ASTM E2339-2008 Standard Practice for Digital Imaging and Communication in Nondestructive Evaluation (DICONDE).pdf
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1、Designation: E 2339 08Standard Practice forDigital Imaging and Communication in NondestructiveEvaluation (DICONDE)1This standard is issued under the fixed designation E 2339; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year
2、 of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This practice facilitates the interoperability of NDEimaging and data acquisition equipment by specifying theimage
3、 data in commonly accepted terms. This practice repre-sents a harmonization of NDE imaging systems, or modalities,with the NEMA Standards Publication titled Digital Imagingand Communications in Medicine (DICOM, see http:/medical.nema.org), an international standard for image dataacquisition, review,
4、 storage and archival. In addition, thispractice will provide a standard set of industrial NDE specificinformation object definitions, which travel beyond the scopeof standard DICOM modalities. The goal of this practice is toprovide a standard by which NDE image/signal data may bedisplayed on by any
5、 system conforming to the ASTM DI-CONDE format, regardless of which NDE modality was usedto acquire the data.1.2 This practice has been developed to overcome the issuesthat arise when archiving or analyzing the data from a varietyof NDE techniques, each using proprietary data acquisitionsystems. As
6、data acquisition modalities evolve, data acquiredin the past must remain decipherable. This practice proposes animage data file format in such a way that all the techniqueparameters, along with the image file, are preserved, regardlessof changes in NDE technology. This practice will also permitthe v
7、iewing of a variety of image types (CT, CR, Ultrasonic,Infrared and Eddy Current) on a single workstation, maintain-ing all of the pertinent technique parameters along with theimage file. This practice addresses the exchange of digitalinformation between NDE imaging equipment.1.3 This practice does
8、not specify:1.3.1 A testing or validation procedure to assess an imple-mentations conformance to the standard.1.3.2 The implementation details of any features of thestandard on a device claiming conformance.1.3.3 The overall set of features and functions to be ex-pected from a system implemented by
9、integrating a group ofdevices each claiming DICONDE or DICOM conformance.1.4 Although this practice contains no values that requireunits, it does describe methods to store and communicate datathat do require units to be properly interpreted. The SI unitsrequired by this practice are to be regarded a
10、s standard. Noother units of measurement are included in this standard.2. Referenced Documents2.1 ASTM Standards:E 1316 Terminology for Nondestructive Examinations2.2 Other Documentation:NEMA Standards Publication PS3.1, Version 3: DigitalImaging and Communications in Medicine (DICOM)ACR-NEMA 300199
11、8 Digital Imaging and Communica-tion in Medicine3. Terminology3.1 Definitions:3.1.1 Nondestructive evaluation terms used in this practicecan be found in Terminology E 1316.3.2 Definitions of Terms Specific to This Standard:3.2.1 AEapplication entity3.2.2 attributea property of an information object.
12、 Anattribute has a name and a value, which are independent of anyencoding scheme.3.2.3 attribute tag a unique identifier for an attribute ofan information object composed of an ordered pair (gggg,eeee) where gggg represents the group number and eeeerepresents the data element.3.2.4 conformance state
13、menta formal statement associ-ated with a specific implementation of the standard, specifyingthe service class, information objects, and communicationsprotocols supported by the implementations.3.2.5 data dictionarya registry of data elements, whichassigns a unique tag, a name, value characteristics
14、, andsemantics to each data element.3.2.6 data elementa unit of information as defined by asingle entry in the data dictionary. An encoded IOD attributethat is composed of, at a minimum, three fields: a data elementtag,avalue length, and a value field.3.2.7 data element taga unique identifier for a
15、dataelement composed of an ordered pair of numbers (a groupnumber followed by an element number).1This practice is under the jurisdiction of ASTM Committee E07 on Nonde-structive Testing and is the direct responsibility of Subcommittee E07.11 on DigitalImaging and Communication in Nondestructive Eva
16、luation (DICONDE).Current edition approved July 1, 2008. Published July 2008. Originally approvedin 2004. Last previous edition approved in 2006 as E 2339 - 06.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.2.8 data element typeus
17、ed to specify whether an at-tribute of an IOD is mandatory, mandatory only under certainconditions, or optional.3.2.9 element numberthe second number in the orderedpair of numbers that make up a data element tag.3.2.10 group numberthe first number in the ordered pairof numbers that makes up a data e
18、lement tag.3.2.11 information object definition (IOD)a data abstrac-tion of a class of similar real-world objects which defines thenature and attributes relevant to the class of real-world objectrepresented.3.2.12 modulea set of attributes with an InformationObject Definition.3.2.13 private data ele
19、mentadditional data element, de-fined by an implementer, to communicate information that isnot contained in standard data elements. Private data elementshave odd group numbers.3.2.14 valuea component of a value field.Avalue fieldmay consist of one or more of these components.3.2.15 value fieldthe fi
20、eld within a data element thatcontains the value (s) of that data element.3.2.16 value lengththe field within a data element thatcontains the length of the value field of the data element.3.2.17 value multiplicity (VM)specifies the number ofvalues contained in the value field of a data element.3.2.1
21、8 value representation (VR)specifies the data typeand format of the value (s) contained in the value field of a dataelement. A complete list of all the VRs can be found in 6.2 ofPart 5 of the DICOM standard.3.2.19 DICONDE version identifierunique string placedin the DICONDE object to identify the ve
22、rsion of DICONDEused to create the object.4. Summary of Practice4.1 The basic concept of using DICONDE (or DICOM) isthe usage of standardized data tag identifiers. This means allparticipants are using database entries representing the sameinformation and have a common understanding of communi-cation
23、 protocols for mutual use. For standardization of datatransfer, the conformance statement, a mutually agreed upondocument provides the specific database tag identifiers forevery part of the NDE data stream as well as the communica-tions protocols.4.1.1 DICOM was developed in liaison with ACR (theAme
24、rican College of Radiology) and NEMA (the NationalElectrical Manufacturers Association) and other Standard Or-ganizations including CEN TC251 in Europe and JIRA inJapan, with review also by other organizations including IEEE,HL7 andANSI in the USA. The DICOM Standard is structuredas a multi-part doc
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