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3,507 results for “Species identification”
Figure 4 in COI barcoding provides reliable species identification and pinpoints cryptic diversity in Western Palearctic amphibians
Figure 4. Representation of the barcoding gap for the Anura (upper panel) and Caudata (bottom panel) datasets. Each individual in the dataset is represented by a vertical line in: blue, when a barcoding gap exists (the bottom of the line representing the maximum intraspecific distance, and the top of the line representing the minimum interspecific distance);
Figure 3 in COI barcoding provides reliable species identification and pinpoints cryptic diversity in Western Palearctic amphibians
Figure 3. Gene tree constructed using the DNA barcode fragment of the COI mitochondrial gene tree for Western Palearctic urodeles, estimated under a Bayesian framework. Nodes are collapsed at the genus level and colours correspond to genera; images are a representative species for each genus. Black dots on nodes indicate posterior probabilities> 0.90.
Figure 5 in COI barcoding provides reliable species identification and pinpoints cryptic diversity in Western Palearctic amphibians
Figure 5. Results from barcoding efficiency methods (BOLDi and Meier's BCM) to determine the consistency of DNA barcodes with currently accepted taxonomy for Anura (top) and Caudata (bottom) datasets.
Figure 2 in COI barcoding provides reliable species identification and pinpoints cryptic diversity in Western Palearctic amphibians
Figure 2. Gene tree constructed using the DNA barcode fragment of the COI mitochondrial gene tree for Western Palearctic anurans, estimated under a Bayesian framework. Nodes are collapsed at the genus level and colours correspond to genera; Downloaded from Brill.com 08/07/2024 04:59:37PM images are for one representative species for via eachOpen genus. Access Black. dots Thisonis an nodesopen indicateaccessposterior articleprobabilities distributed> 0.90 under. the terms
Figure 1 in COI barcoding provides reliable species identification and pinpoints cryptic diversity in Western Palearctic amphibians
Figure 1. The distribution of samples for Anura and Caudata datasets included in this study with the limits of the Western Palearctic region and georeferenced samples indicated.
Fig. 16 in Orictites Andrewes, 1931, from South East Asia: Second part of the revision with descriptions of five new species and update of the identification key to the species (Coleoptera: Carabidae: Clivinini)
Fig. 16. Distribution of the species of the genus Orictites in South East Asia (update; recorded localities of all species plotted).
Figs 8-12 in Orictites Andrewes, 1931, from South East Asia: Second part of the revision with descriptions of five new species and update of the identification key to the species (Coleoptera: Carabidae: Clivinini)
Figs 8-12. Orictites spp., aedeagus, ventral view, scale bar 0.2 mm. 8. O. apertopunctatus sp. nov., holotype. – 9. O. ferrugistriatus sp. nov., holotype. – 10. O. reticupennis sp. nov., holotype. – 11. O. opacipennis sp. nov., holotype. – 12. O. reticuventris sp. nov., holotype.
Figs 6-7 in Orictites Andrewes, 1931, from South East Asia: Second part of the revision with descriptions of five new species and update of the identification key to the species (Coleoptera: Carabidae: Clivinini)
Figs 6-7. Orictites (subgenus Semictites) spp., surface of elytron between first and second dorsal setigerous puncture. 6. O. reticupennis sp. nov., holotype. – 7. O. opacipennis sp. nov., holotype.
Figs 1-5 in Orictites Andrewes, 1931, from South East Asia: Second part of the revision with descriptions of five new species and update of the identification key to the species (Coleoptera: Carabidae: Clivinini)
Figs 1-5. Orictites (subgenus Semictites) spp., habitus, scale bar 1 mm. 1. O. apertopunctatus sp. nov., holotype, male. – 2. O. ferrugistriatus sp. nov., holotype, male. 3. O. reticupennis sp. nov., holotype, male. – 4. O. opacipennis sp. nov., holotype, male. – 5. O. reticuventris sp. nov., holotype, male.
Figs 13-15 in Orictites Andrewes, 1931, from South East Asia: Second part of the revision with descriptions of five new species and update of the identification key to the species (Coleoptera: Carabidae: Clivinini)
Figs 13-15. Orictites spp., coxostyli, scale bar 0.1 mm. 13. O. ferrugistriatus sp. nov., paratype. – 14. O. reticupennis sp. nov., paratype. – 15. O. opacipennis sp. nov., paratype.
Fig. 7. Sogana longiceps Fennah, 1978 in The planthopper genus Sogana Matsumura, 1914 in Vietnam: Two new species, new records and identification key (Hemiptera: Fulgoromorpha: Tropiduchidae)
Fig. 7. Sogana longiceps Fennah, 1978, holotype ♂. A, habitus dorsal view. B, habitus, ventral view. C, right tegmen. D, habitus, lateral view. E, head and thorax, dorsal view. F, head and thorax, laterodorsal view. G, frons, perpendicular view. H, head and thorax, lateral view.
Fig. 6 in The planthopper genus Sogana Matsumura, 1914 in Vietnam: Two new species, new records and identification key (Hemiptera: Fulgoromorpha: Tropiduchidae)
Fig. 6. Sogana baviana sp. nov. A–B, holotype ♂ in Ba Vi National Park, 25.VI.2015. C, habitat (photographs © J. Constant).
Fig. 5 in The planthopper genus Sogana Matsumura, 1914 in Vietnam: Two new species, new records and identification key (Hemiptera: Fulgoromorpha: Tropiduchidae)
Fig. 5. Sogana baviana sp. nov., holotype ♂. A, pygofer, anal tube and gonostyli, left lateral view. B, pygofer, anal tube and gonostyli, right lateral view. C, left gonostylus, dorsal view. D, pygofer, anal tube and gonostyli, dorsal view. E, aedeagus, right lateral view. F, aedeagus, left lateral view. G, aedeagus, dorsal view. H, aedeagus, left posterolateral view. I, aedeagus, ventral view. An: anal tube – cn: connective – esp: ear-shaped process of aedeagus – G: gonostylus – ldp: left dorsal process of aedeagus – lpp: lateral process of periandrium – pe: periandrium – Py: pygofer – rdp: right dorsal process of aedeagus – rlp: right lateral process of aedeagus – vpp: ventral process of periandrium.
Fig. 4 in The planthopper genus Sogana Matsumura, 1914 in Vietnam: Two new species, new records and identification key (Hemiptera: Fulgoromorpha: Tropiduchidae)
Fig. 4. Sogana baviana sp. nov., holotype ♂. A, habitus dorsal view. B, habitus, ventral view. C, habitus, normal view of frons. D, habitus, lateral view. E, right tegmen. F, right posterior wing. G, head and thorax, lateral view. H, frons, perpendicular view. I, head and thorax, dorsal view. J, head and thorax, laterodorsal view.
Fig. 2 in The planthopper genus Sogana Matsumura, 1914 in Vietnam: Two new species, new records and identification key (Hemiptera: Fulgoromorpha: Tropiduchidae)
Fig. 2. Sogana bachmana sp. nov., holotype ♂. A, pygofer, anal tube and gonostyli, left lateral view. B, pygofer, anal tube and gonostyli, right lateral view. C, left gonostylus, dorsal view. D, pygofer, anal tube and gonostyli, dorsal view. E, aedeagus, right lateral view. F, aedeagus, left lateral view. G, aedeagus, dorsal view. H, aedeagus, left posterolateral view. I, aedeagus, ventral view. An: anal tube – cn: connective – esp: ear-shaped process of aedeagus – G: gonostylus – ldp: left dorsal process of aedeagus – pe: periandrium – Py: pygofer – rdp: right dorsal process of aedeagus – vpp: ventral process of periandrium.
Fig. 8. Sogana longiceps Fennah, 1978 in The planthopper genus Sogana Matsumura, 1914 in Vietnam: Two new species, new records and identification key (Hemiptera: Fulgoromorpha: Tropiduchidae)
Fig. 8. Sogana longiceps Fennah, 1978, holotype ♂. A, pygofer, anal tube and gonostyli, left lateral view. B, pygofer, anal tube and gonostyli, right lateral view. C, left gonostylus, dorsal view. D, pygofer, anal tube and gonostyli, dorsal view. E, aedeagus, right lateral view. F, aedeagus, left lateral view. G, aedeagus, dorsal view. H, aedeagus, left posterolateral view. I, aedeagus, ventral view. An: anal tube – cn: connective – esp: ear-shaped process of aedeagus – G: gonostylus – ldp: left dorsal process of aedeagus – pe: periandrium – Py: pygofer – rdp: right dorsal process of aedeagus – rlp: right lateral process of aedeagus – vpp: ventral process of periandrium.
Fig. 1 in The planthopper genus Sogana Matsumura, 1914 in Vietnam: Two new species, new records and identification key (Hemiptera: Fulgoromorpha: Tropiduchidae)
Fig. 1. Sogana bachmana sp. nov., holotype ♂. A, habitus dorsal view. B, habitus, ventral view. C, habitus, perpendicular view of frons. D, habitus, lateral view. E, right tegmen. F, frons, normal view right posterior wing. G, head and thorax, dorsal view. H, head and thorax, lateral view. I, head and thorax, laterodorsal view.
FIGURE 2 in A new species of Leptometopa Becker, 1903 (Diptera, Milichiidae) and an identification key for the neotropical species of the genus
FIGURE 2: A-D. Leptometopa veracildae sp. n. A, male sternite 5, ventral view; B, synsternite 7/8, posterior view; C, male genitalia, posterior view; D, male genitalia, lateral view. Abbreviations: ce – cerci; ep – epandrium; hyp – hypandrium; ph – phallus; phap – phallapodeme; preg – pregonite; sur – surtylus. Scales 0,05 mm.
FIGURE 3 in A new species of Leptometopa Becker, 1903 (Diptera, Milichiidae) and an identification key for the neotropical species of the genus
FIGURE 3: A-B. Leptometopa veracildae sp. n. A, female ovipositor, dorsal view. B, female ovipositor, ventral view. Abbreviations: ce – cerci; rbs – ring of barbed spines; S – sternite; sba – subanal plate; spa – supranal plate; T – tergite. Scales 0,1 mm.
FIGURE 1 in A new species of Leptometopa Becker, 1903 (Diptera, Milichiidae) and an identification key for the neotropical species of the genus
FIGURE 1: A-C. Leptometopa veracildae sp. n. A, head, frontal view; B, head, lateral view; C, wing. Abbreviations: fr s –frontal seta; if s – interfrontal setula; l v s – lateral vertical seta; m v s – medial vertical seta; oc s – ocellar seta; orb s – orbital seta; poc s – postocellar seta; vi – vibrissa. Scales 0.5 mm.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.
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.
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.