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Field
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manipulate the brain networks underlying mood. You will lead the execution and analysis of a combined neuroimaging (functional magnetic resonance imaging or functional ultrasound imaging) and ultrasound
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developing novel neuromodulation applications and approaches. We utilize intracranial recording and stimulation and neuro imaging approaches in human neurosurgery patients. Ongoing projects include
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integrates molecular, imaging, and neurophysiological approaches to understand neurodevelopmental disorders, with particular focus on perineuronal nets and their role in seizure susceptibility. This position
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microscopy data analysis, chemometrics, and machine learning. This position is ideal for a researcher who enjoys working at the interface of imaging, data science, and environmental monitoring. The project
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: recognized scientific expertise in the processing of digitized documents. This includes image processing (pattern recognition and layout analysis), optical character recognition (OCR) and automatic language
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(https://udall.umn.edu). The position will involve: (1) the collection, processing and analysis of data acquired from quantitative motor tasks (gait, gait initiation, bradykinesia, rigidity, etc.) using
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function of various centriole and centrosome proteins using a variety of imaging and analysis techniques in living Drosophila embryos. Experience with advanced light microscopy and analysing large imaging
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. Under the direction of the Principal Investigator, the Postdoctoral Associate(s) will be responsible for the performance and analysis of experiments focused on development and function of novel immune
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undertake high-impact research at the interface of materials science, advanced imaging, and artificial intelligence, with a particular focus on developing automated approaches for analysing multi-modal
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with these molecules. A successful candidate will be familiar with the differentiation of iPSC to myeloid cells, assays evaluating viral kinetics including p24 AlphaLISA analysis and high content imaging