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zenodo32/100

FIGURE 5 in Taxonomic status of Rana nigromaculata mongolia and the validity of Pelophylax tenggerensis (Anura, Ranidae)

FIGURE 5. Coloration of Pelophylax mongolicus comb. nov. (A) male CIB 118075, (B) male SYAU BAA000001, (C) female IVPP OV2729, (D) male SYAU BAA000021. Photographed by Jin-Long Ren and Shengbo Zhou.

opennotspecifiedJul 2022View details →
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FIGURE 2 in Taxonomic status of Rana nigromaculata mongolia and the validity of Pelophylax tenggerensis (Anura, Ranidae)

FIGURE 2. Plots of the first principal component (PC1) versus the second (PC2) Pelophylax mongolicus comb. nov. (red) and P. nigromaculatus (blue). A. Males, B. females.

opennotspecifiedJul 2022View details →
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FIGURE 1 in Taxonomic status of Rana nigromaculata mongolia and the validity of Pelophylax tenggerensis (Anura, Ranidae)

FIGURE 1. The collection localities of Pelophylax mongolicus comb. nov. (marked with the green circles) and P. nigromaculatus (marked with the blue circles) in this study. (1) Tumed Right Banner, Baotou, Inner mongolia (type locality of P. mongolicus comb. nov.); (2) Shapotou District, Zhongwei, Ningxia (type locality of "P. tenggerensis"); (3) Fenghuang Park, Yinchuan, Ningxia; (4) Liupan Mountain Nature Reserve, Guyuan, Ningxia; (5) Yongchenghu Park, Baoji, Shaanxi; (6) Gaotai Town, Hanzhong, Shaanxi; (7) Wuhou District, Chengdu, Sichuan; (8) Yuehu Park, Changsha, Hunan; (9) Hanxue Park, Shangrao, Jiangxi; (10) Santaishan Park, Suqian, Jiangsu; (11) Mashan Park, Qingdao, Shandong; (12) Dongling Park, Shenyang, Liaoning.

opennotspecifiedJul 2022View details →
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FIGURE 6 in Taxonomic status of Rana nigromaculata mongolia and the validity of Pelophylax tenggerensis (Anura, Ranidae)

FIGURE 6. Preservative coloration of specimen SYAU BAA000001 of Pelophylax mongolicus comb. nov. (A) Dorsal view, (B) ventral view, (C) lateral view, (D) ventral view of the hand, (E) ventral view of the foot.

opennotspecifiedJul 2022View details →
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FIGURE 4 in Taxonomic status of Rana nigromaculata mongolia and the validity of Pelophylax tenggerensis (Anura, Ranidae)

FIGURE 4. The holotype (CIB 80001/CAS166936) of Rana tenggerensis. (A) Dorsal view, (B) ventral view, (C) ventral view of left hand, (D) ventral view of left foot. Photographed by Jin-Long Ren.

opennotspecifiedJul 2022View details →
zenodo32/100

Deccan region, Madras, India. Genus Vandeleuria is masculine, so widely used specific name oleracea has been changed for gender agreement. Vandeleuria oleraceusis possibly a composite of species. Polytypic, but subspecific taxonomy requires reassessment. Distribution. Widespread in S Asia (India, Nepal, Bhutan, Bangladesh, and Sri Lan-ka), S China (W & S Yunnan), and mainland SE Asia N of the Isthmus of Kra. Descriptive notes. Head-body 68 mm, tail 105 mm, ear 13 mm, hindfoot 17 mm; weight 10 g. The Indomalayan Long-tailed Climbing Mouse is small, with flat nail on outer finger and outertoe; tail is slender, brown, twice as long as head-body length, and lacks distal tuft. Dorsal pelageis silky and salmon in color; venter is white, with fulvous hues. Habitat. Tall cane and tangled vines in primary and secondary forest such as bamboo forest, moist deciduous forest, temperate forests, montane wet zone, and disturbed secondary forests, and perhaps agricultural areas at elevations of 150-1500 m. Food and Feeding. Indomalayan [Long-tailed Climbing Mice eat fruits, buds, and flowers. Breeding. Litters of the Indomalayan Long-tailed Climbing Mouse have 3-6 young. Activity patterns. Indomalayan Long-tailed Climbing Mice are arboreal and nocturnal, although one individual was caught duringthe day. Movements, Home range and Social organization. Indomalayan Long-tailed Climbing Mice build nests in tall bushes or cane to rear their young. Status and Conservation. Classified as Least Concern on The IUCN Red Last (as V. olacea). The Indomalayan Long-tailed Climbing Mouse occurs in several habitats and a wide distribution that includes national parks. Further taxonomical studies are required to assess conservation status ofthis potentially diverse species complex. Bibliography. Corbet & Hill (1992), Dang Huy Huynh et al. (1994), Ellerman (1941), Marshall (1977b), Musser & Carleton (2005), Osgood (1932), Phillips (1980), Wang Yingxiang (2003). in Muridae

Deccan region, Madras, India. Genus Vandeleuria is masculine, so widely used specific name oleracea has been changed for gender agreement. Vandeleuria oleraceusis possibly a composite of species. Polytypic, but subspecific taxonomy requires reassessment. Distribution. Widespread in S Asia (India, Nepal, Bhutan, Bangladesh, and Sri Lan-ka), S China (W & S Yunnan), and mainland SE Asia N of the Isthmus of Kra. Descriptive notes. Head-body 68 mm, tail 105 mm, ear 13 mm, hindfoot 17 mm; weight 10 g. The Indomalayan Long-tailed Climbing Mouse is small, with flat nail on outer finger and outertoe; tail is slender, brown, twice as long as head-body length, and lacks distal tuft. Dorsal pelageis silky and salmon in color; venter is white, with fulvous hues. Habitat. Tall cane and tangled vines in primary and secondary forest such as bamboo forest, moist deciduous forest, temperate forests, montane wet zone, and disturbed secondary forests, and perhaps agricultural areas at elevations of 150-1500 m. Food and Feeding. Indomalayan [Long-tailed Climbing Mice eat fruits, buds, and flowers. Breeding. Litters of the Indomalayan Long-tailed Climbing Mouse have 3-6 young. Activity patterns. Indomalayan Long-tailed Climbing Mice are arboreal and nocturnal, although one individual was caught duringthe day. Movements, Home range and Social organization. Indomalayan Long-tailed Climbing Mice build nests in tall bushes or cane to rear their young. Status and Conservation. Classified as Least Concern on The IUCN Red Last (as V. olacea). The Indomalayan Long-tailed Climbing Mouse occurs in several habitats and a wide distribution that includes national parks. Further taxonomical studies are required to assess conservation status ofthis potentially diverse species complex. Bibliography. Corbet & Hill (1992), Dang Huy Huynh et al. (1994), Ellerman (1941), Marshall (1977b), Musser & Carleton (2005), Osgood (1932), Phillips (1980), Wang Yingxiang (2003).

opennotspecifiedNov 2017View details →
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Rusia, Lake Rudolf, Ethiopia. Taxonomic status and constitution of G. pulvinatus have been disputed by some authors, but D. M. Lay in 1983, G. G. Musser and M. D. Carleton in 2005, D. C. D. Happold in 2013, and A. Monadjem and colleagues in 2015 considered it valid. Standard karyotype was provided by B. Hubert in 1978. Monotypic. Distribution. Djibouti, SW Ethiopia, and NW Kenya; it may occur in extreme SE South Sudan. in Muridae

Rusia, Lake Rudolf, Ethiopia. Taxonomic status and constitution of G. pulvinatus have been disputed by some authors, but D. M. Lay in 1983, G. G. Musser and M. D. Carleton in 2005, D. C. D. Happold in 2013, and A. Monadjem and colleagues in 2015 considered it valid. Standard karyotype was provided by B. Hubert in 1978. Monotypic. Distribution. Djibouti, SW Ethiopia, and NW Kenya; it may occur in extreme SE South Sudan.

opennotspecifiedNov 2017View details →
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FIGURE 1 in The taxonomic status of Hyperolius nimbae Laurent, 1958 (Amphibia: Anura: Hyperoliidae)

FIGURE 1. Phylogeny, based on 16S rRNA sequences, showing the sister relationship of Hyperolius nimbae (a; specimen not collected) with H. tuberculatus (b; near Dja Reserve, Cameroon, specimen not collected), and other members of the Hyperolius viridiflavus clade. The scale shows the substitutions per site. See Channing (2022) for the composition of each collapsed terminal. Support values shown as SH-aLRT (%)/ultrafast bootstrap (%). Inset figure (c) depicts the ranges of Hyperolius nimbae

opennotspecifiedAug 2022View details →
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FIGURE 4 in Taxonomic notes Portulaca (Portulacaceae) in South America I: the taxonomic status of P. mucronulata var. microphylla

FIGURE 4. Portulaca ferricola collected from canga vegetation in eastern Bolivia (Villarroel et al. 2069, USZ!).

opennotspecifiedAug 2022View details →
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FIGURE 1. Portulaca ferricola. A in Taxonomic notes Portulaca (Portulacaceae) in South America I: the taxonomic status of P. mucronulata var. microphylla

FIGURE 1. Portulaca ferricola. A. Overview of the habitat. B. Aspect of the individual in wet period. C. Aspect of the individual in dry period. D. Flower. E. Detail of stem and branches covered with an exfoliating brown bark. F. Fruit. G. Seeds (Takahasi et al. 1193, FUEL), blue circle highlighting the cells toward the peripheral face of the seed par-domed and red circle highlighting the anticlinal walls undulate with U- and V-type patterns [photos by A. Takahasi (A–D) and by J.R. Ferraz (E–G)].

opennotspecifiedAug 2022View details →
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FIGURES 37–40. 37–38. Eunotia luna Ehrenberg. 37 in Taxonomic revision of Eunotia luna var. aequalis f. paucistriata Frenguelli and E. luna var. aequalis f. major Frenguelli: analysis of type material, lectotypification and current taxonomic status

FIGURES 37–40. 37–38. Eunotia luna Ehrenberg. 37. Original figure by Ehrenberg (1854, pl. 15/A, fig. 58a–b). 38. Original figure by Ehrenberg (1854, pl. 33/12, fig. 15). 39–40. Eunotia luna var. aequalis Hustedt. Original figures by Hustedt in Schmidt et al. (1913, pl. 286, figs 35, 40). Scale bars = 10 µm (Figs 37–39), 5 µm (Fig. 40).

opennotspecifiedSep 2022View details →
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FIGURES 16–26. Eunotia luna var aequalis Hustedt sensu Frenguelli and E. luna var. aequalis f. paucistriata Frenguelli. SEM. 16–20 in Taxonomic revision of Eunotia luna var. aequalis f. paucistriata Frenguelli and E. luna var. aequalis f. major Frenguelli: analysis of type material, lectotypification and current taxonomic status

FIGURES 16–26. Eunotia luna var aequalis Hustedt sensu Frenguelli and E. luna var. aequalis f. paucistriata Frenguelli. SEM. 16–20. Valves in external views. 16–18. General views 19. Detail of valve apex. 20. Valve slightly tilted showing the dorsal mantle with short striae. 21–25. Valves in internal view. 21–22. General views. 23. Detail of valve center showing the arrangement of striae. 24. Detail of the valve apex. 25. Detail of the striae in the valve center; note the areolae located in narrow troughs. 26. Tilted valve showing the raphe on the ventral mantle; note the different areolation pattern between the raphe and the valve margin (arrows). 16–20, 23–25. Specimens from Series 264. 21. Specimen from Series 261. 22. Specimen from Series 264. 26. Specimen from Series 268. Scale bars = 10 µm (Figs 16–18, 20–23, 26), 5 µm (Figs 19, 24), 2 µm (Fig. 25).

opennotspecifiedSep 2022View details →
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FIGURES 1–15. Eunotia luna var aequalis Hustedt sensu Frenguelli and E. luna var. aequalis f. paucistriata Frenguelli. 1 in Taxonomic revision of Eunotia luna var. aequalis f. paucistriata Frenguelli and E. luna var. aequalis f. major Frenguelli: analysis of type material, lectotypification and current taxonomic status

FIGURES 1–15. Eunotia luna var aequalis Hustedt sensu Frenguelli and E. luna var. aequalis f. paucistriata Frenguelli. 1. Eunotia luna var aequalis Hustedt sensu Frenguelli. Original drawing of Frenguelli. 2. E. luna var. aequalis f. paucistriata Frenguelli. Original drawing. 3–15. LM. Size diminution series, note the variability in striae arrangement. 4, 8–9, 11. Specimens matching E. luna var. aequalis. 5, 13, 15. Specimens matching to E. luna var. aequalis f. paucistriata. 3, 6–7, 10, 12, 14. Specimens that could not be undoubtedly assigned to one of the mentioned taxa. 1–13, 15. Specimens from Series 268. 13. Lectotype of E. luna var. aequalis f. paucistriata. 14. Specimen from Series 261. Scale bars = 10 µm.

opennotspecifiedSep 2022View details →
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FIGURES 27–36. Eunotia luna var. aequalis f. major Frenguelli. 27 in Taxonomic revision of Eunotia luna var. aequalis f. paucistriata Frenguelli and E. luna var. aequalis f. major Frenguelli: analysis of type material, lectotypification and current taxonomic status

FIGURES 27–36. Eunotia luna var. aequalis f. major Frenguelli. 27. Original drawing of Frenguelli. 28–33. LM. Size diminution series. 34–36. SEM. Internal views. 34. General view of a tilted valve. 35. Detail of valve center showing the arrangement of striae. 36. Detail of the valve apex showing mantle areolation pattern in external view; note the raphe on the mantle in external view. 28–29. Specimen from Series 264. 30–36. Specimens from Series 265. 32. Lectotype of E. luna var. aequalis f. major. Scale bar = 10 µm (Figs 27–34), 5 µm (Figs 35–36).

opennotspecifiedSep 2022View details →
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FIGURES 1–10. Fragilaria pinnata var. subcapitata Frenguelli from the Calama diatomite type material. 1 in Fragilaria pinnata var. subcapitata Frenguelli, typification and current taxonomic status

FIGURES 1–10. Fragilaria pinnata var. subcapitata Frenguelli from the Calama diatomite type material. 1. Original drawing of Frenguelli (1930, p. 198, fig. 4). 2–10. Specimens from type population. Figs 2-7. LM. Specimens in valve view. Fig. 2. Lectotype. Figs 8–11. SEM. Specimens in external valve views. Figs 8–9. Whole frustules. Figs 10–11. Details of the apices, note the small pore field (arrow in Fig. 11) and spines with tips flattened and forked (arrowheads). Scale bars: 10 µm (Figs 2–7), 5 µm (Figs 8, 9), 1 µm (Figs 10, 11).

opennotspecifiedSep 2022View details →
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FIGURE 6. Cypridopsis schwartzi n in New ostracod species (Cypridopsis schwartzi n. sp.) from Texas, with discussion on the taxonomic status of Cypridopsis species in the USA

FIGURE 6. Cypridopsis schwartzi n. sp. A) Zenker Organ, B) Hemipenis, C) T1 of female, D) Uropod and genital organ of female. A-B, holotype; C-D, allotype. Scale: 100 μm.

opennotspecifiedOct 2022View details →
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FIGURE 5. Cypridopsis schwartzi n in New ostracod species (Cypridopsis schwartzi n. sp.) from Texas, with discussion on the taxonomic status of Cypridopsis species in the USA

FIGURE 5. Cypridopsis schwartzi n. sp. Male (Holotype): A) Mx1, B) Rake-like organ, C) Right clasping organ, D) Left clasping organ, E) T2, F) T3. Scale: 100 μm.

opennotspecifiedOct 2022View details →
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FIGURE 4. Cypridopsis schwartzi n in New ostracod species (Cypridopsis schwartzi n. sp.) from Texas, with discussion on the taxonomic status of Cypridopsis species in the USA

FIGURE 4. Cypridopsis schwartzi n. sp. Male (Holotype): A) A1, B) A2, C) Md, D) A2 of female (Allotype). Scale: 100 μm.

opennotspecifiedOct 2022View details →
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FIGURE 3. Cypridopsis schwartzi n in New ostracod species (Cypridopsis schwartzi n. sp.) from Texas, with discussion on the taxonomic status of Cypridopsis species in the USA

FIGURE 3. Cypridopsis schwartzi n. sp. Female. A) RV external view, B) LV external view, C) RV and D) LV internal views, E) Carapace dorsal view, F) Carapace ventral view, G) Pore openings with setae. A-B, allotype; C-F, paratypes. Scale 100 µm for A-F, 10 µm for G.

opennotspecifiedOct 2022View details →
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FIGURE 2. Cypridopsis schwartzi n in New ostracod species (Cypridopsis schwartzi n. sp.) from Texas, with discussion on the taxonomic status of Cypridopsis species in the USA

FIGURE 2. Cypridopsis schwartzi n. sp. Male. A) RV external view, B) LV external view, C) RV and D) LV internal views with details of anterior and posterior margins, E) Carapace dorsal view, F) Muscle scars. A-B, holotype; C-F, paratypes. Scale 100 µm for A-E, 10 µm for F.

opennotspecifiedOct 2022View details →

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Allen Brain Atlas

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neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

Annotated Behaviour and Observability Dataset (ABODe)

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Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record