Area of research
Spectroscopy · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Advanced NMR Techniques and Applications, Atomic and Subatomic Physics Research, Solid-state spectroscopy and crystallography, and Advanced MRI Techniques and Applications.
Radial multi‐echo <scp>bSSFP</scp> and <scp>IDEAL</scp> chemical shift separation in k‐space for high‐speed <scp>3D</scp> hyperpolarized <scp><sup>13</sup>C</scp> metabolic <scp>MRI</scp>
Multidimensional pH-Temperature Mapping of SABRE-SHEATH <sup>13</sup> C Hyperpolarization of [1- <sup>13</sup> C]Pyruvate
RASER for Increased Spectral Resolution in Carbon-13 NMR
MATRESHCA: Microtesla Apparatus for Transfer of Resonance Enhancement of Spin Hyperpolarization via Chemical Exchange and Addition
Carbon-13 Radiofrequency Amplification by Stimulated Emission of Radiation of the Hyperpolarized Ketone and Hemiketal Forms of Allyl [1-<sup>13</sup>C]Pyruvate
Signal Amplification by Reversible Exchange and its Translation to Hyperpolarized Magnetic Resonance Imaging in Biomedicine
Toward Ultra‐High‐Quality‐Factor Wireless Masing Magnetic Resonance Sensing
Toward Ultra‐High‐Quality‐Factor Wireless Masing Magnetic Resonance Sensing
Rapid in situ carbon-13 hyperpolarization and imaging of acetate and pyruvate esters without external polarizer
SABRE-SHEATH Hyperpolarization of [1,5-<sup>13</sup>C<sub>2</sub>]Z-OMPD for Noninvasive pH Sensing
Through-bond and through-space radiofrequency amplification by stimulated emission of radiation
Three‐dimensional radial echo‐planar spectroscopic imaging for hyperpolarized <scp><sup>13</sup>C MRSI</scp> in vivo
Overcoming the Challenges of Hyperpolarizing Substrates with Parahydrogen‐Induced Polarization in an MRI System
In Vivo Metabolic Imaging of [1‐ <sup>13</sup> C]Pyruvate‐d <sub>3</sub> Hyperpolarized By Reversible Exchange With Parahydrogen**
Over 20% Carbon-13 Polarization of Perdeuterated Pyruvate Using Reversible Exchange with Parahydrogen and Spin-Lock Induced Crossing at 50 μT
New Horizons in Hyperpolarized 13C MRI
Hyperpolarized Multi-organ Spectroscopy of Liver and Brain Using 1-13C-Pyruvate Enhanced via Parahydrogen
Nanomaterials for hyperpolarized nuclear magnetic resonance and magnetic resonance imaging
In Vivo Metabolic Imaging of [1-13C]Pyruvate-d3 Hyperpolarized By Reversible Exchange With Parahydrogen
<sup>13</sup>C Radiofrequency Amplification by Stimulated Emission of Radiation Threshold Sensing of Chemical Reactions
In vivo‐Stoffwechselbildgebung mit [1‐<sup>13</sup>C]Pyruvat‐d<sub>3</sub>, hyperpolarisiert durch reversiblen Austausch mit Parawasserstoff**
Over 20% 13C Hyperpolarization for Pyruvate Using Deuteration and Rapid SLIC-SABRE in Mictrotesla Fields
Hyperpolarized Multi-organ Spectroscopy of Liver and Brain using 1- 13C-Pyruvate Enhanced via Para-Hydrogen
Metabolic Tumor Imaging with Rapidly Signal‐Enhanced 1‐<sup>13</sup>C‐Pyruvate‐d<sub>3</sub>
Catalyst-Free Aqueous Hyperpolarized [1-<sup>13</sup>C]Pyruvate Obtained by Re-Dissolution Signal Amplification by Reversible Exchange
Quasi-continuous production of highly hyperpolarized carbon-13 contrast agents every 15 seconds within an MRI system
Quantification of Prostate Cancer Metabolism Using <scp>3D Multiecho bSSFP</scp> and Hyperpolarized [<scp>1‐<sup>13</sup>C</scp>] Pyruvate: Metabolism Differs Between Tumors of the Same Gleason Grade
Parahydrogen‐Induced Carbon‐13 Radiofrequency Amplification by Stimulated Emission of Radiation
Parahydrogen‐Induced Carbon‐13 Radiofrequency Amplification by Stimulated Emission of Radiation
Selective excitation of hydrogen doubles the yield and improves the robustness of parahydrogen-induced polarization of low-γ nuclei