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Normas DIN – AENOR
DIN EN ISO 28057:2016-06

DIN EN ISO 28057:2016-06

Dosimetry with solid thermoluminescence detectors for photon and electron radiations in radiotherapy (ISO 28057:2014); German and English version prEN ISO 28057:2016 / Note: Date of issue 2016-05-13

Dosimétrie avec détecteurs de thermolumiscence solides pour le photon et rayonnements d'électron en radiothérapie (ISO 28057:2014); Version allemande et anglaise prEN ISO 28057:2016 / Attention: Date de parution 2016-05-13

Dosimetrie mit Festkörper - Thermolumineszenzdetektoren für Photonen- und Elektronenstrahlung in der Strahlentherapie (ISO 28057:2014); Deutsche und Englische Fassung prEN ISO 28057:2016 / Achtung: Erscheinungsdatum 2016-05-13

Fecha Anulación:
2020-06 /Withdrawn
Equivalencias internacionales:

ISO 28057 (2014-03)

prEN ISO 28057 (2016-04)

Relación con otras normas DIN:

Reemplazada por: DIN EN ISO 28057:2020-06

Resumen:
ISO 28057:2014 describes rules for the procedures, applications, and systems of thermoluminescence dosimetry (TLD) for dose measurements according to the probe method. It is particularly applicable to solid "TL detectors", i.e. rods, chips, and microcubes, made from LiF:Mg,Ti or LiF:Mg,Cu,P in crystalline or polycrystalline form. The probe method encompasses the arrangement, particularly in a water phantom or in a tissue-equivalent phantom, of single TL detectors or of "TL probes", i.e. sets of TL detectors arranged in thin-walled polymethyl methacrylate (PMMA) casings.The purpose of these rules is to guarantee the reliability and the accuracy indispensable in clinical dosimetry when applied on or in the patient or phantom. ISO 28057:2014 applies to dosimetry in teletherapy with both photon radiation from 20 keV to 50 MeV and electron radiation from 4 MeV to 25 MeV, as well as in brachytherapy with photon-emitting radionuclides. These applications are complementary to the use of ionization chambers.
Keywords:
Calibration, Definitions, Detectors (circuits), Dosimetry, Electron beams, Medical radiography, Medical sciences, Medical technology, Photon beams, Radiation, Radiotherapy, Solids, Solid-state dosimeters, Testing, Therapeutics, Thermoluminescence, Thermoluminescence dosimetry
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