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publications, present findings at conferences, and maintain a well-documented codebase enabling seamless reproduction and extension of results. Collaborate with interdisciplinary teams across multiple
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of, mechanical and electronic-circuit design, alongside fabrication methods (3D-printing, laser cutting, etc.) is expected. Strong candidates will also have software experience with coding in Python, C++, and
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writing production-quality Python code to parse, validate, and transform microscopy image data from published research papers, public databases, and internal repositories. This role requires technical
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and pose estimation, microscopy image acquisition and/or physiological recordings, video game engines, multiple displays, etc.) as well as development of geometrically precise, reconfigurable, closed
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environmental conditions. Ideal candidates will be determined, creative, and willing to tackle novel challenges. The candidate will need to be comfortable managing their time and multiple priorities. This is an
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ensure models can be deployed in large data real-world scenarios. Strong programming skills in Python, PyTorch, and/ or JAX are required, along with the ability to reason about neural network behavior from
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of the lab and daily discussions. Opportunity to work in multiple animal models of motor behavior. Exposure to cutting-edge scientific research and opportunities for professional development. Authorship
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with a 4th Krios microscope being installed, an Aquilos2 cryo focused ion beam scanning electron microscope (FIBSEM), a Hydra plasmon cryo FIBSEM, multiple screening electron microscopes, cryo light