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147 results for “Cryptorhynchinae”
CRYPTORHYNCHINAE. A in Curculionidae of Guam
CRYPTORHYNCHINAE. A. ANABALLUS AMPLICOLUS: B, CAMPTORHINUS DORSALIS: C. I!,USCEPES POSTFASCIATUS: D, DEALUS TUBEROSUS: E, D. TIBIALIS: F, ORI!,DA MACUI,ATA. (PHOTOGRAPHS BY W. TWIGG-SMITH.)
Figure 19–34. Platytenes species. 19–22, 25–27 in The Indo-Australian weevil genus Platytenes Pascoe, 1870 (Coleoptera: Curculionidae: Cryptorhynchinae)
Figure 19–34. Platytenes species. 19–22, 25–27) Platytenes occultus, male terminalia. 19) Spiculum gastrale, ventral view. 20) Tergite VIII and sternite VIII, ventral view. 21) Aedeagus (tegmen removed), lateral view. 22) Aedeagus, dorsal view. 25) Tegmen, ventral view. 26) Tegmen, lateral view. 27) Tergite VII, dorsal view. 23–24) Platytenes varius, aedeagus (tegmen removed). 23) Lateral view. 24) Dorsal view. 28–34) Female terminalia. 28) Tergite VIII, dorsal view. 29) Tergite VIII, lateral view. 30) Sternite VIII, ventral view. 31) Sternite VIII, lateral view. 32) Tergite VII, dorsal view. 33) Hemisternites, dorsal view. 34) Spermatheca. Scale bar = 0.5 mm.
Figure 14–18. Platytenes species. 14–15 in The Indo-Australian weevil genus Platytenes Pascoe, 1870 (Coleoptera: Curculionidae: Cryptorhynchinae)
Figure 14–18. Platytenes species. 14–15) Dorsal outline of pronotum, broken lines indicate position of fasciculate prominences and raised medial area. 14) Platytenes occultus. 15) Platytenes varius. 16) Platytenes occultus, meso- and metapleura, lateral view, broken line indicates bent portion of mesepimeron; key: c2–c3. meso- and metacoxae, ely. left elytron, epm2. mesepimeron, eps2. mesepisternum, eps3. metepisternum, r. lateral wall of mesosternal receptacle, s2–s3. lateral portion of meso- and metasternites. 17–18) Left hind femur and tibia, anterior (outer) view. 17) Platytenes varius, arrow indicates flange. 18) Platytenes occultus. Scale bar = 1 mm.
Figure 12–13 in The Indo-Australian weevil genus Platytenes Pascoe, 1870 (Coleoptera: Curculionidae: Cryptorhynchinae)
Figure 12–13. Platytenes species, scutellum, dorsal view. 12) Platytenes occultus. 13) Platytenes varius.
Figure 8–11. Platytenes species. 8–9 in The Indo-Australian weevil genus Platytenes Pascoe, 1870 (Coleoptera: Curculionidae: Cryptorhynchinae)
Figure 8–11. Platytenes species. 8–9) Platytenes occultus, holotype, male habitus. 8) Lateral view. 9) Ventral view. 10–11) Detail of male pronotum, lateral view. 10) Platytenes occultus, paratype. 11) Platytenes varius.
Figure 2–7. Platytenes species, dorsal habitus. 2 in The Indo-Australian weevil genus Platytenes Pascoe, 1870 (Coleoptera: Curculionidae: Cryptorhynchinae)
Figure 2–7. Platytenes species, dorsal habitus. 2) Platytenes varius, male (Jayapura, West Papua, Indonesia). 3) Same, female (Ambon Island, Indonesia). 4) Same, male (Finschhafen, Papua New Guinea). 5) Platytenes occultus, holotype, male (Guadalcanal, Solomon Islands). 6) Same, paratype, female (Guadalcanal, Solomon Islands). 7) Same, paratype, female (Ugi, Solomon Islands).
Figure 1 in The Indo-Australian weevil genus Platytenes Pascoe, 1870 (Coleoptera: Curculionidae: Cryptorhynchinae)
Figure 1. Distribution of Platytenes species. Squares = Platytenes varius; circles = Platytenes occultus. Localities are from the literature and material examined in the present study. The specific location for P. varius in northern Queensland, Australia could not be verified.
CRYPTORHYNCHINAE. A in Curculionidae of Guam
CRYPTORHYNCHINAE. A. DERETIOSUS FICAE: B, MENECTETORUS SETULOSUS: C, ACALLES SAMOANUS: D, MICROCRYPTORHYNCHUS BAS/PENNIS; E, M. GUAMAE; P, M. SPINlFER; G, NEOAMPAGIA IMITATOR: B, MICROCRYPTORHYNCHUS PREMNAl!.. (PHOTOGRAPHS BY TWIGG-SMITH, WASH DRAWING CG) BY M. E. POOR.)
Figure 1 in Association of the jumping spider Coccorchestes ferreus (Araneae: Salticidae: Euophryini) with a small, black weevil (Coleoptera: Curculionidae: Cryptorhynchinae: Trigonopterus cf. laetus)
Figure 1. Male Coccorchestes ferreus (1-3, ~3 mm) and a small black weevil (4, Trigonopterus cf. laetus, ~2.5-3 mm) found in Iron Range, Cape York, Queenland, Australia (20 AUG 2022).
FIGURE 14 in A new species of the genus Gasterocercus (Coleoptera, Curculionidae, Cryptorhynchinae) from the Iberian Peninsula, with notes on the ecology of the genus
FIGURE 14. Distribution map of known localities of Gasterocercus hispanicus sp. n. in central Spain. Dark blue square is the type locality, inside the Cabañeros National Park (limits in green).
FIGURES 1–2 in A new species of the genus Gasterocercus (Coleoptera, Curculionidae, Cryptorhynchinae) from the Iberian Peninsula, with notes on the ecology of the genus
FIGURES 1–2. Gasterocercus hispanicus sp. n., female paratypes. 1. specimen from Valle de Viñuelas, dorsal view; 2. ditto, lateral view. 3–4. Gasterocercus depressirostris, female: 3. specimen from Paris, dorsal view; 4. ditto, lateral view.
FIGURES 5–6 in A new species of the genus Gasterocercus (Coleoptera, Curculionidae, Cryptorhynchinae) from the Iberian Peninsula, with notes on the ecology of the genus
FIGURES 5–6. Gasterocercus hispanicus sp. n., rostrum, dorsal view. 5. holotype male; 6. female paratype.
FIGURE 27 in Molecular phylogeny in ' nano-weevils': description of a new subgenus Nanoacalles and two new species of Calacalles from the Macaronesian Islands (Curculionidae: Cryptorhynchinae)
FIGURE 27. Habitus (dorsal/lateral view) of Calacalles (Nanoacalles) palmensis (Roudier, 1954) stat. nov., resyn.
FIGURE 1. Bayesian 50 in Molecular phylogeny in ' nano-weevils': description of a new subgenus Nanoacalles and two new species of Calacalles from the Macaronesian Islands (Curculionidae: Cryptorhynchinae)
FIGURE 1. Bayesian 50% majority rule consensus using the 16S and CO1 genes. Numbers indicate nodal posterior probabilities. The scale shows the expected nucleotide substitutions per site and the bars next to the tree denote subfamily assignment. Taxonomic changes are indicated (new subgeneric placement only through subgenus bars).
FIGURES 5–8 in Molecular phylogeny in ' nano-weevils': description of a new subgenus Nanoacalles and two new species of Calacalles from the Macaronesian Islands (Curculionidae: Cryptorhynchinae)
FIGURES 5–8. Male (aedeagus, ventral/lateral view, Figs. 5, 6) and female genitalia (Figs. 7, 8) of the two new Calacalles species.
FIGURES 2–4 in Molecular phylogeny in ' nano-weevils': description of a new subgenus Nanoacalles and two new species of Calacalles from the Macaronesian Islands (Curculionidae: Cryptorhynchinae)
FIGURES 2–4. Habitus (dorsal/lateral view) of the two new Calacalles species in comparison with Calacalles seticollis (Wollaston, 1864).
FIGURES 28–30 in Molecular phylogeny in ' nano-weevils': description of a new subgenus Nanoacalles and two new species of Calacalles from the Macaronesian Islands (Curculionidae: Cryptorhynchinae)
FIGURES 28–30. Comparison of the pronota (dorsal view) of the species of the subgenus Crateracalles.
FIGURE 72 in Revision and phylogenetic analysis of the Papuan weevil genus Thyestetha Pascoe (Coleoptera, Curculionidae, Cryptorhynchinae)
FIGURE 72. Distribution of Thyestetha glabra sp. n., T. lubrica sp. n., T. puncticollis sp. n., and T. splendens sp. n..
FIGURES 37 – 54 in Revision and phylogenetic analysis of the Papuan weevil genus Thyestetha Pascoe (Coleoptera, Curculionidae, Cryptorhynchinae)
FIGURES 37 – 54. Aedeagus of Thyestetha spp. in dorsal and lateral aspect: (37, 38) T. carbonaria, lectotype; (39, 40) T. discolor sp. n., holotype; (41, 42) T. glabra sp. n., holotype; (43) T. carbonaria, apex of aedeagus, ventral aspect; (44) T. oblita sp. n., holotype, apex of aedeagus, ventral aspect; (45, 46) T. lubrica sp. n., holotype; (47, 48) T. nitida, lectotype; (49, 50) T. oblita sp. n., holotype; (51, 52) T. puncticollis sp. n., holotype and (53, 54) T. splendens sp. n., holotype.
FIGURE 73 in Revision and phylogenetic analysis of the Papuan weevil genus Thyestetha Pascoe (Coleoptera, Curculionidae, Cryptorhynchinae)
FIGURE 73. Single most parsimonious tree found by TNT, based on the matrix of 19 morphological characters. The characters are traced on the branches: black rectangles represent single, nonhomoplasious character state transformations; white rectangles represent homoplasious character state transformations. The small numbers above and below each rectangle correspond to character numbers and states, respectively. Larger numbers indicate Bremer support indices.
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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.