PMC:7417788 / 2018-2317 JSONTXT

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    LitCovid-PMC-OGER-BB

    {"project":"LitCovid-PMC-OGER-BB","denotations":[{"id":"T50","span":{"begin":35,"end":41},"obj":"UBERON:0002405;CL:0000738"},{"id":"T51","span":{"begin":42,"end":47},"obj":"CL:0000738"},{"id":"T52","span":{"begin":53,"end":60},"obj":"CL:0000084"},{"id":"T53","span":{"begin":62,"end":65},"obj":"CL:0002488"},{"id":"T54","span":{"begin":111,"end":117},"obj":"NCBITaxon:9606"},{"id":"T55","span":{"begin":195,"end":201},"obj":"GO:0007613"},{"id":"T56","span":{"begin":254,"end":263},"obj":"CL:0000576"},{"id":"T57","span":{"begin":290,"end":296},"obj":"UBERON:0001969"},{"id":"T20265","span":{"begin":35,"end":41},"obj":"UBERON:0002405;CL:0000738"},{"id":"T37985","span":{"begin":42,"end":47},"obj":"CL:0000738"},{"id":"T77817","span":{"begin":53,"end":60},"obj":"CL:0000084"},{"id":"T5061","span":{"begin":62,"end":65},"obj":"CL:0002488"},{"id":"T31497","span":{"begin":111,"end":117},"obj":"NCBITaxon:9606"},{"id":"T61684","span":{"begin":195,"end":201},"obj":"GO:0007613"},{"id":"T68156","span":{"begin":254,"end":263},"obj":"CL:0000576"},{"id":"T84710","span":{"begin":290,"end":296},"obj":"UBERON:0001969"}],"text":"and functional declines of diverse immune cells. For T cells (TCs), the high frequency of naive cells in young humans progressively decreases along with the accumulation of highly differentiated memory cells (Hakim and Gress, 2007), whereas nonclassical monocytes (MCs) with high levels of plasma tu"}

    LitCovid-PD-FMA-UBERON

    {"project":"LitCovid-PD-FMA-UBERON","denotations":[{"id":"T22","span":{"begin":42,"end":47},"obj":"Body_part"},{"id":"T23","span":{"begin":55,"end":60},"obj":"Body_part"},{"id":"T24","span":{"begin":96,"end":101},"obj":"Body_part"},{"id":"T25","span":{"begin":202,"end":207},"obj":"Body_part"},{"id":"T26","span":{"begin":254,"end":263},"obj":"Body_part"},{"id":"T27","span":{"begin":290,"end":296},"obj":"Body_part"}],"attributes":[{"id":"A22","pred":"fma_id","subj":"T22","obj":"http://purl.org/sig/ont/fma/fma68646"},{"id":"A23","pred":"fma_id","subj":"T23","obj":"http://purl.org/sig/ont/fma/fma68646"},{"id":"A24","pred":"fma_id","subj":"T24","obj":"http://purl.org/sig/ont/fma/fma68646"},{"id":"A25","pred":"fma_id","subj":"T25","obj":"http://purl.org/sig/ont/fma/fma68646"},{"id":"A26","pred":"fma_id","subj":"T26","obj":"http://purl.org/sig/ont/fma/fma62864"},{"id":"A27","pred":"fma_id","subj":"T27","obj":"http://purl.org/sig/ont/fma/fma62970"}],"text":"and functional declines of diverse immune cells. For T cells (TCs), the high frequency of naive cells in young humans progressively decreases along with the accumulation of highly differentiated memory cells (Hakim and Gress, 2007), whereas nonclassical monocytes (MCs) with high levels of plasma tu"}

    LitCovid-PD-CLO

    {"project":"LitCovid-PD-CLO","denotations":[{"id":"T31","span":{"begin":42,"end":47},"obj":"http://purl.obolibrary.org/obo/GO_0005623"},{"id":"T32","span":{"begin":53,"end":60},"obj":"http://purl.obolibrary.org/obo/CL_0000084"},{"id":"T33","span":{"begin":62,"end":65},"obj":"http://purl.obolibrary.org/obo/CLO_0050938"},{"id":"T34","span":{"begin":62,"end":65},"obj":"http://purl.obolibrary.org/obo/CL_0000084"},{"id":"T35","span":{"begin":96,"end":101},"obj":"http://purl.obolibrary.org/obo/GO_0005623"},{"id":"T36","span":{"begin":111,"end":117},"obj":"http://purl.obolibrary.org/obo/NCBITaxon_9606"},{"id":"T37","span":{"begin":202,"end":207},"obj":"http://purl.obolibrary.org/obo/GO_0005623"},{"id":"T38","span":{"begin":254,"end":263},"obj":"http://purl.obolibrary.org/obo/CL_0000576"},{"id":"T39","span":{"begin":265,"end":268},"obj":"http://purl.obolibrary.org/obo/CL_0000576"},{"id":"T40","span":{"begin":290,"end":296},"obj":"http://purl.obolibrary.org/obo/UBERON_0001969"}],"text":"and functional declines of diverse immune cells. For T cells (TCs), the high frequency of naive cells in young humans progressively decreases along with the accumulation of highly differentiated memory cells (Hakim and Gress, 2007), whereas nonclassical monocytes (MCs) with high levels of plasma tu"}

    LitCovid-PD-GO-BP

    {"project":"LitCovid-PD-GO-BP","denotations":[{"id":"T12","span":{"begin":195,"end":201},"obj":"http://purl.obolibrary.org/obo/GO_0007613"}],"text":"and functional declines of diverse immune cells. For T cells (TCs), the high frequency of naive cells in young humans progressively decreases along with the accumulation of highly differentiated memory cells (Hakim and Gress, 2007), whereas nonclassical monocytes (MCs) with high levels of plasma tu"}

    2_test

    {"project":"2_test","denotations":[{"id":"32780218-29706550-132718678","span":{"begin":226,"end":230},"obj":"29706550"}],"text":"and functional declines of diverse immune cells. For T cells (TCs), the high frequency of naive cells in young humans progressively decreases along with the accumulation of highly differentiated memory cells (Hakim and Gress, 2007), whereas nonclassical monocytes (MCs) with high levels of plasma tu"}

    LitCovid-PubTator

    {"project":"LitCovid-PubTator","denotations":[{"id":"30","span":{"begin":111,"end":117},"obj":"Species"}],"attributes":[{"id":"A30","pred":"tao:has_database_id","subj":"30","obj":"Tax:9606"}],"namespaces":[{"prefix":"Tax","uri":"https://www.ncbi.nlm.nih.gov/taxonomy/"},{"prefix":"MESH","uri":"https://id.nlm.nih.gov/mesh/"},{"prefix":"Gene","uri":"https://www.ncbi.nlm.nih.gov/gene/"},{"prefix":"CVCL","uri":"https://web.expasy.org/cellosaurus/CVCL_"}],"text":"and functional declines of diverse immune cells. For T cells (TCs), the high frequency of naive cells in young humans progressively decreases along with the accumulation of highly differentiated memory cells (Hakim and Gress, 2007), whereas nonclassical monocytes (MCs) with high levels of plasma tu"}