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114 results for “domesticated animal”
FIGURES 15–19. 15. E in Description of Eniacomorpha hermetiae Delvare sp. n. (Hymenoptera, Chalcidoidea, Chalcididae) a pupal parasitoid of Hermetia illucens (L.) (Diptera, Stratiomyidae), and a potential threat to mass production of the fly as a feed supplement for domestic animals
FIGURES 15–19. 15. E. galesusaeformis ♀, antenna with base flagellum and clava enlarged. 16 and 17. E. hermetiae ♀. 16, head in frontal view. 17, antenna with base flagellum and clava enlarged. 18 and 19. E. hermetiae ♂. 18, head in frontal view. 19, antenna with base flagellum and clava enlarged.
FIGURES 9–14. 9 and 10 in Description of Eniacomorpha hermetiae Delvare sp. n. (Hymenoptera, Chalcidoidea, Chalcididae) a pupal parasitoid of Hermetia illucens (L.) (Diptera, Stratiomyidae), and a potential threat to mass production of the fly as a feed supplement for domestic animals
FIGURES 9–14. 9 and 10. Eniacomorpha galesusaeformis (Risbec) ♀. 9, head in dorsal view. 10, same in lateral view. 11 and 12. E. hermetiae ♀. 11, head in dorsal view. 12, same in lateral view. 13 and 14. E. hermetiae ♂. 13, head in dorsal view. 14, same in lateral view.
FIGURES 1, 2. Collecting sites. 1 in Description of Eniacomorpha hermetiae Delvare sp. n. (Hymenoptera, Chalcidoidea, Chalcididae) a pupal parasitoid of Hermetia illucens (L.) (Diptera, Stratiomyidae), and a potential threat to mass production of the fly as a feed supplement for domestic animals
FIGURES 1, 2. Collecting sites. 1, Outdoor rearing cages of Hermetia illucens on ICIPE campus, Nairobi, Kenya. 2, Malaise trap at the Gede site, Kenya.
FIGURES 4–6. E in Description of Eniacomorpha hermetiae Delvare sp. n. (Hymenoptera, Chalcidoidea, Chalcididae) a pupal parasitoid of Hermetia illucens (L.) (Diptera, Stratiomyidae), and a potential threat to mass production of the fly as a feed supplement for domestic animals
FIGURES 4–6. E. hermetiae ♀. Morphological terminology and measurements. 4, head in lateral view. 5, same in dorsal view. 6, mesosoma in dorsal view. Abbreviations. eyh, eye height; eyl, eye length; fvxw, frontovertex width; hdh, head height; hdl, head length; hdw, head width; hnl, horn length; hnw, horn width; mdl, mandible length; msal, mesosoma length; msaw, mesosoma width; msml, mesoscutum length; mscul, mesoscutellum length; mscuw, mesoscutellum width; mspl, malar space length; OOL, ocellar-ocular length; POL, postocellar length; phcd, distance between adpetiolar projections of propodeum; pml, pronotum length; pmw, pronotum width; ppal, length of anteromedian areola of propodeum; ppaw, width of anteromedian areola of propodeum; ppml, median length of propodeum; sdnl, length of scrobal depression; tpel, temple length.
Dataset for the article : Non-invasive estimation of in vivo optical properties and hemodynamic parameters of domestic animals: a preliminary study on horses, dogs, and sheep
<div> <div> <div> <div> </div> </div> </div> </div> <div> <div> <div> <div> <div> <div> <p>This dataset includes all the necessary data to understand and replicate the figures and tables presented in the article titled "Non-invasive Estimation of In Vivo Optical Properties and Hemodynamic Parameters of Domestic Animals: A Preliminary Study on Horses, Dogs, and Sheep." Specifically, it contains the raw measurement curves, along with the optical and hemodynamic parameters derived from the analysis of these raw data.</p> </div> </div> </div> </div> </div> </div>
FIGURE 58 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 58. Approximate geographic distribution of Ixodes holocyclus (paralysis tick) (redrawn from Seddon 1968).
FIGURE 68 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 68. Proposed phylogenetic relationships of Rhipicephalus australis (Australian cattle tick), R. annulatus (cattle fever tick), R. microplus-Clade A species and R. microplus-Clade A species (after Burger et al 2014b).
FIGURE 49 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 49. Approximate geographic distribution of Ixodes cornuatus (southern paralysis tick) (redrawn from Kelers et al. 2012).
FIGURE 60 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 60. Numbers of cases of tick paralysis in dogs recorded at the Veterinary Clinic of The University of Queensland from 1970 to 1975 (solid line), and mean number of female Ixodes holocyclus (paralysis tick) per wild bandicoot found in southeastern Queensland from 1972 to 1974 (broken line) (data from Doube et al. 1977).
FIGURE 59 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 59. Life-cycle of Ixodes holocyclus (paralysis tick) in relation to season, and to bandicoots and other hosts (redrawn from artwork by Stan Fiske, CSIRO Long Pocket Laboratories, see Sutherland & Tibballs 2001, Fig. 21.2).
FIGURE 67 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 67. Geographic distribution of Rhipicephalus australis (Australia cattle tick) in Australia (redrawn from Arundel and Sutherland 1998).
FIGURE 37 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 37. Geographic distribution of Bothriocroton hydrosauri (southern reptile tick) (redrawn from Bull et al. 1981 with two additional localities (Jenolan Caves, NSW, an asterisk; and 38 km south of Gosford, NSW, a cross) from the interpretation of Bull (1965, Table 2) by Andrews et al. (2006, p. 37)).
FIGURE 38 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 38. Courtship behaviour of Bothriocroton hydrosauri (southern reptile tick) (redrawn from Andrews and Bull 1980).
FIGURE 12 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 12. Morphological features of the genus Bothriocroton, (A) dorsal female and male, (B) ventral female and male. Example is B. hydrosauri (southern reptile tick).
FIGURE 8 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 8. Sampling of ticks from hosts. (A) Sampling ticks from flank of steer in a squeeze crush. (B) Sampling ticks at udder and groin of a heifer. (C) Sampling ticks on a cast calf. (D) Typical infestation of Rhipicephalus decoloratus (the blue tick) adults on belly of a calf. (E) Typical infestation of Rhipicephalus appendiculatus (the brown ear tick) on ear of a calf. (F) Infestation of Amblyomma variegatum (the tropical bont tick) on dewlap of a steer. [These species of ticks do not occur in Australia but are nonetheless instructive about the biology of the Australian ticks.]
FIGURE 15 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 15. Morphological features of the genus Hyalomma, (A) dorsal female and male, (B) ventral female and male. Example is H. dromedarii (the camel Hyaloma).
FIGURE 5 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 5. Life-cycle of a three-host tick. Example is Rhipicephalus sanguineus (brown dog tick) feeding on dogs. NOTE that the different instars and their appearance when engorged are all drawn to the same scale.
FIGURE 2 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 2. Morphological features of soft ticks (family Argasidae). Example is an adult female of the genus Ornithodoros.
FIGURE 17 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 17. Morphological features of the genus Margaropus, dorsal views of female and male. Example is M. winthemi (the winter horse tick).
FIGURE 11 in Ticks of Australia. The species that infest domestic animals and humans
FIGURE 11. Morphological features of the genus Amblyomma, (A) dorsal female and male, (B) ventral female and male. Example is A. triguttatum (ornate kangaroo tick).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.