Diseases such as Alzheimer's and cancer have been linked to metabolic dysfunctions, and further understanding of metabolic pathways raises hope to develop cures for such diseases. To broaden the knowledge of metabolisms in vitro and in vivo, methods are desirable for direct probing of metabolic function. Here, we are introducing a pulsed nuclear magnetic resonance (NMR) approach to generate hyperpolarized metabolites within seconds, which act as metabolism probes. Hyperpolarization represents a magnetic resonance technique to enhance signals by over 10 000‐fold. We accomplished an efficient metabolite hyperpolarization by developing an isotopic labeling strategy for generating precursors containing a favorable nuclear spin system to add par...
Spin-half nuclei in a magnetic field possessing a population difference in excess of that expected a...
NMR is one of the most versatile and useful physical effects used for human imaging, chemical analys...
Hyperpolarized metabolites are very attractive contrast agents for in vivo magnetic resonance imagin...
A major challenge in cancer biology is to monitor and understand cancer metabolism in vivo with the ...
Nuclear-spin hyperpolarization allows various magnetic-resonance applications in chemistry and medic...
Hyperpolarized metabolites are very attractive contrast agents for in vivo magnetic resonance imagin...
An important recent development in NMR spectroscopy is the advent of ex situ dynamic nuclear polariz...
Hyperpolarized-nuclear magnetic resonance and imaging (HP-NMR/MRI) is a promising technique that all...
Nuclear magnetic resonance is a powerful spectroscopic tool, which has found applications in fields ...
Hyperpolarization methods in magnetic resonance enhance the signals by several orders of magnitude, ...
Hyperpolarization methods in magnetic resonance enhance the signals by several orders of magnitude, ...
Hyperpolarization turns typically weak NMR and MRI responses into strong signals so that ordinarily ...
Hyperpolarization turns typically weak NMR and MRI responses into strong signals so that ordinarily ...
The application of magnetic resonance (MR) for metabolic imaging and spectroscopy has been limited b...
The phenomenon of nuclear magnetic resonance (NMR) is widely applied in biomedical and biological sc...
Spin-half nuclei in a magnetic field possessing a population difference in excess of that expected a...
NMR is one of the most versatile and useful physical effects used for human imaging, chemical analys...
Hyperpolarized metabolites are very attractive contrast agents for in vivo magnetic resonance imagin...
A major challenge in cancer biology is to monitor and understand cancer metabolism in vivo with the ...
Nuclear-spin hyperpolarization allows various magnetic-resonance applications in chemistry and medic...
Hyperpolarized metabolites are very attractive contrast agents for in vivo magnetic resonance imagin...
An important recent development in NMR spectroscopy is the advent of ex situ dynamic nuclear polariz...
Hyperpolarized-nuclear magnetic resonance and imaging (HP-NMR/MRI) is a promising technique that all...
Nuclear magnetic resonance is a powerful spectroscopic tool, which has found applications in fields ...
Hyperpolarization methods in magnetic resonance enhance the signals by several orders of magnitude, ...
Hyperpolarization methods in magnetic resonance enhance the signals by several orders of magnitude, ...
Hyperpolarization turns typically weak NMR and MRI responses into strong signals so that ordinarily ...
Hyperpolarization turns typically weak NMR and MRI responses into strong signals so that ordinarily ...
The application of magnetic resonance (MR) for metabolic imaging and spectroscopy has been limited b...
The phenomenon of nuclear magnetic resonance (NMR) is widely applied in biomedical and biological sc...
Spin-half nuclei in a magnetic field possessing a population difference in excess of that expected a...
NMR is one of the most versatile and useful physical effects used for human imaging, chemical analys...
Hyperpolarized metabolites are very attractive contrast agents for in vivo magnetic resonance imagin...