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pathways regulate immune responses within tumours and how neuro-immune circuits can be manipulated to improve anti-tumour immunity. Research directions may include: how peripheral sensory or autonomic
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ferroelectric memory, photonic integrated circuits and next-generation telecommunications. You'll work at the exciting intersection of experimental materials science and materials informatics, collaborating in
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applications such as ferroelectric memory, photonic integrated circuits and next-generation telecommunications. You'll work at the exciting intersection of experimental materials science and materials
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disease progression. However, the mechanisms by which peripheral neural circuits detect changes in tissue state and instruct immune cell function remain poorly understood. The successful candidate will lead
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interpretation of the results including population decoding, computational modeling of retinal circuits, and biophysical modelling. One possible research direction is to study the biophysics of the signal
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motor control for bioinspired robotics. The main focus of this project is how neural circuits in the motor system of the fly, Drosophila melanogaster, orchestrate limb movements and autonomous behavior in
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for bioinspired robotics. The main focus of this project is how neural circuits in the motor system of the fly, Drosophila melanogaster, orchestrate limb movements and autonomous behavior in complex environments
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activity and the physical tumor microenvironment cooperate to drive brain cancer progression. The project Brain tumors do not grow in isolation. Glioma cells form functional connections with neural circuits
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training costs are exploding, largely due to energy and bandwidth inefficiencies in current electrical datacenters. Our group is developing a novel Optical Circuit Switched (OCS) architecture