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| "author": null, | | "author": null, |
| "author_email": null, | | "author_email": null, |
| "code": "7b.b.lg", | | "code": "7b.b.lg", |
| "contributor": "NIOZ Royal Netherlands Institute for Sea Research", | | "contributor": "NIOZ Royal Netherlands Institute for Sea Research", |
| "creator_user_id": "d820c971-b48c-44f0-8f1f-0ea6fac9176f", | | "creator_user_id": "d820c971-b48c-44f0-8f1f-0ea6fac9176f", |
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| \"Peperzak\",\"orcid\":\"0000-0003-0691-2521\",\"affiliation\":\"Royal | | \"Peperzak\",\"orcid\":\"0000-0003-0691-2521\",\"affiliation\":\"Royal |
| Netherlands Institute for Sea | | Netherlands Institute for Sea |
| contactemailaddress\":\"louis.peperzak@nioz.nl\",\"formatted\":\"Louis | | contactemailaddress\":\"louis.peperzak@nioz.nl\",\"formatted\":\"Louis |
| Peperzak - Royal Netherlands Institute for Sea Research - ORCID: | | Peperzak - Royal Netherlands Institute for Sea Research - ORCID: |
| 0000-0003-0691-2521 - Corresponding Author - | | 0000-0003-0691-2521 - Corresponding Author - |
| astname\":\"Casa-Monroy\",\"orcid\":null,\"affiliation\":\"Laboratoire | | astname\":\"Casa-Monroy\",\"orcid\":null,\"affiliation\":\"Laboratoire |
| Des Grands Lacs pour les P\u00eaches et les Sciences Aquatiques Great | | Des Grands Lacs pour les P\u00eaches et les Sciences Aquatiques Great |
| Lakes Laboratory for Fisheries and Aquatic Sciences P\u00eaches et | | Lakes Laboratory for Fisheries and Aquatic Sciences P\u00eaches et |
| Oc\u00e9ans Canada/Fisheries and Oceans Canada Canada Centre for | | Oc\u00e9ans Canada/Fisheries and Oceans Canada Canada Centre for |
| Inland | | Inland |
| ters\",\"iscorrespondingauthor\":null,\"contactemailaddress\":null}]", | | ters\",\"iscorrespondingauthor\":null,\"contactemailaddress\":null}]", |
| "dataset_persistent_id": "DOI:10.25850/nioz/7b.b.lg", | | "dataset_persistent_id": "DOI:10.25850/nioz/7b.b.lg", |
| "deposit_date": "2023-11-22", | | "deposit_date": "2023-11-22", |
| "depositor": "Louis Peperzak", | | "depositor": "Louis Peperzak", |
| "distribution_date": "2023-11-22", | | "distribution_date": "2023-11-22", |
| "distributor": "Research Data Management(NIOZ Royal Netherlands | | "distributor": "Research Data Management(NIOZ Royal Netherlands |
| Institute for Sea Research)", | | Institute for Sea Research)", |
| "doi_date_published": "2024-02-22", | | "doi_date_published": "2024-02-22", |
| "groups": [], | | "groups": [], |
| "id": "5dbb8671-880d-43f2-ac16-a312fa03bb61", | | "id": "5dbb8671-880d-43f2-ac16-a312fa03bb61", |
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| "metadata_created": "2024-10-22T17:51:22.371519", | | "metadata_created": "2024-10-22T17:51:22.371519", |
| n | "metadata_modified": "2024-10-22T17:51:24.401772", | n | "metadata_modified": "2024-10-22T17:51:24.860917", |
| "name": "7bblg", | | "name": "7bblg", |
| "notes": "A recent model demonstrated that the adenosine | | "notes": "A recent model demonstrated that the adenosine |
| triphosphate (ATP) content of spherical aquatic organisms with a 10 to | | triphosphate (ATP) content of spherical aquatic organisms with a 10 to |
| 50 \u00b5m diameter is between 0.16 to 19.9 pg cell-1. The model was | | 50 \u00b5m diameter is between 0.16 to 19.9 pg cell-1. The model was |
| validated by comparing microscopy-based counts with ATP concentrations | | validated by comparing microscopy-based counts with ATP concentrations |
| n | from a commercial ATP kit. \n\nOn average, freshwater organisms | n | from a commercial ATP kit. See: |
| contain 0.33 pg ATP cell-1, have a spherical equivalent diameter (sed) | | https://doi.org/10.1016/j.marpolbul.2024.116066.\n\nOn average, |
| of 13 \u00b5m, while marine organisms have 0.89 pg ATP cell-1 and a | | freshwater organisms contain 0.33 pg ATP cell-1, have a spherical |
| sed of 18 \u00b5m. The ATP content of both organisms falls in the 0.16 | | equivalent diameter (sed) of 13 \u00b5m, while marine organisms have |
| to 19.9 pg cell-1 model range. In addition, their 13 to 18 \u00b5m | | 0.89 pg ATP cell-1 and a sed of 18 \u00b5m. The ATP content of both |
| size is within the 10 to 50 \u00b5m ballast water size range and in | | organisms falls in the 0.16 to 19.9 pg cell-1 model range. In |
| agreement with the average of 15 \u00b5m sed of a coastal plankton | | addition, their 13 to 18 \u00b5m size is within the 10 to 50 \u00b5m |
| size-distribution model. \n\nThis study concludes that the ATP-model | | ballast water size range and in agreement with the average of 15 |
| is reliable, emphasizing the need for caution when converting | | \u00b5m sed of a coastal plankton size-distribution model. \n\nThis |
| three-dimensional biomass proxies into linear cell concentrations. | | study concludes that the ATP-model is reliable, emphasizing the need |
| \n\nThe data used in the validation are accessible here.", | | for caution when converting three-dimensional biomass proxies into |
| | | linear cell concentrations. \n\nThe data used in the validation are |
| | | accessible here.", |
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| "approval_status": "approved", | | "approval_status": "approved", |
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| "name": "nioz", | | "name": "nioz", |
| "state": "active", | | "state": "active", |
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