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Diffstat (limited to 'test/data/enm/study-FCSV-8f5cd32a-3350-300b-91d0-87000ee5d7ee.json')
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1 files changed, 169 insertions, 0 deletions
diff --git a/test/data/enm/study-FCSV-8f5cd32a-3350-300b-91d0-87000ee5d7ee.json b/test/data/enm/study-FCSV-8f5cd32a-3350-300b-91d0-87000ee5d7ee.json new file mode 100644 index 0000000..06c62b0 --- /dev/null +++ b/test/data/enm/study-FCSV-8f5cd32a-3350-300b-91d0-87000ee5d7ee.json @@ -0,0 +1,169 @@ +{ + "uuid": "FCSV-f110f33c-d64f-3a2d-a037-15ac30c1c6c1", + "owner": { + "substance": { + "uuid": "FCSV-8f5cd32a-3350-300b-91d0-87000ee5d7ee" + }, + "company": { + "uuid": "FCSV-319611c6-e7da-3977-a5ac-eb74d49a4319", + "name": "Protein Corona Fingerprinting Predicts the Cellular Interaction of Gold and Silver Nanoparticles.csv" + } + }, + "citation": { + "title": "Protein Corona Fingerprinting Predicts the Cellular Interaction of Gold and Silver Nanoparticles.csv", + "year": "2014", + "owner": null + }, + "protocol": { + "topcategory": "P-CHEM", + "category": { + "code": "PC_GRANULOMETRY_SECTION", + "term": "http://purl.obolibrary.org/obo/CHMO_0002119", + "title": "4.5 Particle size distribution (Granulometry)" + }, + "endpoint": "DLS", + "guideline": [ + "doi: 10.1021/nn406018q" + ] + }, + "parameters": { + "DATA_GATHERING_INSTRUMENTS": "ZetaSizer Nano ZS (Malvern Instruments)", + "Type of method": "DLS", + "testmat_form": null + }, + "reliability": { + "r_isRobustStudy": "false", + "r_isUsedforClassification": "false", + "r_isUsedforMSDS": "false", + "r_purposeFlag": null, + "r_studyResultType": "experimental result", + "r_value": null + }, + "interpretation": { + "result": null + }, + "effects": [ + { + "endpoint": "Z-Average Hydrodynamic Diameter", + "conditions": { + "MEDIUM": " ", + "PHRASEOTHER_PERCENTILE": null, + "Remark": null, + "SEQ_NUM": null + }, + "result": { + "unit": "nm", + "loQualifier": "mean", + "loValue": 30.95, + "errQualifier": "sd", + "errorValue": 3 + } + }, + { + "endpoint": "Z-Average Hydrodynamic Diameter", + "conditions": { + "MEDIUM": "Human serum (Sigma #H4522)", + "PHRASEOTHER_PERCENTILE": null, + "Remark": null, + "SEQ_NUM": null + }, + "result": { + "unit": "nm", + "loQualifier": "mean", + "loValue": 90.06, + "errQualifier": "sd", + "errorValue": 7.28 + } + }, + { + "endpoint": "Volume Mean Hydrodynamic Diameter", + "conditions": { + "MEDIUM": " ", + "PHRASEOTHER_PERCENTILE": null, + "Remark": null, + "SEQ_NUM": null + }, + "result": { + "unit": "nm", + "loValue": 11.76, + "errQualifier": "sd", + "errorValue": 9.37 + } + }, + { + "endpoint": "Volume Mean Hydrodynamic Diameter", + "conditions": { + "MEDIUM": "Human serum (Sigma #H4522)", + "PHRASEOTHER_PERCENTILE": null, + "Remark": null, + "SEQ_NUM": null + }, + "result": { + "unit": "nm", + "loValue": 67.79, + "errQualifier": "sd", + "errorValue": 33.33 + } + }, + { + "endpoint": "Number Mean Hydrodynamic Diameter", + "conditions": { + "MEDIUM": " ", + "PHRASEOTHER_PERCENTILE": null, + "Remark": null, + "SEQ_NUM": null + }, + "result": { + "unit": "nm", + "loValue": 47.5, + "errQualifier": "sd", + "errorValue": 8.69 + } + }, + { + "endpoint": "Number Mean Hydrodynamic Diameter", + "conditions": { + "MEDIUM": "Human serum (Sigma #H4522)", + "PHRASEOTHER_PERCENTILE": null, + "Remark": null, + "SEQ_NUM": null + }, + "result": { + "unit": "nm", + "loValue": 53.87, + "errQualifier": "sd", + "errorValue": 24.74 + } + }, + { + "endpoint": "Intensity Mean Hydrodynamic Diameter", + "conditions": { + "MEDIUM": " ", + "PHRASEOTHER_PERCENTILE": null, + "Remark": null, + "SEQ_NUM": null + }, + "result": { + "unit": "nm", + "loValue": 47.5, + "errQualifier": "sd", + "errorValue": 4.13 + } + }, + { + "endpoint": "Intensity Mean Hydrodynamic Diameter", + "conditions": { + "MEDIUM": "Human serum (Sigma #H4522)", + "PHRASEOTHER_PERCENTILE": null, + "Remark": null, + "SEQ_NUM": null + }, + "result": { + "unit": "nm", + "loValue": 106.7, + "errQualifier": "sd", + "errorValue": 16.5 + } + } + ] +} |