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87 results for “Anthrax”
Safety and Pharmacokinetics Study of Anthrax Immune Globulin Intravenous (AIGIV)
ClinicalTrials.gov study NCT00845650. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Anthrax Vaccine Clinical Trial to Assess Dose Reduction and Route Change
ClinicalTrials.gov study NCT00119067. IPD Sharing: NO. Countries: 1. Publications: 5.
Safety, Tolerability and Immunogenicity Study of AV7909 Anthrax Vaccine in Healthy Adults
ClinicalTrials.gov study NCT01263691. IPD Sharing: Not stated. Countries: 1. Publications: 1.
VELOCITY: An Anthrax Vaccine Clinical Study
ClinicalTrials.gov study NCT03877926. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Data from: Comparative knowledge, attitudes, and practices regarding anthrax, brucellosis, and rabies in three districts of northern Tanzania
Open the record for dataset details and reuse information.
Data from: Persistent anthrax as a major driver of wildlife mortality in a tropical rainforest
Anthrax is a globally significant animal disease and zoonosis. Despite this, current knowledge of anthrax ecology is largely limited to arid ecosystems, where outbreaks are most commonly reported. We reveal cryptic the dynamics of an anthrax causing agent, Bacillus cereus biovar anthracis, in a tropical rainforest with severe consequences for local wildlife communities. Using data and samples collected over three decades we found that rainforest anthrax is a persistent and widespread cause of death for a broad range of mammalian hosts. We predict that this pathogen will accelerate the decline and possibly result in the extirpation of local chimpanzee (Pan troglodytes verus) populations. Our findings illuminate the epidemiology of a cryptic pathogen and have important implications for conservation and public health.
Data from: Anthrax outbreaks in the humans-livestock and wildlife interface areas of northern Tanzania: a retrospective review 2006 - 2016
BACKGROUND: Anthrax outbreaks in Tanzania have been reported from the human, livestock and wildlife sectors over several years, and is among the notifiable diseases. Despite frequent anthrax outbreaks, there is no comprehensive dataset indicating the magnitude and distribution of the disease in susceptible species. This study is a retrospective review of anthrax outbreaks from the human, livestock, and wildlife surveillance systems from 2006 to 2016. The objectives were to identify hotspot districts, describe anthrax epidemiology in the hotspot areas, evaluate the efficiency of the anthrax response systems and identify potential areas for further observational studies. METHODS: We prepared a spreadsheet template for a retrospective comprehensive record review at different surveillance levels in Tanzania. We captured data elements including demographic characteristics of different species, the name of health facility, and date of anthrax diagnosis. Also, we collected data on the date of specimen collection, species screened, type of laboratory test, laboratory results and the outcome recorded at the end of treatment in humans. After establishing the database, we produced maps in Quantum GIS software and transferred cleaned data to Stata software for supportive statistical analysis. RESULTS: Anthrax reported incidences over 4 years in humans were much higher in the Arusha region (7.88/100,000) followed by Kilimanjaro region (6.64/100,000) than other regions of Tanzania Mainland. The health facility based review from hotspot districts in parts of Arusha and Kilimanjaro regions from 2006 to 2016, identified 330 human anthrax cases from the selected health facilities in the two regions. Out of 161 livestock and 57 wildlife specimen tested, 103 and 18 respectively, were positive for anthrax. CONCLUSION: This study revealed that there is gross under-reporting in the existing surveillance systems which is an obstacle for estimating a true burden of anthrax in the hotspot districts. Repeated occurrences of anthrax in livestock, wildlife and humans in the same locations at the same time calls for the need to strengthen links and promote inter-disciplinary and multi-sectoral collaboration to enhance prevention and control measures under a One Health approach.
FIGURES 26–31 in Description of five Anthrax Scopoli puparia (Diptera, Bombyliidae, Anthracinae, Anthracini)
FIGURES 26–31. Anthrax macquarti pupae: 26. General lateral view; 27. Cephalic tubercle, dorsal view; 28. Cephalic tubercle, lateral view; 29. Head, ventral view; 30. Anal tubercle, dorsal view; 31. Anal tubercle, lateral view.
FIGURES 14–19 in Description of five Anthrax Scopoli puparia (Diptera, Bombyliidae, Anthracinae, Anthracini)
FIGURES 14–19. Anthrax hylaios pupae: 14. General lateral view; 15. Cephalic tubercle, dorsal view; 16. Cephalic tubercle, lateral view; 17. Head, ventral view; 18. Anal tubercle, dorsal view; 19. Anal tubercle, lateral view.
FIGURES 20–25 in Description of five Anthrax Scopoli puparia (Diptera, Bombyliidae, Anthracinae, Anthracini)
FIGURES 20–25. Anthrax repertus pupae: 20. General lateral view; 21. Cephalic tubercle, dorsal view; 22. Cephalic tubercle, lateral view; 23. Head, ventral view; 24. Anal tubercle, dorsal view; 25. Anal tubercle, lateral view.
FIGURES 7–13 in Description of five Anthrax Scopoli puparia (Diptera, Bombyliidae, Anthracinae, Anthracini)
FIGURES 7–13. Anthrax cephus pupae: 7. General lateral view; 8. Cephalic tubercle, dorsal view; 9. Cephalic tubercle, lateral view; 10. Head, ventral view; 11. Tergite of segment VI, dorsal view; 12. Anal tubercle, dorsal view; 13. Anal tubercle, lateral view.
FIGURES 1–6 in Description of five Anthrax Scopoli puparia (Diptera, Bombyliidae, Anthracinae, Anthracini)
FIGURES 1–6. Anthrax austrinus pupae: 1. General lateral view; 2. Cephalic tubercle, dorsal view; 3. Cephalic tubercle, lateral view; 4. Head, ventral view; 5. Anal tubercle, dorsal view; 6. Anal tubercle, lateral view.
FIGURES 4–7 in A new species of Anthrax Scopoli, 1763 from Brazil, with description of its puparium (Diptera, Bombyliidae, Anthracinae, Anthracini)
FIGURES 4–7: Puparium of Anthrax fontenellei n. sp.: (4) Cephalic tubercle, dorsal view; (5) Cephalic tubercle, lateral view; (6) Anal tubercle, dorsal view; (7) Anal tubercle, lateral view.
Figure 16 in Taxonomy of the genus Anthrax Scopoli (Diptera: Bombyliidae) in Egypt
Figure 16. Anthrax spp., habitus: (a) A. galali; (b) A. moursyi; (c) A. pharaonis, neotype; (d) A. sticticus; (e) A. trifasciatus; (f) A. zohrayensis.
Figure 15 in Taxonomy of the genus Anthrax Scopoli (Diptera: Bombyliidae) in Egypt
Figure 15. Anthrax spp., habitus: (a) A. aethiops bezzii; (b) A. dentatus; (c) A. greatheadi; (d) A. lucidus; (e) A. melanistus.
Figure 12 in Taxonomy of the genus Anthrax Scopoli (Diptera: Bombyliidae) in Egypt
Figure 12. Anthrax sticticus: (a) gonocoxites, ventral view; (b) hypopygium, lateral view; (c) tip of epiphallus, dorsal view; (d) spermatheca.
Figure 11 in Taxonomy of the genus Anthrax Scopoli (Diptera: Bombyliidae) in Egypt
Figure 11. Anthrax moursyi: (a) gonocoxites, ventral view; (b) hypopygium, lateral view; (c) tip of epiphallus, dorsal view; (d) spermatheca.
Figure 10 in Taxonomy of the genus Anthrax Scopoli (Diptera: Bombyliidae) in Egypt
Figure 10. Anthrax melanistus: (a) gonocoxites, ventral view; (b) tip of epiphallus, dorsal view; (c) tip of epiphallus, lateral view; (d) spermatheca.
Figure 7 in Taxonomy of the genus Anthrax Scopoli (Diptera: Bombyliidae) in Egypt
Figure 7. Anthrax greatheadi: (a) gonocoxites, ventral view; (b) hypopygium, lateral view; (c) spermatheca.
Figure 9 in Taxonomy of the genus Anthrax Scopoli (Diptera: Bombyliidae) in Egypt
Figure 9. Anthrax lucidus: gonocoxites, ventral view; (b) tip of epiphallus, lateral view; (c) spermatheca.
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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.