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20 results for “Rusa”
FIG. 11. — Rhopalione rusa n in New records of bopyrid parasites (Crustacea, Isopoda, Epicaridea) of pea crabs (Crustacea, Decapoda, Pinnotheridae) with descriptions of two new species of Rhopalione Pérez, 1921 and a review of the genus
FIG. 11. — Rhopalione rusa n. sp. holotype (ZRC 2023.0259, A-G) and allotype (ZRC 2023.0260, H-M) specimens (ZRC 2019.0534): A, left antennae; B, barbula, left side; C, dorsal view of terminus of pleon showing fifth pleomere with lateral plates on both sides and biramous pleopod shown only on right side and uropods; D, left maxilliped, outer view; inset shows inner view of anterior lobe and spur obscured by lobe of maxilliped (*); E, left oostegite 1 and pereopod 1, outer view; F, left oostegite 1, inner view; G, left pereopod 7; H, ventral view; I, left antennae; J, right pereopod 1; K, right pereopod 1, close-up of dactyl and propodus; L, right pereopod 7; M, pleomere showing pleopod 4 on right side and mid-ventral tubercule. Abbreviations: En, endopod; Ex, exopod; Lp, lateral plate; Uro, uropods. Scale bars: A, G, L, M, 100 µm; B, D-F, 250 µm; C, H, 500 µm; J-K, 50 µm.
FIG. 10. — Rhopalione rusa n in New records of bopyrid parasites (Crustacea, Isopoda, Epicaridea) of pea crabs (Crustacea, Decapoda, Pinnotheridae) with descriptions of two new species of Rhopalione Pérez, 1921 and a review of the genus
FIG. 10. — Rhopalione rusa n. sp. holotype (ZRC 2023.0259) and allotype (ZRC 2023.0260) specimens: A, ventral view of host pinnotherid Arcotheres similis (Bürger, 1895) with Rhopalione sp. in situ on left side of pleon (posterior end of male shown by arrow); B, holotype female, dorsal view; C, holotype female, ventral view; D, allotype male, dorsal view. Scale bars: A, 2 mm; B-D, 1 mm.
Figure 2 in Abundance And Distribution Of The Philippine Brown Deer (Rusa Marianna Desmarest, 1822) In The Obu Manuvu Ancestral Domain, Mindanao Island, Philippines
Figure 2. Philippine Brown Deer (Rusa marianna Desmarest, 1822) detected through camera trapping in (A) Salaysay, (B) Tawan-Tawan, and (C) Carmen. A (D) deceased female deer was also documented in Carmen, Davao City.
Figure 4 in Abundance And Distribution Of The Philippine Brown Deer (Rusa Marianna Desmarest, 1822) In The Obu Manuvu Ancestral Domain, Mindanao Island, Philippines
Figure 4. Map showing the location of the camera trap stations according to (A) forest and non-forest ecosystems, (B) forest cover, (C) elevation ranges, (D) slope ranges, and (E) water bodies in the Obu Manuvu Ancestral Domain, Davao City, Philippines.
Figure 5 in Abundance And Distribution Of The Philippine Brown Deer (Rusa Marianna Desmarest, 1822) In The Obu Manuvu Ancestral Domain, Mindanao Island, Philippines
Figure 5. Conservation threats observed in the study areas: (A) deforestation, (B) hunting, (C) abandoned human camps, and (D) pollution.
Figure 4 in Abundance And Distribution Of The Philippine Brown Deer (Rusa Marianna Desmarest, 1822) In The Obu Manuvu Ancestral Domain, Mindanao Island, Philippines
Figure 4. Map showing the location of the camera trap stations according to (A) forest and non-forest ecosystems, (B) forest cover, (C) elevation ranges, (D) slope ranges, and (E) water bodies in the Obu Manuvu Ancestral Domain, Davao City, Philippines.
Figure 4 in Abundance And Distribution Of The Philippine Brown Deer (Rusa Marianna Desmarest, 1822) In The Obu Manuvu Ancestral Domain, Mindanao Island, Philippines
Figure 4. Map showing the location of the camera trap stations according to (A) forest and non-forest ecosystems, (B) forest cover, (C) elevation ranges, (D) slope ranges, and (E) water bodies in the Obu Manuvu Ancestral Domain, Davao City, Philippines.
Fig. 2 in Ecological factors that influence sambar (Rusa unicolor) distribution and abundance in western Thailand: implications for tiger conservation
Fig. 2 The distribution of elevations at which transects were placed (a). The distribution of distances from the Huai Kha Khaeng River (HKK) at which transects were placed (b). The combinations of elevation and distance to HKK River at which pellet groups were found (each dot represents a single transect) (c). The number of pellet groups found in relation to distance from the HKK River at three elevations (where dots represents transects) (d). Dots represent transects and lines represent the predicted number of pellet groups using our top-supported model (Table 2, model 1) solved at mean covariate values and one of three elevations to illustrate the interaction of elevation with distance to the HKK River.
Fig.1 in Ecological factors that influence sambar (Rusa unicolor) distribution and abundance in western Thailand: implications for tiger conservation
Fig.1 Location of Huai Khaeng Wildlife Sanctuary in western Thailand and the 360 sampling units contained within the four areas represent six female tiger home ranges.
Barca mercante rusa "Medora" (1874)
Partes semi enterradas de un casco de embarcación atribuidos a la barca mercante de nacionalidad rusa "Medora", varada a la costa de la Bahía de Maldonado en noviembre de 1874, con una carga de cenizas. Los restos se encuentran en la orilla en frente a parada 9,5 de la Playa Mansa, revelándose solamente en las bajantes de la marea. Son muchas las historias que cercan ese patrimonio, y hay quien diga que puede tratarse de la barca francesa "Granville", procedente de Europa con carga de vinos, naufragada en el mismo año. Y vos, ¿qué opinas? Para saber más: https://cipac.cure.edu.uy/ Créditos: * Modelo 3D: Rodrigo Torres * Fotografía de fondo: Rodrigo Torres © CIPAC 2021 Source: Objaverse 1.0 / Sketchfab
Data from: The role of the introduced rusa deer Cervus timorensis for wildlife hunting in West Papua, Indonesia
<p>The rusa deer has been introduced to Merauke region and later to Vogelkop Peninsula in Indonesian New Guinea (West Papua) in 1928. It has widely dispersed across much of the West Papuan lowlands, but little is known on population size and its role for the livelihoods of rural communities. Here, our aim was to assess the population status of rusa deer, and to investigate the extent of hunting practices on this mammal in West Papua.</p> <p>We conducted camera trapping and line transect surveys simultaneously to estimate rusa deer population abundance in the Kwoor basin of the Tambrauw regency, Papua Barat province, Indonesia. We also interviewed hunters (n = 134), informants (n = 9) and households (n = 91) to assess hunting patterns and socioeconomic importance of rusa deer across fifteen districts of the Tambrauw regency.</p> <p>We estimated rusa deer density within a 48 km² forested area at 10.34 (5.36–19.98) and 21.04 individuals/km² using line transect and N-mixture modeling approach using camera trapping data, respectively. Both density estimates are considerably higher than those from its native range in Java and Bali (0.08 individual/km²). Almost 92% of hunters reported that they hunted rusa deer in their traditional forests, being the most frequent amongst the 18 hunted species, particularly for commercial (62%) and subsistence (38%) purposes. </p> <p>Our results suggest that traditional hunting has become a significant livelihood activity and important income source in the study area. It is therefore imperative to identify potential management strategies on wildlife hunting while also considering that the high densities of introduced rusa deer may potentially exert adverse effects on native flora and fauna.</p> <p>This study further suggests that traditional knowledge (locally called 'sasi' system) and wildlife taboos still govern wildlife hunting and utilization of forest resources in West Papua, and these need to play a role in integrated community-based wildlife management.</p>
Foundation document of King Rusa II
Foundation document of King Rusa II Basalt Kesis-Golu [Turkey], 7th cent. BCE Pergamon Museum, Berlin Source: Objaverse 1.0 / Sketchfab
Population dynamics and social organization of sambar (Rusa unicolor unicolor) in Horton Plains National Park, Sri Lanka
<p>We estimated the population density and investigated the social organization of sambar (<em>Rusa unicolor unicolor</em>) in Horton Plains National Park (HPNP), Sri Lanka. Distance sampling was conducted along six strip transects every month for a period over three years (2018–2020) to estimate the density of the sambar population in grasslands of HPNP (9.4 km<sup>2</sup>), while the antler stage of males and the behaviour of individuals were recorded to describe the population's reproductive stage and hence the social organization. Population density estimates showed relative stability over the three years and varied over the seasons but with consistent peaks from year to year with the highest population densities recorded in November-December (212.93 ± 25.38 animals/km<sup>2</sup> in 2018, 187.91 ± 28.51 in 2019, and 179.76 ± 31.85 in 2020). The highest percentage of males in hard antlers was observed from November through January, while the percentage of antlers cast sambar peaked from March to April each year. Hinds were observed with newborn calves throughout the year, but the highest number of newborn calves were recorded from July to August each year, while the number of calves counted each year varied from 210–267 individuals. The mean group size was variable throughout each year with the largest groups recorded from September to December (up to 52), the period accompanied by the most observations of mating and sparring behaviour. Although on a tropical island, HPNP is situated on a rolling plateau landscape in the highlands, where sambar showed a degree of reproductive seasonality somewhat similar to temperate cervid species.</p>
Population dynamics and social organization of sambar (Rusa unicolor unicolor) in Horton Plains National Park, Sri Lanka
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Data from: The role of the introduced rusa deer Cervus timorensis for wildlife hunting in West Papua, Indonesia
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On followıng pages 16 Calamıan Deer (Axıs calamıanensıs) 17 Common Fallow Deer (Dama dama) 18 Persnun Fallow Deer (Dama mesopotamıca) 19 Sambar (Rusa unıoolon 20 Javan Deer (Rusa tlmoœnsls). 21 Phılıppıne Spotted Deer (Rusa alfredh 22 Phılıppıne Brown Deer (Husa manannal in Cervidae
On followıng pages 16 Calamıan Deer (Axıs calamıanensıs) 17 Common Fallow Deer (Dama dama) 18 Persnun Fallow Deer (Dama mesopotamıca) 19 Sambar (Rusa unıoolon 20 Javan Deer (Rusa tlmoœnsls). 21 Phılıppıne Spotted Deer (Rusa alfredh 22 Phılıppıne Brown Deer (Husa manannal
Figure 1 in Abundance And Distribution Of The Philippine Brown Deer (Rusa Marianna Desmarest, 1822) In The Obu Manuvu Ancestral Domain, Mindanao Island, Philippines
Figure 1. Map of the study area in the Obu Manuvu Ancestral Domain, Mindanao Island, Davao City. (Cartographers: Ricksterlie C. Verzosa and Shunjay L. Abordo).
Figure 3 in Abundance And Distribution Of The Philippine Brown Deer (Rusa Marianna Desmarest, 1822) In The Obu Manuvu Ancestral Domain, Mindanao Island, Philippines
Figure 3. Location of the ten (10) camera trap stations in (A) Barangay Carmen, (B) Salaysay, (C) Tambobong, and (D) Tawan-tawan in the Obu Manuvu Ancestral Domain, Davao City, Philippines.
Figure 3 in Abundance And Distribution Of The Philippine Brown Deer (Rusa Marianna Desmarest, 1822) In The Obu Manuvu Ancestral Domain, Mindanao Island, Philippines
Figure 3. Location of the ten (10) camera trap stations in (A) Barangay Carmen, (B) Salaysay, (C) Tambobong, and (D) Tawan-tawan in the Obu Manuvu Ancestral Domain, Davao City, Philippines.
desCOLOCADOS. Episodio 2. La montaña rusa - Cocaína
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