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1,790 results for “taxonomic status”
FIGURE 1 in Redescription Of Papillacarus Hirsutus With Remarks On Taxonomic Status Of Papillacarus Arboriseta (Acari: Oribatida: Lohmanniidae)
FIGURE 1: Papillacarus hirsutus, adult. A – dorsal view; B – ventral view, gnathosoma and legs removed; C – rostrum and rostral setae; D – interlamellar seta; E – sensillus. Scale bar (A + B) 100 µm, scale bar (C, D, E) 10 µm.
FIGURE 4 in Redescription Of Papillacarus Hirsutus With Remarks On Taxonomic Status Of Papillacarus Arboriseta (Acari: Oribatida: Lohmanniidae)
FIGURE 4: Papillacarus hirsutus, adult. A – leg I, without trochanter, right, antiaxial view; B – leg II, without trochanter, right, antiaxial view; C – leg III, left, antiaxial view; D – leg IV, without trochanter, left, antiaxial view. Scale bar (A + B + C + D) 20 µm.
FIGURE 3 in Redescription Of Papillacarus Hirsutus With Remarks On Taxonomic Status Of Papillacarus Arboriseta (Acari: Oribatida: Lohmanniidae)
FIGURE 3: Papillacarus hirsutus, adult. A – epimera 1 and 2, left; B – epimera 3 and 4, left; C – epimeral seta 3a; D – epimeral seta 3b; E – seta of epimera 1, near subcapitulum; F – subcapitulum; G – palp; H – chelicera. Scale bar (A, B, J) 20 µm, scale bar (C + D + E) 10 µm, scale bar (F, H) 50 µm.
Fig. 1 in Previously undescribed dental arrangement among electric knifefishes, with comments on the taxonomic and conservation status of Tembeassu marauna Triques (Otophysi: Gymnotiformes: Apteronotidae)
Fig. 1. Holotype of Tembeassu marauna (MZUSP 48510), left side of head. Scale bar ~ 5 mm.
Figure 2 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 2. Comparison of some characters between T. i. imperator (A) and T. i. subgrisescens (B) (ventral view). Note the short white hairs tuft, blackish chin, and greyish-brown hairs on the lateral of the arm in A (arrow), and a long tuft of hairs, brown chin, and the lateral fringe of hairs silvery greyish in B (arrow).
Figure 6 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 6. Lateral of the face. Note the hairy ear in T. i. imperator (A) and naked in T. i. subgrisescens (B).
Figure 5 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 5. Rump and dorsal base of the tail grayish in T. i. imperator (A) and rufous in T. i. subgisescens (B).
Figure 4 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 4. Pelage patterns in T. i. imperator. (A, B, and C) MPEG 914, lectotype. (D, E, and F) MZUSP 4931 and 5012 from Manuel Urbano, Acre, Brazil. Note the dark greyish-brown tail (E), rufous belly (C, F), blackish throat and chin, no beard (F), and haired ear (B).
Figure 9 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 9. Bayesian phylogeny of the genus Saguinus inferred by Cytochrome-b abd 16S data. The posterior probability values are given above the branches.The outgroup was composed of Callimico, Callibella, Callithrix, Cebuella, Mico, and Lentopithecus species.
Figure 7 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 7. Top view of male specimens of the skulls of T. i. imperator (A = MZUSP 11238) and T. i. subgrisescens (B = MZUSP 4806), illustrating the difference in the general aspect.While in T. i. imperator the skull is more delicate and noticeably smaller, the skull of T. i. subgrisescens has both greater size and robustness. Applying the unified concept of species (de Queiroz, allopatric speciation (Gao et al., 2019), ecological stud- 2007) with several sources of evidence not only provides ies of T. imperator and T. subgrisescens might corroborate robustness to the delimitation of lineages, and there- our hypothesis of two lineages evolving independently fore species, but also allows inferences about more com- (Blanckaert et al., 2020). The second challenge is the deplex speciation processes to observe, such as parapatric limitation of the contact zone between the two taxa on speciation (Gao et al., 2019). Considering that parapat- the Acre-Peru border and checking for the presence or ric speciation occurs usually by the environmental gradi- absence of the hybridization zone, which could be due to ent (dispersion – Florio et al., 2012) and not by geograph- secondary contact or evolutionary processes that could ic/environmental ruptures as commonly postulated for be recent and ongoing.
Figure 1 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 1. Schematic skull of Tamarinus showing the delimitation of the measures used in the morphometric analyses.
Figure 10 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 10. Map of the geographic distribution of T. imperator (circles) and T. subgrisescens (triangle).
Figure 8. PCA and MANOVA scatterplot representing S. i in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 8. PCA and MANOVA scatterplot representing S. i. imperator (green) and S. i. subgrisescens from Peru (pink) and Brazilian Amazon (purple).
Fig. 114 in Morphology of Scrapter (Hymenoptera: Anthophila: Colletidae), with description of three new species and taxonomic status of five Cockerell taxa
Fig. 114. Lateral view of female Scrapter pyretus sp. n.
Fig. 105 in Morphology of Scrapter (Hymenoptera: Anthophila: Colletidae), with description of three new species and taxonomic status of five Cockerell taxa
Fig. 105. Dorsal view of female Scrapter pruinosus sp. n.
Figs 123, 124 in Morphology of Scrapter (Hymenoptera: Anthophila: Colletidae), with description of three new species and taxonomic status of five Cockerell taxa
Figs 123, 124. Dorsal and lateral views of female Ctenoplectrina ugandica.
Fig. 1 in Morphology of Scrapter (Hymenoptera: Anthophila: Colletidae), with description of three new species and taxonomic status of five Cockerell taxa
Fig. 1. Dorsal view of female Scrapter bicolor.
Fig. 122 in Morphology of Scrapter (Hymenoptera: Anthophila: Colletidae), with description of three new species and taxonomic status of five Cockerell taxa
Fig. 122. Dorsal view of male Scrapter sinophilus Cockerell.
Fig. 6. Dina ratschaensis Kobakhidze, 1958 in On the taxonomic status of Dina ratschaensis Kobakhidze, 1958 with a description of two new species - Dina imeretiensis sp. nov. and D. samegreloensis sp. nov. (Annelida, Hirudinida: Erpobdellidae)
Fig. 6. Dina ratschaensis Kobakhidze, 1958. Living specimen from Sakishore Cave.
FIGURE 1 in Questions on the taxonomic status of species of Protoholozoa Kott 1969 (Ascidiacea Aplousobranchia, Holozoidae) with a description of a new genus
FIGURE 1. Protoholozoa pedunculata: A,B, both sides of a colony from the Indian Ocean; C,D, zooids seen in transparency through the tunic. Scale bars = 1 cm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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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.