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1,694 results for “Weevil”
FIGURES 5–6 in Talbragarus averyi gen. et sp. n., the first Jurassic weevil from the southern hemisphere (Coleoptera: Curculionoidea: Nemonychidae)
FIGURES 5–6. Talbragus averyi gen. et sp. n., holotype; 5. part (AM F.137581); 6. counterpart (AM F.137582).
FIGURES 9–10 in Talbragarus averyi gen. et sp. n., the first Jurassic weevil from the southern hemisphere (Coleoptera: Curculionoidea: Nemonychidae)
FIGURES 9–10. Talbragus averyi gen. et sp. n., paratype. 9. part (AM F.137583); 10. counterpart (AM F.137584).
FIGURES 1–4 in Talbragarus averyi gen. et sp. n., the first Jurassic weevil from the southern hemisphere (Coleoptera: Curculionoidea: Nemonychidae)
FIGURES 1–4. Talbragus averyi gen. et sp. n., holotype. 1. part (AM F.137581); 2. counterpart (AM F.137582); 3. left antennal club of part, magnified; 4. left fore femur of part, magnified.
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.
FIGURE 71 in Revision and phylogenetic analysis of the Papuan weevil genus Thyestetha Pascoe (Coleoptera, Curculionidae, Cryptorhynchinae)
FIGURE 71. Distribution of Thyestetha carbonaria, T. discolor sp. n., T. emarginata sp. n., T. nitida, and T. oblita sp. n..
FIGURES 29 – 36 in Revision and phylogenetic analysis of the Papuan weevil genus Thyestetha Pascoe (Coleoptera, Curculionidae, Cryptorhynchinae)
FIGURES 29 – 36. Male terminalia of Thyestetha spp.: (29 – 31) T. glabra sp. n., holotype: (29) tegmen, (30) tergite VII and (31) segments VIII – IX. (32 – 34) T. nitida: (32) tegmen, (33) tergite VII and (34) tergite VIII with sternite VIII and spiculum gastrale. Ostium, lateral aspect: (35) T. discolor sp. n., arrow and dashed line marking bulge between 2 nd and 3 rd fold (36) T. splendens sp. n..
FIGURES 10 – 18 in Revision and phylogenetic analysis of the Papuan weevil genus Thyestetha Pascoe (Coleoptera, Curculionidae, Cryptorhynchinae)
FIGURES 10 – 18. Habitus of Thyestetha spp., lateral aspect: (10) T. carbonaria, lectotype; (11) T. discolor sp. n., holotype; (12) T. emarginata sp. n., holotype; (13) T. glabra sp. n., holotype; (14) T. lubrica sp. n., holotype; (15) T. nitida, lectotype; (16) T. oblita sp. n., holotype; (17) T. puncticollis sp. n., holotype; (18) T. splendens sp. n., holotype.
FIGURES 66 – 67 in Revision and phylogenetic analysis of the Papuan weevil genus Thyestetha Pascoe (Coleoptera, Curculionidae, Cryptorhynchinae)
FIGURES 66 – 67. Collection labels of Thyestetha spp.: (66) T. carbonaria, lectotype; (67) T. nitida, lectotype. FIGURES 68 – 70. Pantoxistus rubripennis, lectotype: (68) collection labels; (69) dorsal aspect, (70) ventral aspect.
FIGURE 74 in Revision and phylogenetic analysis of the Papuan weevil genus Thyestetha Pascoe (Coleoptera, Curculionidae, Cryptorhynchinae)
FIGURE 74. Maximum likelihood tree inferred from analysis of 3 mitochondrial and 4 nuclear markers for 5 species of Thyestetha and 3 outgroup representatives. Bootstrap values based on 1000 replicates are given next to the nodes.
FIGURES 1 – 9 in Revision and phylogenetic analysis of the Papuan weevil genus Thyestetha Pascoe (Coleoptera, Curculionidae, Cryptorhynchinae)
FIGURES 1 – 9. Habitus of Thyestetha spp., dorsal aspect: (1) T. carbonaria, lectotype; (2) T. discolor sp. n., holotype; (3) T. emarginata sp. n., holotype; (4) T. glabra sp. n., holotype; (5) T. lubrica sp. n., holotype; (6) T. nitida; (7) T. oblita sp. n., holotype; (8) T. puncticollis sp. n., holotype; (9) T. splendens sp. n., holotype.
FIGURES 61 – 65 in Revision and phylogenetic analysis of the Papuan weevil genus Thyestetha Pascoe (Coleoptera, Curculionidae, Cryptorhynchinae)
FIGURES 61 – 65. Female genitalia of Thyestetha spp.: (61 – 63) T. emarginata sp. n., paratype: (61) tripartite sclerite at insertion of spermathecal duct. T. emarginata sp. n., holotype: (62) Spermatheca. (64 – 65): T. nitida (64) ovipositor, lateral aspect.
FIGURES 55 – 60 in Revision and phylogenetic analysis of the Papuan weevil genus Thyestetha Pascoe (Coleoptera, Curculionidae, Cryptorhynchinae)
FIGURES 55 – 60. Female terminalia of Thyestetha spp.: (55 – 57) T. emarginata sp. n., holotype: (55) sternite VIII, (56) tergite VIII and (57) tergite VII. (58 – 60) T. nitida: (58) sternite VIII, (59) tergite VIII and (60) tergite VII.
FIGURES 19 – 22 in Revision and phylogenetic analysis of the Papuan weevil genus Thyestetha Pascoe (Coleoptera, Curculionidae, Cryptorhynchinae)
FIGURES 19 – 22. Thyestetha spp.: (19) T. glabra sp. n., thanatosis position, lateral aspect, (20) T. glabra sp. n., thanatosis position, ventral aspect. (21) T. puncticollis sp. n., eye, anterolateral aspect. (22) T. glabra sp. n., ventral aspect.
FIGURE 23 a – b in Revision and phylogenetic analysis of the Papuan weevil genus Thyestetha Pascoe (Coleoptera, Curculionidae, Cryptorhynchinae)
FIGURE 23 a – b. Thyestetha nitida, pleural sclerites; c 2 mesocoxa, c 3 metacoxa, el elytron, epm 2 metanepimeron, eps 2 mesanepisternum, eps 3 metanepisternum, mr mesothoracic receptacle, s 3 metaventrite. Fig. 23 c. Mesothoracic receptacle of Elichora sp.; Figs. 24 – 28. Thyestetha spp.: (24) T. glabra sp. n., detail of mesothoracic receptacle, ventral view. (25) T. lubrica sp. n., female elytral apex in profile; arrow marking subapical constriction. (26) T. carbonaria, male metafemur, arrow marking protrusion of posteroventral ridge; (27) T. puncticollis sp. n., male metafemur with weakly protruding posteroventral ridge (28) T. lubrica sp. n., left metafemur, arrow marking subapical concavity.
FIGURES 26–36 in Molecular phylogeny of the weevil genus Dichromacalles Stüben (Curculionidae: Cryptorhynchinae) and description of a new species
FIGURES 26–36. Endophallus of the aedeagus (ventral): 26–30: Subgenus Dichromacalles s.str.; 31–36: Subgenus Balcanacalles.
FIGURES 22–25 in Molecular phylogeny of the weevil genus Dichromacalles Stüben (Curculionidae: Cryptorhynchinae) and description of a new species
FIGURES 22–25. Habitus (dorsal / ventral) of Dichromacalles species. Balcanacalles subg. 22: D. krueperi; 23: D. creticus; 24: D. boroveci; 25: D. nitens.
FIGURES 14–21 in Molecular phylogeny of the weevil genus Dichromacalles Stüben (Curculionidae: Cryptorhynchinae) and description of a new species
FIGURES 14–21. Habitus (dorsal / ventral) of Dichromacalles species. 14–19. Dichromacalles s.str.. 14: D. querilhaci; 15: D. albopictus; 16: D. diocletianus: 17: D. algecirasensis sp. n.; 18: D. dromedarius; 19: D. tuberculatus. 20–25. Balcanacalles subg. 20: D. lentisci; 21: D. rolletii.
FIGURES 3–13 in Molecular phylogeny of the weevil genus Dichromacalles Stüben (Curculionidae: Cryptorhynchinae) and description of a new species
FIGURES 3–13. Dichromacalles algecirasensis sp. n.: 3–5: Habitus (dorsal / lateral / ventral); 6: Aedeagus (ventral / lateral); 7: Endophallus; 8: Spiculum ventrale; 9: Ovipositor; 10: Spermatheca; 11: Distribution of D. algecirasensis sp. n. and D. diocletianus (with p-distances of the COI gene for the 658 nucleotides of DNA barcoding sequence); Acalles affinis Meyer, 1896 (synonym of D. diocletianus); 12: Habitus (dorsal / lateral); 13: Endophallus.
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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.