Search results for "Imaging phantom"

showing 10 items of 127 documents

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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End-to-end tests using alanine dosimetry in scanned proton beams

2018

This paper describes end-to-end test procedures as the last fundamental step of medical commissioning before starting clinical operation of the MedAustron synchrotron-based pencil beam scanning (PBS) therapy facility with protons. One in-house homogeneous phantom and two anthropomorphic heterogeneous (head and pelvis) phantoms were used for end-to-end tests at MedAustron. The phantoms were equipped with alanine detectors, radiochromic films and ionization chambers. The correction for the 'quenching' effect of alanine pellets was implemented in the Monte Carlo platform of the evaluation version of RayStation TPS. During the end-to-end tests, the phantoms were transferred through the workflow…

Radiology Nuclear Medicine and ImagingMaterials sciencePelviMonte Carlo methodanthropomorphic phantomauditRadiation DosageImaging phantom030218 nuclear medicine & medical imaginglaw.inventionPelvisSynchrotron03 medical and health sciences0302 clinical medicinelawIonizationend to end testDosimetryHumansPencil-beam scanningRadiometryAlaninedosimetryRadiological and Ultrasound TechnologyPhantoms ImagingRadiotherapy Planning Computer-Assistedequipment and suppliesSynchrotron030220 oncology & carcinogenesisIonization chamberProtonProtonsHeadMonte Carlo MethodBeam (structure)SynchrotronsBiomedical engineeringHuman
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Image-based MRI Gradient Estimation

2017

In order to reduce geometric distortion phenomena in MR images, every MRI system main magnet undergoes a shimming process. Since this process aims at optimizing magnetic field homogeneity within a so-called uniformity sphere, image quality outside this sphere is neglected. Since the fields vary smoothly in space, MR signal-to-noise ratio is still non-zero just outside the uniformity region, but correction of MR image distortion fails due to lack of magnetic field knowledge outside it. We propose a novel algorithm for measuring all the fields involved in the generation of images. Our proposal is based on exploitation of the distortion which can be observed in images of a known phantom. The p…

RegistrationImage qualityComputer scienceBiomedical EngineeringBiophysicsImage enhancement/restoration (noise and artifact reduction)Signal-To-Noise Ratio01 natural sciencesGeometric distortionImaging phantom030218 nuclear medicine & medical imaging03 medical and health sciences0302 clinical medicine0103 physical sciencesHomogeneity (physics)Gradient estimationRadiology Nuclear Medicine and imagingComputer visionMagnetic resonance imaging (MRI)010306 general physicsPhantoms Imagingbusiness.industrySettore ING-INF/03 - TelecomunicazioniImage EnhancementMagnetic Resonance ImagingMagnetic fieldMagnetArtificial intelligencebusinessAlgorithmsImage based
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SU-FF-T-62: Dosimetric Evaluation of An Internal Shielding Used with a HDR Skin Applicator

2009

Purpose: The Valencia HDR skin applicators are accessories of the microSelectron HDR afterloading system (Nucletron) cup shaped to limit the dose to the irradiation area. Applicators sizes are: diameter 2 and 3 cm. The typical prescription depth is 3 mm. This work aims to evaluate the backscatter and electron contamination of an internal shielding used to reduce the dose to the ocular globe when the lesion is located at the eyelid. Monte Carlo(MC) and experimental methods have been used. Method and Materials: The geometry has been: the Valencia applicator (2 cm diameter) on the surface of a solid polystyrene slab phantom; inside, a 2 mm lead slab located at 3 mm depth. MC simulation charact…

ScannerLead shieldingOpticsMaterials sciencebusiness.industryAbsorbed doseElectromagnetic shieldingMonte Carlo methodDosimetryGeneral MedicinebusinessBolus (radiation therapy)Imaging phantomMedical Physics
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34. Accomplishing the requirements within the new decree 159/2016: Comparative study of eddy currents induced in a human phantom moving near differen…

2018

Purpose In order to provide adequate risk-reducing procedures for MRI personnel (radiographers, anaesthetists, physicists, nurses, technicians, cleaners, etc.), different studies have been developed in the past years. Further to those, in the present work risk assessment concerned with currents induced by non-uniform static magnetic fields in MRI operators performing different tasks in proximity of the scanner has been investigated across a set of different 1.5 T MRI scanners. Methods The first step has been to empirically map the magnetic field around the different scanners and to select a proper adult human body as a heterogeneous volume conductor model. Then, upon observing the way tasks…

ScannerPhysiological significanceComputer scienceWork (physics)BiophysicsGeneral Physics and AstronomyGeneral MedicineImaging phantomlaw.inventionlawEddy currentRadiology Nuclear Medicine and imagingSet (psychology)SimulationPhysica Medica
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Correction factors for ionization chamber measurements with the ‘Valencia’ and ‘large field Valencia’ brachytherapy applicators

2018

Treatment of small skin lesions using HDR brachytherapy applicators is a widely used technique. The shielded applicators currently available in clinical practice are based on a tungsten-alloy cup that collimates the source-emitted radiation into a small region, hence protecting nearby tissues. The goal of this manuscript is to evaluate the correction factors required for dose measurements with a plane-parallel ionization chamber typically used in clinical brachytherapy for the 'Valencia' and 'large field Valencia' shielded applicators. Monte Carlo simulations have been performed using the PENELOPE-2014 system to determine the absorbed dose deposited in a water phantom and in the chamber act…

Skin Neoplasmsmedicine.medical_treatmentBrachytherapyPhysics::Medical PhysicsMonte Carlo methodBrachytherapyDose profileRadiationImaging phantom030218 nuclear medicine & medical imaging03 medical and health sciences0302 clinical medicineOpticsmedicineRadiology Nuclear Medicine and imagingRadiometryValenciaPhysicsRadiological and Ultrasound TechnologybiologyPhantoms ImagingRadiation Dosimetersbusiness.industryRadiotherapy Dosagebiology.organism_classification030220 oncology & carcinogenesisAbsorbed doseIonization chamberbusinessMonte Carlo MethodPhysics in Medicine & Biology
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Cerebral Oximetry Measurements Results Depending on a Preclinical Skull Phantom Model

2021

Abstract It is more common to perform non-invasive examination during general anaesthesia to ensure effective perioperative patient care. To achieve these results, researchers and clinicians are seeking out different technologies and developing new equipment. One such apparatus is a cerebral oximeter, which is used during cardiac surgery with cardiopulmonary bypass for neuroprotection management for reducing risk of postoperative neurological injury (cerebral stroke, neurocognitive dysfunction, and cerebral haemorrhage). A cerebral oximeter performs non-invasive transcutaneous measurements using near infrared radiation to assess the oxygenation of tissues. The objective of the study was to …

SkullMaterials sciencemedicine.anatomical_structurebusiness.industrymedicineNuclear medicinebusinessCerebral oximetryImaging phantomProceedings of the Latvian Academy of Sciences. Section B. Natural, Exact, and Applied Sciences.
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About Objective 3-D Analysis of Airway Geometry in Computerized Tomography

2008

The technology of multislice X-ray computed tomography (MSCT) provides volume data sets with approximately isotropic resolution, which permits a noninvasive 3-D measurement and quantification of airway geometry. In different diseases, like emphysema, chronic obstructive pulmonary disease (COPD), or cystic fribrosis, changes in lung parenchyma are associated with an increase in airway wall thickness. In this paper, we describe an objective measuring method of the airway geometry in the 3-D space. The limited spatial resolution of clinical CT scanners in comparison to thin structures like airway walls causes difficulties in the measurement of the density and the thickness of these structures.…

SwineComputer sciencePulmonary diseaseComputed tomographyGeometrySensitivity and SpecificityCystic fibrosisImaging phantomImaging Three-DimensionalParenchymamedicineAnimalsMultisliceElectrical and Electronic EngineeringQuantitative computed tomographyLungImage resolutionCOPDLungRadiological and Ultrasound Technologymedicine.diagnostic_testPhantoms ImagingReproducibility of ResultsBronchographyComputational geometrymedicine.diseaserespiratory tract diseasesComputer Science ApplicationsRadiographic Image Enhancementmedicine.anatomical_structureAirway wallRadiographic Image Interpretation Computer-AssistedTomographyTomography X-Ray ComputedAirwayAlgorithmsSoftwareIEEE Transactions on Medical Imaging
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Quantum Simulations of One-Dimensional Nanostructures under Arbitrary Deformations

2016

A powerful technique is introduced for simulating mechanical and electromechanical properties of one-dimensional nanostructures under arbitrary combinations of bending, twisting, and stretching. The technique is based on a novel control of periodic symmetry, which eliminates artifacts due to deformation constraints and quantum finite-size effects, and allows transparent electronic structure analysis. Via density-functional tight-binding implementation, the technique demonstrates its utility by predicting novel electromechanical properties in carbon nanotubes and abrupt behavior in the structural yielding of Au7 and MoS nanowires. The technique drives simulations markedly closer to the reali…

Symmetry operationNanostructurearbitrary deformationsta221NanowireGeneral Physics and AstronomyFOS: Physical sciences02 engineering and technologyBending01 natural sciencesImaging phantomCondensed Matter::Materials SciencenanorakenteetQuantum mechanicsnanostructures0103 physical sciencesMesoscale and Nanoscale Physics (cond-mat.mes-hall)010306 general physicsQuantumPhysicsCondensed Matter - Materials Scienceta114Condensed Matter - Mesoscale and Nanoscale PhysicsMaterials Science (cond-mat.mtrl-sci)quantum simulations021001 nanoscience & nanotechnology0210 nano-technology
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Design and development of a fNIRS system prototype based on SiPM detectors

2014

Functional Near Infrared Spectroscopy (fNIRS) uses near infrared sources and detectors to measure changes in absorption due to neurovascular dynamics in response to brain activation. The use of Silicon Photomultipliers (SiPMs) in a fNIRS system has been estimated potentially able to increase the spatial resolution. Dedicated SiPM sensors have been designed and fabricated by using an optimized process. Electrical and optical characterizations are presented. The design and implementation of a portable fNIRS embedded system, hosting up to 64 IR-LED sources and 128 SiPM sensors, has been carried out. The system has been based on a scalable architecture whose elementary leaf is a flexible board …

business.industryComputer scienceDetectorNear-infrared spectroscopySettore ING-INF/02 - Campi ElettromagneticiNear Infrared SpectroscopySilicon PhotomultipliersReflectivitySettore ING-INF/01 - ElettronicaImaging phantomlaw.inventionOpticsSilicon photomultiplierlawOptoelectronicsSensitivity (control systems)businessEmbedded SystemsImage resolutionSilicon PhotomultiplierLight-emitting diode
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