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Field
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project is to uncover how collective dynamics and signal-ing feedbacks drive robust pattern formation during early development. We apply advanced stem cell culture approaches, 3D organoid engineering, and
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individuals with diverse backgrounds in biology, physics, chemistry, and engineering are invited to apply. The University of Miami offers competitive salaries and a comprehensive benefits package including
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cytometry. • Must have experience working with vertebrate animal models. • Experience with CRISPR and shRNA technology preferred. • Experience with R or Python and ability to analyze large datasets
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biology, bioinformatics, mathematics, physics, engineering, computer science, or a related field. Computational background in areas such as AI/deep learning, multiscale modeling, optimization, topological
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pluripotent stem cells (hiPSCs). Primary responsibility is to utilize the CRISPR/Cas9 genomic engineering technology to examine the impact of genomic ablation of the candidate target genes on iPSC-CM and animal
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will have experience/interest in vascular and microvascular biology, ECM biology, ECM biomaterials, 2-D and 3-D human cell culture, collagen and elastin biology, vascular tissue engineering, RNA and