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676 results for “Manis”

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zenodo32/100

Figs 3–4 in New species of many-plumed moth (Lepidoptera: Alucitidae) from the Democratic Republic of Congo

Figs 3–4. Alucita katanga, sp.n.: 3 — adult, male, holotype; 4 — male genitalia, holotype (MHNG gen.pr. 202006). Рис. 3–4. Alucita katanga, sp.n.: 3 — имаго, самец, голотип; 4 — Гениталии самца, голотип (MHNG gen.pr. 202006).

opennotspecifiedDec 2020View details →
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Figs 1–2 in New species of many-plumed moth (Lepidoptera: Alucitidae) from the Democratic Republic of Congo

Figs 1–2. Alucita romieuxi, sp.n.: 1 — adult, male, holotype; 2 — male genitalia, holotype (MHNG gen.pr. 202005). Рис. 1–2. Alucita romieuxi, sp.n.: 1 — имаго, самец, голотип; 2 — гениталии самца, голотип (MHNG gen.pr. 202005).

opennotspecifiedDec 2020View details →
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FIGURES 9–11 in New species of many-plumed moths (Lepidoptera: Alucitidae) from Tanzania

FIGURES 9–11. Alucita tanzanica Ustjuzhanin & Kovtunovich sp. nov. 9. Adult (Holotype, NHMO); 10. Male genitalia (Holotype, NHMO 2903); 11. Female genitalia (Paratype, NHMO 2904).

opennotspecifiedJun 2018View details →
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FIGURES 5–6 in New species of many-plumed moths (Lepidoptera: Alucitidae) from Tanzania

FIGURES 5–6. Alucita snezhinka Ustjuzhanin & Kovtunovich sp. nov. 5. Adult, male (Holotype, NHMO); 6. Adult, female (Paratype, CUK).

opennotspecifiedJun 2018View details →
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FIGURES 7–8 in New species of many-plumed moths (Lepidoptera: Alucitidae) from Tanzania

FIGURES 7–8. Alucita snezhinka Ustjuzhanin & Kovtunovich sp. nov. 7. Male genitalia (Holotype, NHMO 2901); 8. Female genitalia (Paratype, NHMO 2902).

opennotspecifiedJun 2018View details →
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FIGURES 3, 4 in New species of many-plumed moths (Lepidoptera: Alucitidae) from Tanzania

FIGURES 3, 4. Alucita iringiensis Ustjuzhanin & Kovtunovich sp. nov. 3. Adult (Holotype, NHMO); 4. Female genitalia (Holotype, NHMO 2900).

opennotspecifiedJun 2018View details →
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FIGURES 1, 2 in New species of many-plumed moths (Lepidoptera: Alucitidae) from Tanzania

FIGURES 1, 2. Alucita agassizi Ustjuzhanin & Kovtunovich sp. nov. 1. Adult (Holotype, BMNH); 2. Female genitalia (Holotype, BMNH 29792).

opennotspecifiedJun 2018View details →
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FIGURE 46 in Revision of the Scopula dubernardi species group: how many species? (Lepidoptera: Geometridae, Sterrhinae)

FIGURE 46. Geographical distribution of examined material for Scopula dubernardi (triangles) and S. segregata (cross).

opennotspecifiedApr 2006View details →
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FIGURES 3–5 in Revision of the Scopula dubernardi species group: how many species? (Lepidoptera: Geometridae, Sterrhinae)

FIGURES 3–5. External variation of Scopula segregata Prout (Figs. 3, 4) and S. dubernardi (Oberthür) (Fig. 5). 3a–f (Li­kiang). 4a–e (Paan); f (Kangting). 5a–b (Li­kiang); c (Paan); d–e (Tehtsin); f (Li­kiang). All places are in northern Yunnan, China. Males are in left and females are in right columns.

opennotspecifiedApr 2006View details →
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FIGURES 42–43. Female genitalia. 42 in Revision of the Scopula dubernardi species group: how many species? (Lepidoptera: Geometridae, Sterrhinae)

FIGURES 42–43. Female genitalia. 42, Scopula segregata from Paan, Tibet, China (slide PS1006); 43, S. dubernardi from Tehtsin, North­Yunnan, China (slide PS1010). Point of origin of the ductus seminalis is indicated.

opennotspecifiedApr 2006View details →
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FIGURE 7. L.A. Lantz received many specimens from his Russian colleague G.F in Additional data on the herpetological collection of Louis Amédée Lantz (1886 - 1953), with emphasis on specimens in the Natural History Museum, London

FIGURE 7. L.A. Lantz received many specimens from his Russian colleague G.F. Sukhov like this Darevskia caucasica from Georgia that he later deposited in the Natural History Museum collections (BMNH 1966.765).

opennotspecifiedJul 2019View details →
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text-fig. 36. Theropod mani in dorsal view, illustrating several manual characters, a, Dilophosaurus wetherillv, left manus; UCMP V 4214. B, Allosaurus fragilis', right manus; MOR 693. Scale bars represent 10 mm. in The interrelationships and evolution of basal theropod dinosaurs

text-fig. 36. Theropod mani in dorsal view, illustrating several manual characters, a, Dilophosaurus wetherillv, left manus; UCMP V 4214. B, Allosaurus fragilis', right manus; MOR 693. Scale bars represent 10 mm.

opennotspecifiedMay 2003View details →
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text-fig. 5. Skull reconstructions of representatives of Jurassic OTUs in left lateral view, a, Dilophosaurus wetherilli, Early Jurassic (Sinemurian-Pliensbachian), Kayenta Formation, Arizona, USA; based on UCMP V 4214 and V 6468. B, Syntarsus rhodesiensis, Early Jurassic (Hettangian-Sinemurian), Forest Sandstone, Zimbabwe; composite reconstruction based on many isolated skull elements from the National Museum of Natural History in Harare (see Appendix), c, Magnosaurus oxoniensis, Middle Jurassic (Callovian), Oxford Clay, England; based on OUM J 13558, unpreserved elements shaded. D, Monolophosaurus jiangi, Middle Jurassic, Wucaiwan Formation, China; redrawn from Zhao and Currie (1993b). E, Allosaurus fragilis, Late Jurassic (Kimmeridgian-Tithonian), Morrison Formation, USA; based on MOR 693. f, basal bird Archaeopteryx sp., Late Jurassic (Tithonian), lithographic limestones of Solnhofen, Germany; based on Wellnhofer (1974), Elzanowski and Wellnhofer (1996), and the Berlin, Eichstätt, and Munich specimens. G, Ceratosaurus sp., Late Jurassic (Kimmeridgian-Tithonian), Morrison Formation, USA; based on USNM 4735 and UMNH VP 5278. H, Ornitholestes hermanni, Late Jurassic (Kimmeridgian-Tithonian), Morrison Formation, USA, based on AMNH 619. Abbreviations as in Text-figure 4, and: If, lacrimal fenestra; mf, maxillary fenestra; nf, nasal foramen; pmf, promaxillary fenestra. Scale bars represent 10 mm (b, f, h), 50 mm (c) and 100 mm (a, d, e, g). in The interrelationships and evolution of basal theropod dinosaurs

text-fig. 5. Skull reconstructions of representatives of Jurassic OTUs in left lateral view, a, Dilophosaurus wetherilli, Early Jurassic (Sinemurian-Pliensbachian), Kayenta Formation, Arizona, USA; based on UCMP V 4214 and V 6468. B, Syntarsus rhodesiensis, Early Jurassic (Hettangian-Sinemurian), Forest Sandstone, Zimbabwe; composite reconstruction based on many isolated skull elements from the National Museum of Natural History in Harare (see Appendix), c, Magnosaurus oxoniensis, Middle Jurassic (Callovian), Oxford Clay, England; based on OUM J 13558, unpreserved elements shaded. D, Monolophosaurus jiangi, Middle Jurassic, Wucaiwan Formation, China; redrawn from Zhao and Currie (1993b). E, Allosaurus fragilis, Late Jurassic (Kimmeridgian-Tithonian), Morrison Formation, USA; based on MOR 693. f, basal bird Archaeopteryx sp., Late Jurassic (Tithonian), lithographic limestones of Solnhofen, Germany; based on Wellnhofer (1974), Elzanowski and Wellnhofer (1996), and the Berlin, Eichstätt, and Munich specimens. G, Ceratosaurus sp., Late Jurassic (Kimmeridgian-Tithonian), Morrison Formation, USA; based on USNM 4735 and UMNH VP 5278. H, Ornitholestes hermanni, Late Jurassic (Kimmeridgian-Tithonian), Morrison Formation, USA, based on AMNH 619. Abbreviations as in Text-figure 4, and: If, lacrimal fenestra; mf, maxillary fenestra; nf, nasal foramen; pmf, promaxillary fenestra. Scale bars represent 10 mm (b, f, h), 50 mm (c) and 100 mm (a, d, e, g).

opennotspecifiedMay 2003View details →
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FFIGURES 30–41 in Revision of the Scopula dubernardi species group: how many species? (Lepidoptera: Geometridae, Sterrhinae)

FFIGURES 30–41. Variation of the male 8th segment. 30–33, Scopula segregata, from 'contrastic' specimens referable to specimens in Fig. 3; 34–37, S. segregata, from 'light' specimens referable to specimens in Fig. 4; 38–41, S. dubernardi. Numbers in right hand corner refer to slide numbers. Figure 30 is the lectotype of S. segregata and Fig. 38 is the lectotype of S. dubernardi. Figures to scale. Diagnostic structure in posterior margin of the mappa is indicated.

opennotspecifiedApr 2006View details →
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Fig. 6 in How many taxa? Spatiotemporal evolution and taxonomy of Amphoricarpos (Asteraceae, Carduoideae) on the Balkan Peninsula

Fig. 6 Morphological variation in Amphoricarpos on the Balkan Peninsula based on 17 metric characters and six ratios. a, c Principal component analysis. b, d Canonical discriminant analyses. Labelling and grouping in a and b follow Blečić and Mayer (1967), in c and d they reflect the five BAPS clusters shown in Fig. 5b–e

opennotspecifiedMay 2015View details →
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Fig. 2 in How many taxa? Spatiotemporal evolution and taxonomy of Amphoricarpos (Asteraceae, Carduoideae) on the Balkan Peninsula

Fig. 2 Relationships of Amphoricarpos from the Balkan Peninsula inferred from phylogenetic analyses of Internal Transcribed Spacer (ITS) sequences. a Bayesian consensus phylogram; numbers above branches are bootstrap values>50 %, those below branches PP values>0.50. b Bayesian consensus chronogram (obtained

opennotspecifiedMay 2015View details →
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Fig. 1 in How many taxa? Spatiotemporal evolution and taxonomy of Amphoricarpos (Asteraceae, Carduoideae) on the Balkan Peninsula

Fig. 1 Sampled populations of Amphoricarpos on the Balkan Peninsula. The inserts show the position of the sampled area in southeastern Europe and a plant from population 26. The taxonomic assignment follows Blečić and Mayer (1967)

opennotspecifiedMay 2015View details →
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Fig. 4 in How many taxa? Spatiotemporal evolution and taxonomy of Amphoricarpos (Asteraceae, Carduoideae) on the Balkan Peninsula

Fig. 4 NeighborNet diagram based on uncorrected P distances derived from AFLP data of Amphoricarpos from the Balkan Peninsula. Numbers positioned along the splits are bootstrap values derived from Neighbourjoining analysis (1,000 replicates). Populations are coded as in Fig. 1 and

opennotspecifiedMay 2015View details →
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Fig. 3 in How many taxa? Spatiotemporal evolution and taxonomy of Amphoricarpos (Asteraceae, Carduoideae) on the Balkan Peninsula

Fig. 3 Relationships of Amphoricarpos from the Balkan Peninsula inferred from phylogenetic analyses of plastid rps16–trnK sequences. a, Bayesian consensus phylogram; numbers above branches are bootstrap values>50 %, those below branches PP values>0.50. b, Statistical parsimony network. Small black dots represent unsampled haplotypes, numbers are population identifiers as in Fig. 1 and Table 1

opennotspecifiedMay 2015View details →
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FIGURE 1 in The holotype of Chenopodium baryosmon (Chenopodiaceae) rediscovered: just one of many type specimens from the private herbarium of Schultes, now in the Turczaninow herbarium at KW

FIGURE 1. Holotype of Chenopodium baryosmon (≡ Salsola baryosma, now treated as a synonym of Caroxylon imbricatum), KW001002885; the only actual specimen of the species seen by Schultes (courtesy of the National Herbarium of Ukraine, KW).

opennotspecifiedJan 2018View details →

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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.

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OpenNeuro

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Last verified 2026-04-29Open record