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1,561 results for “institution”
FIGURE 27. Brachirus sayaensis. Holotype ZIN 49162 in Annotated catalogue of type specimens of flatfishes (Osteichthyes: Pleuronectiformes) in the Zoological Institute, St. Petersburg, Russia
FIGURE 27. Brachirus sayaensis. Holotype ZIN 49162, photo—(A) and radiograph (B), paratype ZIN 49163 (C).
FIGURE 8. Psettina multisquamea. Holotype ZIN 45661 in Annotated catalogue of type specimens of flatfishes (Osteichthyes: Pleuronectiformes) in the Zoological Institute, St. Petersburg, Russia
FIGURE 8. Psettina multisquamea. Holotype ZIN 45661, photo—(A) and radiograph (B); paratype ZIN 45662 (C).
FIGURE 3. Chascanopsetta elski. Holotype ZIN 49164 in Annotated catalogue of type specimens of flatfishes (Osteichthyes: Pleuronectiformes) in the Zoological Institute, St. Petersburg, Russia
FIGURE 3. Chascanopsetta elski. Holotype ZIN 49164, photo—(A) and radiograph (B), paratype ZIN 49165 (C).
FIGURE 21. Achiropsetta slavae. Holotype ZIN 36110 in Annotated catalogue of type specimens of flatfishes (Osteichthyes: Pleuronectiformes) in the Zoological Institute, St. Petersburg, Russia
FIGURE 21. Achiropsetta slavae. Holotype ZIN 36110, photo—(A) and radiograph (B); paratypes ZIN 36112, photo—(C) and radiograph (D); ZIN 36113 (E); ZIN 36114 (F).
FIGURE 4. Chascanopsetta megagnatha. Holotype ZIN 48686 in Annotated catalogue of type specimens of flatfishes (Osteichthyes: Pleuronectiformes) in the Zoological Institute, St. Petersburg, Russia
FIGURE 4. Chascanopsetta megagnatha. Holotype ZIN 48686, photo—(A) and radiograph (B), paratypes ZIN 48687 (C).
FIGURE 20. Achiropsetta heterolepis. Holotype ZIN 48664 in Annotated catalogue of type specimens of flatfishes (Osteichthyes: Pleuronectiformes) in the Zoological Institute, St. Petersburg, Russia
FIGURE 20. Achiropsetta heterolepis. Holotype ZIN 48664, photo—(A) and radiograph (B); paratypes ZIN 48193 (C); ZIN 48195 (D).
FIGURE 11. Microstomus stelleri. Syntypes ZIN 12351 in Annotated catalogue of type specimens of flatfishes (Osteichthyes: Pleuronectiformes) in the Zoological Institute, St. Petersburg, Russia
FIGURE 11. Microstomus stelleri. Syntypes ZIN 12351, photo—(A) and radiograph (B); ZIN 12347 (C); ZIN 12350 (D); ZIN 12352 (E); ZIN 13069 (F).
FIGURE 15. Hippoglossoides herzensteini. Syntypes ZIN 12362 in Annotated catalogue of type specimens of flatfishes (Osteichthyes: Pleuronectiformes) in the Zoological Institute, St. Petersburg, Russia
FIGURE 15. Hippoglossoides herzensteini. Syntypes ZIN 12362, photo—(A) and radiograph (B); ZIN 12361 (C), ZIN 12363 (D), ZIN 12364 (E), ZIN 12365 (F).
FIGURE 17. Pleuronectes japonicus. Syntypes ZIN 8730 in Annotated catalogue of type specimens of flatfishes (Osteichthyes: Pleuronectiformes) in the Zoological Institute, St. Petersburg, Russia
FIGURE 17. Pleuronectes japonicus. Syntypes ZIN 8730, photo—(A) and radiograph (B); ZIN 1583 (C); ZIN 6163 (D).
FIGURE 7. Parabothus rotundifrons. Holotype ZIN 49152 in Annotated catalogue of type specimens of flatfishes (Osteichthyes: Pleuronectiformes) in the Zoological Institute, St. Petersburg, Russia
FIGURE 7. Parabothus rotundifrons. Holotype ZIN 49152, photo—(A) and radiograph (B), paratypes ZIN 49153, photo—(C) and radiograph (D); ZIN 49154 (E), ZIN 49155 (F).
Figs 5–6 in New findings of Cryptophagidae (Coleoptera: Clavicornia) from Baltic amber in the unbiased collection of the Paleontological Institute of RAS
Figs 5–6. Photo of a new specimen of A. groehni from Baltic amber: 5 — dorsal view; 6 — dorsolateral view. Рис. 5–6. ВнеШний вид A. groehni иЗ балтийского ЯнтарЯ: 5 — сверху; 6 — сверху и сбоку.
Figs 1–4 in New findings of Cryptophagidae (Coleoptera: Clavicornia) from Baltic amber in the unbiased collection of the Paleontological Institute of RAS
Figs 1–4. Photo of a new specimen of M. sarnensis from Baltic amber: 1 — dorsal view; 2 — lateral view; 3 — ventral view; 4 — head and pronotum, ventrolateral view. Рис. 1–4. ВнеШний вид M. sarnensis иЗ балтийского ЯнтарЯ: 1 — габитус, сверху; 2 — габитус, сбоку; 3 — габитус,сниЗу; 4 — голова и переднеспинка, сниЗу и сбоку.
Self-assessment tool for Institutional Changes and Impact (RFO)
<p>As part of T8.2, which aims to investigate the institutional pathways that help embed Citizen Science (CS) in the European research landscape, Université Paris Cité (Learning Planet Institut) developed a self-assessment tool. This tool was structured around the EU-funded TIME4CS framework, which identified four key intervention areas:</p> <ol> <li><strong>Research </strong></li> <li><strong>Education & Awareness </strong></li> <li><strong>Support Resources & Infrastructure </strong></li> <li><strong>Policy & Assessment </strong></li> </ol> <p>These areas are integral to the functioning of universities and research institutes, which were the primary audience for the <a href="../records/10405577">Stock-taking" institutional support for Citizen Science in Research Performing Organisations (RPOs)</a> developed by the TIME4CS project.</p> <p>The questions in this self-assessment tool were specifically tailored for Research Funding Organisations (RFOs) to evaluate their integration of citizen science at an institutional level. The attached Excel file is the self-assessment tool, designed to generate immediate results. These results offer an overview of the organisation's integration across the four intervention areas mentioned above.</p>
Women Empowerment through Reservation in Panchayati Raj Institutions: Evidence from Punjab, Haryana and Himachal Pradesh in Post-COVID-19
<p>Data Set - Project Women Empowerment through Reservation in Panchayati Raj Institutions: Evidence from Punjab, Haryana and Himachal Pradesh in Post-COVID-19 funded by Mahatma Gandhi National Council of Rural Education in Ministry of Education, Government of India, Hyderabad </p> <p>Grant Ref. No. F.No. PR-MJRP/2021-22/<span>MGNCRE</span></p>
Data from: Incidence of cancer-associated thromboembolism in Japanese gastric and colorectal cancer patients receiving chemotherapy: a single-institutional retrospective cohort analysis (Sapporo CAT study)
Objective: Few data regarding the incidence of cancer-associated thromboembolism (TE) are available for Asian populations. We investigated the incidence of TE (TEi) and its risk factors among gastric and colorectal cancer (GCC) patients who received chemotherapy in a daily practice setting. Design: A retrospective cohort study. Setting: A single institutional study that used data from Sapporo City General Hospital, Japan, on patients treated between January 2008 and May 2015. Participants: Five hundred Japanese GCC patients who started chemotherapy from January 2008 to May 2015. Primary and secondary outcome measures: TE was diagnosed by reviewing all the reports of contrast-enhanced computed tomography (CT) performed during the follow-up period. All types of thrombosis detected by CT or additional imaging tests, such as venous TE, arterial TE, and cerebral infarction, were defined as TE. Medical records of all identified patients were reviewed and potential risk factors for TE including clinicopathological backgrounds were collected. We defined the following patients as 'active cancer'; patients with unresectable advanced GCC, cancer recurrence during or after completing adjuvant (Adj) chemotherapy, and/or presence of other malignant tumours. Results: Of the 500 patients, 70 patients (14.0%) developed TE during the follow-up period. TEi was 9.2% and 17.3% in gastric and colorectal cancer patients, 18.1% and 3.5% in active and non-active cancer patients, and 24.0% and 12.9% in multiple and single primary, respectively. Multivariate logistic regression analysis showed that colorectal cancer (odds ratio [OR], 2.371; 95% confidence interval [CI], 1.328 to 4.233), active cancer (OR 7.593; 95% CI 2.950 to 19.543), and multiple primary (OR 2.527; 95% CI 1.189 to 5.370) were independently associated with TEi. Conclusion: TEi was 14.0% among Japanese GCC patients received chemotherapy, and was significantly higher among patients with colorectal cancer, active cancer, and multiple primary than among those with gastric cancer, non-active cancer, and single primary, respectively.
PLATE 4. Figs 1, 2 in An annotated catalog of types of Neotropical Pierinae (Lepidoptera: Pieridae) in the collection of the National Museum of Natural History, Smithsonian Institution, Washington DC
PLATE 4. Figs 1, 2: Catasticta philone patinoi Eitschberger & Racheli, 1998 [Catasticta philone variabilis Röber, 1924], holotype ♂; Figs 3, 4: Same, labels; Figs 5, 6: Catasticta chelidonis taminoides Eitschberger & Racheli, 1998, holotype ♂; Figs 7, 8: Same, labels.
PLATE 1. Fig. 1 in An annotated catalog of types of Neotropical Pierinae (Lepidoptera: Pieridae) in the collection of the National Museum of Natural History, Smithsonian Institution, Washington DC
PLATE 1. Fig. 1: Part of the building of the National Museum of Natural History, Smithsonian Institution, facing Madison Drive, Washington DC; Fig. 2: Cabinets in the Department of Entomology on the 5th floor, East Wing; Fig. 3: Drawers of the "type" collection.
PLATE 5. Figs 1, 2 in An annotated catalog of types of Neotropical Pierinae (Lepidoptera: Pieridae) in the collection of the National Museum of Natural History, Smithsonian Institution, Washington DC
PLATE 5. Figs 1, 2: Andina coropunae Dyar, 1913 [Piercolias coropunae (Dyar, 1913)], holotype ♂; Fig. 3: Same, labels; Figs 4, 5: Infraphulia madeleinea Field & Herrera, 1977, holotype ♂; Fig. 6: Same, labels.
PLATE 8. Figs 1, 2 in An annotated catalog of types of Neotropical Pierinae (Lepidoptera: Pieridae) in the collection of the National Museum of Natural History, Smithsonian Institution, Washington DC
PLATE 8. Figs 1, 2: Pieris limona Schaus, 1913 [Ganyra phaloe limona (Schaus, 1913)], lectotype ♂, here designated; Fig. 3: Same, labels; Figs 4, 5: Pieris sublineata Schaus, 1902 [Ganyra phaloe sublineata (Schaus, 1902)], lectotype ♂, here designated; Fig. 6: Same, labels.
PLATE 3. Figs 1, 2 in An annotated catalog of types of Neotropical Pierinae (Lepidoptera: Pieridae) in the collection of the National Museum of Natural History, Smithsonian Institution, Washington DC
PLATE 3. Figs 1, 2: Hesperocharis paranensis Schaus, 1898, lectotype ♂, here designated; Fig. 3: Same, labels; Figs 4, 5: Archonias intermedia Schaus, 1913 [Charonias eurytele dismorphites (Butler, 1872)], lectotype ♂, here designated; Fig. 6: Same, labels; Figs 7, 8: Leodonta marginata Schaus, 1902 [Leodonta dysoni (Doubleday, 1847)], holotype ♀; Fig. 9: Same, labels.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.