RadMaps integrates capacity and geographic constraints into a single H3-grid model of radiotherapy access, yielding global estimates of 70% capacity-only, 91% geography-only, and 60% combined access.
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15N enrichment raises alpha-induced DSB++ by 175% and carbon-induced by 53% in simulations, while 15N-glutamine treatment yields 15% more cell death after 2 Gy irradiation with no added cytotoxicity.
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RadMaps: A Geospatial Framework for Simultaneously Modelling Capacity and Geographic Constraints on Radiotherapy Access
RadMaps integrates capacity and geographic constraints into a single H3-grid model of radiotherapy access, yielding global estimates of 70% capacity-only, 91% geography-only, and 60% combined access.
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Simulation of complex DNA damage enhancement and biological effect validation for Proton-CAT
15N enrichment raises alpha-induced DSB++ by 175% and carbon-induced by 53% in simulations, while 15N-glutamine treatment yields 15% more cell death after 2 Gy irradiation with no added cytotoxicity.