Various hyperpolarization methods are able to enhance the sensitivity of nuclear magnetic resonance (NMR) spectroscopy and magnetic resonance imaging (MRI) by several orders of magnitude. Among these methods are para-hydrogen-induced polarization (PHIP) and signal amplification by reversible exchange (SABRE), which exploit the strong nuclear alignment of para-hydrogen. Several SABRE experiments have been reported but, so far, it has not been possible to account for the experimentally observed sign and magnetic-field dependence of substrate polarization. Herein, we present an analysis based on level anti-crossings (LACs), which provides a complete understanding of the SABRE effect. The field-dependence of both net and anti-phase polarization...
Nuclear Magnetic Resonance (NMR) spectroscopy and Magnetic Resonance Imaging (MRI) are analytical an...
In this paper, we describe a method of hyper-polarizing “insensitive” Nuclear Magnetic Resonance (NM...
Parahydrogen (pH 2 ) is a convenient and cost efficient source for magnetic resonance signal enhance...
We have investigated the magnetic field dependence of Signal Amplification By Reversible Exchange (S...
We have investigated the magnetic field dependence of Signal Amplification By Reversible Exchange (S...
Signal amplification by reversible exchange (SABRE) is a promising hyperpolarization technique, whic...
Nuclear spin hyperpolarization is an important resource for increasing the sensitivity of NMR spectr...
PHIP (parahydrogen-induced polarization) refers to the family of approaches where the pure spin orde...
Signal amplification by reversible exchange (SABRE) is a para-hydrogen-based technique that utilises...
Signal Amplification by Reversible Exchange (SABRE) is a hyperpolarization technique that utilizes p...
© 2015 John Wiley Sons, Ltd. To overcome the inherent sensitivity issue in NMR and MRI, hyperpolaris...
A new technique is developed that allows one to carry out the signal amplification by reversible exc...
SABRE (Signal Amplification By Reversible Exchange) has become a widely used method for hyper-polari...
Signal Amplification by Reversible-Exchange (SABRE) is a method of hyperpolarizing substrates by pol...
The sensitivity of both nuclear magnetic resonance spectroscopy and magnetic resonance imaging is ve...
Nuclear Magnetic Resonance (NMR) spectroscopy and Magnetic Resonance Imaging (MRI) are analytical an...
In this paper, we describe a method of hyper-polarizing “insensitive” Nuclear Magnetic Resonance (NM...
Parahydrogen (pH 2 ) is a convenient and cost efficient source for magnetic resonance signal enhance...
We have investigated the magnetic field dependence of Signal Amplification By Reversible Exchange (S...
We have investigated the magnetic field dependence of Signal Amplification By Reversible Exchange (S...
Signal amplification by reversible exchange (SABRE) is a promising hyperpolarization technique, whic...
Nuclear spin hyperpolarization is an important resource for increasing the sensitivity of NMR spectr...
PHIP (parahydrogen-induced polarization) refers to the family of approaches where the pure spin orde...
Signal amplification by reversible exchange (SABRE) is a para-hydrogen-based technique that utilises...
Signal Amplification by Reversible Exchange (SABRE) is a hyperpolarization technique that utilizes p...
© 2015 John Wiley Sons, Ltd. To overcome the inherent sensitivity issue in NMR and MRI, hyperpolaris...
A new technique is developed that allows one to carry out the signal amplification by reversible exc...
SABRE (Signal Amplification By Reversible Exchange) has become a widely used method for hyper-polari...
Signal Amplification by Reversible-Exchange (SABRE) is a method of hyperpolarizing substrates by pol...
The sensitivity of both nuclear magnetic resonance spectroscopy and magnetic resonance imaging is ve...
Nuclear Magnetic Resonance (NMR) spectroscopy and Magnetic Resonance Imaging (MRI) are analytical an...
In this paper, we describe a method of hyper-polarizing “insensitive” Nuclear Magnetic Resonance (NM...
Parahydrogen (pH 2 ) is a convenient and cost efficient source for magnetic resonance signal enhance...