Area of research
Spectroscopy · Radiology, Nuclear Medicine and Imaging
Research interest
Research focused on Nuclear magnetic resonance and In vivo, with related work in Magnetic resonance imaging, Glycolysis, Cancer research. Notable publications include 'PD-1 instructs a tumor-suppressive metabolic program that restricts glycolysis and restrains AP-1 activity in T cell lymphoma', 'Simultaneous characterization of tumor cellularity and the Warburg effect with PET, MRI and hyperpolarized 13 C-MRSI', and 'Hyperpolarized Amino Acid Derivatives as Multivalent Magnetic Resonance pH Sensor Molecules'.
PD-1 instructs a tumor-suppressive metabolic program that restricts glycolysis and restrains AP-1 activity in T cell lymphoma
Simultaneous magnetic resonance imaging of pH, perfusion and renal filtration using hyperpolarized 13C-labelled Z-OMPD
Spectrally selective <scp>bSSFP</scp> using <scp>off‐resonant RF</scp> excitations permits high spatiotemporal resolution <scp>3D</scp> metabolic imaging of hyperpolarized [<scp>1‐<sup>13</sup>C</scp>]Pyruvate‐to‐[<scp>1‐<sup>13</sup>C</scp>]lactate conversion
Hyperpolarized 13C pyruvate magnetic resonance spectroscopy for in vivo metabolic phenotyping of rat HCC
Hyperpolarized 13C Spectroscopy with Simple Slice-and-Frequency-Selective Excitation
Author Correction: Hyperpolarized 13C pyruvate magnetic resonance spectroscopy for in vivo metabolic phenotyping of rat HCC
Dynamic 2D and 3D mapping of hyperpolarized pyruvate to lactate conversion in vivo with efficient multi‐echo balanced steady‐state free precession at 3 T
Assessment of 213Bi-anti-EGFR MAb treatment efficacy in malignant cancer cells with [1-13C]pyruvate and [18F]FDG
Simultaneous characterization of tumor cellularity and the Warburg effect with PET, MRI and hyperpolarized <sup>13</sup>C-MRSI
Hyperpolarized Amino Acid Derivatives as Multivalent Magnetic Resonance pH Sensor Molecules