CORD-19:1fe201bcf1ed66856f693846cb0d07ce48051ec1 / 25381-25855
Annnotations
CORD-19-Sentences
{"project":"CORD-19-Sentences","denotations":[{"id":"TextSentencer_T146","span":{"begin":0,"end":474},"obj":"Sentence"},{"id":"TextSentencer_T146","span":{"begin":0,"end":474},"obj":"Sentence"}],"namespaces":[{"prefix":"_base","uri":"http://pubannotation.org/ontology/tao.owl#"}],"text":"Toxicogenomic profiles of alachlor exposure in rat olfactory mucosa (Genter et al., 2002) and dimethylarsenic (DMA) exposure in human cultured bladder cells and rat bladder epithelium (Sen et al., 2005 ; US EPA, 2005) have also Table 3 Comparison of CBNP profiles with lung disease models using functional analysis for genes in common (grey) and genes unique to CBNP (black). provided useful information for two final assessments of acetochlor and arsenicals (US EPA, 2004 ."}
CORD-19_Custom_license_subset
{"project":"CORD-19_Custom_license_subset","denotations":[{"id":"T146","span":{"begin":0,"end":474},"obj":"Sentence"}],"text":"Toxicogenomic profiles of alachlor exposure in rat olfactory mucosa (Genter et al., 2002) and dimethylarsenic (DMA) exposure in human cultured bladder cells and rat bladder epithelium (Sen et al., 2005 ; US EPA, 2005) have also Table 3 Comparison of CBNP profiles with lung disease models using functional analysis for genes in common (grey) and genes unique to CBNP (black). provided useful information for two final assessments of acetochlor and arsenicals (US EPA, 2004 ."}
CORD-19-PD-MONDO
{"project":"CORD-19-PD-MONDO","denotations":[{"id":"T129","span":{"begin":269,"end":281},"obj":"Disease"}],"attributes":[{"id":"A129","pred":"mondo_id","subj":"T129","obj":"http://purl.obolibrary.org/obo/MONDO_0005275"}],"text":"Toxicogenomic profiles of alachlor exposure in rat olfactory mucosa (Genter et al., 2002) and dimethylarsenic (DMA) exposure in human cultured bladder cells and rat bladder epithelium (Sen et al., 2005 ; US EPA, 2005) have also Table 3 Comparison of CBNP profiles with lung disease models using functional analysis for genes in common (grey) and genes unique to CBNP (black). provided useful information for two final assessments of acetochlor and arsenicals (US EPA, 2004 ."}
CORD-19-PD-HP
{"project":"CORD-19-PD-HP","denotations":[{"id":"T18","span":{"begin":269,"end":281},"obj":"Phenotype"}],"attributes":[{"id":"A18","pred":"hp_id","subj":"T18","obj":"http://purl.obolibrary.org/obo/HP_0002088"}],"text":"Toxicogenomic profiles of alachlor exposure in rat olfactory mucosa (Genter et al., 2002) and dimethylarsenic (DMA) exposure in human cultured bladder cells and rat bladder epithelium (Sen et al., 2005 ; US EPA, 2005) have also Table 3 Comparison of CBNP profiles with lung disease models using functional analysis for genes in common (grey) and genes unique to CBNP (black). provided useful information for two final assessments of acetochlor and arsenicals (US EPA, 2004 ."}
CORD-19-PD-UBERON
{"project":"CORD-19-PD-UBERON","denotations":[{"id":"T26","span":{"begin":61,"end":67},"obj":"Body_part"},{"id":"T27","span":{"begin":143,"end":150},"obj":"Body_part"},{"id":"T28","span":{"begin":165,"end":172},"obj":"Body_part"},{"id":"T29","span":{"begin":173,"end":183},"obj":"Body_part"},{"id":"T30","span":{"begin":269,"end":273},"obj":"Body_part"}],"attributes":[{"id":"A26","pred":"uberon_id","subj":"T26","obj":"http://purl.obolibrary.org/obo/UBERON_0000344"},{"id":"A27","pred":"uberon_id","subj":"T27","obj":"http://purl.obolibrary.org/obo/UBERON_0001255"},{"id":"A28","pred":"uberon_id","subj":"T28","obj":"http://purl.obolibrary.org/obo/UBERON_0001255"},{"id":"A29","pred":"uberon_id","subj":"T29","obj":"http://purl.obolibrary.org/obo/UBERON_0000483"},{"id":"A30","pred":"uberon_id","subj":"T30","obj":"http://purl.obolibrary.org/obo/UBERON_0002048"}],"text":"Toxicogenomic profiles of alachlor exposure in rat olfactory mucosa (Genter et al., 2002) and dimethylarsenic (DMA) exposure in human cultured bladder cells and rat bladder epithelium (Sen et al., 2005 ; US EPA, 2005) have also Table 3 Comparison of CBNP profiles with lung disease models using functional analysis for genes in common (grey) and genes unique to CBNP (black). provided useful information for two final assessments of acetochlor and arsenicals (US EPA, 2004 ."}