Development and validation of Monte Carlo dose computations for contrast-enhanced stereotactic synchrotron radiation therapy
Description
Contrast-enhanced stereotactic synchrotron radiation therapy (SSRT) is an innovative technique based on localized dose-enhancement effects obtained by reinforced photoelectric absorption in the tumor. Medium energy monochromatic X-rays (50 - 100 keV) are used for irradiating tumors previously loaded with a high-Z element. Clinical trials of SSRT are being prepared at the European Synchrotron Radiation Facility (ESRF), an iodinated contrast agent will be used. In order to compute the energy deposited in the patient (dose), a dedicated treatment planning system (TPS) has been developed for the clinical trials, based on the ISOgray TPS. This work focuses on the SSRT specific modifications of the TPS, especially to the PENELOPE-based Monte Carlo dose engine. The TPS uses a dedicated Monte Carlo simulation of medium energy polarized photons to compute the deposited energy in the patient. Simulations are performed considering the synchrotron source, the modeled beamline geometry and finally the patient. Specific materials were also implemented in the voxelized geometry of the patient, to consider iodine concentrations in the tumor. The computation process has been optimized and parallelized. Finally a specific computation of absolute doses and associated irradiation times (instead of monitor units) was implemented. The dedicated TPS was validated with depth dose curves, dose profiles and absolute dose measurements performed at the ESRF in a water tank and solid water phantoms with or without bone slabs. (author)
Abstract (French)
La radiotherapie stereotaxique par rayonnement synchrotron (SSRT) est une technique innovante utilisant un faisceau synchrotron de rayons X monochromatiques entre 50 et 100 keV. Une augmentation de dose par prise de contraste est obtenue localement par effet photoelectrique sur un element lourd injecte dans le volume cible (tumeur cerebrale). Des essais cliniques de SSRT sont en cours de preparation a l'ESRF (etablissement europeen de rayonnement synchrotron). Un systeme de planification de traitement (TPS) est necessaire pour le calcul de l'energie deposee au patient(dose) pendant le traitement. Une version dediee du TPS ISOgray a donc ete developpee. Ce travail decrit l'adaptation du TPS realisee, particulierement au niveau du module de simulation virtuelle et de dosimetrie. Pour un calcul de dose, le TPS utilise une simulation Monte Carlo specifique des photons polarises et de basse energie. Les simulations sont realisees depuis la source synchrotron, a travers toute la geometrie de la ligne de lumiere modelisee et dans le patient. Pour ce calcul, des materiaux specifiques ont ete notamment ajoutes pour la modelisation voxelisee du patient, afin de prendre en compte la presence d'iode dans certains tissus. Le processus de calcul Monte Carlo a ete optimise en vitesse et precision. De plus, un calcul des doses absolues et des temps d'irradiation, particulier a la SSRT, a ete ajoute au TPS. Grвce a des mesures de rendements, profils de dose, et doses absolues, realisees a l'ESRF en cuve a eau et en fantome solide avec ou sans couche d'os, le calcul de dose du TPS a ete valide pour la SSRTFiles
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Additional details
Additional titles
- Original title (French)
- Planification de traitement en Radiotherapie Stereotaxique par Rayonnement Synchrotron. Developpement et validation d'un module de calcul de dose par simulations Monte Carlo
Identifiers
Publishing Information
- Imprint Pagination
- 218 p.
- Report number
- FRCEA-TH--3650
INIS
- Country of Publication
- France
- Country of Input or Organization
- France
- INIS RN
- 44026047
- Subject category
- S62: RADIOLOGY AND NUCLEAR MEDICINE;
- Resource subtype / Literary indicator
- Thesis
- Descriptors DEI
- COMPUTERIZED SIMULATION; CONTRAST MEDIA; DOSE RATES; GLIOMAS; MONTE CARLO METHOD; RADIOTHERAPY; SYNCHROTRON RADIATION SOURCES; VALIDATION; X RADIATION
- Descriptors DEC
- CALCULATION METHODS; DISEASES; ELECTROMAGNETIC RADIATION; IONIZING RADIATIONS; MEDICINE; NEOPLASMS; NERVOUS SYSTEM DISEASES; NUCLEAR MEDICINE; RADIATION SOURCES; RADIATIONS; RADIOLOGY; SIMULATION; TESTING; THERAPY
Optional Information
- Notes
- 491 refs.; Available from the INIS Liaison Officer for France, see the 'INIS contacts' section of the INIS-NKM website for current contact and E-mail addresses: http://www.iaea.org/INIS/contacts/