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dc.contributor.authorMesbahi, A
dc.contributor.authorAllahverdi, M
dc.contributor.authorGheraati, H
dc.date.accessioned2018-08-26T06:34:12Z
dc.date.available2018-08-26T06:34:12Z
dc.date.issued2005
dc.identifier.urihttp://dspace.tbzmed.ac.ir:8080/xmlui/handle/123456789/43933
dc.description.abstractOur purpose was to apply the MCNP4C Monte Carlo (MC) code for dose calculations in the thorax region and compare the results with those of measurements and a conventional treatment planning system (TPS).We modeled a Theratron 780E 60Co unit and benchmarked our modeling with percent depth doses (PDDs), beam profiles, and output factors measured in a water phantom. For PDDs and beam profiles, the differences between measurements and MC calculations were less than 1% and 2%, respectively. We used an anatomic thorax phantom for evaluation of a conventional TPS and our MC calculation results.In comparing the results of calculations and measurements for our thorax geometries, the errors of conventional and MC methods were 20% and 2%, respectively. For the anterior mediastinal field and large thorax field the accuracy of the conventional method was acceptable, but for small fields of lateral thorax irradiation, the error of the conventional method was as high as to 20%. In all MC calculations, discrepancy from the measurements was less than 2%.Our results showed that the MCNP4C MC code could be used in dose calculations in treatment planning for 60Co photon irradiation. In addition, the application of the MC method for dose calculations in radiotherapy with 60Co photons was recommended.
dc.language.isoEnglish
dc.relation.ispartofRadiation medicine
dc.subjectAlgorithms
dc.subjectCobalt Radioisotopes
dc.subjectGamma Rays
dc.subjectModels, Anatomic
dc.subjectMonte Carlo Method
dc.subjectPhantoms, Imaging
dc.subjectPhotons
dc.subjectRadiation Dosage
dc.subjectRadiotherapy Planning, Computer-Assisted
dc.subjectRadiotherapy, Conformal
dc.subjectReproducibility of Results
dc.subjectThorax
dc.titleMonte carlo dose calculations in conventional thorax fields for 60Co photons.
dc.typearticle
dc.citation.volume23
dc.citation.issue5
dc.citation.spage341
dc.citation.epage50
dc.citation.indexPubmed


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