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5,864 results for “species diversity”
Figure 2 in Cryptic diversity in coastal Australasia: a morphological and mitonuclear genetic analysis of habitat-forming sibling species
Figure 2. Pyura doppelgangera sp. nov. A, anal border (view from above); B, anal border (lateral view); C, gonoduct left side; D, an individual specimen collected in Tasmania. Photograph: Carmen Primo; E, the same individual without tunic. Photograph: Carmen Primo; F, dorsal tubercle and lamina with languets; G, internal structure detailing the position of the hepatic gland, dorsal tubercle, gonad on the right side of the body and the gut and gonad on the left side. Scale bars: A-C = 1 mm; D, E = 20 mm; F = 2 mm; G = 10 mm.
Figure 1 in Cryptic diversity in coastal Australasia: a morphological and mitonuclear genetic analysis of habitat-forming sibling species
Figure 1. Scanning electron microscope photographs of the siphonal spines of the species comprising the Pyura stolonifera species complex. A, Pyura doppelgangera sp. nov., B, Pyura praeputialis, C, Pyura dalbyi, D, Pyura herdmani, E, P. stolonifera. Scale bars: A = 100 Mm; B, D = 40 Mm; C = 50 Mm; E = 10 Mm.
Figure 7 in Cryptic diversity in forest shrews of the genus Myosorex from southern Africa, with the description of a new species and comments on Myosorex tenuis
Figure 7. Dorsal, ventral, and lateral views of the cranium and lateral view of the mandible of the holotype of Myosorex meesteri sp. nov. (DM 4693). Scale bar: 2 mm.
Figure 2 in Cryptic diversity in forest shrews of the genus Myosorex from southern Africa, with the description of a new species and comments on Myosorex tenuis
Figure 2. Maximum-likelihood phylogeny (left) and maximum clade probability tree (right), inferred from the combined analysis of molecular data (mitochondrial DNA control region, 16S rRNA, and the nuclear intron STAT). The newly resurrected or described species Myosorex tenuis and Myosorex meesteri sp. nov. are in bold. Maximum-likelihood bootstrap and posterior probability (in that order) values are shown for nodes of the maximum-likelihood tree. Values above nodes of the maximum clade probability tree indicate the posterior mean divergence dates in millions of years before present. Shaded bars indicate the 95% highest posterior density (HPD) credibility intervals. Values below the nodes indicate posterior probability values generated during the BEAST dating analysis.
Figure 1 in Cryptic diversity in forest shrews of the genus Myosorex from southern Africa, with the description of a new species and comments on Myosorex tenuis
Figure 1. Map of southern Africa showing sampling localities for morphometric and molecular analyses of Myosorex. Grey shading represents the Great Escarpment of South Africa and the eastern Zimbabwean montane grassland–forest mosaic ecoregion of Olson et al. (2001). (Note: the Gorogosa locality overlies a small isolated patch of this ecoregion.) Symbols indicate recognized and newly defined species as follows: open and closed squares represent morphological and molecular sample localities, respectively, for Myosorex varius; open and closed triangles represent morphological and molecular samples, respectively, for Myosorex cafer; the hash symbols represent molecular samples of Myosorex sclateri; open and closed circles represent morphological and molecular samples, respectively, of Myosorex meesteri sp. nov.; crosses and asterisks represent morphological and molecular samples, respectively, of Myosorex cf. tenuis; ⊗, type locality (Zuurbron, Wakkerstroom District, Mpumalanga) of Myosorex tenuis. More details of the samples and localities are provided in Table 1 and the Appendix.
Figure 6 in Cryptic diversity in forest shrews of the genus Myosorex from southern Africa, with the description of a new species and comments on Myosorex tenuis
Figure 6. Photographs of the fourth unicuspid and adjacent molars in the upper tooth rows of: (A) TM 10448, Myosorex sclateri (Ngoye Hills, KwaZulu-Natal); (B) TM 41824, Myosorex varius (Karkloof, KwaZulu-Natal); (C) TM 793, Myosorex cf. tenuis (Wakkerstroom, Mpumalanaga); (D) TM 25843, Myosorex cf. tenuis (Entabeni, Soutpansberg Range, Limpopo); (E) TM 34613, Myosorex meesteri sp. nov. (Mount Selinda, Chirinda Forest, Zimbabwe).
Figure 5 in Cryptic diversity in forest shrews of the genus Myosorex from southern Africa, with the description of a new species and comments on Myosorex tenuis
Figure 5. Map showing distribution of two distinct morphological groups in the Soutpansberg Mountains and northern Drakensberg Mountains of Limpopo Province in relation to a map of annual precipitation (AP) for the region (pale-grey shading indicates AP of 800–1000 mm; dark-grey shading indicates AP of 1000–1300 mm; black indicates AP> 1300 mm). Open triangles represent the smaller-sized morph (from Woodbush and Lajuma), whereas open squares indicate the large-sized populations from east of the Sand River in the Soutpansberg (Buzzard Mount, Hanglip, Farm Middelfontein, and Entabeni Forest). The dashed line outlines the extent of the Soutpansberg Mountains.
Figure 9. A in Integrative taxonomy uncovers high levels of cryptic species diversity in Hemiphyllodactylus Bleeker, 1860 (Squamata: Gekkonidae) and the description of a new species from Peninsular Malaysia
Figure 9. A, Hemiphyllodactylus sp. nov. 7 (LSUDPC 6668) from Chiang Mai, Chiang Mai Province, Thailand; photo by P.L. Wood. B, Hemiphyllodactylus sp. nov. 8 (USNM 570374) from Pyin-Oo-Lwin, Mandalay Division, Myanmar; photo by G. Zug.
Figure 5. A in Integrative taxonomy uncovers high levels of cryptic species diversity in Hemiphyllodactylus Bleeker, 1860 (Squamata: Gekkonidae) and the description of a new species from Peninsular Malaysia
Figure 5. A, holotype of Hemiphyllodactyus tehtarik sp. nov. (LSUHC 10904) from Gunung Tebu, Terengganu, Malaysia; photo by L. Grismer. B, adult female Hemiphyllodactylus larutensis (LSUHC 11294) from Bukit Larut, Perak, Malaysia; photo by L. Grismer. C, adult male holotype of Hemiphyllodactylus larutensis (holotype BM 1901.3.20.2) from Bukit Larut, Perak, Malaysia; photo by G. Zug. D, adult male Hemiphylodactylus larutensis (LSUHC 11298) from Bukit Larut, Perak, Malaysia; photo by L. Grismer. E, adult male Hemiphyllodactylus harterti (LSUHC 10383) from Bukit Larut, Perak, Malaysia; photo by L. Grismer. F, adult female Hemiphyllodactylus harterti (holotype ZMB 1360) from Gunung Hijau, Perak, Peninsular Malaysia; photo by M.-O. Rödel.
Figure 7. A in Integrative taxonomy uncovers high levels of cryptic species diversity in Hemiphyllodactylus Bleeker, 1860 (Squamata: Gekkonidae) and the description of a new species from Peninsular Malaysia
Figure 7. A, adult male Hemiphyllodactylus sp. nov. 2 (LSUHC 5759) from Pulau Sibu, Johor, Malaysia; photo by L. Grismer. B, adult female Hemiphyllodactylus sp. nov. 3 (MVZ 239345) from Pulau Enggano, Sumatra, Indonesia; photo by J. McGuire.
Figure 8. A in Integrative taxonomy uncovers high levels of cryptic species diversity in Hemiphyllodactylus Bleeker, 1860 (Squamata: Gekkonidae) and the description of a new species from Peninsular Malaysia
Figure 8. A, adult male Hemiphyllodactylus sp. nov. 5 (PNM 7666) from Palaui Island; photo by R.M. Brown. B, adult male Hemiphyllodactylus insularis (KU uncatalogued) from Pasonanca, Zamboanga, Western Mindanao, Philippines. C, adult female Hemiphyllodactylus sp. nov. 4 (KU 331843) from Mount Lanoy, Municipality of Argao, Cebu Province, Philippines; photo by R.M. Brown.
Figure 2 in Integrative taxonomy uncovers high levels of cryptic species diversity in Hemiphyllodactylus Bleeker, 1860 (Squamata: Gekkonidae) and the description of a new species from Peninsular Malaysia
Figure 2. Distribution of the species of Hemiphyllodactylus examined (see the Appendix for a list of the Hemiphyllodactylus typus examined). Hemiphyllodactylus aurantiacus from Yercaud, Salem District (Shevaroyan Hill Range), Tamil Nadu, India; Hemiphyllodactylus ganoklonis from Palau Ngercheu; Hemiphyllodactylus harterti and Hemiphyllodactylus larutensis from Bukit Larut, Perak, Malaysia; Hemiphyllodactylus insularis from the Municipality of Pasonaca, Zamboanga City, Zamboanga City Province, Philippines; Hemiphyllodactylus tehtarik from Gunung Tebu, Terengganu, Malaysia; Hemiphyllodactylus titiwangsaensis from the Cameron Highlands, Pahang, Malaysia; Hemiphyllodactylus sp. nov. 1 from Fraser's Hill and the Genting Highlands, Pahang; Hemiphyllodactylus sp. nov. 2 from Pulau Sibu, Johor, Malaysia; Hemiphyllodactylus sp. nov. 3 from Pulau Enggano, Bengkulu Province, Sumatra, Indonesia; Hemiphyllodactylus sp. nov. 4 from Mount Lantoy, Municipality of Argao, Cebu Province, Cebu, Philippines; Hemiphyllodactylus sp. nov. 5 from Pulaui Island, Barangay Palaui, Municipality of Santa Ana, Cagayan Province, Philippines; Hemiphyllodactylus sp. nov. 6 from Barangay Kaim, Municipality of San Francisco, Agusan del Sur Province, Mindanao, Philippines; Hemiphyllodactylus sp. nov. 7 from Chiang Mai, Chiang Mai Province, Thailand; Hemiphyllodactylus sp. nov. 8 from Pyin-Oo-Lwin, Mandalay Division, Myanmar; Hemiphyllodactylus sp. nov. 9 from Pakxong District, Champasak Province, Laos; Hemiphyllodacylus zugi from Vinh Phu, Vietnam; and Hemiphyllodactylus sp. nov. 10 from Ba Na-Nui Chua Nature Reserve, Da Nang Province, Vietnam. Localities of Hemiphyllodactylus dushnanesis (closed yellow circles), Hemiphyllodactylus jinpingensis (closed blue circles), Hemiphyllodactylus longlingensis (closed orange circles), and Hemiphyllodactylus yunnanensis (closed green circles) follow Zhou et al. (1981), except for the southern specimen of H. dushanensis from Vinh Phuc, Vinh Phuc Province, Vietnam reported here.
Figure 1 in Integrative taxonomy uncovers high levels of cryptic species diversity in Hemiphyllodactylus Bleeker, 1860 (Squamata: Gekkonidae) and the description of a new species from Peninsular Malaysia
Figure 1. Maximum-likelihood phylogram (–lnL 22097.690183) of the genus Hemiphyllodactylus Bleeker, 1860 with Bayesian posterior probabilities and maximum-likelihood bootstrap values, respectively.
Figure 6. A in Integrative taxonomy uncovers high levels of cryptic species diversity in Hemiphyllodactylus Bleeker, 1860 (Squamata: Gekkonidae) and the description of a new species from Peninsular Malaysia
Figure 6. A, adult male Hemiphyllodactylus titiwangsaensis (LSUDPC 4506) from Cameron Highlands, Pahang, Peninsular Malaysia. B, adult female Hemiphyllodactylus sp. nov. 1 from Genting Highlands, Pahang, Peninsular Malaysia. C, adult male Hemiphyllodactylus sp. nov. 1 from Fraser's Hill, Pahang, Peninsular Malaysia.
Figure 10. A in Integrative taxonomy uncovers high levels of cryptic species diversity in Hemiphyllodactylus Bleeker, 1860 (Squamata: Gekkonidae) and the description of a new species from Peninsular Malaysia
Figure 10. A, adult Hemiphyllodactylus auriantiacus (LSUDPC 7006) from Yercaud, Salem District (Shevaroyan Hill Range), Tamil Nadu, India. B, adult Hemphyllodactylus sp. nov. 10 (ITBCZ 2450). C, male Hemphyllodactylus sp. nov. 10 (LSUDPC 6675) from Ba Na-Nui Chua Nature Reserve, Hoa Vang District, Da Nang City Province, Vietnam; photos B and C by Ngo Van Tri. D, adult male Hemiphyllodactylus zugi (LSUDPC 8089) from Cao Bang Province, Vietnam; Photo by T. Q. Nguyen and T. Lehmann.
Figure 3. Cave-adapted dipluran species described from 1871 in REVIEW Diplura in caves: diversity, ecology, evolution and biogeography
Figure 3. Cave-adapted dipluran species described from 1871 to 2020; photographs of the authors arranged from right to left and from top to bottom: Alpheus Spring Packard, Armand Viré, Filippo Silvestri, Jean Robert Denis, Petr Wygodzinsky, Boris Pimenovitch Chevrizov, Bruno Condé, Jean Pagés and Mark Alan Muegge. Courtesy of Bernd Hauser, Sergei Golovatch and Ernest C. Bernard.
FIGURES 46–48 in Diversity of Armenian mayflies (Ephemeroptera) with the description of a new species of the genus Ecdyonurus (Heptageniidae)
FIGURES 46–48. Sites of occurrence of Ecdyonurus (Ecdyonurus) eurycephalus sp. nov.: 46, site 36 (type locality); 47, site 38; 48, site 35.
FIGURES 27–28 in Diversity of Armenian mayflies (Ephemeroptera) with the description of a new species of the genus Ecdyonurus (Heptageniidae)
FIGURES 27–28. Ecdyonurus (Ecdyonurus) eurycephalus sp. nov., leg: 27, hind leg dorsal; 28a–h, setae on dorsal surface of femora.
FIGURES 24–26 in Diversity of Armenian mayflies (Ephemeroptera) with the description of a new species of the genus Ecdyonurus (Heptageniidae)
FIGURES 24–26. Ecdyonurus (Ecdyonurus) eurycephalus sp. nov., mouthparts: 24, labrum dorsal (left) and ventral (right); 25, labrum contour; 26, labial glossae and paraglossae: left part ventral view, right part contour.
FIGURES 13–14 in Diversity of Armenian mayflies (Ephemeroptera) with the description of a new species of the genus Ecdyonurus (Heptageniidae)
FIGURES 13–14. Ecdyonurus (Ecdyonurus) eurycephalus sp. nov., genitalia of male imago: 13, styliger, forceps and penis ventral; 14, penis dorsal.
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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.