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BIOS-06/A - A synaptic mechanogenetic technology to repair brain connectivity - CUP: J93C22002400006
insufficient spatial resolution and challenges related to in vivo implementation. The project proposes a novel platform based on biocompatible magnetic nanoparticles and synaptic mechanosensors designed
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; experience with statistical analysis, experience with data manipulation in SAS and/or SQL; experience in spatial analysis and mapping using ArcGIS Pro; experience developing and maintaining interactive
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the scientific coordination and integration of the project's activities. Responsibilities include: • Data synthesis and integration across spatial and temporal scales, combining experimental, ecological
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including immunohistochemistry, second harmonic generation microscopy, and multi-omic analyses (e.g., single-cell RNA sequencing, spatial transcriptomics, proteomics). Analyze, interpret, and integrate large
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on a synchrotron with submicrometric spatial resolution. Spectroscopic data on As, Bi and W will be collected in order to determine their local coordination environment and oxidation state. In order to
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they continue to investigate. Approaches include genetics, spatial genomics, single-molecule biophysics, super-resolution imaging, computational modeling, and structural studies including X-ray
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applicants for a postdoctoral fellow position in the Laboratory of Systems Pharmacology (LSP; https://labsyspharm.org/ ), part of the Harvard Program in Therapeutic Science, at Harvard Medical School in Boston
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and computational pipelines for diverse data modalities, including transcriptomics (e.g., single-cell RNA-seq and spatial transcriptomics), chromatin accessibility (e.g., ATAC-seq), protein–DNA
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Massachusetts Institute of Technology | Cambridge, Massachusetts | United States | about 1 month ago
role responsible for generating spatial transcriptomic and proteomic optical imaging data of human and non-human primate brains, utilizing the novel technology pipeline established by the Chung Lab
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infrastructures organized in infrastructure platforms, of which the Vibrational Spectroscopy Core Facility (ViSp) is a central infrastructure for this project (https://www.umu.se/en/research/infrastructure/visp