Serveur d'exploration sur la recherche en informatique en Lorraine

Attention, ce site est en cours de développement !
Attention, site généré par des moyens informatiques à partir de corpus bruts.
Les informations ne sont donc pas validées.

Design and feasibility of a flexible computerized system for the clinical laboratory, based on the IEEE 488 standardized interface

Identifieur interne : 002E84 ( Istex/Corpus ); précédent : 002E83; suivant : 002E85

Design and feasibility of a flexible computerized system for the clinical laboratory, based on the IEEE 488 standardized interface

Auteurs : B. Huet ; J. Martin ; P. Cornillot

Source :

RBID : ISTEX:C57EBBA4A478C73E71C8C50EC8872CDC229AB0BB

English descriptors

Abstract

Abstract: Our target is to build a flexible computerized system based on an informational study of the clinical laboratory, which would leave the laboratory staff free to use equipment or modules from different manufacturers interchangeably. This applies to hardware and software. To fulfil this objective, it is necessary that automatic analyzers, microcomputers and minicomputers, have built-in standardized hardware and software interfaces. Technical specifications of the IEEE 488 standardized interface, recommended by the authors, are presented here; this interface is already widely used in instrument interfacing with low-cost microcomputers and minicomputers but has not yet been used for clinical laboratory automatic analyzers. A design for a flexible laboratory based on this interface is presented, with a discussion of the feasibility of such a project.

Url:
DOI: 10.1016/0010-4825(82)90005-1

Links to Exploration step

ISTEX:C57EBBA4A478C73E71C8C50EC8872CDC229AB0BB

Le document en format XML

<record>
<TEI wicri:istexFullTextTei="biblStruct">
<teiHeader>
<fileDesc>
<titleStmt>
<title>Design and feasibility of a flexible computerized system for the clinical laboratory, based on the IEEE 488 standardized interface</title>
<author>
<name sortKey="Huet, B" sort="Huet, B" uniqKey="Huet B" first="B." last="Huet">B. Huet</name>
<affiliation>
<mods:affiliation>Informatique Médicale, U. E. R. de Médecine, Universite Paris XIII France</mods:affiliation>
</affiliation>
</author>
<author>
<name sortKey="Martin, J" sort="Martin, J" uniqKey="Martin J" first="J." last="Martin">J. Martin</name>
<affiliation>
<mods:affiliation>Informatique Médicale, Groupe INSERM U 115, Faculté de Médecine Nancy, France</mods:affiliation>
</affiliation>
</author>
<author>
<name sortKey="Cornillot, P" sort="Cornillot, P" uniqKey="Cornillot P" first="P." last="Cornillot">P. Cornillot</name>
<affiliation>
<mods:affiliation>Département de Biochimie, U. E. R. de Médecine, Université Paris XIII France</mods:affiliation>
</affiliation>
</author>
</titleStmt>
<publicationStmt>
<idno type="wicri:source">ISTEX</idno>
<idno type="RBID">ISTEX:C57EBBA4A478C73E71C8C50EC8872CDC229AB0BB</idno>
<date when="1982" year="1982">1982</date>
<idno type="doi">10.1016/0010-4825(82)90005-1</idno>
<idno type="url">https://api.istex.fr/ark:/67375/6H6-BP7XT2H8-B/fulltext.pdf</idno>
<idno type="wicri:Area/Istex/Corpus">002E84</idno>
<idno type="wicri:explorRef" wicri:stream="Istex" wicri:step="Corpus" wicri:corpus="ISTEX">002E84</idno>
</publicationStmt>
<sourceDesc>
<biblStruct>
<analytic>
<title level="a">Design and feasibility of a flexible computerized system for the clinical laboratory, based on the IEEE 488 standardized interface</title>
<author>
<name sortKey="Huet, B" sort="Huet, B" uniqKey="Huet B" first="B." last="Huet">B. Huet</name>
<affiliation>
<mods:affiliation>Informatique Médicale, U. E. R. de Médecine, Universite Paris XIII France</mods:affiliation>
</affiliation>
</author>
<author>
<name sortKey="Martin, J" sort="Martin, J" uniqKey="Martin J" first="J." last="Martin">J. Martin</name>
<affiliation>
<mods:affiliation>Informatique Médicale, Groupe INSERM U 115, Faculté de Médecine Nancy, France</mods:affiliation>
</affiliation>
</author>
<author>
<name sortKey="Cornillot, P" sort="Cornillot, P" uniqKey="Cornillot P" first="P." last="Cornillot">P. Cornillot</name>
<affiliation>
<mods:affiliation>Département de Biochimie, U. E. R. de Médecine, Université Paris XIII France</mods:affiliation>
</affiliation>
</author>
</analytic>
<monogr></monogr>
<series>
<title level="j">Computers in Biology and Medicine</title>
<title level="j" type="abbrev">CBM</title>
<idno type="ISSN">0010-4825</idno>
<imprint>
<publisher>ELSEVIER</publisher>
<date type="published" when="1982">1982</date>
<biblScope unit="volume">12</biblScope>
<biblScope unit="issue">3</biblScope>
<biblScope unit="page" from="233">233</biblScope>
<biblScope unit="page" to="240">240</biblScope>
</imprint>
<idno type="ISSN">0010-4825</idno>
</series>
</biblStruct>
</sourceDesc>
<seriesStmt>
<idno type="ISSN">0010-4825</idno>
</seriesStmt>
</fileDesc>
<profileDesc>
<textClass>
<keywords scheme="Teeft" xml:lang="en">
<term>Analyzer</term>
<term>Automatic analyzer</term>
<term>Automatic analyzers</term>
<term>Byte</term>
<term>Clinical laboratories</term>
<term>Clinical laboratory</term>
<term>Computerized</term>
<term>Computerized system</term>
<term>Computerized systems</term>
<term>Coulter counter</term>
<term>Data rates</term>
<term>Digital interface</term>
<term>Functional partition</term>
<term>Ieee</term>
<term>Interface</term>
<term>Interface devices</term>
<term>Interface function</term>
<term>Interface functions</term>
<term>Interface guide</term>
<term>Laboratory automation</term>
<term>Medical data processing</term>
<term>Module</term>
<term>Nancy university</term>
<term>Nuclear medicine</term>
<term>Paris university</term>
<term>Preprocessing modules</term>
<term>Printout mode</term>
<term>Producer modules</term>
<term>Programmable</term>
<term>Programmable instrumentations</term>
<term>Programmable instruments</term>
<term>Result sorter</term>
<term>Signal lines</term>
<term>Software</term>
<term>Software standardization</term>
<term>Specification</term>
<term>Standard interface</term>
<term>Standardized hardware</term>
<term>Standardized interface</term>
<term>State linkage</term>
<term>Technical specifications</term>
<term>Temps reel</term>
<term>Typical configuration</term>
</keywords>
</textClass>
<langUsage>
<language ident="en">en</language>
</langUsage>
</profileDesc>
</teiHeader>
<front>
<div type="abstract" xml:lang="en">Abstract: Our target is to build a flexible computerized system based on an informational study of the clinical laboratory, which would leave the laboratory staff free to use equipment or modules from different manufacturers interchangeably. This applies to hardware and software. To fulfil this objective, it is necessary that automatic analyzers, microcomputers and minicomputers, have built-in standardized hardware and software interfaces. Technical specifications of the IEEE 488 standardized interface, recommended by the authors, are presented here; this interface is already widely used in instrument interfacing with low-cost microcomputers and minicomputers but has not yet been used for clinical laboratory automatic analyzers. A design for a flexible laboratory based on this interface is presented, with a discussion of the feasibility of such a project.</div>
</front>
</TEI>
<istex>
<corpusName>elsevier</corpusName>
<keywords>
<teeft>
<json:string>ieee</json:string>
<json:string>module</json:string>
<json:string>byte</json:string>
<json:string>analyzer</json:string>
<json:string>interface</json:string>
<json:string>computerized</json:string>
<json:string>software</json:string>
<json:string>programmable</json:string>
<json:string>automatic analyzers</json:string>
<json:string>clinical laboratory</json:string>
<json:string>computerized systems</json:string>
<json:string>clinical laboratories</json:string>
<json:string>computerized system</json:string>
<json:string>digital interface</json:string>
<json:string>interface functions</json:string>
<json:string>laboratory automation</json:string>
<json:string>medical data processing</json:string>
<json:string>coulter counter</json:string>
<json:string>result sorter</json:string>
<json:string>technical specifications</json:string>
<json:string>nuclear medicine</json:string>
<json:string>typical configuration</json:string>
<json:string>paris university</json:string>
<json:string>producer modules</json:string>
<json:string>printout mode</json:string>
<json:string>preprocessing modules</json:string>
<json:string>programmable instruments</json:string>
<json:string>software standardization</json:string>
<json:string>data rates</json:string>
<json:string>standard interface</json:string>
<json:string>interface devices</json:string>
<json:string>signal lines</json:string>
<json:string>interface guide</json:string>
<json:string>automatic analyzer</json:string>
<json:string>state linkage</json:string>
<json:string>interface function</json:string>
<json:string>functional partition</json:string>
<json:string>temps reel</json:string>
<json:string>programmable instrumentations</json:string>
<json:string>standardized hardware</json:string>
<json:string>standardized interface</json:string>
<json:string>nancy university</json:string>
<json:string>specification</json:string>
</teeft>
</keywords>
<author>
<json:item>
<name>B. Huet</name>
<affiliations>
<json:string>Informatique Médicale, U. E. R. de Médecine, Universite Paris XIII France</json:string>
</affiliations>
</json:item>
<json:item>
<name>J. Martin</name>
<affiliations>
<json:string>Informatique Médicale, Groupe INSERM U 115, Faculté de Médecine Nancy, France</json:string>
</affiliations>
</json:item>
<json:item>
<name>P. Cornillot</name>
<affiliations>
<json:string>Département de Biochimie, U. E. R. de Médecine, Université Paris XIII France</json:string>
</affiliations>
</json:item>
</author>
<subject>
<json:item>
<lang>
<json:string>eng</json:string>
</lang>
<value>Flexibility</value>
</json:item>
<json:item>
<lang>
<json:string>eng</json:string>
</lang>
<value>Computerized system</value>
</json:item>
<json:item>
<lang>
<json:string>eng</json:string>
</lang>
<value>Standard interface Design</value>
</json:item>
<json:item>
<lang>
<json:string>eng</json:string>
</lang>
<value>Feasibility</value>
</json:item>
<json:item>
<lang>
<json:string>eng</json:string>
</lang>
<value>Modules</value>
</json:item>
<json:item>
<lang>
<json:string>eng</json:string>
</lang>
<value>Information</value>
</json:item>
</subject>
<arkIstex>ark:/67375/6H6-BP7XT2H8-B</arkIstex>
<language>
<json:string>eng</json:string>
</language>
<originalGenre>
<json:string>Full-length article</json:string>
</originalGenre>
<abstract>Abstract: Our target is to build a flexible computerized system based on an informational study of the clinical laboratory, which would leave the laboratory staff free to use equipment or modules from different manufacturers interchangeably. This applies to hardware and software. To fulfil this objective, it is necessary that automatic analyzers, microcomputers and minicomputers, have built-in standardized hardware and software interfaces. Technical specifications of the IEEE 488 standardized interface, recommended by the authors, are presented here; this interface is already widely used in instrument interfacing with low-cost microcomputers and minicomputers but has not yet been used for clinical laboratory automatic analyzers. A design for a flexible laboratory based on this interface is presented, with a discussion of the feasibility of such a project.</abstract>
<qualityIndicators>
<score>6.319</score>
<pdfWordCount>2843</pdfWordCount>
<pdfCharCount>19962</pdfCharCount>
<pdfVersion>1.2</pdfVersion>
<pdfPageCount>8</pdfPageCount>
<pdfPageSize>537 x 785 pts</pdfPageSize>
<refBibsNative>true</refBibsNative>
<abstractWordCount>123</abstractWordCount>
<abstractCharCount>867</abstractCharCount>
<keywordCount>6</keywordCount>
</qualityIndicators>
<title>Design and feasibility of a flexible computerized system for the clinical laboratory, based on the IEEE 488 standardized interface</title>
<pmid>
<json:string>7172641</json:string>
</pmid>
<pii>
<json:string>0010-4825(82)90005-1</json:string>
</pii>
<genre>
<json:string>research-article</json:string>
</genre>
<serie>
<title>Thèse Etat Biologie Humaine, Information Médicale</title>
<language>
<json:string>unknown</json:string>
</language>
</serie>
<host>
<title>Computers in Biology and Medicine</title>
<language>
<json:string>unknown</json:string>
</language>
<publicationDate>1982</publicationDate>
<issn>
<json:string>0010-4825</json:string>
</issn>
<pii>
<json:string>S0010-4825(00)X0057-1</json:string>
</pii>
<volume>12</volume>
<issue>3</issue>
<pages>
<first>233</first>
<last>240</last>
</pages>
<genre>
<json:string>journal</json:string>
</genre>
</host>
<namedEntities>
<unitex>
<date>
<json:string>1950s</json:string>
<json:string>1982</json:string>
<json:string>1960</json:string>
</date>
<geogName></geogName>
<orgName>
<json:string>Committee on Automated Instrumentation</json:string>
</orgName>
<orgName_funder></orgName_funder>
<orgName_provider></orgName_provider>
<persName>
<json:string>U. E. R. de Medecine</json:string>
<json:string>ParIs Sill</json:string>
<json:string>Van Bemmel</json:string>
</persName>
<placeName></placeName>
<ref_url></ref_url>
<ref_bibl>
<json:string>[12]</json:string>
<json:string>[6]</json:string>
<json:string>[1]</json:string>
<json:string>[15]</json:string>
<json:string>[7]</json:string>
<json:string>[14]</json:string>
<json:string>[9]</json:string>
</ref_bibl>
<bibl></bibl>
</unitex>
</namedEntities>
<ark>
<json:string>ark:/67375/6H6-BP7XT2H8-B</json:string>
</ark>
<categories>
<wos>
<json:string>1 - science</json:string>
<json:string>2 - mathematical & computational biology</json:string>
<json:string>2 - engineering, biomedical</json:string>
<json:string>2 - computer science, interdisciplinary applications</json:string>
<json:string>2 - biology</json:string>
</wos>
<scienceMetrix>
<json:string>1 - applied sciences</json:string>
<json:string>2 - engineering</json:string>
<json:string>3 - biomedical engineering</json:string>
</scienceMetrix>
<scopus>
<json:string>1 - Health Sciences</json:string>
<json:string>2 - Medicine</json:string>
<json:string>3 - Health Informatics</json:string>
<json:string>1 - Physical Sciences</json:string>
<json:string>2 - Computer Science</json:string>
<json:string>3 - Computer Science Applications</json:string>
</scopus>
<inist>
<json:string>1 - sciences appliquees, technologies et medecines</json:string>
<json:string>2 - sciences biologiques et medicales</json:string>
<json:string>3 - sciences medicales</json:string>
<json:string>4 - informatique, statistique et modelisations biomedicales</json:string>
</inist>
</categories>
<publicationDate>1982</publicationDate>
<copyrightDate>1982</copyrightDate>
<doi>
<json:string>10.1016/0010-4825(82)90005-1</json:string>
</doi>
<id>C57EBBA4A478C73E71C8C50EC8872CDC229AB0BB</id>
<score>1</score>
<fulltext>
<json:item>
<extension>pdf</extension>
<original>true</original>
<mimetype>application/pdf</mimetype>
<uri>https://api.istex.fr/ark:/67375/6H6-BP7XT2H8-B/fulltext.pdf</uri>
</json:item>
<json:item>
<extension>zip</extension>
<original>false</original>
<mimetype>application/zip</mimetype>
<uri>https://api.istex.fr/ark:/67375/6H6-BP7XT2H8-B/bundle.zip</uri>
</json:item>
<istex:fulltextTEI uri="https://api.istex.fr/ark:/67375/6H6-BP7XT2H8-B/fulltext.tei">
<teiHeader>
<fileDesc>
<titleStmt>
<title level="a">Design and feasibility of a flexible computerized system for the clinical laboratory, based on the IEEE 488 standardized interface</title>
</titleStmt>
<publicationStmt>
<authority>ISTEX</authority>
<publisher scheme="https://scientific-publisher.data.istex.fr">ELSEVIER</publisher>
<availability>
<licence>
<p>elsevier</p>
</licence>
</availability>
<p scheme="https://loaded-corpus.data.istex.fr/ark:/67375/XBH-HKKZVM7B-M"></p>
<date>1982</date>
</publicationStmt>
<notesStmt>
<note type="research-article" scheme="https://content-type.data.istex.fr/ark:/67375/XTP-1JC4F85T-7">research-article</note>
<note type="journal" scheme="https://publication-type.data.istex.fr/ark:/67375/JMC-0GLKJH51-B">journal</note>
</notesStmt>
<sourceDesc>
<biblStruct type="inbook">
<analytic>
<title level="a">Design and feasibility of a flexible computerized system for the clinical laboratory, based on the IEEE 488 standardized interface</title>
<author xml:id="author-0000">
<persName>
<forename type="first">B.</forename>
<surname>Huet</surname>
</persName>
<affiliation>Informatique Médicale, U. E. R. de Médecine, Universite Paris XIII France</affiliation>
</author>
<author xml:id="author-0001">
<persName>
<forename type="first">J.</forename>
<surname>Martin</surname>
</persName>
<affiliation>Informatique Médicale, Groupe INSERM U 115, Faculté de Médecine Nancy, France</affiliation>
</author>
<author xml:id="author-0002">
<persName>
<forename type="first">P.</forename>
<surname>Cornillot</surname>
</persName>
<affiliation>Département de Biochimie, U. E. R. de Médecine, Université Paris XIII France</affiliation>
</author>
<idno type="istex">C57EBBA4A478C73E71C8C50EC8872CDC229AB0BB</idno>
<idno type="ark">ark:/67375/6H6-BP7XT2H8-B</idno>
<idno type="DOI">10.1016/0010-4825(82)90005-1</idno>
<idno type="PII">0010-4825(82)90005-1</idno>
</analytic>
<monogr>
<title level="j">Computers in Biology and Medicine</title>
<title level="j" type="abbrev">CBM</title>
<idno type="pISSN">0010-4825</idno>
<idno type="PII">S0010-4825(00)X0057-1</idno>
<imprint>
<publisher>ELSEVIER</publisher>
<date type="published" when="1982"></date>
<biblScope unit="volume">12</biblScope>
<biblScope unit="issue">3</biblScope>
<biblScope unit="page" from="233">233</biblScope>
<biblScope unit="page" to="240">240</biblScope>
</imprint>
</monogr>
</biblStruct>
</sourceDesc>
</fileDesc>
<profileDesc>
<creation>
<date>1982</date>
</creation>
<langUsage>
<language ident="en">en</language>
</langUsage>
<abstract xml:lang="en">
<p>Abstract: Our target is to build a flexible computerized system based on an informational study of the clinical laboratory, which would leave the laboratory staff free to use equipment or modules from different manufacturers interchangeably. This applies to hardware and software. To fulfil this objective, it is necessary that automatic analyzers, microcomputers and minicomputers, have built-in standardized hardware and software interfaces. Technical specifications of the IEEE 488 standardized interface, recommended by the authors, are presented here; this interface is already widely used in instrument interfacing with low-cost microcomputers and minicomputers but has not yet been used for clinical laboratory automatic analyzers. A design for a flexible laboratory based on this interface is presented, with a discussion of the feasibility of such a project.</p>
</abstract>
<textClass>
<keywords scheme="keyword">
<list>
<head>Keywords</head>
<item>
<term>Flexibility</term>
</item>
<item>
<term>Computerized system</term>
</item>
<item>
<term>Standard interface Design</term>
</item>
<item>
<term>Feasibility</term>
</item>
<item>
<term>Modules</term>
</item>
<item>
<term>Information</term>
</item>
</list>
</keywords>
</textClass>
</profileDesc>
<revisionDesc>
<change when="1982">Published</change>
</revisionDesc>
</teiHeader>
</istex:fulltextTEI>
<json:item>
<extension>txt</extension>
<original>false</original>
<mimetype>text/plain</mimetype>
<uri>https://api.istex.fr/ark:/67375/6H6-BP7XT2H8-B/fulltext.txt</uri>
</json:item>
</fulltext>
<metadata>
<istex:metadataXml wicri:clean="Elsevier, elements deleted: tail">
<istex:xmlDeclaration>version="1.0" encoding="utf-8"</istex:xmlDeclaration>
<istex:docType PUBLIC="-//ES//DTD journal article DTD version 4.5.2//EN//XML" URI="art452.dtd" name="istex:docType"></istex:docType>
<istex:document>
<converted-article version="4.5.2" docsubtype="fla">
<item-info>
<jid>CBM</jid>
<aid>82900051</aid>
<ce:pii>0010-4825(82)90005-1</ce:pii>
<ce:doi>10.1016/0010-4825(82)90005-1</ce:doi>
<ce:copyright type="unknown" year="1982"></ce:copyright>
</item-info>
<head>
<ce:title>Design and feasibility of a flexible computerized system for the clinical laboratory, based on the IEEE 488 standardized interface</ce:title>
<ce:author-group>
<ce:author>
<ce:given-name>B.</ce:given-name>
<ce:surname>Huet</ce:surname>
<ce:cross-ref refid="AFF1">
<ce:sup></ce:sup>
</ce:cross-ref>
</ce:author>
<ce:author>
<ce:given-name>J.</ce:given-name>
<ce:surname>Martin</ce:surname>
<ce:cross-ref refid="AFF2">
<ce:sup></ce:sup>
</ce:cross-ref>
</ce:author>
<ce:author>
<ce:given-name>P.</ce:given-name>
<ce:surname>Cornillot</ce:surname>
<ce:cross-ref refid="AFF3">
<ce:sup></ce:sup>
</ce:cross-ref>
</ce:author>
<ce:affiliation id="AFF1">
<ce:label>a</ce:label>
<ce:textfn>Informatique Médicale, U. E. R. de Médecine, Universite Paris XIII France</ce:textfn>
</ce:affiliation>
<ce:affiliation id="AFF2">
<ce:label>b</ce:label>
<ce:textfn>Informatique Médicale, Groupe INSERM U 115, Faculté de Médecine Nancy, France</ce:textfn>
</ce:affiliation>
<ce:affiliation id="AFF3">
<ce:label>c</ce:label>
<ce:textfn>Département de Biochimie, U. E. R. de Médecine, Université Paris XIII France</ce:textfn>
</ce:affiliation>
</ce:author-group>
<ce:date-received day="17" month="12" year="1980"></ce:date-received>
<ce:date-accepted day="16" month="11" year="1981"></ce:date-accepted>
<ce:abstract>
<ce:section-title>Abstract</ce:section-title>
<ce:abstract-sec>
<ce:simple-para>Our target is to build a flexible computerized system based on an informational study of the clinical laboratory, which would leave the laboratory staff free to use equipment or modules from different manufacturers interchangeably. This applies to hardware and software. To fulfil this objective, it is necessary that automatic analyzers, microcomputers and minicomputers, have built-in standardized hardware and software interfaces. Technical specifications of the IEEE 488 standardized interface, recommended by the authors, are presented here; this interface is already widely used in instrument interfacing with low-cost microcomputers and minicomputers but has not yet been used for clinical laboratory automatic analyzers. A design for a flexible laboratory based on this interface is presented, with a discussion of the feasibility of such a project.</ce:simple-para>
</ce:abstract-sec>
</ce:abstract>
<ce:keywords>
<ce:section-title>Keywords</ce:section-title>
<ce:keyword>
<ce:text>Flexibility</ce:text>
</ce:keyword>
<ce:keyword>
<ce:text>Computerized system</ce:text>
</ce:keyword>
<ce:keyword>
<ce:text>Standard interface Design</ce:text>
</ce:keyword>
<ce:keyword>
<ce:text>Feasibility</ce:text>
</ce:keyword>
<ce:keyword>
<ce:text>Modules</ce:text>
</ce:keyword>
<ce:keyword>
<ce:text>Information</ce:text>
</ce:keyword>
</ce:keywords>
</head>
</converted-article>
</istex:document>
</istex:metadataXml>
<mods version="3.6">
<titleInfo>
<title>Design and feasibility of a flexible computerized system for the clinical laboratory, based on the IEEE 488 standardized interface</title>
</titleInfo>
<titleInfo type="alternative" contentType="CDATA">
<title>Design and feasibility of a flexible computerized system for the clinical laboratory, based on the IEEE 488 standardized interface</title>
</titleInfo>
<name type="personal">
<namePart type="given">B.</namePart>
<namePart type="family">Huet</namePart>
<affiliation>Informatique Médicale, U. E. R. de Médecine, Universite Paris XIII France</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
</name>
<name type="personal">
<namePart type="given">J.</namePart>
<namePart type="family">Martin</namePart>
<affiliation>Informatique Médicale, Groupe INSERM U 115, Faculté de Médecine Nancy, France</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
</name>
<name type="personal">
<namePart type="given">P.</namePart>
<namePart type="family">Cornillot</namePart>
<affiliation>Département de Biochimie, U. E. R. de Médecine, Université Paris XIII France</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
</name>
<typeOfResource>text</typeOfResource>
<genre type="research-article" displayLabel="Full-length article" authority="ISTEX" authorityURI="https://content-type.data.istex.fr" valueURI="https://content-type.data.istex.fr/ark:/67375/XTP-1JC4F85T-7">research-article</genre>
<originInfo>
<publisher>ELSEVIER</publisher>
<dateIssued encoding="w3cdtf">1982</dateIssued>
<copyrightDate encoding="w3cdtf">1982</copyrightDate>
</originInfo>
<language>
<languageTerm type="code" authority="iso639-2b">eng</languageTerm>
<languageTerm type="code" authority="rfc3066">en</languageTerm>
</language>
<abstract lang="en">Abstract: Our target is to build a flexible computerized system based on an informational study of the clinical laboratory, which would leave the laboratory staff free to use equipment or modules from different manufacturers interchangeably. This applies to hardware and software. To fulfil this objective, it is necessary that automatic analyzers, microcomputers and minicomputers, have built-in standardized hardware and software interfaces. Technical specifications of the IEEE 488 standardized interface, recommended by the authors, are presented here; this interface is already widely used in instrument interfacing with low-cost microcomputers and minicomputers but has not yet been used for clinical laboratory automatic analyzers. A design for a flexible laboratory based on this interface is presented, with a discussion of the feasibility of such a project.</abstract>
<subject>
<genre>Keywords</genre>
<topic>Flexibility</topic>
<topic>Computerized system</topic>
<topic>Standard interface Design</topic>
<topic>Feasibility</topic>
<topic>Modules</topic>
<topic>Information</topic>
</subject>
<relatedItem type="host">
<titleInfo>
<title>Computers in Biology and Medicine</title>
</titleInfo>
<titleInfo type="abbreviated">
<title>CBM</title>
</titleInfo>
<genre type="journal" authority="ISTEX" authorityURI="https://publication-type.data.istex.fr" valueURI="https://publication-type.data.istex.fr/ark:/67375/JMC-0GLKJH51-B">journal</genre>
<originInfo>
<publisher>ELSEVIER</publisher>
<dateIssued encoding="w3cdtf">1982</dateIssued>
</originInfo>
<identifier type="ISSN">0010-4825</identifier>
<identifier type="PII">S0010-4825(00)X0057-1</identifier>
<part>
<date>1982</date>
<detail type="volume">
<number>12</number>
<caption>vol.</caption>
</detail>
<detail type="issue">
<number>3</number>
<caption>no.</caption>
</detail>
<extent unit="issue-pages">
<start>191</start>
<end>251</end>
</extent>
<extent unit="pages">
<start>233</start>
<end>240</end>
</extent>
</part>
</relatedItem>
<identifier type="istex">C57EBBA4A478C73E71C8C50EC8872CDC229AB0BB</identifier>
<identifier type="ark">ark:/67375/6H6-BP7XT2H8-B</identifier>
<identifier type="DOI">10.1016/0010-4825(82)90005-1</identifier>
<identifier type="PII">0010-4825(82)90005-1</identifier>
<recordInfo>
<recordContentSource authority="ISTEX" authorityURI="https://loaded-corpus.data.istex.fr" valueURI="https://loaded-corpus.data.istex.fr/ark:/67375/XBH-HKKZVM7B-M">elsevier</recordContentSource>
</recordInfo>
</mods>
<json:item>
<extension>json</extension>
<original>false</original>
<mimetype>application/json</mimetype>
<uri>https://api.istex.fr/ark:/67375/6H6-BP7XT2H8-B/record.json</uri>
</json:item>
</metadata>
</istex>
</record>

Pour manipuler ce document sous Unix (Dilib)

EXPLOR_STEP=$WICRI_ROOT/Wicri/Lorraine/explor/InforLorV4/Data/Istex/Corpus
HfdSelect -h $EXPLOR_STEP/biblio.hfd -nk 002E84 | SxmlIndent | more

Ou

HfdSelect -h $EXPLOR_AREA/Data/Istex/Corpus/biblio.hfd -nk 002E84 | SxmlIndent | more

Pour mettre un lien sur cette page dans le réseau Wicri

{{Explor lien
   |wiki=    Wicri/Lorraine
   |area=    InforLorV4
   |flux=    Istex
   |étape=   Corpus
   |type=    RBID
   |clé=     ISTEX:C57EBBA4A478C73E71C8C50EC8872CDC229AB0BB
   |texte=   Design and feasibility of a flexible computerized system for the clinical laboratory, based on the IEEE 488 standardized interface
}}

Wicri

This area was generated with Dilib version V0.6.33.
Data generation: Mon Jun 10 21:56:28 2019. Site generation: Fri Feb 25 15:29:27 2022