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ON THE USE OF ROENTGEN-CALIBRATED, CAVITY-IONIZATION CHAMBERS IN TISSUE- LIKE PHANTOMS TO DETERMINE ABSORBED DOSE

Journal Article · · Physics in Medicine and Biology (England)

S>Roentgen-calibrated cavity-ionization chambers are frequently used to determine absorbed dose at a point in a tissue-like phantom. An N.P.L. calibration factor for 2Mv x rays, assigned to a chamber and its associated measuring equipment, includes corrections for wall attenuation of the chamber, for any lack of electronic equilibrium, and for the stopping power of the wall material relative to air. When the chamber readings are used to calculate absorbed dose at a point in, say, a water phantom, a further correction is required to determine the exposure dose that would have been obtained at the point in the absence of the chamber and any wall-thickening cap used in the calibration. Some recent work dealing with the determination of this correction has been critically examined. It is shown that the correction factor required to compensate for the attenuation of the phantom material removed to accommodate the chamber and its cap can be determined from experimental data already available. A rad/ roentgen conversion factor for 2 Mv x rays and a water phantom is calculated. (auth)

Research Organization:
National Physical Lab., Teddington, Middx., Eng.
NSA Number:
NSA-17-001311
OSTI ID:
4773177
Journal Information:
Physics in Medicine and Biology (England), Journal Name: Physics in Medicine and Biology (England) Vol. Vol: 7; ISSN PHMBA
Country of Publication:
Country unknown/Code not available
Language:
English

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