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1,736 results for “Coleoptera: Tenebrionidae”
Fig. 11 in Illustrated Catalog of the Subtribe Helopinina Lacordaire (Coleoptera: Tenebrionidae: Blaptinae: Pedinini)
Fig. 11. Type specimens of species representing the genus Drosochrus subgenus Helopinus. A) D. costatus aegyptiacus, B) D. costulatus, C) D. curvipes, D) D. kochi, E) D. textor, F) D. vernayanus.
Fig. 12 in Illustrated Catalog of the Subtribe Helopinina Lacordaire (Coleoptera: Tenebrionidae: Blaptinae: Pedinini)
Fig. 12. Type specimens of species representing the genus Micrantereus. A) M. scorteccii epiphysoides, B) M. scortercci physosternoides.
Figure 1 in Beetles and lichens: tracing the origins and evolution of lichenophagy within the darkling beetle tribe Helopini (Coleoptera: Tenebrionidae)
Figure 1. Maximum likelihood phylogenetic tree reconstruction based on the concatenated dataset. Branch colours indicate subtribal groupings (yellow, Enoplopodina; red, Cylindrinotina; and blue, Helopina). Circles in nodes represent values of bootstrap support (BT), posterior probabilities (PP), gene concordance factors (gCF), and site concordance factors (sCF) as indicated in the key. Clades not recovered in the BI analysis are depicted with white PP. Beetle illustrations correspond to terminal taxa as indicated by the leưering in brackets.
Figure 2 in Beetles and lichens: tracing the origins and evolution of lichenophagy within the darkling beetle tribe Helopini (Coleoptera: Tenebrionidae)
Figure 2. Results of the ancestral state estimation analysis. Terminal taxa are colour-coded according to their state as illustrated in the key. Pie charts demonstrate the probability of the ancestral state at each node. In order to provide a time frame for the emergence of different ancestral modes, a time axis is also provided (based on the BEAST run calibrated by known substitution rates). A, evolution of feeding modes under the ER model. B, evolution of habitat preferences under the SYM model within the tribe Helopini.
FIGURES 15–20 in A new species of the genus Clastopus Fairmaire, 1898 (Coleoptera: Tenebrionidae: Pedinini) from Madagascar
FIGURES 15–20. Clastopus griswoldi sp. nov. (15, 17-20). C. ordinarius (16). Intercoxal process of prosternum (ventral view) (15, 16), male legs: protibia and profemora (ventral—17, dorsal—18), mesofemora with denticle (19), metatibia and metafemora (20).
FIGURES 10–14 in A new species of the genus Clastopus Fairmaire, 1898 (Coleoptera: Tenebrionidae: Pedinini) from Madagascar
FIGURES 10–14. Clastopus griswoldi sp. nov. Antennae and elytral hypomeron (10), mentum and submentum (11), elytron sculpture (12), fifth abdominal ventrite (13), aedeagal tegmen (bpt—basal part of tegmen, cla—clavae pe—penis, pra—parameres) (dorsal and ventral views) (14).
FIGURES 1–8 in A new species of the genus Clastopus Fairmaire, 1898 (Coleoptera: Tenebrionidae: Pedinini) from Madagascar
FIGURES 1–8. Clastopus griswoldi sp. nov. (1, 2, 6, 8); C. ordinarius (3, 5); C. eurynotoides (4); C. tenuiculus (7). Base of pronotal disc and elytron (1), head (dorsal view) (deep circumocular depression—2, shallow circumocular depression—3), elytron (intervals flat—4, intervals convex—5), intercoxal process of prosternum with visible right procoxa (lateral view) (6, 7) and metaventrite with median circular depression (blue) (8).
FIGURES 3–4 in New species and records of the genus Laena Dejean (Coleoptera: Tenebrionidae: Lagriinae) from the Malay Peninsula
FIGURES 3–4. Aedeagi of Laena species from West Malaysia. 3. L. johorica sp. nov., paratype SMNS. 4. L. ledangica sp. nov., holotype SMNK. Scale bar: 1.0 mm.
FIGURES 1–2 in New species and records of the genus Laena Dejean (Coleoptera: Tenebrionidae: Lagriinae) from the Malay Peninsula
FIGURES 1–2. Dorsal view of Laena species from West Malaysia. 1. L. johorica sp. nov., paratype SMNS. 2. L. ledangica sp. nov., holotype SMNK. Scale bar: 2.0 mm.
FIGURES 41–46 in Seven new species of the genus Phaedis Pascoe, 1866 (Coleoptera: Tenebrionidae Cnodalonini) from Borneo
FIGURES 41–46. Phaedis minusculus sp. nov.—41, mentum; 42, prosternal process; 43, protibia; 44, mesotibia; 45, metatibia; 46, aedeagus (right: in lateral view; left: in dorsal view). Scale bars: 0.1 mm for fig. 41; 0.3 mm for fig. 42; 0.5 mm for Figs 43–46.
FIGURES 17–23 in Seven new species of the genus Phaedis Pascoe, 1866 (Coleoptera: Tenebrionidae Cnodalonini) from Borneo
FIGURES 17–23. Phaedis spp., habitus.—17, Phaedis nagaii sp. nov.; 18, Phaedis tenuifasciatus sp. nov.; 19, Phaedis fusivittatus sp. nov.; 20, Phaedis choui sp. nov.; 21, Phaedis amabilis sp. nov.; 22, Phaedis minusculus sp. nov.; 23, Phaedis dilatitarsalis sp. nov.
FIGURES 1–6 in Seven new species of the genus Phaedis Pascoe, 1866 (Coleoptera: Tenebrionidae Cnodalonini) from Borneo
FIGURES 1–6. Phaedis choui sp. nov.—1, mentum; 2, prosternal process; 3, protibia; 4, mesotibia; 5, metatibia; 6, aedeagus (right: in lateral view; left: in dorsal view). Scale bars: 0.3 mm for fig. 1; 0.5 mm for Figs 2–5.
FIGURES 24–29 in Seven new species of the genus Phaedis Pascoe, 1866 (Coleoptera: Tenebrionidae Cnodalonini) from Borneo
FIGURES 24–29. Phaedis nagaii sp. nov.—24, mentum; 25, prosternal process; 26, protibia; 27, mesotibia; 28, metatibia; 29, aedeagus (right: in lateral view; left: in dorsal view). Scale bars: 0.3 mm for fig. 24; 0.5 mm for Figs 25–29.
FIGURES 12–16 in Seven new species of the genus Phaedis Pascoe, 1866 (Coleoptera: Tenebrionidae Cnodalonini) from Borneo
FIGURES 12–16. Phaedis dilatitarsalis sp. nov. —12, mentum;13, prosternal process; 14, protibia; 15, mesotibia; 16, metatibia. Scale bars: 0.3 mm for fig. 12; 0.5 mm for Figs 13–16.
FIGURES 30–35 in Seven new species of the genus Phaedis Pascoe, 1866 (Coleoptera: Tenebrionidae Cnodalonini) from Borneo
FIGURES 30–35. Phaedis fusivittatus sp. nov.—30, mentum; 31, prosternal process; 32, protibia; 33, mesotibia; 34, metatibia; 35, aedeagus (right: in lateral view; left: in dorsal view). Scales. 0.2 mm for fig. 30; 0.5 mm for Figs 31–35.
FIGURE 2 in The first described darkling beetle of the tribe Metaclisini (Coleoptera: Tenebrionidae) from Eocene Baltic amber
FIGURE 2. Metaclisa (Trichometaclisa) ottoi sp. nov. (holotype, Baltic amber), details of structure: A—elytral pubescence; B—first mesotarsomere (t1), plantar surface (fine golden setae, not arranged in two rows); C—anterior part of body, ventrally (pp – prosternal process); D—the middle of body, ventrally; E—head and right antenna, dorsally; F—apex of abdominal part, ventrally (e-w—widened part of epipleura, e-n—narrow part of epipleura, which is sharply tapered before apex). Scale bars = 0.5 mm (A, B), 2 mm (C, D), 1 mm (E, F).
FIGURE 1 in The first described darkling beetle of the tribe Metaclisini (Coleoptera: Tenebrionidae) from Eocene Baltic amber
FIGURE 1. Metaclisa (Trichometaclisa) ottoi sp. nov. (holotype, Baltic amber), habitus: A—dorsal view; B—ventral view; C—lateral view (es—epipleural stria taper to end before the elytral apex). Scale bars = 3 mm (A–C).
FIGURE 5 in Three new species of the genus Hexarhopalus Fairmaire, 1891 (Coleoptera, Tenebrionidae: Cnodalonini) from China
FIGURE 5. Diagnostic features of H. (H.) zhuxiangi sp. nov., female. A. Left antenna; B. Lateral groove of pronotum; C. Ventrite VIII and spiculum; D. Ovipositor; E. Same, apical part.
FIGURE 8. A in Three new species of the genus Hexarhopalus Fairmaire, 1891 (Coleoptera, Tenebrionidae: Cnodalonini) from China
FIGURE 8. A. General environment of the type locality of H. (H.) yunnanensis sp. nov.; B & C. Live individuals photographed in nature.
FIGURE 2 in Three new species of the genus Hexarhopalus Fairmaire, 1891 (Coleoptera, Tenebrionidae: Cnodalonini) from China
FIGURE 2. Diagnostic features of H. (H.) yunnanensis sp. nov., male. A. Head and pronotum; B. Lateral groove of pronotum; C. Right antenna.
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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
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.