ASTM E1578-2013 Standard Guide for Laboratory Informatics《实验室信息的标准指南》.pdf
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1、Designation: E1578 06E1578 13Standard Guide forLaboratory Information Management Systems(LIMS)Informatics1This standard is issued under the fixed designation E1578; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last r
2、evision. 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 guide helps describe the laboratory informatics landscape and covers issues commonly encountered at all stages in theli
3、fe cycle of laboratory informatics from inception to retirement. It explains the evolution of laboratory informatics tools used intodays laboratories such as Laboratory Information Management Systems from inception to retirement. The (LIMS), ElectronicLaboratory Notebooks (ELN), Scientific Data Mana
4、gement Systems (SDMS), and Chromatography Data Systems (CDS). It alsocovers the relationship (interactions) between these tools and the external systems in a given organization. The guide discussessupporting laboratory informatics tools and a wide variety of the issues commonly encountered at differ
5、ent stages in the life cycle.The sub-sections that follow describe details of scope of this document in specific areas.1.2 High Level High-Level PurposeThe purpose of this guide includes: (1) helphelping educate new users of LaboratoryInformation Management Systems (LIMS), laboratory informatics too
6、ls, (2) provide a standard terminology that can be used byLIMSdifferent vendors and end users, (3) establish minimum requirements for primary LIMS functions, laboratory informatics, (4)provide guidance for the specification, evaluation, cost justification, implementation, project management, trainin
7、g, anddocumentation, documentation of the systems, and (5) provide an example of a LIMS function checklist.function checklistexamples for laboratory informatics systems that can be adopted within the laboratory and integrated with the existing systems.1.3 LIMS Laboratory Informatics DefinitionThe te
8、rm Laboratory Laboratory informatics is the specialized application ofinformation technology aimed at optimizing laboratory operations. It is a collection of informatics tools utilized within laboratoryenvironments to collect, store, process, analyze, report, and archive data and information from th
9、e laboratory and supportingprocesses. Laboratory informatics includes the integration of systems, the electronic delivery of results to customers, and thesupporting systems including training and policies. Examples of laboratory informatics include: Laboratory InformationManagement Systems (LIMS) de
10、scribes the class of computer systems designed to manage laboratory information.(LIMS),Electronic Laboratory Notebooks (ELNs), Chromatography Data Systems (CDS), and Scientific Data Management Systems(SDMS).NOTE 1Laboratory informatics scope encompasses multiple technical solutions or systems. The d
11、ivision between these system categories continuesto soften as functionality continues to be added to each of them. LIMS were originally created to address the laboratories need to manage laboratoryoperations and data, provide traceability for all laboratory samples and equipment, and ensure that lab
12、oratory procedures are followed. ELNs, on the otherhand, were originally created to meet the scientistsneed to document their experimental design, execution, and conclusions in an electronic format insteadof in a paper notebook. SDMS was created to provide a repository of all scientific data files a
13、nd results regardless of instrument type. The currentdefinitions of each of these system categories are far more encompassing.1.4 Scope Considerations When Selecting and Implementing Laboratory Informatics SolutionsMany laboratories havedetermined that they need to deploy multiple laboratory informa
14、tics systems to automate their laboratory process and manage theirdata. Selection of an informatics solution requires a detailed analysis of the laboratorys requirements rather than by choosing aproduct category. It is important to include representatives from Information Technology (IT) and Subject
15、 Matter Experts (SMEs),who understand the needs of the laboratory, to be involved in the selection and implementation of a laboratory informatics systemto ensure that the needs of the laboratory are met and that IT can support it. Customers (internal and external) of laboratoryinformation should als
16、o be included in the laboratory informatics solution design, to ensure there is full electronic integrationbetween systems.1 This guide is under the jurisdiction ofASTM Committee E13 on Molecular Spectroscopy and Separation Science and is the direct responsibility of Subcommittee E13.15on Analytical
17、 Data.Current edition approved Sept. 1, 2006Aug. 1, 2013. Published September 2006November 2013. Originally approved in 1993. Last previous edition approved in 19992006as E1578 93 (1999).E1578-06. DOI: 10.1520/E1578-06. 10.1520/E1578-13.This document is not an ASTM standard and is intended only to p
18、rovide the user of an ASTM standard an indication of what changes have been made to the previous version. Becauseit may not be technically possible to adequately depict all changes accurately, ASTM recommends that users consult prior editions as appropriate. In all cases only the current versionof t
19、he standard as published by ASTM is to be considered the official document.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States11.5 Laboratory CategoriesThe spectrum of laboratories that employ LIMS is wide spread. The following break down
20、provides an overview of the laboratory categories that use LIMS as well as examples of laboratories in each category.scope of thisguide covers a wide range of laboratory types, industries, and sizes. Examples of laboratory types and industries are listed in thefollowing:1.5.1 General Laboratories:1.
21、5.1.1 Standards (ASTM, IEEE, ISO), and1.5.1.2 Government (EPA, FDA, JPL, NASA, NRC, USDA, FERC).1.5.2 Environmental:1.5.2.1 Environmental Monitoring.1.5.3 Life Science Laboratories:1.5.3.1 Biotechnology, and1.4.3.2 Diagnostic,1.4.3.3 Healthcare Medical,1.4.3.4 Devices, and1.5.3.2 Pharmaceuticals Vet
22、/Animal.Diagnostic.1.5.4 Healthcare Medical:1.5.4.1 Devices,1.5.4.2 Pharmaceuticals vet/animal,1.5.4.3 Public health, and1.5.4.4 Hospital LIS.1.5.5 Heavy Industry Laboratories:1.5.5.1 Energy 40 FR 3210D, Jan. 20, 1975FDACFR Part 50,Appendix E 10 10 Code of Federal Regulations (CFR) Part 50Appendix E
23、. 45 FR 55410,Aug. 19, 1980Aug.19, 1980, , et sequentia as amendedFDA CFR Part 50, Appendix K 10 10 Code of Federal Regulations (CFR) Part 50 Appendix K. 21 FR 355, Jan. 19, 1956Jan.19, 1956, , unless otherwise noted3. Terminology3.1 This guide defines the majority of different terminology used in t
24、he LIMS field. Sectionlaboratory informatics tools 3.2defines LIMS terms specific to this guide. field. Users of this documentguide should request a terminology list from each vendorwith a cross reference to the terms used in this guide.3.2 Definitions of Terms Specific to This Standard:3.2.1 CAPA,
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