Quantification of Scatter Radiation Doses to the Eyes, Thyroid, and Breasts During Plain Abdominal Computed Tomography Scans With and Without Shielding. [PDF]
Krishnamoorthy K +5 more
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Development of a method for evaluation of absorbed doses in preclinical in vivo μCT. [PDF]
Deyhle RT +3 more
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In-Ovo Imaging with Ostrich Eggs: Eggshell Attenuation in CT and Limitations of Organ Dosimetry. [PDF]
Kühnel C +6 more
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Ultra-high-resolution synchrotron phase-contrast CT enables microstructural pulmonary imaging at clinical dose levels. [PDF]
Benke CV +34 more
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Evaluation of the orientation dependence of optically stimulated luminescence dosimeters in computed tomography dosimetry using an anthropomorphic phantom under clinical imaging conditions. [PDF]
Ichikawa T +3 more
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Linear energy transfer correction using Al₂O₃:Cr thermoluminescent and radiophotoluminescence glass dosimeters for therapeutic proton dosimetry. [PDF]
Chang W +6 more
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Synergistic effects of Tb doping in long-persistent luminescence in Ca3Ga4O9: xBi3+, yZn2+ phosphors: Implications for novel phosphorescent materials. [PDF]
Porcu S +7 more
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Unveiling Earthquakes: Thermoluminescence Signal Resetting of Laboratory-Produced Fault Gouge
Heydari M +7 more
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Microdosimetry and Thermoluminescence
Radiation Research, 1984The mechanism for production of light from a thermoluminescent phosphor requires the combination of a trapped electron and hole at a luminescent center. The kinetics is that of a second-order process. Accordingly one may expect a similarity in the formalism for describing thermoluminescent emission (TL) and the theory of dual radiation action in ...
K, Li, P, Kliauga, H H, Rossi
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Thermoluminescence in hydroxyapatite
Medical Physics, 1979A thermoluminescent (TL) glow peak has been shown to exist at 80°C in synthetic hydroxyapatite, in amorphous calcium phosphate, and in deproteinated rat bone mineral. This TL glow peak is excited by a thermal pretreatment at elevated temperature, followed by exposure to ultraviolet (UV) light. When measured on a cylic TL‐readout UV‐exposure basis after
M R, Chapman, A G, Miller, T G, Stoebe
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