The present paper describes a large-scale lexical resource for the biology domain designed both for human and for machine use. This lexicon aims at semantic interoperability and extendability, through the adoption of ISO-LMF standard for lexical representation and through a granular and distributed encoding of relevant information. The first part of this contribution focuses on three aspects of the model that are of particular interest to the biology community: the treatment of term variants, the representation on bio events and the alignment with a domain ontology. The second part of the paper describes the physical implementation of the model: a relational database equipped with a set of automatic uploading procedures. Peculiarity of the BioLexicon is that it combines features of both terminologies and lexicons. A set verbs relevant for the domain is also represented with full details on their syntactic and semantic argument structure.
A Standard Lexical-Terminological Resource for the Bio Domain
Quochi V
;Del Gratta R;Sassolini E;Bartolini R;Monachini M;
2009
Abstract
The present paper describes a large-scale lexical resource for the biology domain designed both for human and for machine use. This lexicon aims at semantic interoperability and extendability, through the adoption of ISO-LMF standard for lexical representation and through a granular and distributed encoding of relevant information. The first part of this contribution focuses on three aspects of the model that are of particular interest to the biology community: the treatment of term variants, the representation on bio events and the alignment with a domain ontology. The second part of the paper describes the physical implementation of the model: a relational database equipped with a set of automatic uploading procedures. Peculiarity of the BioLexicon is that it combines features of both terminologies and lexicons. A set verbs relevant for the domain is also represented with full details on their syntactic and semantic argument structure.| Campo DC | Valore | Lingua |
|---|---|---|
| dc.authority.anceserie | LECTURE NOTES IN COMPUTER SCIENCE | en |
| dc.authority.orgunit | Istituto di linguistica computazionale "Antonio Zampolli" - ILC | en |
| dc.authority.people | Quochi V | en |
| dc.authority.people | Del Gratta R | en |
| dc.authority.people | Sassolini E | en |
| dc.authority.people | Bartolini R | en |
| dc.authority.people | Monachini M | en |
| dc.authority.people | Calzolari N | en |
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| dc.date.firstsubmission | 2024/09/20 12:17:22 | * |
| dc.date.issued | 2009 | - |
| dc.date.submission | 2024/09/20 12:17:22 | * |
| dc.description.abstracteng | The present paper describes a large-scale lexical resource for the biology domain designed both for human and for machine use. This lexicon aims at semantic interoperability and extendability, through the adoption of ISO-LMF standard for lexical representation and through a granular and distributed encoding of relevant information. The first part of this contribution focuses on three aspects of the model that are of particular interest to the biology community: the treatment of term variants, the representation on bio events and the alignment with a domain ontology. The second part of the paper describes the physical implementation of the model: a relational database equipped with a set of automatic uploading procedures. Peculiarity of the BioLexicon is that it combines features of both terminologies and lexicons. A set verbs relevant for the domain is also represented with full details on their syntactic and semantic argument structure. | - |
| dc.description.affiliations | Istituto di Linguistica Computazionale "Antonio Zampolli" | - |
| dc.description.allpeople | Quochi, V; Del Gratta, R; Sassolini, E; Bartolini, R; Monachini, M; Calzolari, N | - |
| dc.description.allpeopleoriginal | Quochi V.; Del Gratta R.; Sassolini E.; Bartolini R.; Monachini M.; Calzolari N. | en |
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| dc.identifier.doi | 10.1007/978-3-642-04235-5_28 | en |
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| dc.publisher.country | DEU | en |
| dc.publisher.name | Springer | en |
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| dc.relation.allauthors | Zygmunt Vetulani, Hans Uszkoreit | en |
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| dc.subject.keywords | Lexical representation model | - |
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| dc.subject.singlekeyword | Computational Lexicography | * |
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| dc.subject.singlekeyword | Standards | * |
| dc.title | A Standard Lexical-Terminological Resource for the Bio Domain | en |
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| scopus.contributor.surname | Monachini | - |
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| scopus.description.abstracteng | The present paper describes a large-scale lexical resource for the biology domain designed both for human and for machine use. This lexicon aims at semantic interoperability and extendability, through the adoption of ISO-LMF standard for lexical representation and through a granular and distributed encoding of relevant information. The first part of this contribution focuses on three aspects of the model that are of particular interest to the biology community: the treatment of term variants, the representation on bio events and the alignment with a domain ontology. The second part of the paper describes the physical implementation of the model: a relational database equipped with a set of automatic uploading procedures. Peculiarity of the BioLexicon is that it combines features of both terminologies and lexicons. A set verbs relevant for the domain is also represented with full details on their syntactic and semantic argument structure. © 2009 Springer Berlin Heidelberg. | * |
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| scopus.subject.keywords | Computational Lexicography; Lexical Database; Lexical representation model; Special Domains; Standards; | * |
| scopus.title | A standard lexical-terminological resource for the bio domain | * |
| scopus.titleeng | A standard lexical-terminological resource for the bio domain | * |
| Appare nelle tipologie: | 02.01 Contributo in volume (Capitolo o Saggio) | |
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