Area of research
Spectroscopy · Radiology, Nuclear Medicine and Imaging
Research interest
Research interests include In vivo, Chemistry, Nuclear magnetic resonance, Cancer research, Glycolysis, and Magnetic resonance imaging.
Temperature dependent chemical shifts of pyruvate and lactate enable in vivo hyperpolarized 13C MRSI thermometry
Early Detection of Cell Death Using Transmembrane Water Exchange Magnetic Resonance Imaging
Parahydrogen‐Polarized [1‐ <sup>13</sup> C]Pyruvate for Reliable and Fast Preclinical Metabolic Magnetic Resonance Imaging
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
Novel Tumor Organoid-Based Mouse Model to Study Image Guided Radiation Therapy of Rectal Cancer After Noninvasive and Precise Endoscopic Implantation
Repeatability and reproducibility of apparent exchange rate measurements in yeast cell phantoms using filter-exchange imaging
Functional noninvasive detection of glycolytic pancreatic ductal adenocarcinoma
Functional biomarkers derived from computed tomography and magnetic resonance imaging differentiate PDAC subgroups and reveal gemcitabine-induced hypo-vascularization
Cannabidiol converts NF-κB into a tumor suppressor in glioblastoma with defined antioxidative properties
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
Functional metabolic phenotyping of human pancreatic ductal adenocarcinoma
Implementing cell-free DNA of pancreatic cancer patient–derived organoids for personalized oncology
Hyperpolarized Amino Acid Derivatives as Multivalent Magnetic Resonance pH Sensor Molecules