Search results for "Brachytherapy"

showing 10 items of 168 documents

Dosimetric study of the 15mm ROPES eye plaque

2004

The main aim of this paper is to make a study of dose-rate distributions obtained around the 15 mm, radiation oncology physics and engineering services, Australia (ROPES) eye plaque loaded with {sup 125}I model 6711 radioactive seeds. In this study, we have carried out a comparison of the dose-rate distributions obtained by the algorithm used by the Plaque Simulator (PS) (BEBIG GmbH, Berlin, Germany) treatment planning system with those obtained by means of the Monte Carlo method for the ROPES eye plaque. A simple method to obtain the dose-rate distributions in a treatment planning system via the superposition of the dose-rate distributions of a seed placed in the eye plaque has been develo…

Physicsgenetic structuresBackscatterbusiness.industryAttenuationmedicine.medical_treatmentMonte Carlo methodBrachytherapyGeneral MedicineImaging phantomScleraSuperposition principlemedicine.anatomical_structureOpticsmedicineDosimetryNuclear medicinebusinessMedical Physics
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Technical note: Monte Carlo derivation of TG-43 dosimetric parameters for radiation therapy resources and 3M Cs-137 sources

2005

In clinical brachytherapy dosimetry, a detailed dose rate distribution of the radioactive source in water is needed in order to plan for quality treatment. Two Cs-137 sources are considered in this study; the Radiation Therapy Resources 67-800 source (Radiation Therapy Resources Inc., Valencia, CA) and the 3M model 6500/6D6C source. A complete dosimetric dataset for both sources has been obtained by means of the Monte Carlo GEANT4 code. Dose rate distributions are presented in two different ways; following the TG43 formalism and in a 2D rectangular dose rate table. This 2D dose rate table is helpful for the TPS quality control and is fully consistent with the TG43 dose calculation formalism…

Physicsmedicine.medical_specialtyPhotonbusiness.industrymedicine.medical_treatmentRadioactive sourceBrachytherapyMonte Carlo methodGeneral MedicineComputational physicsRadiation therapymedicineRelative biological effectivenessDosimetryMedical physicsbusinessQuality assuranceMedical Physics
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SU-FF-T-14: Monte Carlo Derivation of TG-43 Dosimetric Parameters for Radiation Therapy Resources and 3M Cs-137 Sources

2005

Purpose: In clinical brachytherapydosimetry a detailed dose rate distribution of the radioactive source in water is needed to make a quality treatment planning. Two Cs‐137 sources are considered in this study the Radiation Therapy Resources 67–800 source(Radiation Therapy Resources Inc., Valencia, CA) and the 3M model 6500/6D6C source.Material and methods: A complete dosimetric dataset for both sources has been obtained by means of the Monte Carlo GEANT4 code. Results:Dose rate distributions are presented in two different ways, following the TG43 formalism and in a 2D rectangular dose rate table. Conclusion: This 2D dose rate table is helpful for the TPS quality control and it is fully cons…

Physicsmedicine.medical_specialtybusiness.industryRadioactive sourcemedicine.medical_treatmentBrachytherapyMonte Carlo methodGeneral MedicineComputational physicsRadiation therapymedicineDosimetryMedical physicsbusinessAnisotropyRadiation treatment planningQuality assuranceMedical Physics
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Technical note: Monte-Carlo dosimetry of the HDR 12i and Plus 192Ir sources.

2001

In this study a complete set of dosimetric data for the GammaMed high dose rate (HDR) 12i and Plus 192 Ir sources are presented. These data have been calculated by means of the Monte Carlo simulation code GEANT3. Absolute dose rate distributions in water are presented as conventional two dimensional (2D) Cartesian look-up tables, and in the TG43 formalism.

Physicsmedicine.medical_treatmentBrachytherapyMonte Carlo methodBrachytherapyBiophysicsWaterTechnical noteGeneral MedicineIridium RadioisotopesBiophysical PhenomenaComputational physicslaw.inventionFormalism (philosophy of mathematics)lawmedicineEconometricsDosimetryAnisotropyCartesian coordinate systemDose rateRadiometryMonte Carlo MethodMedical physics
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The necessity of systematic verification of applicator position in brachytherapy treatment of the vaginal cuff

2009

Position (obstetrics)medicine.medical_specialtyOncologybusiness.industrymedicine.medical_treatmentBrachytherapyMedicineRadiology Nuclear Medicine and imagingbusinessVaginal cuffSurgeryBrachytherapy
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Dose Escalation in Permanent Brachytherapy for Prostate Cancer: Preliminary Results

2010

Prostate cancermedicine.medical_specialtyOncologybusiness.industrymedicine.medical_treatmentBrachytherapymedicineDose escalationRadiology Nuclear Medicine and imagingRadiologymedicine.diseasebusinessBrachytherapy
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RPN safety analysis to reduce the risk of malpractices in high dose rate brachytherapy

2013

A new fuzzy rule-based assessment model is proposed to evaluate the risk priority number in the Failure Mode, Effects, and Criticality Analysis (FMECA) method to rank component failures and human errors from the medical staff, leading to potential radiological over-exposure of patients during high-dose-rate brachytherapy treatment. The obtained results are relevant for a range of causes that have a reasonable probability of producing significant adverse outcomes. Thus, recommendations are provided for procedures and safety devices to reduce the occurrence of radiological over-exposure accidents. This method can solve the problems in conventional FMECA applications and improve the safety and…

RPN FMECA BRACHYTHERAPY RISKSettore ING-IND/19 - Impianti Nucleari
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Monte Carlo dosimetric study of the medium dose rate CSM40 source

2013

Abstract The 137Cs medium dose rate (MDR) CSM40 source model (Eckert & Ziegler BEBIG, Germany) is in clinical use but no dosimetric dataset has been published. This study aims to obtain dosimetric data for the CSM40 source for its use in clinical practice as required by the American Association of Physicists in Medicine (AAPM) and the European Society for Radiotherapy and Oncology (ESTRO). Penelope2008 and Geant4 Monte Carlo codes were used to characterize this source dosimetrically. It was located in an unbounded water phantom with composition and mass density as recommended by AAPM and ESTRO. Due to the low photon energies of 137Cs, absorbed dose was approximated by collisional kerma. Add…

RadiationPhotonPhantoms Imagingbusiness.industryChemistryRadiotherapy Planning Computer-Assistedmedicine.medical_treatmentMonte Carlo methodBrachytherapyWaterRadiotherapy DosageImaging phantomComputational physicsKermaCesium RadioisotopesAbsorbed dosemedicineAnisotropyHumansRadiometryNuclear medicinebusinessRadiation treatment planningMonte Carlo MethodUncertainty analysisApplied Radiation and Isotopes
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Fitted dosimetric parameters of high dose-rate 192Ir sources according to the AAPM TG43 formalism

2001

The purpose of this study is to find fitted functional forms to the anisotropy function, F(r,θ), and the radial dose function, g(r), in order to characterize dose-rate distributions around all the high-intensity 192 Ir sources currently in use. Dosimetry data are at present available as tables for: the microSelectron HDR (“classic” and “new” design models), the PDR source, and the VariSource HDR source, expressed in terms of the AAPM Task Group No. 43 recommendations. There is only one paper out which introduces a functional form to fit the anisotropy function, but only for symmetric sources with respect to the transverse axis. However, dosimetric data of the HDR and PDR sources mentioned a…

RadioisotopesTask groupModels Statisticalmedicine.medical_treatmentBrachytherapyMathematical analysisTransverse axisGeneral MedicineModels TheoreticalIridiumFormalism (philosophy of mathematics)medicineAnisotropyDosimetryRadiometryDose rateAnisotropyMonte Carlo MethodAlgorithmMathematicsMedical Physics
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Monte Carlo dosimetric study of the BEBIG Co-60 HDR source

2005

Although not as widespread as Ir-192, Co-60 is also available on afterloading equipment devoted to high dose rate brachytherapy, mainly addressed to the treatment of gynaecological lesions. The purpose of this study is to obtain the dosimetric parameters of the Co-60 source used by the BEBIG MultiSource remote afterloader (BEBIG GmbH, Germany) for which there are no dosimetric data available in the literature. The Monte Carlo code GEANT4 has been used to obtain the TG43 parameters and the 2D dose rate table in Cartesian coordinates of the BEBIG Co-60 HDR source. The dose rate constant, radial dose function and anisotropy function have been calculated and are presented in a tabular form as w…

Radiological and Ultrasound TechnologyPhantoms ImagingComputer scienceRadiotherapy Planning Computer-AssistedBrachytherapyMonte Carlo methodWaterRadiotherapy DosageHigh-Dose Rate BrachytherapyMonte carlo codeAnisotropyHumansRadiology Nuclear Medicine and imagingCobalt RadioisotopesRadiometryRadiation treatment planningDose rateMonte Carlo MethodAlgorithmSoftwareSimulationPhysics in Medicine and Biology
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