DIN ISO 9236-1-2007 Photography - Sensitometry of screen film systems for medical radiography - Part 1 Determination of sensitometric curve shape speed and average gradient (ISO 92.pdf
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1、August 2007DEUTSCHE NORM English price group 14No part of this standard may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ICS 37.040.25!,z=O“9872644w
2、ww.din.deDDIN ISO 9236-1Photography Sensitometry of screen/film systems for medical radiography Part 1: Determination of sensitometric curve shape, speed and averagegradient (ISO 9236-1:2004)English version of DIN ISO 9236-1:2007-08Fotografie Sensitometrie an Film-Folien-Systemen fr die medizinische
3、 Radiographie Teil 1: Ermittlung des Verlaufs der sensitometrischen Kurve, der Empfindlichkeit und desmittleren Gradienten (ISO 9236-1:2004)Englische Fassung DIN ISO 9236-1:2007-08SupersedesDIN 6867-1:1997-02www.beuth.deDocument comprises 26 pages10.07DIN ISO 9236-1:2007-08 2 Contents Page National
4、foreword .4 National Annex NA (informative) Bibliography 5 Introduction .6 1 Scope 7 2 Normative references 7 3 Terms and definitions .7 4 General requirements8 4.1 Storage and handling conditions.8 4.2 Safelights8 4.3 X-ray equipment.9 4.4 Air kerma meter9 4.5 Processing9 4.6 Densitometry10 5 Deter
5、mination of sensitometric curve shape10 5.1 General10 5.2 Beam qualities11 5.3 Geometry for curve shape determination .11 5.4 Exposure.14 5.5 Evaluation.14 6 Determination of average gradient 14 7 Determination of speed.16 7.1 Definition 16 7.2 Beam qualities16 7.2.1 General16 7.2.2 Phantom for Tech
6、nique I.16 7.2.3 Phantom for Technique II16 7.2.4 Phantom for Technique III.17 7.2.5 Phantom for Technique IV 17 7.2.6 Establishment of X-ray tube voltage17 7.3 Geometry 19 7.4 Exposure.19 7.5 Evaluation.19 8 Speed and average gradient determination without sensitometric curve.22 9 Uncertainty .22 1
7、0 Test report 23 Annex A (informative) Rationale 24 A.1 Sensitometric curve shape .24 A.2 Speed 24 A.3 Phantoms24 A.4 Air kerma 25 A.5 Dependence of speed on beam quality .25 Bibliography 26 DIN ISO 9236-1:2007-08 3 Figures Figure 1 Geometric set-up of the inverse-square-law sensitometer for exposur
8、e of the screen/film combination .12 Figure 2 Geometric set-up for calibration of the inverse-square-law sensitometer.13 Figure 3 Sensitometric curve .15 Figure 4 Phantom for Technique I .17 Figure 5 Geometric set-up for adjustment of beam qualities used for techniques I, II, III and IV18 Figure 6 G
9、eometric set-up for the measurement of speed (Techniques I, II and III) 20 Figure 7 Geometric set-up for the measurement of speed (Technique IV).21 Tables Table 1 Beam qualities for the determination of the sensitometric curve shape.11 Table 2 Specification of techniques .16 DIN ISO 9236-1:2007-08 4
10、 National foreword This standard has been prepared by Technical Committee ISO/TC 42 “Photography”. The responsible German body involved in its preparation was the Normenausschuss Bild und Film (Cinematography and Photography Standards Committee), Technical Committee NBF NA 049-00-01 AA Strahlungsemp
11、findliche Materialien, Sensitometrie und Formate. The responsible body involved in the preparation of the German-language version was the Normenausschuss Radiologie (Radiology Standards Committee), Technical Committee NAR AA 6/GA 6 Bildgebende Systeme. ISO 9236 consists of the following parts, under
12、 the general title Photography Sensitometry of screen/film systems for medical radiography: Part 1: Determination of sensitometric curve shape, speed and average gradient Part 3: Determination of sensitometric curve shape, speed and average gradient for mammography The following part is under prepar
13、ation: Part 2: Method for determining modulation transfer function (MTF) The DIN Standards corresponding to the International Standards referred to in clause 2 of the ISO Standard are as follows: IEC 60522 DIN EN 60522 ISO 554 DIN 50014 Amendments This standard differs from DIN 6867-1:1997-02 as fol
14、lows: a) For air kerma measurements, use of a spherical ionization chamber or a calibrated detector is required. b) For all tests, high frequency (multipulse) high voltage generators or at least 12-pulse high voltage generators shall be used. Use of 6-pulse high voltage generators is no longer permi
15、tted. c) The exposure times for determining speed and sensitometric curve shape have been reduced to reflect the latest state of the art. d) For the specified range of beam qualities, the phantom for Technique IV has been amended to reduce the air kerma rate. e) For determining speed and average gra
16、dient, the distance between X-ray tubes focal spot and screen/film system may now lie between 1,5 m and 4,0 m. f) Because the precision of modern X-ray tubes and high voltage generators is often much better than that of monitoring detectors, use of the latter is no longer prescribed. g) The uncertai
17、nty budget has been amended. h) The informative Annex A has been extended to include background information on measurements of speed and curve shape, on the selection of phantoms and on the dependence of speed on the energy spectrum of X-rays. Previous editions DIN 6867-1: 1981-06, 1985-04, 1997-02
18、DIN ISO 9236-1:2007-08 5 National Annex NA (informative) Bibliography DIN 50014, Artificial climates in technical applications Standard atmospheres DIN EN 60522, Determination of the permanent filtration of X-ray tube assemblies DIN ISO 9236-1:2007-08 6 Photography Sensitometry of screen/film system
19、s for medical radiography Part 1: Determination of sensitometric curve shape, speed and average gradient Introduction This part of ISO 9236 provides methods for determining the sensitometric curve shape, the average gradient and the speed of radiographic screen/film/filmholder/processing systems use
20、d in medical radiography, except in mammography and dental radiography. The sensitometric curve shape, which is also needed for the determination of other properties (as, for example, the modulation transfer function), is measured under low scatter conditions via intensity scale X-ray sensitometry,
21、preferably using an inverse square sensitometer. For the determination of the sensitometric curve shape, as well as for a subsequent determination of the average gradient from the measured curve, but not for speed, the irradiation of the screen/film/filmholder combination need to be measured only in
22、 relative units. Speed is measured in a separate way, under exposure conditions which simulate medical practice more closely, including realistic fractions of scattered radiation. Different types of medical exposures are simulated by using appropriate phantoms and X-ray tube voltages, and the screen
23、/film/filmholder combination is exposed behind the respective phantom. The irradiation is measured in absolute units of air kerma (gray, Gy) in order to determine the speed. Four different techniques are defined, differing in beam quality and fraction of scattered radiation, simulating the imaging o
24、f extremities, skull, lumbar spine and colon, and chest. Speed may be measured for each technique of interest. Owing to its dependence on X-ray energy and scatter, screen/film system speed varies widely in medical practice. The four measurement conditions described in this part of ISO 9236 provide v
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