Search results for "Treatment planning"

showing 10 items of 83 documents

Study of CT/MRI mutual information based registration applied in brachytherapy

2016

The present work aims to include magnetic resonance imaging (MRI) in a Medical Image-based Graphical platfOrm - Brachytherapy module (AMIGOBrachy) which coupled to the Monte Carlo N-Particle (MCNP6) code allows absorbed dose calculations. Computed tomography (CT) and MRI images were registered using mutual information algorithms to improve tissue segmentation potentially leading to a more accurate treatment planning system.

medicine.diagnostic_testbusiness.industrymedicine.medical_treatmentPhysics::Medical PhysicsMonte Carlo methodBrachytherapyImage registrationMagnetic resonance imagingMutual information030218 nuclear medicine & medical imaging03 medical and health sciences0302 clinical medicine030220 oncology & carcinogenesisAbsorbed dosemedicineMedical imagingComputer visionArtificial intelligencebusinessNuclear medicineRadiation treatment planning2016 Global Medical Engineering Physics Exchanges/Pan American Health Care Exchanges (GMEPE/PAHCE)
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Role of fluorine 18 fluorodeoxyglucose positron emission tomography/computed tomography in gastrointestinal cancers

2015

AbstractFluorine-18 fluorodeoxyglucose positron emission tomography/computed tomography (FDG-PET/CT) has become a routine imaging modality for many malignancies and its use is currently increasing. In the present review article, we will summarize the evidence for FDG-PET/CT use in digestive cancers (excluding neuroendocrine tumours), and review the existing recommendations. While PET/CT is nowadays considered to be an important tool in the initial workup of oesophageal and anal cancers, new data are emerging regarding its use in assessing therapeutic efficacy, radiotherapy treatment planning, and detection of recurrence in case of isolated tumour marker elevation. Moreover, PET/CT may help …

medicine.medical_specialtyColorectal cancerColonoscopyDigestive System NeoplasmsMultimodal ImagingPatient Care PlanningFluorodeoxyglucose positron emission tomographyFluorodeoxyglucose F18Pancreatic cancerHumansMedicinePositron Emission Tomography-Computed TomographyFluorine-18-fluorodeoxyglucoseHepatologymedicine.diagnostic_testbusiness.industryOesophageal cancerGastroenterologyPancreatic cancerRadiotherapy treatment planningPrognosismedicine.diseaseColorectal cancerFDG-PET/CTAnal canal cancerReview articleNeuroendocrine TumorsPositron-Emission TomographyPractice Guidelines as TopicRadiologyNeoplasm Recurrence LocalRadiopharmaceuticalsTomography X-Ray ComputedbusinessDigestive and Liver Disease
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Technical note: Dosimetric study of a new Co-60 source used in brachytherapy

2007

The purpose of this study is to obtain the dosimetric parameters of a new Co-60 source used in high dose rate brachytherapy and manufactured by BEBIG (Eckert & Ziegler BEBIG GmbH, Germany). The Monte Carlo method has been used to obtain the dose rate distribution in the updated TG-43U1 formalism of the American Association of Physicists in Medicine. In addition, to aid the quality control process on treatment planning systems (TPS), a two-dimensional rectangular dose rate table, coherent with the TG-43U1 dose calculation formalism, is given. These dosimetric data sets can be used as input data of the TPS calculations and to validate them.

medicine.medical_specialtyComputer scienceNuclear engineeringmedicine.medical_treatmentMonte Carlo methodBrachytherapyImage registrationGeneral MedicineHigh-Dose Rate BrachytherapyMedical imagingmedicineDosimetryMedical physicsDose rateRadiation treatment planningMedical 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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A practical MRI-based reconstruction method for a new endocavitary and interstitial gynaecological template

2015

Purpose: There are perineal templates for interstitial implants such as MUPIT and Syed applicators. Their limitations are the intracavitary component deficit and the necessity to use computed tomography (CT) for treatment planning since both applicators are non-magnetic resonance imaging (MRI) compatibles. To overcome these problems, a new template named Template Benidorm (TB) has been recently developed. Titanium needles are usually reconstructed based on their own artifacts, mainly in T1-weighted sequence, using the void on the tip as the needle tip position. Nevertheless, patient tissues surrounding the needles present heterogeneities that complicate the accurate identification of these …

medicine.medical_specialtyContouringArtifact (error)business.industryPlane (geometry)medicine.medical_treatmentgynecological templateBrachytherapybrachytherapy templatecatheter reconstructionReconstruction methodIntersection (Euclidean geometry)SurgeryOncologyLine (geometry)MedicineOriginal ArticleRadiology Nuclear Medicine and imaginginterstitial implantsbusinessRadiation treatment planningBiomedical engineeringJournal of Contemporary Brachytherapy
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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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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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Brachytherapy treatment planning for complex applicators based on the AAPM TG-43 dosimetry algorithm: Case studies and clinical impact

2009

medicine.medical_specialtyOncologybusiness.industrymedicine.medical_treatmentBrachytherapyDosimetryMedicineRadiology Nuclear Medicine and imagingMedical physicsbusinessRadiation treatment planningNuclear medicineBrachytherapy
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MRI based treatment planning in gynaecological brachytherapy

2008

medicine.medical_specialtyOncologybusiness.industrymedicine.medical_treatmentBrachytherapyMedicineRadiology Nuclear Medicine and imagingMedical physicsbusinessRadiation treatment planningBrachytherapy
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