IEEE N42 27-1999 en American National Standard for Determination of Uniformity of Solid Gamma-Emitting Flood Sources《固态γ放射源不均匀性测定的美国国家标准》.pdf
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1、The Institute of Electrical and Electronics Engineers, Inc.3 Park Avenue, New York, NY 10016-5997, USACopyright 1999 by the Institute of Electrical and Electronics Engineers, Inc.All rights reserved. Published 28 May 1999. Printed in the United States of America.IEEE is a registered trademark in the
2、 U.S. Patent (978) 750-8400. Permission to photocopyportions of any individual standard for educational classroom use can also be obtained through the Copy-right Clearance Center.Copyright 1999 IEEE. All rights reserved.iiiIntroduction(This introduction is not part of ANSI N42.27-1999, American Nati
3、onal Standard for Determination of Uniformity ofSolid Gamma-Emitting Flood Sources.)This standard is the responsibility of the Accredited Standards Committee N42 on Radiation Instrumenta-tion. Committee N42 delegated the development of this standard to its subcommittee N42.RM. Drafts werereviewed by
4、 Committee N42, Subcommittee N42.RM, and other interested parties, and the commentsreceived were utilized in producing the standard as finally approved. At the time it approved this standard, the Accredited Standards Committee on Radiation Instrumentation,N42, had the following members:Louis Costrel
5、l,ChairSue Vogel,Administrative SecretaryOrganization Represented Name of RepresentativeAmerican Conference of Governmental Industrial Hygienists Jesse LiebermanApplied Safety Technology Edward J. Vallario*Battelle Pacific Northwest Laboratories Joseph C. McDonaldBicron. Joseph G. BellianChew, M. H.
6、 . Jack M. SelbyEberline Instrument Company . James K. HeschEG&G ORTEC Sanford WagnerGamma-Metrics . Ernesto A. CorteHealth Physics Society. George CampbellJoseph R. Stencel (Alt.)Institute of Electrical and Electronics Engineers. Louis CostrellJulian Forster (Alt.)Anthony J. Spurgin (Alt.)Lawrence
7、Berkeley Laboratory Edward J. LampoLawrence Livermore National Laboratory. Gary JohnsonLovelace RR Institute. Morgan CoxMassachusetts Institute of Technology, Bates Linear Accelerator Center . Frank X. MasseNASA/GSFC, U.S Donald E. Stilwell*Nuclear Standards Unlimited. Al N. TschaecheOak Ridge Natio
8、nal Laboratory. Charles L. BrittonSwinth Associates Kenneth L. SwinthU.S. Army Center for EW/RSDA Edward GroeberU.S. Department of Commerce, National Institute of Standards and Technology Louis CostrellMichael Unterweger (Alt.)U.S. Department of Energy/PCSRD Natesh VarmaU.S. Federal Emergency Manage
9、ment Agency . Carl R. SiebentrittMembers-at-Large Paul L. PhelpsLee J. Wagner* DeceasedAt the time this standard was approved, Subcommittee N42.RM had the following members:Frank X. Masse,ChairJ. M. R. Hutchinson,SecretaryRobert AyresJoseph G. BellianJohn D. BuchananR. F. ColeyBert M. CourseyMichael
10、 DevineRoger FerrisRobert J. GehrkeY. KobayshiMarkku KoskeloJoel L. LazewatskyDavid E. McCurdyD. M. MontgomeryCarl W. SeidelJohn SonewaldMichael UnterwegerivCopyright 1999 IEEE. All rights reserved.The working group for this standard had the following members:Joel L. Lazewatsky,Chair and project lea
11、der The following persons were on the balloting committee that approved this document for submission to theAmerican National Standards Institute:*DeceasedCatherine K.N. BergerIEEE Standards Project EditorLou EdmondFrederic FaheyMarvin FriedmanL. Stephen GrahamThomas KumpurisCarl W. SeidelDavid Weber
12、Joseph G. BellianCharles L. BrittonGeorge CampbellErnesto A. CorteLouis CostrellMorgan CoxJulian ForsterJohn M. GallagherGerald GoldsteinEdward GroeberJames K. HeschGary JohnsonEdward J. LampoJesse LiebermanFrank X. MasseJoseph C. McDonaldPaul L. PhelpsJack M. SelbyCarl R. SiebentrittDonald E. Stilw
13、ell*Anthony J. SpurginJoseph R. StencelKenneth L. SwinthAl N. TschaecheMichael UnterwegerEdward J. Vallario*Natesh VarmaLee J. WagnerSanford WagnerCopyright 1999 IEEE. All rights reserved.vContents1. Introduction 11.1 Scope 11.2 Special word usage 12. References 23. Definitions 24. Procedure require
14、ments . 34.1 Test and Measurement Report . 34.2 Required reportable parameters . 34.3 Methodological requirements 44.4 Constancy of system response . 54.5 Detailed method of measurement 65. Precautions and sources of error 65.1 Dependence upon measurement orientation 65.2 Backscatter and surrounding
15、 geometry 65.3 Interference from nearby sources. 65.4 Calculation error 6Annex A (informative) Methodological example . 7Copyright 1999 IEEE. All rights reserved.1American National Standard for Determination of Uniformity of Solid Gamma-Emitting Flood Sources1. IntroductionNuclear medicine practitio
16、ners use solid, uniformly radioactive sources that are several millimeters thickwith areas up to 0.25 m2(called “flood” sources) to characterize and correct the extrinsic flood field unifor-mity of scintillation cameras for purposes of both quality assurance and on-line operational corrections.These
17、 radioactive sources are intended to produce a uniform radiation field across the cameras usable fieldof view. Methods to evaluate camera uniformity are described in NEMA NU 1-1994.1A broad range of flood sources is available in many sizes and configurations from a number of manufactur-ers. Such div
18、ersity suggests the need for a uniform means of reporting calibration data and a common under-standing of the parameters reported. This information can permit intercomparison of sources and givepractitioners a means to determine whether a particular source is appropriate for a given task.1.1 ScopeTh
19、e scope of this standard is limited to commercially-produced, solid radioactive flood sources intended toaid in the determination of the system field uniformity of scintillation cameras used in nuclear medicine.This standard is intended to provide a set of minimum informational requirements for a Te
20、st and Measure-ment Report for flood sources used with scintillation cameras. It is not intended to specify the means bywhich such information is obtained, although it does place requirements and limitations on the methodology.In addition, it is not intended to cover the use of the source in the det
21、ermination of the operating characteris-tics or correction factors for a scintillation camera.1.2 Special word usageThe words shallor mustindicate a procedure that is necessary to meet the requirements of this standard. Thewords shouldor mayindicate an advisory recommendation that is to be applied w
22、hen practicable.1Information on references can be found in Clause 2.ANSIN42.27-1999 AMERICAN NATIONAL STANDARD FOR DETERMINATION OF2Copyright 1999 IEEE. All rights reserved.2. ReferencesThis standard shall be used in conjunction with the following publications. If the following publications aresuper
23、seded by an approved revision, the revision shall apply.ASTM E456-96, Standard Terminology for Relating to Quality and Statistics.2NEMA NU 1-1994, Performance Measurements of Scintillation Cameras.33. DefinitionsFor the purposes of this standard, the following terms and definitions apply:3.1 accurac
24、y: The closeness of agreement between a test result and an accepted reference value.(The word“accuracy” is to be understood as it is defined in ASTM E456-96.) 3.2 penumbra: The area over which the sensitivity of the measurement system falls from 90% of its maxi-mum value within the unit cell to 10%
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