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403 results for “captivity”
Fig. 1 in Captive management, reproduction, and comparative larval development of Klappenbach's Red-bellied Frog, Melanophryniscus klappenbachi Prigioni and Langone, 2000
Fig. 1. Melanophryniscus klappenbachi. (A) Dorsal and (B) ventral view of an adult female. (C) Amplexus.(D) Egg clump attached to moss. (E) Contrasting photo of a tadpole, used for evaluating the growth.
Fig. 4 in Captive management, reproduction, and comparative larval development of Klappenbach's Red-bellied Frog, Melanophryniscus klappenbachi Prigioni and Langone, 2000
Fig. 4. (A) Mortality rate of different test groups until metamorphosis. (B) Average growth rate of the different test groups. (C) Number of tadpoles metamorphosed per day after hatching (O = osmosis water, P = pond water, number indicates individuals per container).
Fig. 3 in Captive management, reproduction, and comparative larval development of Klappenbach's Red-bellied Frog, Melanophryniscus klappenbachi Prigioni and Langone, 2000
Fig. 3. Developing coloration in young toadlets of different ages. (A) Recently metamorphosed toadlet. (B) Ten days after metamorphosis. (C) Twenty-three days after metamorphosis. (D) Two months after metamorphosis.
Fig. 5 in The effect of environmental enrichment on Salvator merianae (Squamata: Teiidae) under captivity conditions
Fig. 5. Representation of the interactions between individuals in each enclosure, R1 and R2, with (R2 WE) and without enrichment (R2 W/O-E) based on the recorded chase and flight events.MWM: male without mark, MWP: male white point, MYP; male yellow point, F: female. Fig. 5. Representación de las interacciones entre individuos en cada recinto, R1 y R2, con (R2 WE) y sin enriquecimiento (R2 W/O-E) en base a los eventos de persecución y huida registrados. MWM: macho sin marca, MWP: macho punto blanco, MYP; punto amarillo macho, F: hembra.
Fig. 3 in The effect of environmental enrichment on Salvator merianae (Squamata: Teiidae) under captivity conditions
Fig. 3. Comparison in the frequency of Reproductive Behavior in Males between R1 and R2 during the 3 months of the experiment. Fig. 3. Comparación en la frecuencia del Comportamiento Reproductivo en Machos entre R1 y R2 durante los 3 meses del experimento.
Fig. 2 in The effect of environmental enrichment on Salvator merianae (Squamata: Teiidae) under captivity conditions
Fig. 2. Comparison of cumulative proportions of behavioral categories in R1 and R2, with and without enrichment (inner circle: females, outer circle: males). Fig. 2. Comparación de proporciones acumuladas de categorías de comportamiento en R1 y R2, con y sin enriquecimiento (círculo interior: mujeres, círculo exterior: hombres).
Fig. 4 in The effect of environmental enrichment on Salvator merianae (Squamata: Teiidae) under captivity conditions
Fig. 4. Tables of sociometric matrices for each enclosure R1 and R2, with (R2 WE) and without enrichment (R2 W/O-E). MWM: male without mark, MWP: male white point, MYP; male yellow point, F: female. Fig. 4. Cuadros de matrices sociométricas para cada recinto R1 y R2, con (R2 WE) y sin enriquecimiento (R2 W/O-E). MWM: macho sin marca, MWP: macho punto blanco, MYP; punto amarillo macho, F: hembra.
Fig. 1 in The effect of environmental enrichment on Salvator merianae (Squamata: Teiidae) under captivity conditions
Fig. 1. Examples of different environmental enrichment activities carried out in the R2. Fig. 1. Ejemplos de diferentes actividades de enriquecimiento ambiental realizadas en el R2.
Fig. 5 in Reproductive behavior of the marine gastropod Charonia seguenzae (Aradas & Benoit, 1870) in captivity Abstract
Fig. 5: A) Female depositing egg capsules. B) Female cleaning egg capsules with its proboscis. C) Male (upper) copulating with a female that deposited capsules (bottom). D) Female (left) and the male (right) laying on the egg capsules. E) Male alone on egg capsules. F) Male cleaning egg capsules with its proboscis.
Fig. 3 in Reproductive behavior of the marine gastropod Charonia seguenzae (Aradas & Benoit, 1870) in captivity Abstract
Fig. 3: A) Simultaneous copulation of one female Charonia seguenzae (♀) with two males (♂). B) Closer view of the male penises (indicated with arrows) inserted into the female mantle cavity.
Fig. 2 in Reproductive behavior of the marine gastropod Charonia seguenzae (Aradas & Benoit, 1870) in captivity Abstract
Fig. 2: A) Copulation of Charonia seguenzae: Female - bottom left, male - upper right. B) Copulation of a male Charonia seguenzae with a female that had already deposited egg capsules.
Fig. 1 in Dominance Hierarchy And Status Signalling In Captive Tree Sparrow (Passer Montanus) Flocks
Fig. 1. The relationship between badge size and dominance ranks in flock B (n= 9 birds, for statistics see Table 2). The most subordinate individual has rank 1
Figure 1 in Breeding and reproductive behaviour of the neo-tropical opossum, Didelphis marsupialis insularis, Allen 1902 under captive conditions
Figure 1. Design and layout of Adult Units using a Single Corridor Layout. Source: Tardieu and Garcia, 2018).
Figure 2 in Breeding and reproductive behaviour of the neo-tropical opossum, Didelphis marsupialis insularis, Allen 1902 under captive conditions
Figure 2. Photo of opossum breeding unit showing – (A) Human Access panel to Male; (B) Male Cage; (C & D) Male Access panels to females; (E) Female Cage; (F) Human Access panel to Female.
Figure 2 in Reproductive diseases in captive Agoutis (Dasyprocta leporina)
Figure 2. Necropsy of Adult Agouti with offspring in the right uterine horn and enlarged bladder (Source: Jones et al.,2020).
Fig. 2 in Apparent fatal winter tick (Dermacentor albipictus) infestation in captive reindeer (Rangifer tarandus)
Fig. 2. Dorsal (A) and ventral view (B) of an adult female Dermacentor albipictus collected from captive reindeer. Inset image shows large goblet cells on the spiracular plate.
Fig. 1 in Gastrointestinal parasites in captive and free-ranging Cebus albifrons in the Western Amazon, Ecuador
Fig. 1. From left to right in each row: Hymenolepis sp., Capillaria sp., Strongyloides sp., Prosthenorchis elegans, Strongyle (unidentified), Entamoeba histolytica/dispar/moskovskii/ nuttalli. (40x).
Fig. 1 in Toxoplasma gondii in four captive kangaroos (Macropus spp.) in China: Isolation of a strain of a new genotype from an eastern grey kangaroo (Macropus giganteus)
Fig. 1. Toxoplasma gondii cysts in kangaroos or mice. A. Toxoplasma gondii cysts in the diaphragm of case 2 kangaroo, H&E. B. Toxoplasma gondii cysts in the tongue of case 2 kangaroo, H&E. C. Toxoplasma gondii cysts in the diaphragm of case 2 kangaroo, IHC. D. Toxoplasma gondii cysts in the tongue of case 2 kangaroo, IHC. E. Toxoplasma gondii-like cysts in the myocardium of case 4 kangaroo, squashed section, unstained. F. Many TgRooCHn1 Toxoplasma gondii cysts were observed in the mouse brain, 27 DPI, squashed section, unstained. Bar = 50 μm.
Fig. 6 in Captive individuals of endangered Philippine raptors maintain native feather mites (Acariformes: Pterolichoidea) species
Fig. 6. Pseudalloptinus pithecophagae sp. n. details. A – opisthosoma of male, ventral view, B–D – legs I–III of male, respectively, E – tibia and tarsus IV of male, G – tibia and tarsus IV of female, H – spermatheca and spermaducts.
Fig. 3 in Captive individuals of endangered Philippine raptors maintain native feather mites (Acariformes: Pterolichoidea) species
Fig. 3. Hieracolichus philippinensis sp. n. details. A – opisthosoma of male, dorsal view B–D – genua, tibiae and tarsi I–III of male, respectively, E – tibia and tarsus IV of male, G – tibia and tarsus IV of female, H – spermatheca and spermaducts.
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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.