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1. Project overview Electrochemical sensing plays a central role in next-generation health technologies, enabling real-time monitoring of physiological environments with high sensitivity and low
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cannot capture the dynamic chemical changes in the gut. There is therefore a critical unmet need for a real-time, chronic gut monitoring tool to unravel neuroendocrine gut–brain pathways and guide therapy
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insole architectures to redistribute plantar pressure and improve comfort. To support continuous monitoring, sensing elements will be incorporated within the insole structure to capture changes that may
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gaps, and to apply and develop different approaches to recording, monitoring, and conserving tracks. This work will form the evidence base for: [1] considering the merits and practicalities for fossil