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HYPMET develops a new method for hyperpolarized magnetic resonance to monitor metabolic pathways in cancer cells and analyze body fluids. This technology aims to enhance the detection of metabolites, enabling real-time assessments for personalized medical treatments without the need for large superconducting magnets.
HYPMET proposes a pioneering research methodology for hyperpolarized magnetic resonance for real-time monitoring of upregulated metabolic pathways in cancer cells and in-vivo and for body fluid metabolic analyses with the prospect of revolutionizing the medical approach to personalised treatments.A common analytical method for structural biology, medical imaging, and chemical analysis is nuclear magnetic resonance (NMR), which is flexible but intrinsically insensitive.
Even in the most sensitive…
UNIVERSITA DEGLI STUDI DI PADOVA
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