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3,979 results for “Coleoptera: Cerambycidae”
Figures 23–26 in New synonymies and notes in Criodion Audinet-Serville (Coleoptera: Cerambycidae: Cerambycinae)
Figures 23–26. Criodion tomentosum Audinet-Serville, 1834, from MZSP collection: 23) Specimens identified as C. tomentosum. 24) Specimens identified as C. tomentosum. 25) Specimens identified as C. angustatum. 26) Specimens identified as C. angustatum.
Figures 7–22 in New synonymies and notes in Criodion Audinet-Serville (Coleoptera: Cerambycidae: Cerambycinae)
Figures 7–22. Criodion tomentosum Audinet-Serville, 1834: 7–8) Female (SDPC), from Brazil (Nova Friburgo, Rio de Janeiro): 7) Dorsal habitus. 8) Ventral habitus. 9–10) Male (SDPC), from Brazil (Corupá, Santa Catarina): 9) Dorsal habitus. 10) Ventral habitus. 11–12) Female (MZSP), from Brazil (Rio de Janeiro city, Rio de Janeiro): 11) Dorsal habitus. 12) Lateral habitus. 13–14) Female (MZSP), from Brazil (Laranjal, São Paulo): 13) Dorsal habitus. 14) Lateral habitus. 15–16) Male (MZSP), from Brazil (no further data): 15) Dorsal habitus. 16) Lateral habitus. 17–18) Male (MZSP), from Brazil (Caxias, Maranhão): 17) Dorsal habitus. 18) Lateral habitus. 19–22) Lower eye lobes: 19) Male. 20) Female. 21) Female. 22) Male.
Figures 1–7 in New larval host plants and ecological observations on North American Cerambycidae (Coleoptera)
Figures 1–7. Larval host plants of Cerambycidae. 1–2) Decayed branches of Fagus grandifolia utilized by Sphenostethus taslei, emergence hole is in Fig. 1, exposed larva in a gallery in Fig. 2. 3–4) Stump of Prunus serotina with emergence holes from Lepthorhabdium pictum. 5) Quercus falcata with a basidiocarp of Phellinus everhartii and an emergence hole from Stenelytrana emarginata (enlarged in the inset). 6) Quercus emoryi with resupinate basidiocarp of Inonotus andersonii. 7) Old emergence holes of Stenelytrana splendens in an oak with an old resupinate basidiocarp of Inonotus andersonii.
Figures 20–26 in New larval host plants and ecological observations on North American Cerambycidae (Coleoptera)
Figures 20–26. Larval host plants of Cerambycidae. 20) Galleries of Haplidus laticeps in Vachelia constricta. 21) One sealed opening in a branch of Quercus used by larvae of Metaleptus batesi to expel frass (enlarged in inset). 22) Exit holes of Obrium rubidium on a dead limb of Robinia pseudoacacia (enlarged in inset). 23) Galleries of O. rubidium on a cross-section. 24) Elongated exit holes of Smodicum cucujiforme in a scar on living Quercus (enlarged in the inset). 25) A pile of yellow granular frass around a base of living Mimosa expelled by larvae of Stenaspis solitaria. 26) Pink pupa of Sternidius alpha.
Figures 1–6. Criodion spp. 1–3 in New synonymies and notes in Criodion Audinet-Serville (Coleoptera: Cerambycidae: Cerambycinae)
Figures 1–6. Criodion spp. 1–3) Criodion pilosum Lucas, 1859, syntype female: 1) Dorsal habitus. 2) Ventral habitus. 3) Labels. 4) Criodion angustatum Buquet, 1852, holotype female, dorsal habitus. 5) Criodion hirsutum Bates, 1870, holotype female, dorsal habitus. 6) Criodion tuberculatum Gahan, 1892, syntype male, dorsal habitus.
Fig 5 in Taxonomic Position Of Anastrangalia Reyi And A. Sequensi (Coleoptera, Cerambycidae) Based On Molecular And Morphological Data
Fig 5. Male aedeagi (A–D) and parameres (E–H) of A. reyi (A, E), A. sequensi (B, F), A. dubia (C, G) and A. sanguinolenta (D, H).
Fig. 1 in Taxonomic Position Of Anastrangalia Reyi And A. Sequensi (Coleoptera, Cerambycidae) Based On Molecular And Morphological Data
Fig. 1. Distribution of nucleotide substitutions within haplogroups: A — A. reyi (ArEu) (KJ964792); B — A. sequensi (AsFe) (KY683642); C — A. dubia (AdAl) (KM439943); D — A. dubia (AdPy) (KM285974). The unic nucleotide substitutions are red circled; the common substitutions are blue marked.
Fig. 3 in Taxonomic Position Of Anastrangalia Reyi And A. Sequensi (Coleoptera, Cerambycidae) Based On Molecular And Morphological Data
Fig. 3. Detailed phylogenetic subtree for the dubia group (hybrids of A. reyi and A. dubia are indicated by arrows).
Figures 14–22. Neocompsa spp. 14–18 in New species, synonymy, new records, and taxonomic notes in American Cerambycidae (Coleoptera)
Figures 14–22. Neocompsa spp. 14–18) Neocompsa flavoquadripunctata Botero and Santos-Silva, sp. nov., holotype male: 14) Dorsal habitus; 15) Ventral habitus; 16) Lateral habitus; 17) Head, frontal view; 18) Prothorax, lateral view. 19–22) Neocompsa dysthymia Martins, 1970, female from Mexico (Nuevo Leon): 19) Dorsal habitus; 20) Head, frontal view; 21) Prothorax, lateral view; 22) Pronotal tubercles.
Figures 1–8. Cotyclytus spp. 1–4 in New species, synonymy, new records, and taxonomic notes in American Cerambycidae (Coleoptera)
Figures 1–8. Cotyclytus spp. 1–4) Cotyclytus parumnotatus (Zajciw, 1963), neotype male: 1) Dorsal habitus; 2) Ventral habitus; 3) Head and pronotum, frontal view; 4) Head and pronotum, oblique view. 5–8) Cotyclytus stillatus (Aurivillius, 1909), male from Bolivia: 5) Dorsal habitus; 6) Ventral habitus; 7) Head and pronotum, frontal view; 8) Head and pronotum, oblique view.
Figures 38–45. Lamiinae spp. 38 in New species, synonymy, new records, and taxonomic notes in American Cerambycidae (Coleoptera)
Figures 38–45. Lamiinae spp. 38) Rosalba columbiana Breuning, 1973), holotype, by Jesus Santiago Moure. 39) Corcovado bezarki Martins and Galileo, 2008, female, dorsal habitus. 40–43) Anobrium bicolor Botero and Santos-Silva, sp. nov., holotype male: 40) Dorsal habitus; 41) Ventral habitus; 42) Lateral habitus; 43) Head, frontal view. 44) Anobrium luridum (Breuning, 1940), female (MZSP 49217) from Brazil (Espírito Santo), dorsal habitus. 45) Anobrium leuconotum Galileo and Martins, 2002, holotype male (MZSP 49858), dorsal habitus.
Figure 1 in A new genus for Stromatium chilensis Cerda, 1968 (Coleoptera: Cerambycidae: Cerambycinae: Hesperophanini) from Chile
Figure 1. Right antenna of Malcho chilensis showing the spine on the inner side of antennomeres III–V.
Figures 11–12 in A new genus for Stromatium chilensis Cerda, 1968 (Coleoptera: Cerambycidae: Cerambycinae: Hesperophanini) from Chile
Figures 11–12. Habitat of Malcho chilensis in central-southern Chile. 11) Nothofagus forest in Altos de Vilches, Maule Region. 12) Nothofagus forest in Los Lleuques, Ñuble Region.
Figures 9–13. Cerambycinae spp. 9–10 in New species, synonymy, new records, and taxonomic notes in American Cerambycidae (Coleoptera)
Figures 9–13. Cerambycinae spp. 9–10) Anatinomma insulare Chemsak and Linsley, 1964, male: 9) Dorsal habitus; 10) Ventral habitus. 11–13) Pachymerola vitticollis Bates, 1892, females, dorsal habitus: 11) Specimen 1. 12) Specimen 2. 13) Specimen 2, pronotum.
Figures 33–37. Cerambycidae spp. 33 in New species, synonymy, new records, and taxonomic notes in American Cerambycidae (Coleoptera)
Figures 33–37. Cerambycidae spp. 33) Smodicum dinellii Bruch, 1911, female, dorsal habitus. 34–37) Trichohippopsis basilaris Botero and Santos-Silva, sp. nov., holotype male. 34) Dorsal habitus; 35) Lateral habitus. 36) Ventral habitus. 37) Head, frontal view.
Figures 2–9 in A new genus for Stromatium chilensis Cerda, 1968 (Coleoptera: Cerambycidae: Cerambycinae: Hesperophanini) from Chile
Figures 2–9. Type specimens of Stromatium chilensis Cerda (= Malcho chilensis). 2–4) Holotype male. 2) Dorsal view. 3) Ventral view. 4) Lateral view. 5) Holotype label. 6) Paratype label. 7–9) Paratype male. 7) Dorsal view. 8) Ventral view. 9) Lateral view. Scale bars: 5 mm.
Figures 23–32. Temnopis spp. 23–28 in New species, synonymy, new records, and taxonomic notes in American Cerambycidae (Coleoptera)
Figures 23–32. Temnopis spp. 23–28) T. spiculata Botero and Santos-Silva, sp. nov., holotype male: 23) Dorsal habitus; 24) Ventral habitus; 25) Lateral habitus; 26) Antennomeres III–V; 27) Head, frontal view; 28) Prosternal process. 29–30) T. rubricollis Martins, Galileo and Limeira-de-Oliveira, 2009, holotype male: 29) Dorsal habitus; 30) Ventral habitus. 31–32) T. fuscipennis Martins, 1978, male (MZSP 49216) from Brazil (Pará, Ulianópolis): 31) Dorsal habitus; 32) Lateral habitus.
Figs 1–5 in First record of the genera Bulborhodopis and Mimapatelarthron from China, with description of one new species (Coleoptera: Cerambycidae)
Figs 1–5. Habitus of Bulborhodopis and Mimapatelarthron species. 1–2 – Bulborhodopis humeralis sp. nov., paratype; 3 – B. barbicornis Breuning, 1948; 4–5 – Mimapatelarthron bulbiferum Holzschuh, 2017. a – lateral view. 1, 4 – male; 2, 3, 5 – female. Scale bars = 2 mm.
Figs 10–13 in First record of the genera Bulborhodopis and Mimapatelarthron from China, with description of one new species (Coleoptera: Cerambycidae)
Figs 10–13. Habitus and labels of holotypes of Bulborhodopis and Mimapatelarthron species. 10 – Bulborhodopis barbicornis Breuning, 1948, male; 11 – B. inornatus Holzschuh, 2017, male; 12 – Mimapatelarthron laosense Breuning 1968, female; 13 – M. bulbiferum Holzschuh, 2017, male. a – labels.
Figs 14–15 in First record of the genera Bulborhodopis and Mimapatelarthron from China, with description of one new species (Coleoptera: Cerambycidae)
Figs 14–15. Male terminalia of Bulborhodopis and Mimapatelarthron species. 14 – Bulborhodopis humeralis sp. nov.; 15 – Mimapatelarthron bulbiferum Holzschuh, 2017. a – Tergite VIII with sternites VIII & IX in ventral view; b – tegmen in ventral view and lateral view; c – median lobe in ventral view and lateral view; d – endophallus in inflated and everted condition. Scale bars = 0.5 mm (d – not to scale).
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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.