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24th November 2025 Languages English English English Kavli Institute for Systems Neuroscience has a vacancy for a PhD combining optical imaging with 3D tracking to map neural coding of body posture
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This project aims to establish, for the first time, a direct correlation between magnetotransport properties and the underlying magnetic microstate in 3D artificial spin-ice (ASI) lattices. Using
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unified artificial intelligence (AI) model capable of segmenting 3D medical images from standard clinical scans and generating 3D meshes across multiple imaging modalities. The project will also investigate
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the design and optimization of multistatic and multifrequency radar architectures for near-field 3D imaging. - Contribute to the electromagnetic modeling of radiating systems, wave-object interaction, and
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CCS. Your main tasks will include: Processing and imaging the newly acquired high-density 3D seismic dataset and integrating vintage 3D seismic data to image and characterise the geological structures
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Tomography (CT) – two key NDT techniques used to inspect metallic and composite materials. These methods generate large 3D datasets that can be difficult for human experts to analyse manually, increasing
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are seeking a Ph.D. student to join our multidisciplinary team developing a radical solution for better detection and treatment that uses ultra-thin snake-like robots and advanced optical imaging techniques
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. Experience with sensory neuron differentiation, co-culture systems and/or 3D culture models is a strong advantage, as is a clear interest in modelling mechanisms of (chronic) pain. You bring a solid background
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/CT or SPECT/CT Experience working with radioactivity, both sealed and unsealed sources Experience with 3D cell cultures(tumor spheroids) Experience in DICOM image quantitative analysis Experience in
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perform functional readouts such as calcium imaging and electrophysiology. Where to apply Website https://www.academictransfer.com/en/jobs/356705/phd-researcher-development-of-h… Requirements Specific