The response behaviour of LiF:Mg,Cu,P thermoluminescence dosimeters to high-energy electron beams used in radiotherapy

To ensure the effectiveness of radiation-therapy treatments, both in-phantom and in-patient reliable dose measurements are required. Thermoluminescence dosimeters are used commonly for both applications. Among the various available materials, the relatively new LiF:Mg,Cu,P phosphor is a suitable can...

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Published inPhysics in medicine & biology Vol. 40; no. 2; pp. 211 - 220
Main Authors Bartolotta, A, Brai, M, Caputo, V, Liberto, R Di, Mariano, D Di, Ferrara, G, Puccio, P, Santamaria, A S
Format Journal Article
LanguageEnglish
Published Bristol IOP Publishing 01.02.1995
Institute of Physics
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Abstract To ensure the effectiveness of radiation-therapy treatments, both in-phantom and in-patient reliable dose measurements are required. Thermoluminescence dosimeters are used commonly for both applications. Among the various available materials, the relatively new LiF:Mg,Cu,P phosphor is a suitable candidate for quality control of in vivo dosimetry in electron-beam therapy. The response behaviour of LiF:Mg,Cu,P chips to 6-21 MeV electron beams used in radiotherapy was studied. Batch homogeneity, dose linearity, sensitivity change after use, dose and dose-rate response, energy dependence and fading characteristics were investigated. The contribution from each factor to the overall uncertainty in dose measurement was evaluated. The results of this work show that the LiF:Mg,Cu,P chips are comparable to the commonly used LiF:Mg,Ti ones, and support their use for in vivo electron-beam dosimetry to an accuracy within +/- 10%.
AbstractList To ensure the effectiveness of radiation-therapy treatments, both in-phantom and in-patient reliable dose measurements are required. Thermoluminescence dosimeters are used commonly for both applications. Among the various available materials, the relatively new LiF:Mg,Cu,P phosphor is a suitable candidate for quality control of in vivo dosimetry in electron-beam therapy. The response behaviour of LiF:Mg,Cu,P chips to 6-21 MeV electron beams used in radiotherapy was studied. Batch homogeneity, dose linearity, sensitivity change after use, dose and dose-rate response, energy dependence and fading characteristics were investigated. The contribution from each factor to the overall uncertainty in dose measurement was evaluated. The results of this work show that the LiF:Mg,Cu,P chips are comparable to the commonly used LiF:Mg,Ti ones, and support their use for in vivo electron-beam dosimetry to an accuracy within +/- 10%.
Author Caputo, V
Mariano, D Di
Liberto, R Di
Ferrara, G
Brai, M
Bartolotta, A
Puccio, P
Santamaria, A S
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Issue 2
Keywords Performance evaluation
Human
Test objet
Electron beam
Radiotherapy
In vitro
In vivo
Quality assurance
Radiation dose
High energy
Apparatus
Dosimetry
Therapeutic protocol
Thermoluminescence
Language English
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Institute of Physics
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Snippet To ensure the effectiveness of radiation-therapy treatments, both in-phantom and in-patient reliable dose measurements are required. Thermoluminescence...
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SubjectTerms Biological and medical sciences
Humans
Medical sciences
Models, Theoretical
Radiation therapy and radiosensitizing agent
Radiotherapy, High-Energy
Thermoluminescent Dosimetry
Time Factors
Treatment with physical agents
Treatment. General aspects
Tumors
Title The response behaviour of LiF:Mg,Cu,P thermoluminescence dosimeters to high-energy electron beams used in radiotherapy
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https://www.ncbi.nlm.nih.gov/pubmed/7708849
Volume 40
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