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diff --git a/test/data/enm/study-FCSV-7cd49681-3606-306c-b7a5-bb74b11c5f03.json b/test/data/enm/study-FCSV-7cd49681-3606-306c-b7a5-bb74b11c5f03.json
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--- a/test/data/enm/study-FCSV-7cd49681-3606-306c-b7a5-bb74b11c5f03.json
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-{
- "uuid": "FCSV-7cd49681-3606-306c-b7a5-bb74b11c5f03",
- "owner": {
- "substance": {
- "uuid": "FCSV-93c29ebf-e80e-354c-893f-923385c72858"
- },
- "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": 49.22,
- "errQualifier": "sd",
- "errorValue": 35.05
- }
- },
- {
- "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": 61.86,
- "errQualifier": "sd",
- "errorValue": 9.35
- }
- },
- {
- "endpoint": "Volume Mean Hydrodynamic Diameter",
- "conditions": {
- "MEDIUM": " ",
- "PHRASEOTHER_PERCENTILE": null,
- "Remark": null,
- "SEQ_NUM": null
- },
- "result": {
- "unit": "nm",
- "loValue": 29.15,
- "errQualifier": "sd",
- "errorValue": 14.6
- }
- },
- {
- "endpoint": "Volume Mean Hydrodynamic Diameter",
- "conditions": {
- "MEDIUM": "Human serum (Sigma #H4522)",
- "PHRASEOTHER_PERCENTILE": null,
- "Remark": null,
- "SEQ_NUM": null
- },
- "result": {
- "unit": "nm",
- "loValue": 28.51,
- "errQualifier": "sd",
- "errorValue": 9.27
- }
- },
- {
- "endpoint": "Number Mean Hydrodynamic Diameter",
- "conditions": {
- "MEDIUM": " ",
- "PHRASEOTHER_PERCENTILE": null,
- "Remark": null,
- "SEQ_NUM": null
- },
- "result": {
- "unit": "nm",
- "loValue": 72.5,
- "errQualifier": "sd",
- "errorValue": 2.74
- }
- },
- {
- "endpoint": "Number Mean Hydrodynamic Diameter",
- "conditions": {
- "MEDIUM": "Human serum (Sigma #H4522)",
- "PHRASEOTHER_PERCENTILE": null,
- "Remark": null,
- "SEQ_NUM": null
- },
- "result": {
- "unit": "nm",
- "loValue": 21.05,
- "errQualifier": "sd",
- "errorValue": 3.79
- }
- },
- {
- "endpoint": "Intensity Mean Hydrodynamic Diameter",
- "conditions": {
- "MEDIUM": " ",
- "PHRASEOTHER_PERCENTILE": null,
- "Remark": null,
- "SEQ_NUM": null
- },
- "result": {
- "unit": "nm",
- "loValue": 72.5,
- "errQualifier": "sd",
- "errorValue": 26.69
- }
- },
- {
- "endpoint": "Intensity Mean Hydrodynamic Diameter",
- "conditions": {
- "MEDIUM": "Human serum (Sigma #H4522)",
- "PHRASEOTHER_PERCENTILE": null,
- "Remark": null,
- "SEQ_NUM": null
- },
- "result": {
- "unit": "nm",
- "loValue": 83.75,
- "errQualifier": "sd",
- "errorValue": 5.69
- }
- }
- ]
-}