Search results for "DOSIMETRY"

showing 10 items of 297 documents

SU-FF-T-41: Monte Carlo Dosimetric Study of the New BEBIG Co-60 HDR Source

2005

Purpose: The use of high dose rate brachytherapy (HDR) is a highly extended practice today, being the Ir‐192 the most widely extended isotope used for this type of practice although Co‐60 is also available for HDR. 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 is no dosimetric data available in the literature. It is recommended that accurate dose distribution data, based on a realistic geometry and on the mechanical characteristics of the source, should be obtained by an appropriate method, experimental or Monte Carlo, to be used as input in the HDR Treatment Plannin…

medicine.medical_specialtyComputer sciencemedicine.medical_treatmentMonte Carlo methodBrachytherapyGeneral MedicineDose distributionHigh-Dose Rate BrachytherapyMonte carlo codemedicineDosimetryMedical physicsDose rateAlgorithmMedical Physics
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Monte Carlo study of the dose rate distributions for the Ir2.A85-2 and Ir2.A85-1 Ir-192 afterloading sources

2008

The two most commonly used modalities of cancer treatment in clinical brachytherapy practice today are high dose rate (HDR) and pulsed dose rate (PDR) brachytherapy. In a clinical treatment, quality dose rate distribution data sets of the brachytherapy sources are required for each source model. The purpose of this study is to obtain detailed dose rate distributions around the new BEBIG HDR and PDR Ir-192 brachytherapy sources. These distributions will then be used as input data in the treatment planning systems dedicated to brachytherapy and its calculations can be verified. The Monte Carlo method was used to obtain the dose rate distributions around the sources studied, taking into accoun…

medicine.medical_specialtyComputer sciencemedicine.medical_treatmentMonte Carlo methodBrachytherapyPulsed dose rateCancerGeneral Medicinemedicine.diseaseCancer treatmentmedicineDosimetryMedical physicsDose rateRadiation treatment planningMedical Physics
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SU-FF-T-13: Monte Carlo Calculation of the TG-43 Dosimetric Parameters of a New BEBIG Ir-192 HDR Source

2005

Purpose: High dose rate (HDR) brachytherapy is a highly extended practice in clinical brachytherapy today. Quality dose rate distribution datasets of the HDR sources used in a clinical treatment are required. Because of the different source designs, a specific dosimetry dataset is required for each source model. In the recently published BRAPHYQS-ESTRO Report, an overview of available dosimetric data for all HDR Ir-192 sources is given, pointing out the lack of data for one of the sources, the used by the BEBIG MultiSource afterloading system (BEBIG GmbH, Germany). The purpose of this study is to obtain detailed dose rate distributions in liquid water media around this source. Material and …

medicine.medical_specialtyDose calculationComputer sciencemedicine.medical_treatmentBrachytherapyMonte Carlo methodmedicineDosimetryMedical physicsGeneral MedicineDose rateClinical treatmentAlgorithmMedical Physics
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SU-FF-T-329: Monte Carlo Dosimetric Study of the Flexisource Ir-192 HDR Source

2006

Purpose:Brachytherapy with high dose rate (HDR) sources of 192 Ir is a usual practice in clinical brachytherapy today. The TG43 U1 update report recommends that accurate dose distribution data of the brachytherapysource in use should be obtained experimentally or by Monte Carlo (MC), to be used as input in the HDR Treatment Planning System (TPS). The purpose of this study is to obtain the dose rate distribution in liquid water media for the Flexisource HDR 192 Ir source (Isodose Control GmbH, Germany) using the Monte Carlo method to obtain the TG43 U1 parameters and the 2‐D rectangular dose rate table. Material and methods: The MC code GEANT4 (7.1 version) was used to estimate dose rate in …

medicine.medical_specialtyDose calculationComputer sciencemedicine.medical_treatmentMonte Carlo methodBrachytherapymedicineDosimetryMedical physicsGeneral MedicineDose rateRadiation treatment planningAlgorithmMedical Physics
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WE-C-141-01: Research and Relevance of Brachytherapy Dose Calculation Advancements

2013

Research and Relevance of Brachytherapy Dose Calculation Advancements Organizer: Mark J. Rivard Moderator: Geoffrey S. Ibbott Speakers: Facundo Ballester, Asa Carlsson Tedgren, Firas Mourtada Brachytherapy dosimetry is undergoing a renaissance with the scrutiny of the AAPM TG‐43 dose calculation formalism and comparisons with alternate approaches such as the Monte Carlo method, the grid‐based Boltzmann solvers, and the collapsed‐cone technique. Treatment planning systems (TPS) using these more advanced, model‐based dose calculation algorithms (MBDCAs) are now available for clinical use. However, their accuracy and the preferred method for their use have not been established. Thus, it is imp…

medicine.medical_specialtyDose calculationbusiness.industrymedicine.medical_treatmentBrachytherapyThe RenaissanceGeneral MedicineMedical physicistmedicineBenchmark (computing)DosimetryRelevance (information retrieval)Medical physicsRadiation treatment planningbusinessMedical Physics
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Eye lens equivalent dose in interventional neuroradiology based on OSL dosimetry

2016

Over the past years there has been an increase in the assessment of eye lens doses in interventional radiology procedures. This is due to the new recommendations of the International Commission on Radiological Protection (ICRP-2012 Publication 118) that proposes to reduce equivalent dose limit for the eye lens. The aim of this study is to make estimates of equivalent dose received by eye lens of the medical staff in interventional neuroradiology procedures. Consequently, this study presents an alternative for eye lens dosimetry. For this purpose nanoDot dosimeters based on optically stimulated luminescence (OSL) technology from Landauer Inc. product were used. The measurements obtained for …

medicine.medical_specialtyDosimetergenetic structuresOptically stimulated luminescencemedicine.diagnostic_testEquivalent dosebusiness.industryInterventional radiologyeye diseases030218 nuclear medicine & medical imaging03 medical and health sciences0302 clinical medicine030220 oncology & carcinogenesisRadiological weaponmedicineDosimetryMedical physicssense organsNuclear medicinebusinessInterventional neuroradiologyNeuroradiology2016 Global Medical Engineering Physics Exchanges/Pan American Health Care Exchanges (GMEPE/PAHCE)
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Estimation of equivalent dose to the eye lens and hands in wrist surgery using OSL dosimetry

2016

The new recommendations of the International Commission on Radiological Protection (ICRP-2012 Publication 118) proposes reducing the limit of equivalent dose to the eye lens. For this reason, it is necessary to make estimates about received equivalent dose to the eye lens of medical staff. This study provides an alternative to dosimetry of the eye lens and hands, using dosimeters nanoDots based on optically stimulated luminescence (OSL) technology in wrist surgery procedure carried out with fluoroscopy.

medicine.medical_specialtyDosimetergenetic structuresOptically stimulated luminescencemedicine.diagnostic_testEquivalent dosebusiness.industryWrist surgeryeye diseases030218 nuclear medicine & medical imaging03 medical and health sciences0302 clinical medicine030220 oncology & carcinogenesisRadiological weaponMedicineDosimetryFluoroscopyMedical physicssense organsEye lensbusinessNuclear medicine2016 Global Medical Engineering Physics Exchanges/Pan American Health Care Exchanges (GMEPE/PAHCE)
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Radiation exposure to the hands and the thyroid of the surgeon during intramedullary nailing.

1998

Abstract During 41 procedures of intramedullary nailing of femoral and tibial fractures, the primary surgeon and the first assistant wore ring dosimeters on their dominant index fingers. While the average fluoroscopy time per procedure was 4.6 min, the average dose of radiation to the dominant hand of the primary surgeon was 1.27 mSv and 1.19 mSv to the first assistant. The dose limit for the extremities is 500 mSv per year, as recommended by the International Commission on Radiological Protection. Extrapolation of the mean dose of the primary surgeon and first assistent per procedure of 1.23 mSv leads to the result that the recommended dose limit of 500 mSv would only be exceeded if more t…

medicine.medical_specialtyFilm DosimetryThyroid GlandWorkloadIonizing radiationlaw.inventionIntramedullary rodIntraoperative PeriodRadiation ProtectionlawOccupational ExposuremedicineFluoroscopyHumansFemurTibiaFemurRadiation InjuriesOccupational HealthGeneral Environmental ScienceDosimetermedicine.diagnostic_testTibiabusiness.industryPhantoms ImagingHandFracture Fixation IntramedullaryTibial FracturesOrthopedicsRadiological weaponFluoroscopyOrthopedic surgeryGeneral Earth and Planetary SciencesbusinessNuclear medicineFemoral FracturesInjury
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Exclusive MRI-based tandem and colpostats reconstruction in gynaecological brachytherapy treatment planning

2008

Purpose: According to the GYN GEC-ESTRO Recommendations, MRI is needed with the modality of T2 weighted. CT-MR compatible tandem Plus colpostats (T/C) (Nucletron) is widely used in cervical brachytherapy. The major challenge of MRI is the lack of dummy catheters. Therefore, an additional imaging modality is usually required. One disadvantage of sliced-based reconstruction is that resolution in longitudinal directions can be affected by the slice thickness. The aim of this study is to present a modified T/C applicator in which the catheter visibility is significantly improved. Methods and materials: A modification to the existing T/C applicator has been made available, increasing the cathete…

medicine.medical_specialtyGenital Neoplasms Femalebusiness.industryRadiotherapy Planning Computer-AssistedSlice thicknessmedicine.medical_treatmentBrachytherapyBrachytherapyRadiotherapy DosageHematologyMagnetic Resonance ImagingCatheterizationCatheterOncologymedicineHumansDosimetryFemaleRadiology Nuclear Medicine and imagingRadiologyNuclear medicinebusinessRadiation treatment planningT2 weighted
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Implementation of dosimetry equipment and phantoms at the MedAustron light ion beam therapy facility

2017

Purpose: To describe the implementation of dosimetry equipment and phantoms into clinical practice of light ion beam therapy facilities. This work covers standard dosimetry equipment such as computerized water scanners, films, 2D-array, thimble and plane parallel ionization chambers, but also dosimetry equipment specifically devoted to the pencil beam scanning delivery technique such as water columns, scintillating screens or multi-layer ionization chambers. Method: Advanced acceptance testing procedures developed at MedAustron and complementary to the standard acceptance procedures proposed by the manufacturer are presented. Detailed commissioning plans have been implemented for each piece…

medicine.medical_specialtyIon beamComputer scienceNuclear engineeringmedicine.medical_treatmentImaging phantomPelvis030218 nuclear medicine & medical imagingMedical physicist03 medical and health sciences0302 clinical medicinemedicineHumansDosimetryMedical physicsRadiometryPencil-beam scanningIonsPhantoms ImagingRadiation DosimetersUncertaintyGeneral MedicinePencil (optics)Radiation therapy030220 oncology & carcinogenesisSoftwareMedical Physics
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