22 molecular-modeling-or-molecular-dynamic-simulation positions at Linköping University
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of Wnt Signaling using model organisms and/or organoids systems. Your workplace The position is located at the Division of Molecular Medicine and Virology (MMV) which is a part of the Department
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at the Division of Molecular Medicine and Virology (MMV). The scholarship is part of the Medical Inflammation and Infection Center (MIIC) International Postdoc Program, the start date is negotiable. Research
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-operando spectroscopic techniques Molecular Gate (Spain) – advanced methods to image doping profiles Forschungszentrum Jülich (Germany) – biocompatibility assessment The work will be done in close
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of biomarkers for disease risks, diagnosis, drug response and monitoring of health. Precision medicine research is expected to make use of existing strong assets in Sweden and abroad, such as molecular data (e.g
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electronic devices The project will include three secondments: University of Bern (Switzerland) – advanced in-operando spectroscopic techniques Molecular Gate (Spain) – advanced methods to image doping
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-driven approaches, the role aims to identify biomarkers and key molecular features related to health and disease, contributing to precision medicine and mechanistic insights. The position includes
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groundbreaking work on enzyme-triggered electrode fabrication in animal models (Strakosas et al., Science, 2023; https://doi.org/10.1126/science.adc9998 ), this project leverages enzymatic polymerization to create
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cancer. The goal will be to find genetic prediction models to be able to predict which childhood cancer patients have a high or low risk of toxicity in childhood cancer. Preliminary the doctoral project
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will work together with other bioinformaticians, doctors and molecular biologists both in the facility and in a wider network of national and international collaborations. As this post also involves
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generative models, geometric machine learning, dynamical systems, and/or multi-modal learning. From the materials science perspective, our primary focus will be on ultra-thin, so-called, 2-dimensional