Area of research
Radiology, Nuclear Medicine and Imaging · Pulmonary and Respiratory Medicine
Research interest
Research interests include Radiopharmaceutical Chemistry and Applications, Radiation Therapy and Dosimetry, Effects of Radiation Exposure, and Advanced Radiotherapy Techniques.
Generalized methods for predicting biological response to mixed radiation types and calculating equieffective doses (EQDX).
Marshalling the Potential of Auger Electron Radiopharmaceutical Therapy
Advancements in the use of Auger electrons in science and medicine during the period 2015-2019.
Data from Radium-223–Induced Bystander Effects Cause DNA Damage and Apoptosis in Disseminated Tumor Cells in Bone Marrow
Data from Radium-223–Induced Bystander Effects Cause DNA Damage and Apoptosis in Disseminated Tumor Cells in Bone Marrow
Supplementary Data, Supplementary Figures 1 and 2, Supplementary Tables 1-6 from Radium-223–Induced Bystander Effects Cause DNA Damage and Apoptosis in Disseminated Tumor Cells in Bone Marrow
Supplementary Data, Supplementary Figures 1 and 2, Supplementary Tables 1-6 from Radium-223–Induced Bystander Effects Cause DNA Damage and Apoptosis in Disseminated Tumor Cells in Bone Marrow
MIRD Pamphlet No. 27: MIRDcell V3, a Revised Software Tool for Multicellular Dosimetry and Bioeffect Modeling.
Predicting response of micrometastases with MIRDcell V3: proof of principle with <sup>225</sup>Ac-DOTA encapsulating liposomes that produce different activity distributions in tumor spheroids.
Late Effects of Heavy-Ion Space Radiation on Splenocyte Subpopulations and NK Cytotoxic Function.
Radium-223-Induced Bystander Effects Cause DNA Damage and Apoptosis in Disseminated Tumor Cells in Bone Marrow.
Modeling bystander effects that cause growth delay of breast cancer xenografts in bone marrow of mice treated with radium-223.
Radium-223 dichloride causes transient changes in natural killer cell population and cytotoxic function.
Dose-Dependent Growth Delay of Breast Cancer Xenografts in the Bone Marrow of Mice Treated with <sup>223</sup>Ra: The Role of Bystander Effects and Their Potential for Therapy.
A preliminary study on treatment of human breast cancer xenografts with a cocktail of paclitaxel, doxorubicin, and <sup>131</sup>I-anti-epithelial cell adhesion molecule (9C4).
PV-0423: AAPM TG-158 recommendations for neutron dosimetry for photon, electron, and light-ion therapy
MIRD Pamphlet No. 24: Guidelines for Quantitative <sup>131</sup>I SPECT in Dosimetry Applications