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models. Building on our preliminary work using retrograde tracing and live-cell imaging to map GB-neuron connectivity, we aim to identify molecular targets for therapeutic intervention. Job description As
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tracking of minimally invasive robotic systems Autonomous control in uncertain anatomical environments Computer vision for image-guided robotic procedures (incl. endoscopic, MR-, US-guided) Surgical training
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work on designing novel Smart Sensors & Energy Efficient Machine Learning on Microcontrollers. The objectives of this thesis include: Design and prototype modular, low-cost sensor nodes integrating
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-affected territories; and the global–local entanglements that drive ongoing urbanisation processes. These interests are complemented by research into more-than-human and multispecies spatialities
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transfer, developing and employing laboratory experiments, computer simulations, and field analyses. Our aim is to gain fundamental insights and to develop sustainable technologies that address societal
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how their intricate domain structures, domain walls, and topological defects govern macroscopic functionality. In this project, we will employ cutting-edge synchrotron-based 3D imaging techniques
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Perform and support the analysis, integration, and visualisation of multi-omics data (e.g., genomics, metagenomics, metatranscriptomics, proteomics, metabolomics, and imaging data) Collaborate with
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Basel. The DBE currently employs approximately 130 researchers who conduct cutting-edge research in the field of biomedical engineering in collaboration with the hospitals. Robotics & lasers, imaging and
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to plant crossbreeding, plant cultivation, and measurement of mainly image-based phenotypic characteristics in quantitative genetics settings. They will be responsible for the management of group-owned
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: Lastname_Firstname_Portfolio.pdf), to include: images/graphic content illustrating projects relevant to the job short descriptions of the projects included short research articles (if existing and relevant) 4) Research Statement (3