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): Processing, quality control, and comprehensive analysis of omics data (RNA-seq, scRNA-seq, proteomics, metabolomics) to identify differentially expressed genes, proteins, metabolites, pathways, and signatures
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: Development and optimization in the acquisition protocol of novel MRI sequences Implementation of the specific analysis pipelines, from quality control to statistical analysis of the measured outcomes Writing
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preclinical models. The work will include: Developing and optimizing radiochemical labelling protocols for nanomotor formulations. Performing quality control, stability, and dosimetry studies of radiolabelled
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: Development and optimization in the acquisition protocol of novel MRI sequences Implementation of the specific analysis pipelines, from quality control to statistical analysis of the measured outcomes Writing
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environments. Working closely with partners in the NEXPECH₂ project, you will analyze their materials and provide valuable insights to help optimize device performance. Additionally, you will support
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be clinically tested in a small animal model. (Ref: PID2022-136961NB-I00)(HR25-00225). Main functions: Design, fabrication, and optimization of liquid-walled pumps (Qpump) capable of achieving
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alarm protocols; experience in sensor deployment/SCADA and data processing. Ability to optimize regeneration systems and integrate them into service networks; knowledge of EU regulations on water reuse
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valuable insights to help optimize device performance. Additionally, you will support collaborators by assisting with in-situ TEM measurements, facilitating cutting-edge research in sustainability and energy
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innovative experiments. The work will include defining and optimizing in vitro models using diverse cell types and advanced platforms, as well as establishing correlations between applied mechanical stimuli