A formalism for reference dosimetry in photon beams in the presence of a magnetic field
暂无分享,去创建一个
B W Raaymakers | J. Wolthaus | J. Kok | B. Raaymakers | B. van Asselen | B van Asselen | S. Hackett | J W H Wolthaus | S J Woodings | S L Hackett | T L van Soest | J G M Kok | S. Woodings | T. Van Soest | T. V. van Soest
[1] Jan J W Lagendijk,et al. The magnetic resonance imaging-linac system. , 2014, Seminars in radiation oncology.
[2] P. Andreo,et al. Absorbed Dose Determination in External Beam Radiotherapy: An International Code of Practice for Dosimetry based on Standards of Absorbed Dose to Water , 2001 .
[3] Sasa Mutic,et al. The ViewRay system: magnetic resonance-guided and controlled radiotherapy. , 2014, Seminars in radiation oncology.
[4] A water calorimeter for on-site absorbed dose to water calibrations in (60)Co and MV-photon beams including MRI incorporated treatment equipment. , 2016, Physics in medicine and biology.
[5] J. Wolthaus,et al. TH-CD-BRA-03: Direct Measurement of Magnetic Field Correction Factors, KQB, for Application in Future Codes of Practice for Reference Dosimetry. , 2016, Medical physics.
[6] B W Raaymakers,et al. Dosimetry for the MRI accelerator: the impact of a magnetic field on the response of a Farmer NE2571 ionization chamber , 2009, Physics in medicine and biology.
[7] Stuart Crozier,et al. The Australian magnetic resonance imaging-linac program. , 2014, Seminars in radiation oncology.
[8] B W Raaymakers,et al. Magnetic-field-induced dose effects in MR-guided radiotherapy systems: dependence on the magnetic field strength , 2008, Physics in medicine and biology.
[9] J. Seuntjens,et al. A new formalism for reference dosimetry of small and nonstandard fields. , 2008, Medical physics.
[10] B W Raaymakers,et al. Towards reference dosimetry for the MR-linac: magnetic field correction of the ionization chamber reading , 2013, Physics in medicine and biology.
[11] B W Raaymakers,et al. Fast dose calculation in magnetic fields with GPUMCD , 2011, Physics in medicine and biology.
[12] Benoît Ozell,et al. GPUMCD: A new GPU-oriented Monte Carlo dose calculation platform. , 2011, Medical physics.
[13] D. Rogers,et al. Sensitive volume effects on Monte Carlo calculated ion chamber response in magnetic fields , 2017, Medical physics.
[14] P E Metcalfe,et al. High resolution entry and exit Monte Carlo dose calculations from a linear accelerator 6 MV beam under the influence of transverse magnetic fields. , 2009, Medical physics.
[15] Sami Hissoiny,et al. Evaluation of a commercial MRI Linac based Monte Carlo dose calculation algorithm with GEANT4. , 2016, Medical physics.
[16] G. Sawakuchi,et al. Monte Carlo study of the chamber‐phantom air gap effect in a magnetic field , 2017, Medical physics.
[17] D. Rogers,et al. AAPM's TG-51 protocol for clinical reference dosimetry of high-energy photon and electron beams. , 1999, Medical physics.
[18] B. Fallone,et al. The rotating biplanar linac-magnetic resonance imaging system. , 2014, Seminars in radiation oncology.
[19] B W Raaymakers,et al. Integrating a MRI scanner with a 6 MV radiotherapy accelerator: impact of the surface orientation on the entrance and exit dose due to the transverse magnetic field , 2007, Physics in medicine and biology.
[20] A N T J Kotte,et al. First patients treated with a 1.5 T MRI-Linac: clinical proof of concept of a high-precision, high-field MRI guided radiotherapy treatment , 2017, Physics in medicine and biology.
[21] G. Ibbott,et al. Reference dosimetry in magnetic fields: formalism and ionization chamber correction factors. , 2016, Medical physics.
[22] S. Rathee,et al. Dose response of selected ion chambers in applied homogeneous transverse and longitudinal magnetic fields. , 2013, Medical physics.
[23] J. Lagendijk,et al. Consequences of air around an ionization chamber: Are existing solid phantoms suitable for reference dosimetry on an MR-linac? , 2016, Medical physics.
[25] Sami Hissoiny,et al. SU-E-T-203: Comparison of a Commercial MRI-Linear Accelerator Based Monte Carlo Dose Calculation Algorithm and Geant4 , 2015 .
[26] D W O Rogers,et al. Monte Carlo study of ionization chamber magnetic field correction factors as a function of angle and beam quality , 2018, Medical physics.
[27] P E Metcalfe,et al. Monte Carlo characterization of skin doses in 6 MV transverse field MRI-linac systems: effect of field size, surface orientation, magnetic field strength, and exit bolus. , 2010, Medical physics.
[28] C P Karger,et al. Radiation dosimetry in magnetic fields with Farmer-type ionization chambers: determination of magnetic field correction factors for different magnetic field strengths and field orientations , 2017, Physics in medicine and biology.
[29] B G Fallone,et al. Skin dose in longitudinal and transverse linac-MRIs using Monte Carlo and realistic 3D MRI field models. , 2012, Medical physics.
[30] F. Khan. The physics of radiation therapy , 1985 .