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, dexterous, capable, and adapt better to their environment. The lab has showcased its research in robotic design and algorithms through real-world applications such as a robotic fish for underwater locomotion
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advanced algorithms to process this data, with a focus on optical flow and object detection You will interpret the results to better understand debris flow mechanisms You will also contribute
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brain regions without invasive surgery. Project background We develop advanced focused ultrasound technologies, ultrasound-responsive drug carrier formulations, and adaptive closed-loop control algorithms
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methods and optimisation algorithms for robust intervention planning and resource forecasting in railway infrastructure management. Characterising and propagating the principal sources of uncertainty in
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platforms such as novel biosensors, gene switches, genetic closed-loop circuits, and chemical structures that interface with and actuate cellular activities, we design programmable cellular implants and
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training Generate and validate synthetic or gym training tasks Run ablation studies comparing algorithms, reward functions, data mixtures, hyperparameters, and infrastructure settings Evaluate model
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at the neuro-immune interface Experimental approaches include in vivo tumour models, conditional mouse genetics, neuronal tracing, genetic and viral manipulation of neuronal populations, immune-cell depletion
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focused ultrasound technologies, adaptive closed-loop control algorithms, and ultrasound-responsive micro/nano therapeutic carriers as an integrated precision drug delivery platform for the brain. Our
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that carry out capture, excision and integration. Together, the two approaches aim to identify which genetic and molecular features are essential for horizontal transfer. Job description Investigate
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methods towards the envisioned automated platforms. Job description Your main task will be designing, setting up, and performing novel experiments using microfluidics, spectroscopy, and algorithm-driven lab