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712 results for “Beetle diversity”
FIGURE 49 in The Batrisini of Tibet: unveiling an enigmatic ant-loving beetle diversity at Earth's "Third Pole" (Coleoptera, Staphylinidae, Pselaphinae)
FIGURE 49. Morphology of Sathytes aequalis sp. nov. (A–F. Male. G. Female). A. Dorsal habitus. B. Head and pronotum. C. Antennomeres 9–11. D. Antennomere 9. E. Sternite 7 (IX). F. Aedeagus, ventral. G. Genitalia. Scale bars: 0.5 mm in A; 0.3 mm in B, C; 0.1 mm in D–G.
FIGURE 47 in The Batrisini of Tibet: unveiling an enigmatic ant-loving beetle diversity at Earth's "Third Pole" (Coleoptera, Staphylinidae, Pselaphinae)
FIGURE 47. Morphology of Gyrongita gen. nov. A. Meso- and metaventrite. B–D. Abdomen, in dorsal (B), lateral (C) and ventral (D). Abbreviations: amsp—antero mesoventral projection, blf—basolateral fovea, lmcf—lateral mesocoxal fovea, lmsf—lateral mesoventral fovea, lmtf—lateral metaventral fovea, mbf—mediobasal fovea, mc—marginal carina, mmsf—median mesoventral fovea, s2–5—sternites 2–5 (IV–VII), t1–4—tergites 1–4 (IV–VII). Scale bars: 0.2 mm in A; 0.3 mm in B–D.
FIGURE 54 in The Batrisini of Tibet: unveiling an enigmatic ant-loving beetle diversity at Earth's "Third Pole" (Coleoptera, Staphylinidae, Pselaphinae)
FIGURE 54. Morphology of Sathytes laticornis sp. nov. (A–F. Male. G. Female). A. Dorsal habitus. B. Head and pronotum. C. Antennomeres 9–11. D. Antennomere 9. E. Sternite 7 (IX). F. Aedeagus, ventral. G. Genitalia. Scale bars: 0.5 mm in A; 0.3 mm in B; 0.2 mm in C; 0.1 mm in D–G.
FIGURE 51 in The Batrisini of Tibet: unveiling an enigmatic ant-loving beetle diversity at Earth's "Third Pole" (Coleoptera, Staphylinidae, Pselaphinae)
FIGURE 51. Morphology of Sathytes caichenyangi sp. nov. (A–F. Male. G. Female). A. Dorsal habitus. B. Head and pronotum. C. Antennomeres 9–11. D. Antennomere 9. E. Sternite 7 (IX). F. Aedeagus, ventral. G. Genitalia. Scale bars: 0.5 mm in A; 0.3 mm in B, C; 0.1 mm in D–G.
FIGURE 53 in The Batrisini of Tibet: unveiling an enigmatic ant-loving beetle diversity at Earth's "Third Pole" (Coleoptera, Staphylinidae, Pselaphinae)
FIGURE 53. Morphology of Sathytes duojii sp. nov., male. A. Dorsal habitus. B. Head and pronotum. C. Antennomeres 9–11. D. Antennomere 9. E. Sternite 7 (IX). F. Aedeagus, ventral. Scale bars: 0.5 mm in A; 0.3 mm in B, C; 0.1 mm in D–F.
FIGURE 56 in The Batrisini of Tibet: unveiling an enigmatic ant-loving beetle diversity at Earth's "Third Pole" (Coleoptera, Staphylinidae, Pselaphinae)
FIGURE 56. Morphology of Sathytes proclivis sp. nov. (A–F. Male. G. Female). A. Dorsal habitus. B. Head and pronotum. C. Antennomeres 9–11. D. Antennomere 9. E. Sternite 7 (IX). F. Aedeagus, ventral. G. Genitalia. Scale bars: 0.5 mm in A; 0.3 mm in B, C; 0.1 mm in D–G.
A species diversity dataset of beetles by three passive acquisition methods in Tei Tong Tsai (Hong Kong)
<p><span>We based the dataset in this paper on the beetle collection from the sample site of Tei Tong Tsai (Hong Kong) from 1<sup>st </sup>May to 28<sup>th</sup> May 2019, a period of high insect diversity. A total of 16,270 beetles (photographed in 318 images) from 478 species belonging to 39 families were collected. The dataset consists of the following components: The original photo of the whole sample obtained at each site with each collection method, the morphological species identification chart, a statistical table describing the species and numbers of beetles collected on different dates at different sites using three passive acquisition methods, and a statistical table describing the longitude, latitude, and altitude information of each sampling point. We aimed to provide a database for the evaluation of beetle species diversity in Hong Kong and a paradigm for the effectiveness of passive acquisition in the beetle collection through the three representative methods, thus laying a foundation for biodiversity research.</span></p>
Figure 3 in Cryptic lineages, cryptic barriers: historical seascapes and oceanic fronts drive genetic diversity in supralittoral rockpool beetles (Coleoptera: Hydraenidae)
Figure 3. Haplotype networks for COI and wingless for Ochthebius (Ochthebius) quadricollis. Colours represent the main geographic areas indicated in the legend.
Figure 2. Calibrated phylogenetic tree obtained with BEAST v.1.10.4 in Cryptic lineages, cryptic barriers: historical seascapes and oceanic fronts drive genetic diversity in supralittoral rockpool beetles (Coleoptera: Hydraenidae)
Figure 2. Calibrated phylogenetic tree obtained with BEAST v.1.10.4 of Ochthebius with focus on subgenus Cobalius (purple shade) and quadricollis species group (green shade) (former subgenus 'Calobius'). Numbers at nodes represent posterior probabilities, and 95% highest posterior density are given in blue horizontal rectangles. Calibrations points used in analysis are specified by grey dots.
Figure 5 in Cryptic lineages, cryptic barriers: historical seascapes and oceanic fronts drive genetic diversity in supralittoral rockpool beetles (Coleoptera: Hydraenidae)
Figure 5. Haplotype networks for COI and wingless for Ochthebius (Cobalius) lejolisii. Colours represent the main geographic areas indicated in the legend.
Figure 1 in Cryptic lineages, cryptic barriers: historical seascapes and oceanic fronts drive genetic diversity in supralittoral rockpool beetles (Coleoptera: Hydraenidae)
Figure 1. Distribution of sampling localities 1-57 (as listed in Table 1) and main surface marine currents and potential geographic barriers to dispersal (inset top-right).
Figure 4 in Cryptic lineages, cryptic barriers: historical seascapes and oceanic fronts drive genetic diversity in supralittoral rockpool beetles (Coleoptera: Hydraenidae)
Figure 4. Haplotype networks for COI and wingless for Ochthebius (Cobalius) subinteger. Colours represent the main geographic areas indicated in the legend.
FIGURE 4. Cleonini, live adult beetles. A in Cleonini (Coleoptera: Curculionidae: Lixinae) are monophyletic and flightless: tribe overview, rampant adult homoplasy and illustrated global diversity
FIGURE 4. Cleonini, live adult beetles. A: Cyphocleonus trisulcatus (Russia, Volgograd reg.); B: Entymetopus (Entymetopus) lineolatus (Kazakhstan, Kendirli); C: Eurycleonus talamellii (Morocco, Tan-Tan prov.); D: Glebius confluens (Kazakhstan, Karatau); E: Leucochromus imperialis (Kazakhstan, Akkuduk); F: Leucomigus candidatus (Kazakhstan, Balkhash); G: Maximus granulatus (Kazakhstan, Ustyurt); H: Maximus strabus (Russia, Volgograd reg.); I: Mecaspis alternans (Ukraine, Kharkiv).
FIGURE 3. Cleonini, live adult beetles. A in Cleonini (Coleoptera: Curculionidae: Lixinae) are monophyletic and flightless: tribe overview, rampant adult homoplasy and illustrated global diversity
FIGURE 3. Cleonini, live adult beetles. A: Chromonotus (Chromonotus) vittatus (Russia, Astrakhan reg.); B: Chromosomus fischeri (Kasakhstan, Onere); C: Cleonis pigra (Russia, Rostov reg.); D: Coniocleonus (Augustecleonus) turbatus (Russia, Rostov reg.); E: Coniocleonus (Plagiographus) nigrosuturatus (Russia, Rostov reg.); F: Conorhynchus lacerta (Kazakhstan, Karynzharyk); G: Conorhynchus nigrivittis (Russia, Volgograd reg.); H: Cyphocleonus cenchrus (Kazakhstan, Karynzharyk); I: Cyphocleonus dealbatus (Russia, Rostov-on-Don).
FIGURE 2. Cleonini, live adult beetles. A in Cleonini (Coleoptera: Curculionidae: Lixinae) are monophyletic and flightless: tribe overview, rampant adult homoplasy and illustrated global diversity
FIGURE 2. Cleonini, live adult beetles. A: Asproparthenis carinata (Russia, Rostov-on-Don); B: Asproparthenis carinicollis (Russia, Rostov-on-Don); C: Asproparthenis obsoletefasciata (Kazakhstan, Karynzharyk); D: Asproparthenis punctiventris (Russia, Rostov-on-Don); E: Bothynoderes affinis (Russia, Volgograd reg.); F: Bothynoderes declivis (Russia, Volgograd); G: Brachycleonus fronto (Kazakhstan, Priaral Karakum); H: Calodemas errans (Namibia, Khomas); I: Chromonotus (Chromonotus) pictus (Kazakhstan, Koksem).
FIGURE 5. Cleonini, live adult beetles. A in Cleonini (Coleoptera: Curculionidae: Lixinae) are monophyletic and flightless: tribe overview, rampant adult homoplasy and illustrated global diversity
FIGURE 5. Cleonini, live adult beetles. A: Menecleonus virgatus (Kazakhstan, Mametkazgan); B: Pleurocleonus quadrivittatus (Russia, Rostov-on-Don); C: Pleurocleonus sollicitus (Russia, Rostov reg.); D: Pseudocleonus cinereus (Russia, Rostov reg.); E: Pseudocleonus marginicollis (Kyrgyzstan, Osh reg.); F: Rhabdorhynchus karelini (Kazakhstan, Kendirli); G: Scaphomorphus quadrilineatus (USA, Arizona); H: Scaphomorphus vibex (Kazakhstan, Malye Barsuki); I: Trichocleonus leucophyllus (Kazakhstan, Khantau).
Figure 6 in Underestimated diversity and range size of diving beetles in tank bromeliads-Coleoptera of 'hygrofloric' lifestyle (Dytiscidae)
Figure 6. Habitat of C. florae in Alto de Piedra, Panama. A, general view of the pasture with solitary trees. B, large cf. Werauhia bromeliad. C, collecting of beetles from leaf axils. D, specimen of C. florae crawling on the leaf.
Figure 5 in Underestimated diversity and range size of diving beetles in tank bromeliads-Coleoptera of 'hygrofloric' lifestyle (Dytiscidae)
Figure 5. Details of instar III larva of C. florae. A, head capsule, dorsal aspect (scale-like microsculptures not represented). B, maxilla, dorsal aspect. C, labium, dorsal aspect. D, metathoracic leg, anterior surface. E, same, posterior surface. F, last abdominal segment, dorsal aspect. G, same, ventral aspect. Numbers and lowercase letters refer to primary setae and pores, respectively; asterisks refer to secondary seta (including additional setae) or pores. AB, abdominal segment VIII (= LAS). CO, coxa. FE, femur. GA, galea. LA, labium. MX, maxilla. PT, pretarsus. TA, tarsus. TI, tibia. TR, trochanter. UR, urogomphus. sp, spinulae. Pores TAc, TAd, Tae, and TAf not represented. Scale bars = 0.2 mm.
Figure 1 in Underestimated diversity and range size of diving beetles in tank bromeliads-Coleoptera of 'hygrofloric' lifestyle (Dytiscidae)
Figure 1. Habitus of bromeliadicolous Copelatus. A, C. bimaculatus (Santo Amaro da Imperatriz). B, C. bimaculatus (Nova Friburgo). C, C. bromeliarum (Henri Pittier). D, C. espinhasso (holotype). Scale bar = 2.0 mm.
Figure 2 in Underestimated diversity and range size of diving beetles in tank bromeliads-Coleoptera of 'hygrofloric' lifestyle (Dytiscidae)
Figure 2. Male genitalia of Copelatus. A, C. bimaculatus (Santo Amaro da Imperatriz). B, C. bimaculatus (Nova Friburgo). C, C. bromeliarum (El Tucuche). D, C. bromeliarum (Henri Pittier). E, C. espinhasso (holotype). F, C. florae (Alto de Piedra). G, C. florae (Manaus). H, C. panguana (holotype). a, median lobe in lateral view. b, median lobe in ventral view. c, paramere. Scale bar = 1.0 mm.
ScienceDex guides
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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)
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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.