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Engineering

Series

2013

Cerenkov radiation imaging

Articles 1 - 2 of 2

Full-Text Articles in Medicine and Health Sciences

Real-Time In Vivo Cherenkoscopy Imaging During External Beam Radiation Therapy, Rongxiao Zhang, David J. Gladstone, Lesley A. Jarvis, Rendall R. Strawbridge, P Jack Hoopes, Oscar D. Friedman, Adam K. Glaser, Brian W. Pogue Nov 2013

Real-Time In Vivo Cherenkoscopy Imaging During External Beam Radiation Therapy, Rongxiao Zhang, David J. Gladstone, Lesley A. Jarvis, Rendall R. Strawbridge, P Jack Hoopes, Oscar D. Friedman, Adam K. Glaser, Brian W. Pogue

Dartmouth Scholarship

Cherenkov radiation is induced when charged particles travel through dielectric media (such as biological tissue) faster than the speed of light through that medium. Detection of this radiation or excited luminescence during megavoltage external beam radiotherapy (EBRT) can allow emergence of a new approach to superficial dose estimation, functional imaging, and quality assurance for radiation therapy dosimetry. In this letter, the first in vivo Cherenkov images of a real-time Cherenkoscopy during EBRT are presented. The imaging system consisted of a time-gated intensified charge coupled device (ICCD) coupled with a commercial lens. The ICCD was synchronized to the linear accelerator to …


Oxygen Tomography By Čerenkov-Excited Phosphorescence During External Beam Irradiation, Rongxiao Zhang, Scott C. Davis, Jennifer-Lynn H. Demers, Adam K. Glaser, David J. Gladstone, Tatiana V. Esipova, Sergei A. Vinogradov, Brian W. Pogue May 2013

Oxygen Tomography By Čerenkov-Excited Phosphorescence During External Beam Irradiation, Rongxiao Zhang, Scott C. Davis, Jennifer-Lynn H. Demers, Adam K. Glaser, David J. Gladstone, Tatiana V. Esipova, Sergei A. Vinogradov, Brian W. Pogue

Dartmouth Scholarship

The efficacy of radiation therapy depends strongly on tumor oxygenation during irradiation. However, current techniques to measure this parameter in vivo do not facilitate routine monitoring in patients. Herein, we demonstrate a noninvasive method for tomographic imaging of oxygen partial pressure (pO2 ) in deep tissue using the phosphorescence decay of an oxygen-sensitive probe excited by Čerenkov radiation induced by external beam radiotherapy. Tissue-simulating scattering phantoms (60 mm diameter with a 20 mm anomaly) containing platinum(II)-G4 (PtG4), a dendritic porphyrin-based phosphor, whose phosphorescence is quenched in the presence of oxygen, were irradiated with a clinical linear accelerator. The …