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9 results for “Capricornis”
Fig. 1 in The highs and lows of serow (Capricornis sumatraensis): multi-scale habitat associations inform large mammal conservation strategies in the face of synergistic threats of deforestation, hunting, and climate change
Fig. 1. Camera-trap image of mainland serow (Capricornis sumatraensis) from the lowlands of the Pasoh Forest Reserve in Peninsular Malaysia at an elevation of ~100 m.
Fig. 4 in The highs and lows of serow (Capricornis sumatraensis): multi-scale habitat associations inform large mammal conservation strategies in the face of synergistic threats of deforestation, hunting, and climate change
Fig. 4. Regional-scale relationships between serow captures and covariates. Displayed are the variables within the top-performing multivariate model as assessed by lower AICc scores. All covariates are averaged at a 20-km radius around the study area.
Fig. 5 in The highs and lows of serow (Capricornis sumatraensis): multi-scale habitat associations inform large mammal conservation strategies in the face of synergistic threats of deforestation, hunting, and climate change
Fig. 5. The relationships between serow predicted abundance and habitat variables at the local scale from Royle-Nichols hierarchical models. Oil palm, roughness and Human Footprint Index were in the top performing multivariate model.
Fig. 3 in The highs and lows of serow (Capricornis sumatraensis): multi-scale habitat associations inform large mammal conservation strategies in the face of synergistic threats of deforestation, hunting, and climate change
Fig. 3. Presence of the serow within its Southeast Asian range. Panel a) shows the IUCN Red List range extent of occurrence (EOO; shaded orange), and the occurrence records coloured by the data source. Panel b) shows the jackknife-based assessment of variable importance. The blue bars showing the explanatory power in the model using only the denoted variable, while the teal bars show the predictive power of the full model without the denoted variable, highlighting whether the variable captures unique information. Panel c) shows the probability of presence of the serow from Maxent modelling mapped within the Southeast Asian region covered by this study. Panel d) shows the forest cover in 2015 that is potentially occupied within the EOO. Panel e) is the Maxent probability of presence of serow inside the remaining forested areas within Southeast Asia. Original artwork courtesy of Tamzin Barber (https://www.talkinganimals.com.au/).
On following pages: 224. Burmese Red Serow (Capricornis rubidus); 225. Japanese Serow (Capricornis crispus); 226. Formosan Serow (Capricornis swinhoei); 227. Muskox (Ovibos moschatus). in Bovidae
On following pages: 224. Burmese Red Serow (Capricornis rubidus); 225. Japanese Serow (Capricornis crispus); 226. Formosan Serow (Capricornis swinhoei); 227. Muskox (Ovibos moschatus).
Figure 2 in Occurrence and temporal activity pattern of Burmese Red Serow (Capricornis rubidus, Bovidae) in Baraiyadhala National Park, Bangladesh: insights from a camera trapping study
Figure 2: Camera trapped photo of Red Serow from the study area. The top image depicts an adult and a juvenile, and the bottom image is of an adult male.
Figure 1 in Occurrence and temporal activity pattern of Burmese Red Serow (Capricornis rubidus, Bovidae) in Baraiyadhala National Park, Bangladesh: insights from a camera trapping study
Figure 1: Study area and camera trap sites, indicating camera trap sites with Burmese Red Serow detection and sites where serows were not detected.
Figure 3 in Occurrence and temporal activity pattern of Burmese Red Serow (Capricornis rubidus, Bovidae) in Baraiyadhala National Park, Bangladesh: insights from a camera trapping study
Figure 3: Temporal activity pattern and overlap estimates for focal species Burmese Red Serow and sympatric Barking Deer and Wild Boar.
FIGURE 9. Male terminalia. A, B, C, D Paragus capricorni, E, F, G Paragus borbonicus. A, B, E in Descriptions of two new species of the genus Paragus Latreille (Diptera: Syrphidae) with a key to males of all South African species
FIGURE 9. Male terminalia. A, B, C, D Paragus capricorni, E, F, G Paragus borbonicus. A, B, E, epandrium, C, F hypandrium, D, G ejaculatory apodeme. A, E, D, G dorsal view, B, C, F, lateral view. Legend: s, surstylus; ce, cercus; l, lingula. Scale bar, 0.5 mm.
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