EN 61262-7-1995 en Medical Electrical Equipment - Characteristics of Electro-Optical X-Ray Image Intensifiers Part 7 Determination of the Modulation Transfer Function《医用电气设备 光电X射线影.pdf
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1、CENELEC EN*bL*2b2-7 95 3404583 0173458 053 BRITISH STANDARD Characteristics of electro-optical X-ray imaging intensifiers for medical electrical equipment Part 7. Determination of the modulation transfer function The European Standard EN 61262-7 : 1995 has the status of a British Standard ICs 11.040
2、.50 NO COPYING WITHOUT BSI PERMISSION EXCEPT AS PERMITTED BY COPYRIGHT LAW BS EN 61262-7 : 1996 IEC 1262-7 : 1995 CENELEC EN*bL*Zb2-7 95 H 3404583 0373459 T9T BS EN 61262-7 : 1996 AmdNo. Committees responsible for this British Standard Date Text affected The preparaton of this British Standard was e
3、ntrusted to Technical Committee CW72, X-ray image forming components, upon which the foliowjng bodies were represented: Association of X-ray Equipment Manufacturers (BEAMA Ltd.) Coiiege of Radiographers This British Standard, having been prepared under the direction of the Heaith and Environment sec
4、tor Board, was published under the authority of the Standards Board and comes into effect on 15 June 1996 O BSI 1996 The following BSI references relate to the work on this Standard: Committee reference cw72 DraR for comment 9WM96 JX ISBN O 680 26706 1 CENELEC EN*b1*262-7 95 m 3404583 O373460 701 m
5、BS EN 61262-7 : 1996 Contents Committees responsible National foreword page Inside front cover ii Foreword Text of EN 61262-7 2 3 O BSI 1996 i CENELEC EN*bL*2b2-7 75 3404583 0173461 648 BS EN 61262-7 : 1996 National fore word This British Standard has been prepared by Technical Committee C“2 and is
6、the English language version of EN 61262-7 : 1995 Medical ekcmcal equipment - ChamAWtiCs of electmoptcal X-ray image intermim -Part 7: Deermnation of the modulation cransferfunction published by the European Committee for Electrotechnical Standardization (CENELEC). It is identical with IEC 1262-7 :
7、1995 published by the International Electrotechnid Commission C). Cross-references EN60336: 1995 (IEC 336 : 1993) HD 501 s1: 1988 EN 612624 : 1994 (EC 12624 : 1994) Additional information. The foilowing print types are used in this standard. Requirements, with which compliance can be tested, and def
8、initions: inromantype. Exphnations, advice, general statements, exceptions and references: in smaller type. Test procedures: in italictype. Terms defined in ciause 3 of this standard and in annex A: in SMALL4 CAFTTALS. For the purposes of this British Standard, any references to IEC page numbers in
9、the text should be ignored. Compliance with a British Standard does not of itself confer immunity from legal obligations. hbiication referred to Corresponding British Standard BS EN 60336 : 1995 X-ray tube assemblies for medical d - from the Fourier transform Of the LINE SPREAD FUNCTION; - from the
10、Hankel transform Of the POINT SPREAD FUNCTION; - from scanning a slit image with a spatial filter. Any method is acceptable if performed correctly. For the purpose of simplicity, this standard elaborates on two methods: the Fourier transform of the LINE SPREAD FUNCTION, referred to as the LSF method
11、, and the spatial filter method. Accurate determination of the MODULATION TRANSFER FUNCTION requires specialized EQUIPMENT and does not generally lend itself to be performed at field installations. This standard only specifies methods for measurement of the MODULATION TRANSFER FUNCTION Of X-RAY IMAG
12、E INTENSIFIERS near the CENTRE OF THE ENTRANCE FIELD. CEMELEC EN*b1*262-7 95 3404583 01734b5 293 D Page 4 EN 61262-7 : 1996 MEDICAL ELECTRICAL EQUIPMENT - CHARACTERISTICS OF ELECTRO-OPTICAL X-RAY IMAGE INTENSIFIERS - Part 7: Determination of the modulation transfer function 1 Scope This Internationa
13、l Standard applies to ELECTRO-OPTICAL X-RAY IMAGE INTENSIFIERS for medical use, as components of diagnostic X-RAY EQUIPMENT. This international Standard describes a method of determining the MODULATION TRANSFER FUNCTION Of X-RAY IMAGE INTENSIFIERS. 2 Normative references The following normative docu
14、ments contain provisions which, through reference in this text, constitute provisions of this International Standard. At the time of publication, the editions indicated were valid. All normative documents are subject to revision, and parties to agreements based on this International Standard are enc
15、ouraged to investigate the possibility of applying the most recent editions of the normative documents indicated below. Members of IEC and IS0 maintain registers of currently valid International Standards. IEC 336: 1993, X-ray tube assemblies for medical diagnosis - Characteristics of focal spots IE
16、C 788: 1984, Medical radiology - Terminology IEC 1262-4: 1994, Medical electrical equipment - Characteristics of electro-optical X-ray image intensifiers - Part 4: Determination of the image distortion - ISO/DIS 9334, Optics and optical instruments - Optical transfer function - Definitions and ma th
17、ema tical rela tionships 3 Terminology 3.1 Definitions For the purposes of this International Standard, the following definitions apply together with those given in IEC 788. The definitions given below take preference over those given in IEC 788 when differences occur. 3.1 .I XRII: An abbreviation f
18、or ELECTRO-OPTICAL X-RAY IMAGE INTENSIFIER. 3.1.2 ENTRANCE puNf: The plane perpendicular to the axis of symmetry of the XRII and grazing the part of the XRII, including its housing, that protrudes most in the direction of the RADIATION SOURCE. - CENELEC EN*bl*262-7 95 = 3404583 OL734bb L2T = Page 5
19、EN 61262-7 : 1995 3.1.3 ENTRANCE FIELD: For an XRII, the area in the ENTRANCE PLANE that can be used for the TRANSMISSION Of an X-RAY PATTERN under Specific conditions. 3.1.4 ENTRANCE FIELD SIZE: For an XRII, the diameter of the field in the ENTRANCE PLANE that can be used at a specified SED for the
20、 TRANSMISSION of an X-RAY PATTERN. For an XRII with more than one magnification mode, the ENTRANCE FIELD SIZE for each of the magnification modes shall correspond to the same diameter of the XRII OUTPUT IMAGE occurring with the largest ENTRANCE FIELD SIZE. . 3.1.5 SOURCE To ENTRANCE PLANE DISTANCE (
21、abbreviation SED): The distance between the FOCAL SPOT Of the X-RAY TUBE and the ENTRANCE PLANE of the XRII. 3.1.6 CENTRE OF THE OUTPUT IMAGE: The centre of the smallest circle circumscribing the OUTPUT IMAGE. 3.1.7 CENTRE OF THE ENTRANCE FIELD: That point in the ENTRANCE PLANE which is imaged at th
22、e CENTRE OF THE OUTPUT IMAGE. 3.1.8 CENTRAL AXIS: The line perpendicular to the ENTRANCE PLANE passing through the CENTRE OF THE ENTRANCE FIELD. 3.1.9 CENTRAL MAGNIFICATION: As a characteristic of XRIIs, the ratio of the length in the symmetrically about the CENTRAL AXIS. OUTPUT IMAGE to the actual
23、length Of a Small object placed in the ENTRANCE PLANE 3.1.1 O POINT SPREAD FUNCTION (abbreviation PSF): Normalized distribution of irradiance in the image of a point source, see ISO/DIS 9334. 3.1.1 1 /SOPLANATIC REGION: Region where the form Of the POINT SPREAD FUNCTION is COnStant within specified
24、accuracy. 3.1.12 LINEARITY: Property of an imaging system in that the image of a weighted sum of objects is identical to the similarly weighted sum of images of individual objects. 3.1.13 LINEARITY within specified accuracy, see ISO/DIS 9334. LINEAR RANGE: Range of input signals within which the ima
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