetic cardiomyopathy. Your tasks and responsibilities
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research aims to understand the molecular, cellular and biophysical mechanisms that sculpt different tissue shapes and sizes to suit the lifestyle of the organisms. To achieve this goal, we are focusing
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Strong confinement in highly disordered and intricate environments is essential for understanding the behavior of a broad class of systems with intrinsic motility. Porous materials -- such as cell
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on diverse topics ranging from how organisms age or how our DNA is repaired, to how epigenetics regulates cellular identity or neural memory. Activities and responsibilities The research group of Andreas
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AITHYRA GmbH - Research Institute for Biomedical Artificial Intelligence of the Austrian Academy of Sciences | Vienna, Virginia | United States | about 23 hours ago
goal, we build on a strong foundation in geometric deep learning, generative AI, representation learning, high-throughput genetics and proteomics, molecular and cell biology, chemical biology, and
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will join a community of exceptional scientists working on diverse topics ranging from how organisms age or how our DNA is repaired, to how epigenetics regulates cellular identity or neural memory