Miller et al., 2020 - Google Patents
High-resolution, single-particle digital autoradiography of actinide sources using microcapillary array collimators and the iQID cameraMiller et al., 2020
View PDF- Document ID
- 11308510870029171484
- Author
- Miller B
- Bowen J
- Morrison E
- Publication year
- Publication venue
- Applied Radiation and Isotopes
External Links
Snippet
Abstract Characterization of the homogeneity of thin actinide deposits prior to and after irradiation is important to ensure measurement of high-quality nuclear data in nuclear physics experiments. Autoradiography is frequently used to assess homogeneity, but …
- 239000002245 particle 0 title abstract description 30
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T1/00—Measuring X-radiation, gamma radiation, corpuscular radiation, or cosmic radiation
- G01T1/16—Measuring radiation intensity
- G01T1/161—Application in the field of nuclear medicine, e.g. in vivo counting
- G01T1/164—Scintigraphy
- G01T1/1641—Static instruments for imaging the distribution of radioactivity in one or two dimensions using one or several scintillating elements; Radio-isotope cameras
- G01T1/1648—Ancillary equipment for scintillation cameras, e.g. reference markers, devices for removing motion artifacts, calibration devices
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T1/00—Measuring X-radiation, gamma radiation, corpuscular radiation, or cosmic radiation
- G01T1/16—Measuring radiation intensity
- G01T1/161—Application in the field of nuclear medicine, e.g. in vivo counting
- G01T1/164—Scintigraphy
- G01T1/1641—Static instruments for imaging the distribution of radioactivity in one or two dimensions using one or several scintillating elements; Radio-isotope cameras
- G01T1/1647—Processing of scintigraphic data
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T1/00—Measuring X-radiation, gamma radiation, corpuscular radiation, or cosmic radiation
- G01T1/16—Measuring radiation intensity
- G01T1/161—Application in the field of nuclear medicine, e.g. in vivo counting
- G01T1/164—Scintigraphy
- G01T1/1641—Static instruments for imaging the distribution of radioactivity in one or two dimensions using one or several scintillating elements; Radio-isotope cameras
- G01T1/1644—Static instruments for imaging the distribution of radioactivity in one or two dimensions using one or several scintillating elements; Radio-isotope cameras using an array of optically separate scintillation elements permitting direct location of scintillations
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T1/00—Measuring X-radiation, gamma radiation, corpuscular radiation, or cosmic radiation
- G01T1/29—Measurement performed on radiation beams, e.g. position or section of the beam; Measurement of spatial distribution of radiation
- G01T1/2914—Measurement of spatial distribution of radiation
- G01T1/2921—Static instruments for imaging the distribution of radioactivity in one or two dimensions; Radio-isotope cameras
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T1/00—Measuring X-radiation, gamma radiation, corpuscular radiation, or cosmic radiation
- G01T1/16—Measuring radiation intensity
- G01T1/20—Measuring radiation intensity with scintillation detectors
- G01T1/2018—Scintillation-photodiode combination
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T1/00—Measuring X-radiation, gamma radiation, corpuscular radiation, or cosmic radiation
- G01T1/16—Measuring radiation intensity
- G01T1/20—Measuring radiation intensity with scintillation detectors
- G01T1/202—Measuring radiation intensity with scintillation detectors the detector being a crystal
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T1/00—Measuring X-radiation, gamma radiation, corpuscular radiation, or cosmic radiation
- G01T1/29—Measurement performed on radiation beams, e.g. position or section of the beam; Measurement of spatial distribution of radiation
- G01T1/2914—Measurement of spatial distribution of radiation
- G01T1/2985—In depth localisation, e.g. using positron emitters; Tomographic imaging (longitudinal and transverse section imaging; apparatus for radiation diagnosis sequentially in different planes, steroscopic radiation diagnosis)
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T1/00—Measuring X-radiation, gamma radiation, corpuscular radiation, or cosmic radiation
- G01T1/02—Dosimeters
- G01T1/10—Luminescent dosimeters
- G01T1/11—Thermo-luminescent dosimeters
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T1/00—Measuring X-radiation, gamma radiation, corpuscular radiation, or cosmic radiation
- G01T1/16—Measuring radiation intensity
- G01T1/24—Measuring radiation intensity with semiconductor detectors
- G01T1/241—Electrode arrangements, e.g. continuous or parallel strips or the like
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T1/00—Measuring X-radiation, gamma radiation, corpuscular radiation, or cosmic radiation
- G01T1/16—Measuring radiation intensity
- G01T1/17—Circuit arrangements not adapted to a particular type of detector
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T1/00—Measuring X-radiation, gamma radiation, corpuscular radiation, or cosmic radiation
- G01T1/02—Dosimeters
- G01T1/026—Semiconductor dose-rate meters
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T7/00—Details of radiation-measuring instruments
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01T—MEASUREMENT OF NUCLEAR OR X-RADIATION
- G01T5/00—Recording of movements or tracks of particles; Processing or analysis of such tracks
-
- G—PHYSICS
- G21—NUCLEAR PHYSICS; NUCLEAR ENGINEERING
- G21G—CONVERSION OF CHEMICAL ELEMENTS; RADIOACTIVE SOURCES
- G21G1/00—Arrangements for converting chemical elements by electromagnetic radiation, corpuscular radiation or particle bombardment, e.g. producing radioactive isotopes
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Miller et al. | The iQID camera: An ionizing-radiation quantum imaging detector | |
Zanzonico | Principles of nuclear medicine imaging: planar, SPECT, PET, multi-modality, and autoradiography systems | |
O'Malley et al. | Nuclear Medicine and Molecular Imaging: The Requisites E-Book: Nuclear Medicine and Molecular Imaging: The Requisites E-Book | |
Lazaro et al. | Validation of the GATE Monte Carlo simulation platform for modelling a CsI (Tl) scintillation camera dedicated to small-animal imaging | |
US20140371580A1 (en) | Method and Apparatus for Sensitivity Calibration | |
WO2017209059A1 (en) | Gamma-ray image acquisition device and gamma-ray image acquisition method | |
JP2012533733A (en) | Matrix apparatus and method for measuring position and time of gamma quantum reaction, and method of using said apparatus for measuring position and time of gamma quantum reaction in positron emission tomography | |
Yamamoto et al. | Comparison of light outputs, decay times, and imaging performance of a ZnS (Ag) scintillator for alpha particles, beta particles, and gamma photons | |
Budinger et al. | Physics and instrumentation | |
Miller | Radiation imagers for quantitative, single-particle digital autoradiography of alpha-and beta-particle emitters | |
Livieratos | Basic principles of SPECT and PET imaging | |
Zanzonico | An overview of nuclear imaging | |
Miller et al. | High-resolution, single-particle digital autoradiography of actinide sources using microcapillary array collimators and the iQID camera | |
Alokhina et al. | Simulation and optimization of the Cherenkov TOF whole-body PET scanner | |
Lauria et al. | Experimental study for an intraoperative probe for 18F imaging with a silicon pixel detector | |
Del Guerra et al. | Radiation measurement | |
Gear | The Scintillation Camera | |
Clarke et al. | Characterization of a large-area iQID imager for safeguards applications | |
Najam et al. | Nuclear Medicine Instrumentation | |
Fukuchi et al. | Beta‐ray imaging system with γ‐ray coincidence for multiple‐tracer imaging | |
Örbom et al. | Beta and alpha particle autoradiography | |
Musa et al. | Simulation and evaluation of a cost-effective high-performance brain PET scanner | |
Han | Advances in Gamma-Ray Imaging with Intensified Quantum-Imaging Detectors | |
Zanzonico | Physics, instrumentation, and radiation safety and regulations | |
Kim et al. | Improvement of double photon emission Compton imaging using angular and polarization correlations in cascade photons |