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Statistical sequence and parsing models for descriptive linguistics and psycholinguistics ...
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Determining light verb constructions in contemporary British and Irish English
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In: International Journal of Corpus Linguistics, vol. 20, no. 3, pp. 326-354 (2015)
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Measuring the Public Account- ability of New Modes of Governance
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In: Wüest, Bruno; Schneider, G; Amsler, Michael (2014). Measuring the Public Account- ability of New Modes of Governance. In: ACL Workshop on Language Technology and Computational Social Science, Baltimore, Maryland, USA, 24 June 2014 - 26 June 2014. (2014)
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De pájaros, astros y ángeles: una reflexión sobre los valores poetológicos del espacio supraterrenal en «Primeras poesías» de Luis Cernuda
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In: Schneider, G (2012). De pájaros, astros y ángeles: una reflexión sobre los valores poetológicos del espacio supraterrenal en «Primeras poesías» de Luis Cernuda. Boletín Hispánico Helvético : Historia, Teoría(s), Prácticas Culturales, (20):41-62. (2012)
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An incremental model for the coreference resolution task of BioNLP 2011 ...
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The Protein-Protein Interaction tasks of BioCreative III: classification/ranking of articles and linking bio-ontology concepts to full text
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In: Krallinger, M; Vazquez, M; Leitner, F; Salgado, D; Chatr-aryamontri, A; Winter, A; Perfetto, L; Briganti, L; Licata, L; Iannuccelli, M; Castagnoli, L; Cesareni, G; Tyers, M; Schneider, G; Rinaldi, Fabio; Leaman, R; Gonzalez, G; Matos, S; Kim, S; Wilbur, W J; Rocha, L; Shatkay, H; Tendulkar, A V; Agarwal, S; Liu, F; Wang, X; Rak, R; Noto, K; Elkan, C; Lu, Z (2011). The Protein-Protein Interaction tasks of BioCreative III: classification/ranking of articles and linking bio-ontology concepts to full text. BMC Bioinformatics, 12(Suppl 8):S3. (2011)
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Mining complex Drug/Gene/Disease relations
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In: Rinaldi, Fabio; Schneider, G; Clematide, S (2011). Mining complex Drug/Gene/Disease relations. In: Pacific Symposium on Biocomputing Workshop "Mining the Pharmacogenomics Literature", Hawaii, 3 January 2011 - 7 January 2011. (2011)
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OntoGene at CALBC II and Some Thoughts on the Need of Document-Wide Harmonization
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In: Clematide, S; Rinaldi, Fabio; Schneider, G (2011). OntoGene at CALBC II and Some Thoughts on the Need of Document-Wide Harmonization. In: Second CALBC Workshop, Hinxton, Cambridgeshire, UK, 16 March 2011 - 18 March 2011, 48-51. (2011)
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ODIN: an advanced interface for the curation of biomedical literature
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In: Rinaldi, Fabio; Clematide, S; Schneider, G; Romacker, M; Vachon, Th (2010). ODIN: an advanced interface for the curation of biomedical literature. In: Biocuration 2010, Tokyo, Japan, 11 October 2010 - 14 October 2010. (2010)
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A framework for constituent-dependency conversion
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In: Marek, T; Schneider, G; Volk, Martin (2009). A framework for constituent-dependency conversion. In: 8th Conference on Treebanks and Linguistic Theories, Milano, 2009 - 2009. (2009)
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Using existing biomedical resources to detect and ground terms in biomedical literature
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In: Kaljurand, K; Rinaldi, Fabio; Kappeler, T; Schneider, G (2009). Using existing biomedical resources to detect and ground terms in biomedical literature. In: Combi, C; Shahar, Y; Abu-Hanna, A. Artificial Intelligence in Medicine: 12th Conference on Artificial Intelligence in Medicine, AIME 2009, Verona, Italy, July 18-22, 2009. Proceedings. Berlin: Springer, 225-234. (2009)
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Effective Mining of Protein Interactions
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In: Rinaldi, Fabio; Schneider, G; Kaljurand, K; Clematide, S (2009). Effective Mining of Protein Interactions. In: Third international symposium on languages in biology and medecine (LBM 2009), Jeju Island, South Korea, 8 November 2009 - 10 November 2009, 115-118. (2009)
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Detecting and grounding terms in biomedical literature
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In: Kaljurand, K; Rinaldi, Fabio; Kappeler, T; Schneider, G (2009). Detecting and grounding terms in biomedical literature. Advances in Computational Linguistics, 41:15-26. (2009)
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OntoGene in BioCreative II
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In: Rinaldi, Fabio; Kappeler, T; Kaljurand, K; Schneider, G; Klenner, M; Clematide, S; Hess, M; von Allmen, J M; Parisot, P; Romacker, M; Vachon, T (2008). OntoGene in BioCreative II. Genome Biology, 9(Suppl 2):S13. (2008)
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Tools for detection of protein interactions in biomedical literature
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In: Rinaldi, Fabio; Schneider, G; Kaljurand, K (2008). Tools for detection of protein interactions in biomedical literature. In: Genomes to Systems Conference 2008, Manchester, UK, 17 March 2008 - 19 March 2008. (2008)
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Mining of functional relations between genes and proteins over biomedical scientific literature using a deep-linguistic approach ...
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Extended discourse representation structures in attempto controlled English
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In: Fuchs, N E; Hoefler, S; Kaljurand, K; Kuhn, T; Schneider, G; Schwertel, U (2006). Extended discourse representation structures in attempto controlled English. ifi Technical Reports ifi2006.07, University of Zurich. (2006)
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An environment for relation mining over richly annotated corpora: the case of GENIA
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In: Rinaldi, Fabio; Schneider, G; Kaljurand, K; Hess, M; Romacker, M (2006). An environment for relation mining over richly annotated corpora: the case of GENIA. BMC Bioinformatics, 7(Suppl 3):S3. (2006)
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Discourse representation structures for ACE 5
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In: Fuchs, N E; Hoefler, S; Kaljurand, K; Kuhn, T; Schneider, G; Schwertel, U (2006). Discourse representation structures for ACE 5. ifi Technical Reports ifi2006.10, University of Zurich. (2006)
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Extended discourse representation structures in attempto controlled English
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In: Fuchs, N E; Hoefler, S; Kaljurand, K; Schneider, G; Schwertel, U (2005). Extended discourse representation structures in attempto controlled English. ifi Technical Reports ifi-2005.8, University of Zurich. (2005)
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Abstract:
This technical report describes the extended discourse representation structures (DRS) derived from texts written in version 4 of Attempto Controlled English (ACE 4). The need to extend the standard DRS representation arose from the two requirements to adequately represent plural nouns introduced into ACE 4, and to perform logical deductions on ACE texts. An extended representation structure contains both the original ACE 4 text and its translation into a discourse representation structure – a closed logical formula using a syntactical variant of the language of first-order logic. The discourse representation structure itself uses a reified, or ‘flat’ notation, meaning that its atomic conditions are built from a small number of predefined predicates that take constants standing for words of the ACE text as their arguments. Furthermore, each logical atom gets an index relating it to the sentence of the ACE text from which it was derived.
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Keyword:
000 Computer science; 410 Linguistics; Institute of Computational Linguistics; knowledge & systems
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URL: https://www.zora.uzh.ch/id/eprint/62056/1/drs_report.pdf http://attempto.ifi.uzh.ch/site/pubs/papers/drs_report.pdf https://doi.org/10.5167/uzh-62056 https://www.zora.uzh.ch/id/eprint/62056/
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