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Field
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is looking to hire a research assistant to work with her at the Barcelona School of Economics on a project studying Statistical inference for high-dimensional stochastic differential equations under
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). However, the mechanisms by which local heterogeneities emerge and influence differentiation and collective behaviors remain poorly understood. This project aims to elucidate how these heterogeneities
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dispersive partial differential equations. More specifically, they will work on the study of dark solitons for the logarithmic Gross–Pitaevskii equation. This research, led by Guillaume Ferriere, will be
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responses (e.g., differentiation, vascularization, and cell–cell communication). Will design genetic circuits and assays; collect and analyze data using techniques such as flow cytometry, RT-qPCR, next
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. Prior experience with iPSC-based neuronal and glial differentiation is essential. Experience with multi-electrode array (MEA) methodologies and multi-omic approaches (e.g. single-cell transcriptomics
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differential equations (PDEs). While all applicants with a background in the analysis of PDEs will be considered, candidates with prior experience in theoretical physics, fluid mechanics, kinetic theory
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the general supervision of Dr. Nikiforov, the Postdoctoral Associate will conduct independent and collaborative research in the areas of keratinocyte differentiation, melanoma biology, and multiple myeloma
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strong experience in the analysis of partial differential equations. The research topic of the postdoc will be on issues of long time dynamics and singularity formation, for waves, fluids, or reaction
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responsibilities: Generation, maintenance and differentiation of human iPSCs into midbrain and striatum organoids, nigrostriatal assembloids and microglia Integration of microglia into assembloid systems and
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-derived models, performing comprehensive differentiation studies across multiple cellular contexts, and using CRISPR activation and interference to identify specific genes that contribute to disease