Artículo
Scintillation properties of the YVO4: Eu3+ compound in powder form: Its application to dosimetry in radiation fields produced by pulsed mega-voltage photon beams
Martínez Clemente, Nahuel Facundo
; Teichmann, Tobias; Molina, Pablo Fernando
; Sommer, Marian; Santiago, Martin Alejo
; Henniger, Jürgen; Caselli, Eduardo Eladio
Fecha de publicación:
12/2015
Editorial:
Elsevier Gmbh
Revista:
Zeitschrift Fur Medizinische Physik
ISSN:
0939-3889
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
The investigation of scintillation properties of europium doped yttrium orthovanadate shows the suitability of this material for fiber-based dose rate measurements. All measurements were carried out with a 6 MV Varian linear accelerator. The temperature dependence of the signal is lower than that of the plastic scintillators reported so far. By measuring the afterglow of probes between Linac-pulses, the signal due to the stem effect can be successfully eliminated. Comparison of depth dose profiles in a water phantom for radiation field dimensions between 1 × 1 cm2 and 10 × 10 cm2 shows that the probes are suitable for small fields having dimensions up to 1 × 1 cm2. The high light yield of probes having dimensions of 1 mm opens up the possibility for their use in spatially confined radiation fields, such as in intensity-modulated radiotherapy (IMRT) and volume-modulated radiation therapy (VMAT).
Palabras clave:
Fiber-Based Dose Rate Measurements
,
Radiotherapy
,
Scintillator Detector
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Articulos(CIFICEN)
Articulos de CENTRO DE INV. EN FISICA E INGENIERIA DEL CENTRO DE LA PCIA. DE BS. AS.
Articulos de CENTRO DE INV. EN FISICA E INGENIERIA DEL CENTRO DE LA PCIA. DE BS. AS.
Citación
Martínez Clemente, Nahuel Facundo; Teichmann, Tobias; Molina, Pablo Fernando; Sommer, Marian; Santiago, Martin Alejo; et al.; Scintillation properties of the YVO4: Eu3+ compound in powder form: Its application to dosimetry in radiation fields produced by pulsed mega-voltage photon beams; Elsevier Gmbh; Zeitschrift Fur Medizinische Physik; 25; 4; 12-2015; 368-374
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