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to imaging with geophysical data. Our research focuses on mathematical methods for processing, imaging, and inversion of geophysical data, the physics of wave propagation, and the development of innovative
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delivery, imaging, or diagnosis. Characterize, understand, the interaction of particulate materials with cells or tissues. Pioneered investigations on particle bio-functionalization, particles uptake
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senior members in the lab, and at the same time to play an active role in shaping and creating inspiring research and working environment. In line with our and Uni Basel values (https://www.unibas.ch/en
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to apply Website https://www.academiceurope.com/ads/phd-student-in-robotic-ai-imaging-and-surgic… Requirements Research FieldComputer science » OtherEducation LevelMaster Degree or equivalent Additional
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) develops advanced optical technologies, including imaging, spectroscopy, and laser ablation methods. Our goal is to bridge these cutting-edge laser technologies with clinical practice, developing solutions
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-culture approaches, and skilled in fluorescence microscopy and image analysis for functional read-outs of microphysiological systems Software: Proficiency in Python, MATLAB, or R for data analysis, and
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Curriculum vitae (no picture) Academic writing sample (e.g., Master thesis or term paper) Complete academic record with undergraduate and graduate courses and grades Copies of certificates Contact information
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Simulation Framework The Computational Biology (CoBi) group, led by Prof. Dagmar Iber, develops data-driven, mechanistic models of biological systems using advanced imaging and computational tools. Our group
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Project '' Facilitating a paradigm shift in osteosynthesis: Controlling biodegradation of magnesium alloys an their local effect on surrounding tissue'' (Nr. 10007007; project start 01.10.2025
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actuation for soft continuum robots Sensing and tracking of minimally invasive robotic systems Autonomous control in uncertain anatomical environments Computer vision for image-guided robotic procedures (incl