Experimental verification of ion stopping power prediction from dual energy CT data in tissue surrogates
暂无分享,去创建一个
Steffen Greilich | Oliver Jäkel | Bernhard Krauss | Christoph Tremmel | Nora Hünemohr | Benjamin Ackermann | B. Krauss | O. Jäkel | S. Greilich | Christoph Tremmel | B. Ackermann | Nora Hünemohr
[1] Simon Rit,et al. Filtered backprojection proton CT reconstruction along most likely paths. , 2013, Medical physics.
[2] F. Verhaegen,et al. Dual-energy CT-based material extraction for tissue segmentation in Monte Carlo dose calculations , 2008, Physics in medicine and biology.
[3] M. J. Berger. ESTAR, PSTAR, and ASTAR: Computer programs for calculating stopping-power and range tables for electrons, protons, and helium ions , 1992 .
[4] Mitchell M Goodsitt,et al. Accuracies of the synthesized monochromatic CT numbers and effective atomic numbers obtained with a rapid kVp switching dual energy CT scanner. , 2011, Medical physics.
[5] R. A. Rutherford,et al. Measurement of effective atomic number and electron density using an EMI scanner , 2004, Neuroradiology.
[6] K. Stierstorfer,et al. First performance evaluation of a dual-source CT (DSCT) system , 2006, European Radiology.
[7] A. Macovski,et al. Energy-selective reconstructions in X-ray computerised tomography , 1976, Physics in medicine and biology.
[8] K. Yokoyama,et al. Evaluation of Spatial Resolution for Heavy Ion CT System Based on the Measurement of Residual Range Distribution With HIMAC , 2009, IEEE Transactions on Nuclear Science.
[9] Oliver Jäkel,et al. Quantitative carbon ion beam radiography and tomography with a flat-panel detector , 2012, Physics in medicine and biology.
[10] R. Mohan,et al. Theoretical variance analysis of single- and dual-energy computed tomography methods for calculating proton stopping power ratios of biological tissues , 2010, Physics in medicine and biology.
[11] J F Ziegler,et al. Comments on ICRU report no. 49: stopping powers and ranges for protons and alpha particles. , 1999, Radiation research.
[12] Thomas Henzler,et al. Dual-energy CT: radiation dose aspects. , 2012, AJR. American journal of roentgenology.
[13] M. Reiser,et al. Material differentiation by dual energy CT: initial experience , 2007, European Radiology.
[14] T. Bortfeld,et al. Correlation between CT numbers and tissue parameters needed for Monte Carlo simulations of clinical dose distributions. , 2000, Physics in medicine and biology.
[15] Pedro Andreo,et al. On the clinical spatial resolution achievable with protons and heavier charged particle radiotherapy beams , 2009, Physics in medicine and biology.
[16] D. R. White,et al. Average soft-tissue and bone models for use in radiation dosimetry. , 1987, The British journal of radiology.
[17] E. Pedroni,et al. The calibration of CT Hounsfield units for radiotherapy treatment planning. , 1996, Physics in medicine and biology.
[18] R. Brooks. A Quantitative Theory of the Hounsfield Unit and Its Application to Dual Energy Scanning , 1977, Journal of computer assisted tomography.
[19] Frank Verhaegen,et al. Simulation study on potential accuracy gains from dual energy CT tissue segmentation for low-energy brachytherapy Monte Carlo dose calculations , 2011, Physics in medicine and biology.
[20] O Jäkel,et al. Relation between carbon ion ranges and x-ray CT numbers. , 2001, Medical physics.
[21] Rainer Raupach,et al. Erratum: First performance evaluation of a dual-source CT (DSCT) system (European Radiology (2006) vol. 16 (2) (256-268) 10.1007/ s00330-005-2919-2) , 2006 .
[22] Cinzia Talamonti,et al. The PRIMA collaboration: Preliminary results in FBP reconstruction of pCT data , 2013 .
[23] M. Saito. Optimized low-kV spectrum of dual-energy CT equipped with high-kV tin filtration for electron density measurements. , 2011, Medical physics.
[24] Steffen Greilich,et al. Ion range estimation by using dual energy computed tomography. , 2013, Zeitschrift fur medizinische Physik.
[25] M. Saito. Potential of dual-energy subtraction for converting CT numbers to electron density based on a single linear relationship. , 2012, Medical physics.
[26] Tianfang Li,et al. Density resolution of proton computed tomography. , 2005, Medical physics.
[27] D. R. White,et al. The composition of body tissues. , 1986, The British journal of radiology.
[28] I Rinaldi,et al. Experimental characterization of a prototype detector system for carbon ion radiography and tomography , 2013, Physics in medicine and biology.
[29] Radhe Mohan,et al. Comprehensive analysis of proton range uncertainties related to patient stopping-power-ratio estimation using the stoichiometric calibration , 2012, Physics in medicine and biology.
[30] J. Wildberger,et al. Extracting atomic numbers and electron densities from a dual source dual energy CT scanner: experiments and a simulation model. , 2011, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[31] W. Kalender,et al. Correlation between CT numbers and tissue parameters needed for Monte Carlo simulations of clinical dose distributions , 2000 .
[32] H. Paganetti. Range uncertainties in proton therapy and the role of Monte Carlo simulations , 2012, Physics in medicine and biology.
[33] M. Endo,et al. Electron density measurement with dual-energy x-ray CT using synchrotron radiation. , 2003, Physics in medicine and biology.