Area of research
Radiology, Nuclear Medicine and Imaging · Spectroscopy
Research interest
Research interests include Advanced MRI Techniques and Applications, Advanced NMR Techniques and Applications, Atomic and Subatomic Physics Research, and Medical Imaging Techniques and Applications.
Consensus recommendations for hyperpolarized [1‐ <scp> <sup>13</sup> C </scp> ]pyruvate <scp>MRI</scp> multi‐center human studies
Open‐source implementation of X‐nuclear sequences using the Pulseq framework
Current methods for hyperpolarized [<scp>1‐<sup>13</sup>C</scp>]pyruvate <scp>MRI</scp> human studies
Federated Learning with Research Prototypes: Application to Multi-Center MRI-based Detection of Prostate Cancer with Diverse Histopathology
Clinically Translatable Hyperpolarized <sup>13</sup>C Bicarbonate pH Imaging Method for Use in Prostate Cancer
Regional quantification of cardiac metabolism with hyperpolarized [1-13C]-pyruvate CMR evaluated in an oral glucose challenge
Optimization in the space domain for density compensation with the nonuniform FFT
Regional quantification of cardiac metabolism with hyperpolarized [1 - <sup>13</sup> C]-pyruvate MRI evaluated in an oral glucose challenge
Metabolic imaging with hyperpolarized <sup>13</sup>C pyruvate magnetic resonance imaging in patients with renal tumors—Initial experience
Metabolic imaging detects elevated glucose flux through the pentose phosphate pathway associated with TERT expression in low-grade gliomas
Clinical translation of hyperpolarized<sup>13</sup>C pyruvate and urea MRI for simultaneous metabolic and perfusion imaging
Extreme MRI: Large‐scale volumetric dynamic imaging from continuous non‐gated acquisitions
Characterization of serial hyperpolarized 13C metabolic imaging in patients with glioma
In vivo detection of γ-glutamyl-transferase up-regulation in glioma using hyperpolarized γ-glutamyl-[1-13C]glycine
Fast variable density Poisson-disc sample generation with directional variation for compressed sensing in MRI
Hyperpolarized <sup>13</sup>C MRI: State of the Art and Future Directions
Hyperpolarized 13C-pyruvate MRI detects real-time metabolic flux in prostate cancer metastases to bone and liver: a clinical feasibility study
First hyperpolarized [2-13C]pyruvate MR studies of human brain metabolism
Development of methods and feasibility of using hyperpolarized carbon‐13 imaging data for evaluating brain metabolism in patient studies
Investigation of analysis methods for hyperpolarized 13C‐pyruvate metabolic MRI in prostate cancer patients
Zero TE‐based pseudo‐CT image conversion in the head and its application in PET/MR attenuation correction and MR‐guided radiation therapy planning
Translation of Carbon‐13 EPI for hyperpolarized MR molecular imaging of prostate and brain cancer patients
PET/MRI: Where might it replace PET/CT?
Zero-Echo-Time and Dixon Deep Pseudo-CT (ZeDD CT): Direct Generation of Pseudo-CT Images for Pelvic PET/MRI Attenuation Correction Using Deep Convolutional Neural Networks with Multiparametric MRI
Hybrid <scp>ZTE</scp>/Dixon <scp>MR</scp>‐based attenuation correction for quantitative uptake estimation of pelvic lesions in <scp>PET</scp>/<scp>MRI</scp>
Assessing Prostate Cancer Aggressiveness with Hyperpolarized Dual-Agent 3D Dynamic Imaging of Metabolism and Perfusion
Motion robust high resolution 3D free‐breathing pulmonary MRI using dynamic 3D image self‐navigator
Cartilage Endplate Thickness Variation Measured by Ultrashort Echo-Time MRI Is Associated With Adjacent Disc Degeneration
Reliable and Reproducible GABA Measurements Using Automated Spectral Prescription at Ultra-High Field
Development of a symmetric echo planar imaging framework for clinical translation of rapid dynamic hyperpolarized <sup>13</sup>C imaging