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atroviride, involving microscopy monitoring as well as novel approach for the identification of transcription factors effectors. The position is to be filled for a period of three years, starting in May 2026
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extensive experience in C. elegans genetics, molecular biology, and aging biology. Imaging using confocal microscopy. Certifications/Licenses Required Knowledge, Skills, and Abilities Experience in genetics
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range of routine and specialized laboratory duties. Support ongoing immunohistochemical and microscopy based analysis of brain tissue. Develop or modify techniques and protocols. Oversee and manage a
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education to enable regions to expand quickly and sustainably. In fact, the future is made here. Description of work You will be working in the laboratory of Marta Bally (https://ballylab.com/ ), in close
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scattering (SAXS) tensor tomography Develop correlative multi-scale analysis pipelines integrating SAXS tensor tomography and high-resolution X-ray tomography, and complementary electron microscopy data (in
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University of Massachusetts Medical School | Worcester, Massachusetts | United States | about 2 months ago
, etc.). We use a variety of techniques such as confocal microscopy, single cell RNAseq, spatial transcriptomics, mouse genetics, and behavior to address how microglia modify synapses and, in turn, how
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engineering, super resolution microscopy and intracellular transport assays. In addition, the student will also gain experience in generic approaches such as molecular biology, cell culture and viral
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how mechanochemical systems underpin developmental diversity. This interdisciplinary project will use 3D fluorescence microscopy, biophysical analyses, transcriptomics (RNA-sequencing), and in vivo
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other applications of microfabricated circuits, transducers and systems. The group [https://www.nist.gov/pml/microsystems-and-nanotechnology-division/photonics-and-optomechanics-group ] offers a highly
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Faculty Positions, Aging and Neurodegeneration, Westlake Laboratory of Life Sciences and Biomedicine
-of-the-art core facilities at WLLSB, including cryo-electron microscopy, mass spectrometry, flow cytometry, light microscopy, genomics, metabolism, bioinformatics, and high-throughput screening. WLLSB has