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unprecedented image quality and quantitative performance. As part of a multidisciplinary team spanning optics, acoustics, electronics, computation, engineering, physics, medicine, and clinical translation, you
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— are central to the platform’s performance. By integrating carrier formulation chemistry, chemical engineering, medical imaging, real-time sensing, and intelligent control into a unified system, this technology
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operation. A prototype at ENSICAEN demonstrated feasibility, achieving a stable 800 °C with under 200 W. Building on this proof of concept, the project proposes a research program to confirm the potential
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quantitative live-cell imaging to probe and model these processes. By combining stem cell biology with cutting-edge microscopy and physical concepts, we aim to establish a predictive framework for tissue self