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Radionuclide imaging device -- Characteristics and test conditions -- Gamma cameras
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PDF similar to GB/T 18989-2013
Basic data Standard ID | GB/T 18989-2013 (GB/T18989-2013) | Description (Translated English) | Radionuclide imaging device -- Characteristics and test conditions -- Gamma cameras | Sector / Industry | National Standard (Recommended) | Classification of Chinese Standard | C43 | Classification of International Standard | 11.040.50 | Word Count Estimation | 57,559 | Older Standard (superseded by this standard) | GB/T 18989-2003 | Adopted Standard | IEC 60789-1992, MOD | Regulation (derived from) | National Standards Bulletin No. 25 of 2013 | Issuing agency(ies) | General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China | Summary | This standard specifies the instrument with the gas source, the minimum required operating pressure, supply capacity, air supply and air supply system piping design. This standard applies to new construction, expansion and renovation of gas supply and gas |
GB/T 18989-2013: Radionuclide imaging device -- Characteristics and test conditions -- Gamma cameras ---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Radionuclide imaging device. Characteristics and test conditions. Gamma cameras
ICS 11.040.50
C43
National Standards of People's Republic of China
Replacing GB/T 18989-2003
Radionuclide imaging devices - Characteristics and test
Gamma Camera
Gammacameras
(IEC 60789.1992, MOD)
Issued on. 2013-12-17
2014-08-01 implementation
Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China
Standardization Administration of China released
Table of Contents
Introduction Ⅲ
Introduction Ⅳ
1 Scope 1
2 Terms and definitions 1
Test Method 3 6
4 Product random file 19
Determination of Annex A (informative) source activity of 27
Annex B (informative) Performance Parameters Symbol Index 28
Annex C (informative) This standard reg number and IEC 60789.1992 reg control number 30
Annex D (informative) This standard and IEC 60789.1992 technical differences and their reasons 32
Appendix E (Informative Appendix) NEMANU1 publication gamma camera probe test 33
Foreword
This standard was drafted in accordance with GB/T 1.1-2009 given rules.
This standard replaces GB/T 18989-2003 "Radionuclide imaging device - Characteristics and test gamma camera", and
GB/T 18989-2003, compared the main technical changes are as follows.
--- Remove the GB/T 18989-2003 body NEMA relevant content;
--- Increase the informative Appendix E, appendix uses a NEMA Standards Publication NU1-2007 "Gamma Camera Performance Test"
Chapter 2, Section 3 of the content;
--- Increased introduction.
This standard uses redrafted law revision adopted IEC 60789.1992 "Radionuclide imaging device - Characteristics and test gamma
Camera ", according to the standard rules of the preparation of this standard, the following editorial changes made. Added informative and informative Appendix B attached
Record E.
This standard remains GB/T 18989-2003 modify using IEC 60789.1992; This standard and IEC 60789.1992 Code of reg
CrossRef See Appendix C; this standard and IEC 60789.1992 technical differences between their causes, see Appendix D.
Please note that some of the content of this document may involve patents. The standard release mechanism does not assume the responsibility to identify these patents.
This standard was proposed by the State Food and Drug Administration.
This standard by the National Standardization Technical Committee appliances medical radiotherapy, nuclear medicine and radiation dosimetry equipment Standardization Technical Committee
Will (SAC/TC10/SC3) centralized.
This standard was drafted. Beijing Medical Device Testing, Beijing Hamamatsu Photonics Co., Ltd., Siemens (China) Co., Ltd., Tong
Electrical (China) Co., Ltd.
The main drafters. Zhang trillion Park, Tangzhao Rong, Feng Jian, SONG Lian there, Zhang Jiao spring camp, Maxing Rong, Chen Mu.
This standard replaces the standards previously issued as follows.
--- GB/T 18989-2003.
Introduction
GB/T 18989-2003 modify using IEC 60789.1992. Currently, the major manufacturers of radionuclide imaging device production
Venues are located in the United States, the parameters of its report, the data processing software, test phantoms are the National Electrical Manufacturers Association NEMA standards for
For the design basis, but also manufacturers use IEC standard. In order to facilitate the government, enterprises and medical institutions understand and use these products IEC
And two series NEMA standard content, this revision will NEMA Standards Publication NU1-2007 "Gamma Camera Performance Test" on
Chapter 2, Chapter 3 of the introduction of this standard, as an information Appendix E.
Since the IEC and NEMA standards there are some differences in testing requirements, test methods, the use of motifs, test conditions, test
Position, the calculation method is different, so I can not compare with each other between the two standard test items and complete references recommend two standard user
The method of any one species, not cross-use.
Radionuclide imaging devices - Characteristics and test
Gamma Camera
1 Scope
This standard specifies the relevant definitions, test methods and product random file gamma camera.
This standard applies to Anger type gamma camera, the apparatus comprises a collimator and detector shielding radiation detector assembly, as well as record
And a display device.
2 Terms and definitions
The following terms and definitions apply to this document.
2.1
Sources radioactivesource
2.1.1
Sources radioactivesource
Activity and specific activity are predetermined level above a certain amount of radioactive material.
2.1.2
Point Source pointsource
Approximate dimensions in three directions are radioactive δ function.
2.1.3
Line source linesource
Size in both directions δ approximate linear function of radioactive sources in the third direction of activity is uniform.
2.1.4
Activity activity
At a time, in a certain amount of radionuclide specific levels of radioactivity on quantified. Activity divided by the dN
dt quotient OK, where dN is the expected value at the time the number of nuclei decay within a certain level interval dt, see equation (1).
A = dN/dt (1)
The special unit of activity Bq [Harrell] (Bq), 1Bq decay per second is equal to one. Activity unit s-1 can also be represented.
2.1.5
Attenuation attenuation
When radiation passes through matter, interacting with a variety of substances to cause a decrease in some amount of radiation. For example, the amount of radiation may be a particle through
The amount of energy flux density or density.
Note. does not include the amount of radiation attenuation due to different geometric distance from the radiation source caused decreases.
2.2
Pulse amplitude analyzer window (called the analyzer window) pulseamplitudeanalyserwindow
Pulse amplitude analyzer input signal amplitude range, in this range, an output signal analyzer.
2.3
Gamma Camera gammacamera
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