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digital image analysis platforms (Halo, VisioPharm, QuPath, InForm, etc.) a plus Experience with R, Python, and commonly used libraries/packages a plus Enthusiasm for novel assay and technology development
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mechanisms, and quantitative imaging. Experience with CRISPR-based gene editing, optical microscopy, and quantitative skills are required. Previous work in the field of cell cycle, genome integrity and
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during clinical radiotherapy and age- related bone deterioration, and interaction with mesenchymal and hematopoietic cells utilizing genetic, histologic, imaging and flow cytometric approaches
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editing and real time super-resolution imaging to the use of microfluidic devices and the development of deep learning segmentation tools. For their studies, the Conradt group uses the nematode
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: * Develop and apply cell culture models of retinal fibrosis and retinal degenerative diseases. * Utilize molecular biology, biochemistry, and imaging techniques to study disease mechanisms and therapeutic
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without triggering autoimmunity. To address this, our research program heavily focuses on studying T and B cell population dynamics through intravital 2-photon imaging and the role of secreted immune
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control in neuronal synapses You will be working with primary neuron cultures, rodent in vivo models, and patient brain biopsies You will use advanced microscopy for super-resolution and live imaging
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), molecular biology and vector design, and flow cytometry and imaging; and the ability to drive an independent project while thriving on teamwork and clear communication. Great to have. We’re excited by
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signaling. Use advanced techniques such as CRISPR/Cas9 gene editing, protein biochemistry, mass spectrometry, and live-cell imaging. Analyze data, interpret results, and present findings at internal and
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has several immediate openings for Senior Research Fellows, Research Fellows and PhD Students in the following areas: Physics and applications of superconducting single photon detectors Imaging and