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13 results for “Paradisaea”

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Fig. 5 in Renal trematode infection due to Paratanaisia bragai in zoo housed Columbiformes and a red bird-of-paradise (Paradisaea rubra)

Fig. 5. Allopeas clavulinum one of two subulinid snails possibly acting as intermediate host for the Paratanaisia bragai infection, found in one of the aviaries housing several of the cases.

opencc-by-4.0Dec 2013View details →
zenodo40/100

Fig. 4 in Renal trematode infection due to Paratanaisia bragai in zoo housed Columbiformes and a red bird-of-paradise (Paradisaea rubra)

Fig. 4. Emerald dove case: Kidney with dilated collecting ducts and numerous cross section of trematodes (arrow) with minimal inflammation. HE.

opencc-by-4.0Dec 2013View details →
zenodo40/100

Fig. 1 in Renal trematode infection due to Paratanaisia bragai in zoo housed Columbiformes and a red bird-of-paradise (Paradisaea rubra)

Fig. 1. Red bird-of-paradise case. (A) Renal flukes in collecting ducts (arrows) with minimal inflammatory changes. HE. (B) Necrosis and granulomatous nephritis surrounding trematode eggs (arrow). HE.

opencc-by-4.0Dec 2013View details →
zenodo40/100

Fig. 3. Socorro dove case 2 in Renal trematode infection due to Paratanaisia bragai in zoo housed Columbiformes and a red bird-of-paradise (Paradisaea rubra)

Fig. 3. Socorro dove case 2. (A) Asymmetrically enlarged pale tan left and atrophic / cystic right kidney. Macroscopic view. (B) Kidney with focally extensive central necrosis surrounding fluke eggs (arrow) and surrounding granulomatous inflammatory reaction. HE. (C) Kidney with chronic granulomatous tubulointerstitial nephritis surrounding free trematode eggs. HE.

opencc-by-4.0Dec 2013View details →
zenodo40/100

Fig. 2. Socorro dove case 1 in Renal trematode infection due to Paratanaisia bragai in zoo housed Columbiformes and a red bird-of-paradise (Paradisaea rubra)

Fig. 2. Socorro dove case 1. (A) Kidneys with cranial atrophy, haemorrhage and caudal polar gout deposition and also pericardial gout deposition. Macroscopic view. (B) Cystic dilation of collecting ducts, haemorrhage and granulomatous nephritis. HE.

opencc-by-4.0Dec 2013View details →
zenodo40/100

Sterna paradisaea (Laridae) - whole organism - in flight

Image of Sterna paradisaea (Laridae) - whole organism - in flight

opencc-by-4.0Dec 2004View details →
zenodo40/100

Рис. 18. ПоΛярная крачка Sterna paradisaea (в центре Λибо на переΑнем пΛане). Остров БайΑукова, заΛив Счастья, 30.06.2022. Фото Δ. В. Коробова Fig. 18. Arctic Tern Sterna paradisaea (in the center or in the foreground). Baydukova Island, Bay of Schastꞌе, 30.06.2022. Photo by D. V. Korobov in New data on rare and insufficiently studied birds of the Shchastya Bay, the Sea of Okhotsk, and adjacent territories (Khabarovsk Krai)

Рис. 18. ПоΛярная крачка Sterna paradisaea (в центре Λибо на переΑнем пΛане). Остров БайΑукова, заΛив Счастья, 30.06.2022. Фото Δ. В. Коробова Fig. 18. Arctic Tern Sterna paradisaea (in the center or in the foreground). Baydukova Island, Bay of Schastꞌе, 30.06.2022. Photo by D. V. Korobov

opencc-by-4.0Jul 2024View details →
zenodo36/100

Table 1 in Description of the unique Parotia lawesii x Paradisaea rudolphi hybrid Bird of Paradise (Aves: Passeriformes: Paradisaeidae)

<p><b>Table 1.</b> Measurements! of adult female specimens2 of Paradisaea <i>rudolphi margaritae, Parotia lawesii (exhibita) lawesii</i> and an immature female hybrid between these taxa from Papua New Guinea.</p><table><tbody><tr><th>Taxon Collection #</th><th>WingTail length length</th><th>TarsusBill length length</th><th>Bill width</th></tr><tr><th><i>Paradisaea</i> <i>rudolphi margaritae</i></th></tr></tbody><tbody><tr><th>AMNH 348209 AMNH 705629 ZMH PI5 66.35 ZMH P15 66.36 PMNH 7576 <b>MEAN</b></th><td>148 90 146 94 146 88 145 91 147 86 146 90</td><td>37.9 36.6 36.6 39.5 38.8 37.9</td><td>40.5 39.0 38.4 40.8 40.5 39.8</td><td>9.0 8.6 9.2 8.5 9.1 8.9</td></tr><tr><th>Paradisaea r. margaritae Parotia I.</th><td><i>(exhibita) lawesii</i></td><td></td></tr><tr><th><b>HYBRID</b> AM O. 40100</th><td>146 93</td><td>39.6</td><td>37.3</td><td>7.2</td></tr><tr><th><i>Parotia lawesii (exhibita) lawesii</i></th></tr><tr><th>NHM 1939.12.9.1533 NHM 1939.12.9.1571 BBM 60084 AM O. 38564 PNGM 25866 <b>MEAN</b></th><td>143 93 147 99 143 97 147 95 144 94 145 96</td><td>46.0 46.6 45.4 45.9 46.4 46.1</td><td>31.7 32.8 33.2 29.0 31.6 31.7</td><td>5.8 5.8 5.5 6.5 5.4 5.8</td></tr></tbody></table><p>1 Wing length is the straightened, flattened, maximum length; tail length from point of entry of central pair into skin to tip of longest feather; tarsus from depression in the angle of intertarsal joint to distal end of tarsometatarsus; bill length from tip to union with anterior margin of skull and bill width at anterior nostril. Measurements in millimetres.</p>

opencc-by-4.0Sep 1996View details →
dryad36/100

Use of sea ice by arctic terns Sterna paradisaea in Antarctica and impacts of climate change

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publicNov 2019View details →
zenodo32/100

Figure 2 in Insights into the geographical origin and phylogeographical patterns of Paradisaea birds-of-paradise

Figure 2. BEAST MCC tree of Paradisaea. Grey node bars (95% highest posterior densities) and support values (circles on branches: BS = RAxML bootstrap values, PP = MrBayes posterior probabilities, BPP = BEAST posterior probabilities) are only provided for major nodes/clades (node numbers N1–N13, Clades 1–3) discussed in the text and in Figure 3 and Table 2. Bird-of-paradise illustrations (from top to bottom: P. apoda, P. raggiana, P. minor, P. rubra, P. decora, P. guilielmi and P. rudolphi; Lynx Edicions, Barcelona, Spain). Individuals no. 113–115 were originally determined as P. apoda. However, a re-examination revealed that while it is difficult to correctly assign these subadult individuals, their overall body size is indicative of P. raggiana.

opennotspecifiedNov 2022View details →
dryad32/100

Nest-site fidelity of Arctic Terns (Sterna paradisaea) in a managed environment exposed to benign human activity

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publicOct 2024View details →
zenodo20/100

Figure 3. A–D in Insights into the geographical origin and phylogeographical patterns of Paradisaea birds-of-paradise

Figure 3. A–D, Chronological sequence of ancestral areas inferred for major nodes/clades (N1–N13) discussed in the text and in Table 2 (see Fig. 2 for node numbers). In the lower panels (C, D), colonization routes from their centres of origin (parental nodes) are represented by arrows for each species and Clades 1–3 within the apoda–minor–raggiana clade. See also the Supporting Information, File S1 (to be opened with Google Earth) that was generated with SPREAD and shows a dynamic visualization of colonization pathways across the island.

opennotspecifiedNov 2022View details →
zenodo20/100

Figure 1 in Insights into the geographical origin and phylogeographical patterns of Paradisaea birds-of-paradise

Figure 1. Map of New Guinea and adjacent islands including sampling points of individuals sequenced in the course of this study. Shape files for the distribution of the apoda–minor–raggiana clade (i.e. P. apoda, P. minor and P. raggiana) were obtained from the IUCN Red List of Threatened Species (BirdLife International, 2016, 2018a, b). Individuals no. 113–115 were originally determined as P. apoda. However, a re-examination revealed that while it is difficult to correctly assign these subadult individuals, their overall body size is indicative of P. raggiana. Also note that other individuals mentioned in the text (no. 49, 90, 131 and 154) were sampled outside the known native range of the respective species.

opennotspecifiedNov 2022View details →

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