Experimental Technique of Measurement of Microscopic Energy Distribution in Irradiated Matter Using Rossi Counters

An experimental method for measuring the distribution of energies deposited in small tissue-equivalent volumes is described. The energy deposited in a cavity is measured by means of a proportional counter. The counter geometry and the associated electronics as well as properties of tissue-equivalent...

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Veröffentlicht in:Radiat. Res. 43: 302-19(Aug 1970) 1970-08, Vol.43 (2), p.302-319
1. Verfasser: Srdoc, D
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description An experimental method for measuring the distribution of energies deposited in small tissue-equivalent volumes is described. The energy deposited in a cavity is measured by means of a proportional counter. The counter geometry and the associated electronics as well as properties of tissue-equivalent gases are discussed in detail. A calibration technique using soft x-rays generated by a miniature x-ray tube is described. Several relations are derived which help to determine limits of an experimental arrangement in terms of simulated tissue volumes. Examples of distribution of energies deposited by 60 Co gamma rays in tissue spheres of 0.5, 1, and 2 μm in diameter are given.
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Res. 43: 302-19(Aug 1970)</title><addtitle>Radiat Res</addtitle><description>An experimental method for measuring the distribution of energies deposited in small tissue-equivalent volumes is described. The energy deposited in a cavity is measured by means of a proportional counter. The counter geometry and the associated electronics as well as properties of tissue-equivalent gases are discussed in detail. A calibration technique using soft x-rays generated by a miniature x-ray tube is described. Several relations are derived which help to determine limits of an experimental arrangement in terms of simulated tissue volumes. 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The counter geometry and the associated electronics as well as properties of tissue-equivalent gases are discussed in detail. A calibration technique using soft x-rays generated by a miniature x-ray tube is described. Several relations are derived which help to determine limits of an experimental arrangement in terms of simulated tissue volumes. Examples of distribution of energies deposited by 60 Co gamma rays in tissue spheres of 0.5, 1, and 2 μm in diameter are given.</abstract><cop>United States</cop><pub>Academic Press, Inc</pub><pmid>5451811</pmid><doi>10.2307/3573036</doi><tpages>18</tpages></addata></record>
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identifier ISSN: 0033-7587
ispartof Radiat. Res. 43: 302-19(Aug 1970), 1970-08, Vol.43 (2), p.302-319
issn 0033-7587
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source MEDLINE; JSTOR Archive Collection A-Z Listing
subjects ABSORPTION
Cobalt Isotopes
DESIGN
DISTRIBUTION
DOSEMETERS
DOSIMETRY
Electrons
ENERGY
GAMMA RADIATION
GAMMA RADIATION/energy distribution in tissue- equivalent spheres, Rossi detector measurement of
Gas pressure
Gas spectroscopy
Gases
Mathematics
MOCKUP
N26200 -Instrumentation-Radiation Dosimeters
N28420 - Life Sciences-Health Physics & Safety-Dosimetry & Monitoring
Noise measurement
Noise spectra
OPERATION
PHANTOMS
Photons
Preamplifiers
Propane
PROPORTIONAL COUNTERS
RADIATION DETECTORS, PROPORTIONAL/design and operation of tissue-equivalent Rossi
RADIATION DOSES
Radiometry - instrumentation
ROSSI DETECTORS
Space life sciences
TISSUES
title Experimental Technique of Measurement of Microscopic Energy Distribution in Irradiated Matter Using Rossi Counters
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