PubMed:28539663
Annnotations
GoldHamster
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 23-30 | D004194 | denotes | disease |
T2 | 23-30 | D004194 | denotes | disease |
T3 | 131-140 | D058751 | denotes | livestock |
T4 | 562-569 | D004194 | denotes | disease |
T5 | 562-569 | D004194 | denotes | disease |
T6 | 673-682 | D007239 | denotes | infection |
T7 | 673-682 | D007239 | denotes | infection |
T8 | 868-874 | 9913 | denotes | cattle |
T9 | 868-874 | D002417 | denotes | cattle |
T10 | 1260-1268 | SO:0000057 | denotes | operator |
T11 | 1445-1454 | D058751 | denotes | livestock |
PubMed_ArguminSci
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 108-218 | DRI_Background | denotes | Infectious diseases in livestock can be transmitted through fomites: objects able to convey infectious agents. |
T2 | 219-411 | DRI_Background | denotes | Between-farm spread of infections through fomites is mostly due to indirect contacts generated by on-farm visits of personnel that can carry pathogens on their clothes, equipment, or vehicles. |
T3 | 412-537 | DRI_Background | denotes | However, data on farm visitors are often difficult to obtain because of the heterogeneity of their nature and privacy issues. |
T4 | 538-690 | DRI_Background | denotes | Thus, models simulating disease spread between farms usually rely on strong assumptions about the contribution of indirect contacts on infection spread. |
T5 | 691-890 | DRI_Approach | denotes | By using data on veterinarian on-farm visits in a dairy farm system, we built a simple simulation model to assess the role of indirect contacts on epidemic dynamics compared to cattle movements (i.e. |
T6 | 909-1121 | DRI_Outcome | denotes | We showed that including in the simulation model only specific subsets of the information available on indirect contacts could lead to outputs widely different from those obtained with the full-information model. |
T7 | 1122-1313 | DRI_Approach | denotes | Then, we provided a simple preferential attachment algorithm based on the probability to observe consecutive on-farm visits from the same operator that allows overcoming the information gaps. |
T8 | 1314-1464 | DRI_Outcome | denotes | Our results suggest the importance of detailed data and a deeper understanding of visit dynamics for the prevention and control of livestock diseases. |
Goldhamster2_Cellosaurus
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 739-740 | CVCL_6479|Finite_cell_line|Mus musculus | denotes | a |
T2 | 760-762 | CVCL_5M23|Cancer_cell_line|Mesocricetus auratus | denotes | we |
T3 | 769-770 | CVCL_6479|Finite_cell_line|Mus musculus | denotes | a |
T4 | 909-911 | CVCL_5M23|Cancer_cell_line|Mesocricetus auratus | denotes | We |
T5 | 1128-1130 | CVCL_5M23|Cancer_cell_line|Mesocricetus auratus | denotes | we |
T6 | 1140-1141 | CVCL_6479|Finite_cell_line|Mus musculus | denotes | a |
T7 | 1370-1371 | CVCL_6479|Finite_cell_line|Mus musculus | denotes | a |
mondo_disease
Id | Subject | Object | Predicate | Lexical cue | mondo_id |
---|---|---|---|---|---|
T1 | 108-118 | Disease | denotes | Infectious | http://purl.obolibrary.org/obo/MONDO_0005550 |
T2 | 200-210 | Disease | denotes | infectious | http://purl.obolibrary.org/obo/MONDO_0005550 |
T3 | 242-252 | Disease | denotes | infections | http://purl.obolibrary.org/obo/MONDO_0005550 |
T4 | 673-682 | Disease | denotes | infection | http://purl.obolibrary.org/obo/MONDO_0005550 |
Anatomy-UBERON
Id | Subject | Object | Predicate | Lexical cue | uberon_id |
---|---|---|---|---|---|
T1 | 102-106 | Body_part | denotes | back | http://purl.obolibrary.org/obo/UBERON_0001137 |