Personalized Monte Carlo dosimetry for the planning and evaluation of internal radiotherapy treatments: development and application to selective internal radiotherapy (SIRT)
Description
Medical techniques in full expansion arousing high therapeutic expectations, targeted radionuclide therapies (TRT) consist of administering a radiopharmaceutical to selectively treat tumors. Nowadays, the activity injected to the patient is generally standardized. However, in order to establish robust dose-effect relationships and to optimize treatments while sparing healthy tissues at best, a personalized dosimetry must be performed, just like actual clinical practice in external beam radiotherapy. In that context, this PhD main objective was to develop, using the OEDIPE software, a methodology for personalized dosimetry based on direct Monte Carlo calculations. The developed method enables to calculate the tridimensional distribution of absorbed doses depending on the patient anatomy, defined from CT or MRI data, and on the patient-specific activity biodistribution, defined from SPECT or PET data. Radiobiological aspects, such as differences in radiosensitivities and repair time constants between tumoral and healthy tissues, have also been integrated through the linear-quadratic model. This methodology has been applied to the selective internal radiation therapy (SIRT) which consists in the injection of 90Y-microspheres to selectively treat unresectable hepatic cancers. Distributions of absorbed doses and biologically effective doses (BED) along with the equivalent uniform biologically effective doses (EUD) to hepatic lesions have been calculated from 99mTc-MAA activity distributions obtained during the evaluation step for 18 patients treated at Hopital Europeen Georges Pompidou. Those results have been compared to classical methods used in clinics and the interest of accurate and personalized dosimetry for treatment planning has been investigated. On the one hand, the possibility to increase the activity in a personalized way has been highlighted with the calculation of the maximal activity that could be injected to the patient while meeting tolerance criteria on organs at risk. On the other hand, the use of radiobiological quantities has also enabled to evaluate the potential added value of fractionated protocols in SIRT. The developed tool can thus be used as a help for the optimization of treatment plans. Moreover, a study has been initiated to improve the reconstruction of post-treatment data from 90Y-SPECT. The estimation from those data of doses delivered during treatment could allow to predict tumoral control and to anticipate healthy tissues toxicity as well as to establish precise dose-effect relationships for those treatments. (author)
Abstract (French)
Techniques medicales en plein essor suscitant d'importants espoirs therapeutiques, les radiotherapies internes vectorisees (RIV) consistent a administrer un radiopharmaceutique pour traiter selectivement les tumeurs. A l'heure actuelle, l'activite injectee au patient est generalement standardisee. Cependant, afin d'etablir des relations dose-effet robustes et d'optimiser le traitement en preservant au mieux les tissus sains, une dosimetrie personnalisee doit etre realisee, a l'image des pratiques cliniques existant en radiotherapie externe. Dans ce cadre, l'objectif de la these etait de developper, a l'aide du logiciel OEDIPE, une methode de dosimetrie personnalisee reposant sur des calculs Monte Carlo directs. La methode mise au point permet de calculer la distribution tridimensionnelle des doses absorbees en fonction de l'anatomie du patient, definie a l'aide d'images TDM ou IRM, ainsi que de la biodistribution de l'activite specifique au patient, definie a partir de donnees d'emission TEMP ou TEP. Des aspects radiobiologiques, tels que les differences de radiosensibilite et de vitesse de reparation entre les tissus sains et les lesions tumorales, ont egalement ete integres par l'intermediaire du modele lineaire-quadratique. Cette methode a ete appliquee a la radiotherapie interne selective (SIRT) qui consiste a injecter des 90Y-microspheres pour traiter selectivement les cancers hepatiques inoperables. Les distributions des doses absorbees et doses biologiques efficaces (BED) ainsi que les doses biologiques efficaces equivalentes uniformes (EUD) aux lesions hepatiques ont ete calculees a partir des distributions d'activite de l'etape d'evaluation aux 99mTc- MAA pour 18 patients traites a l'hopital europeen Georges Pompidou. Ces resultats ont ete compares aux methodes classiques utilisees en clinique et l'interet d'une dosimetrie precise et personnalisee pour la planification de traitement a ete etudie. D'une part, la possibilite d'augmenter l'activite de maniere personnalisee a ete mise en evidence par le calcul de l'activite maximale injectable au patient en fonction de criteres de tolerance donnes aux organes a risque. D'autre part, l'utilisation des grandeurs radiobiologiques a egalement permis d'evaluer l'apport potentiel de protocoles fractionnes en SIRT. L'outil developpe peut donc etre utilise comme aide a l'optimisation des plans de traitement. En outre, une etude a ete initiee en vue d'ameliorer la reconstruction des donnees post-traitement de la TEMP-90Y. L'evaluation a partir de ces donnees des doses delivrees lors du traitement pourra permettre, d'une part, de predire le controle tumoral et d'anticiper le risque de toxicite aux tissus sains et, d'autre part, d'etablir des relations dose-effet precises pour ces traitements. (auteur)
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Additional details
Additional titles
- Original title (French)
- Dosimetrie Monte Carlo personnalisee pour la planification et l'evaluation des traitements de radiotherapie interne: developpement et application a la radiotherapie interne selective (SIRT)
Identifiers
Publishing Information
- Imprint Pagination
- 280 p.
- Report number
- FRNC-TH--8935
INIS
- Country of Publication
- France
- Country of Input or Organization
- France
- INIS RN
- 46012733
- Subject category
- S61: RADIATION PROTECTION AND DOSIMETRY; S62: RADIOLOGY AND NUCLEAR MEDICINE;
- Resource subtype / Literary indicator
- Thesis
- Descriptors DEI
- ABSORBED RADIATION DOSES; ANATOMY; BIOLOGICAL RADIATION EFFECTS; CARCINOMAS; COMPUTERIZED SIMULATION; DOSE-RESPONSE RELATIONSHIPS; DOSIMETRY; LIVER; MONTE CARLO METHOD; OPTIMIZATION; PATIENTS; RADIATION PROTECTION; RADIONUCLIDE KINETICS; RADIOTHERAPY; SPATIAL DOSE DISTRIBUTIONS; SURVIVAL CURVES; TOXICITY
- Descriptors DEC
- BIOLOGICAL EFFECTS; BIOLOGY; BODY; CALCULATION METHODS; DIGESTIVE SYSTEM; DISEASES; DOSES; GLANDS; KINETICS; MEDICINE; NEOPLASMS; NUCLEAR MEDICINE; ORGANS; RADIATION DOSE DISTRIBUTIONS; RADIATION DOSES; RADIATION EFFECTS; RADIOLOGY; SIMULATION; THERAPY
Optional Information
- Notes
- 87 refs.; Available online at: https://tel.archives-ouvertes.fr/IRSN/tel-01081595v1; Also available from the INIS Liaison Officer for France, see the 'INIS contacts' section of the INIS website for current contact and E-mail addresses: http://www.iaea.org/inis/Contacts/