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  1. Diffusion-weighted imaging of hyperpolarized [13C]urea in mouse liver
  2. Monitoring acute metabolic changes in the liver and kidneys induced by fructose and glucose using hyperpolarized [2‐ 13 C]dihydroxyacetone
  3. Detection of localized changes in the metabolism of hyperpolarized gluconeogenic precursors13C-lactate and13C-pyruvate in kidney and liver
  4. RF pulse design for hyperpolarized magnetic resonance applications
  5. 13 C magnetic resonance spectroscopy measurements with hyperpolarized [1‐ 13 C] pyruvate can be used to detect the expression of transgenic pyruvate decarboxylase activity in vivo
  6. 13 C magnetic resonance spectroscopic imaging of hyperpolarized [1‐ 13 C, U‐ 2 H 5 ] ethanol oxidation can be used to assess aldehyde dehydrogenase activity in vivo
  7. In vivo single-shot 13C spectroscopic imaging of hyperpolarized metabolites by spatiotemporal encoding
  8. Quantitation of a spin polarization‐induced nuclear Overhauser effect (SPINOE) between a hyperpolarized 13 C‐labeled cell metabolite and water protons
  9. A fast analytic dose calculation method for arc treatments for kilovoltage small animal irradiators
  10. Hyperpolarized singlet lifetimes of pyruvate in human blood and in the mouse
  11. Direct Enhancement of Nuclear Singlet Order by Dynamic Nuclear Polarization