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(Level B) $107,276 to $126,894 per annum plus an employer contribution of 17% superannuation applies. Fixed term, full time position available for 24 months. Develop AI-driven digital tissue models
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. Conduct efficient analysis of large molecular marker datasets to inform strategic introgression and training population optimization. Customize and validate models for selection and cross-prediction
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, CRISPR) which are applied to develop new molecular therapeutic tools (such as on/off expression switches, dose-escalation expression regulators) and evaluated in cell culture and in-vivo models
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% superannuation applies. Fixed term, full time position available for 24 months. Develop AI-driven digital tissue models for precision oncology, harnessing a multidisciplinary approach to tailor immunotherapy
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molecular therapeutic tools (such as on/off expression switches, dose-escalation expression regulators) and evaluated in cell culture and in-vivo models. This position offers excellent research and networking
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program around co-toxic liver disease, including pre-clinical models and cellular and molecular biology techniques. Prepare research publications, progress reports, and participate in regular meetings
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human neurons and genetic mouse models. The successful candidate will have a proactive role and freedom to shape the project's overall direction. This position is funded by an Ideas Grant from
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and/or developmental biology and/or biochemistry and/or immunology related disciplines or a related discipline Experience and expertise in cell culture, animal models and general molecular biology
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, with demonstrated understanding of molecular cloning Experience with proteomics, mass spectrometry and bioinformatics analysis Experience with in-vivo experimental models Additional criteria for Research
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molecular neurosciences. As the successful incumbent, you will support our research group which is focussed on determining molecular mechanisms of disease pathways in neurodegenerative diseases including