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Field
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of researchers with complementary expertise in molecular biology, oncology, medical radiation physics, radionuclide therapy, radiochemistry, magnetic resonance imaging (MRI), radiation dosimetry, and image
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for examining and imaging the magnetic fields from exotic conducting materials (e.g. superconductors, topological insulators), performing high bandwidth and high sensitivity vector magnetic sensing and developing
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magnetic field inhomogeneities, resulting in geometric distortion and signal loss in the images. The aim of the project is to investigate the potential of using Implicit Neural Representation (INR), a class
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magnetic resonance imaging (Flow MRI) is a powerful and non-invasive imaging technique that measures blood flow in time and space. It provides vital insights into key metrics for cardiovascular disease
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activity and connectivity between nerve cells. MRI measurements can be affected by magnetic field inhomogeneities, resulting in geometric distortion and signal loss in the images. The aim of the project is
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principles for constructing smart, adaptive microsystems, potentially useful for targeted drug delivery, cargo transport, biosensing, microfluidic mixing, or self-healing materials. The successful candidate
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physics, radionuclide therapy, radiochemistry, magnetic resonance imaging (MRI), radiation dosimetry, and image analysis. We offer Lund University is a public authority, which means that employees get
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, Microelectronics, Computer Engineering, or a closely related field, completed by the start of the position Have a solid background in digital hardware design: Verilog/SystemVerilog RTL, logic synthesis, and place
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-based additive manufacturing (MEX AM) to print both soft and hard structural or electronic materials (e.g. composites with conductive, ferroelectric, dielectric, magnetic and other performance-enhancing
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This PhD redefines electromagnetic sensing by moving beyond magnetic permeability-dominated approaches to establish a conductivity-driven eddy-current framework for tracking microstructural