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988 results for “Scarabaeoidea”
Figures 7–13. Cnemargulus krulikovskyi Semenov, 1903. 7 in A revision of the Aphodiini genus Cnemargulus Semenov, 1903 (Coleoptera: Scarabaeoidea: Scarabaeidae)
Figures 7–13. Cnemargulus krulikovskyi Semenov, 1903. 7) Habitus of male [lectotype]. 8) Habitus of female [paralectotype, Turkmenistan, Mary prov., Ýolöten]. 9) Habitus of male [syntype of C. pusio Semenov, 1903: Turkmenistan, Mary prov., Ýolöten]. 10) Aedeagus, dorsal view [lectotype]. 11) Aedeagus, dorsal view [syntype of C. pusio Semenov, 1903: Turkmenistan, Mary prov., Ýolöten]. 12) Aedeagus, lateral view [syntype of C. pusio Semenov, 1903: Turkmenistan, Mary prov., Ýolöten]. 13) Epipharynx [lectotype]. Photos by Augusto Degiovanni, drawings by Ivo Gudenzi.
Figures 1–9. Amphicoma spp. 1-3 in Amphicoma gandhara, a new species of Glaphyridae (Coleoptera: Scarabaeoidea) from Swat District in northern Pakistan
Figures 1–9. Amphicoma spp. 1-3) Amphicoma gandhara, new species, dorsal habitus. 1) Holotypus Ƌ. 2) Paratypus Ƌ#1. 3) Paratypus Ƌ#2. 4-6). Amphicoma gandhara, new species, parameres. 4) Right view. 5) Dorsal. 6) Left. 7-9) Amphicoma schneideri Nikodým, parameres. 7) Right view. 8) Dorsal. 9) Left.
Figures 9–10 in New species of Ochodaeus Dejean from Madagascar II (Coleoptera: Scarabaeoidea: Ochodaeidae)
Figures 9–10. Distributions of new species of Madagascar Ochodaeus. 9) Blue squares = O. iniquipes Paulsen, new species; orange circle = O. meridialis Paulsen, new species. 10) White circles = O. umbonulus Paulsen, new species.
Figure 3. Ochodaeus iniquipes Paulsen, new species. a in New species of Ochodaeus Dejean from Madagascar II (Coleoptera: Scarabaeoidea: Ochodaeidae)
Figure 3. Ochodaeus iniquipes Paulsen, new species. a) Dorsal habitus, male holotype. b) Right front leg, dorsal view. Arrow indicating median tooth of anterior margin of profemur. c) Right stridulatory peg, dorsal view (elytra lifted). d) Holotype labels.
Figures 4–8 in New species of Ochodaeus Dejean from Madagascar II (Coleoptera: Scarabaeoidea: Ochodaeidae)
Figures 4–8. Key characters of Madagascar Ochodaeus species. 4) Head of O. meridialis Paulsen, n. sp., showing central tubercle of clypeus. 5) Head of O. umbonulus Paulsen, n. sp., showing tubercle anterior to straight frontoclypeal suture. 6) Head of O. iniquipes Paulsen, n. sp., showing minute horn on posteriorly curved frontoclypeal suture. 7) Head of O. isoanalensis Paulian showing broadly thickened clypeal margin. 8) Head of O. miliaris (Klug), showing narrowly thickened clypeal margin.
Figure 6 in The Ceratocanthinae of Ulu Gombak: high species richness at a single site, with descriptions of three new species and an annotated checklist of the Ceratocanthinae of Western Malaysia and Singapore (Coleoptera, Scarabaeoidea, Hybosoridae)
Figure 6. Photos of alive specimens taken in habitat at Ulu Gombak (photos © M. Maruyama, 2008). A Madrasostes variolosum B Madrasostes agostii C Madrasostes clypeale male D idem female E Eusphaeropeltis sp. b F Eusphaeropeltis sp. c.
Figure 8 in The Ceratocanthinae of Ulu Gombak: high species richness at a single site, with descriptions of three new species and an annotated checklist of the Ceratocanthinae of Western Malaysia and Singapore (Coleoptera, Scarabaeoidea, Hybosoridae)
Figure 8. Madrasostes mirificum sp. n.: A male genital segment (scale bar: 0,2 mm) B aedeagus (scale bar: 0,1 mm) C parameres in dorsal view (scale bar: 0,05 mm) D Madrasostes hasimi sp. n.: male genital segment (scale bar: 0,1 mm) E parameres (scale bar: 0,1 mm) F sclerite of internal sac of aedeagus (scale bar: 0,1 mm) G Madrasostes depressum: sclerite of internal sac of aedeagus (scale bar: 0,1 mm).
Figure 7 in The Ceratocanthinae of Ulu Gombak: high species richness at a single site, with descriptions of three new species and an annotated checklist of the Ceratocanthinae of Western Malaysia and Singapore (Coleoptera, Scarabaeoidea, Hybosoridae)
Figure 7. Pterorthochaetes tsurui sp. n.: A parameres in lateral view (scale bar: 0,1 mm) B parameres in dorsal view (scale bar: 0,1 mm) C female bursal sclerites (scale bar: 0,1 mm) D, sclerites of the internal sac of aedeagus (scale bar: 0,1 mm) E male genital segment (scale bar: 0,1 mm).
Figure 3 in The Ceratocanthinae of Ulu Gombak: high species richness at a single site, with descriptions of three new species and an annotated checklist of the Ceratocanthinae of Western Malaysia and Singapore (Coleoptera, Scarabaeoidea, Hybosoridae)
Figure 3. Ceratocanthinae of Ulu Gombak. A Pterorthochaetes insularis habitus dorsal B Pterorthochaetes sp. habitus dorsal C Pterorthochaetes tsurui sp. n. habitus dorsal D idem habitus lateral E Cyphopisthes sp. habitus dorsal.
Fig. 2. A–B. Auxicerus platyceps Waterhouse, 1883. A in Description of a new species of the stag beetle genus Auxicerus Waterhouse, 1883 (Coleoptera: Scarabaeoidea: Lucanidae)
Fig. 2. A–B. Auxicerus platyceps Waterhouse, 1883. A. Holotype, ♂, BL 13 mm (BMNH). B. Head, ♂, BL 11 mm, Bolivia, Consata (EPCG). — C. Auxicerus aethiops Jakowleff, 1900, holotype, ♂, BL 16 mm, Bolivia (ZIRAS). — D–E. Auxicerus magnipunctatus sp. nov., holotype, ♂, BL 10.7 mm (CBF). D. Dorsal habitus. E. Head. Diagnostic characters indicated by arrows: (1) ocellate punctures on mesosternum, (2) posterior end of ocular canthus, (3) anterior edge of ocular canthus and (4) antennal lamellae. Scale bars: A, C–D = 5 mm; B, E = 2.5 mm.
Fig. 1. A in Description of a new species of the stag beetle genus Auxicerus Waterhouse, 1883 (Coleoptera: Scarabaeoidea: Lucanidae)
Fig. 1. A. Bolivian records of Auxicerus platyceps Waterhouse, 1883 (open circle, solid rectangle); Auxicerus multicolor (Boileau, 1897) (open rectangle, solid rectangle) and Auxicerus magnipunctatus sp. nov. (solid circle). Localities: (1) Consata, (2) Caranavi, (3) Coroico, Chairo, (4) Los Volcanes and (5) Emborozu. B. Habitat of Auxicerus magnipunctatus sp. nov. in humid Tucuman-Bolivian forest.
Figs 1–6 in A new species of the genus Glaphyrus (subgenus Eoglaphyrus) (Сoleoptera: Scarabaeoidea: Glaphyridae) from Tajikistan, with notes on G. (E.) turkestanicus
Figs 1–6. Glaphyrus (Eoglaphyrus) spp., habitus. 1–3, G. (E.) mardjanyanae sp. nov. (1, 2 – holotype, male; 3 – allotype, female); 4–6, G. (E.) turkestanicus Semenov, 1889 (4, 5 – male from "Turkestan; 6 – lectotype of G. sogdianus Semenov, 1892, male). Dorsal (1, 3, 4, 6) and ventral (2, 5) views.
Figs 7–18 in A new species of the genus Glaphyrus (subgenus Eoglaphyrus) (Сoleoptera: Scarabaeoidea: Glaphyridae) from Tajikistan, with notes on G. (E.) turkestanicus
Figs 7–18. Glaphyrus (Eoglaphyrus) spp. 7, 9, 11, 13, 17, G. (E.) mardjanyanae sp. nov. (holotype, male); 8, 10, 12, 14, 16, G. (E.) turkestanicus Semenov, 1889 (male from "Turkestan"); 15, G. (E.) afghanistanicus Skrylnik et Pak, 2021 (from Skrylnik & Pak, 2021); 18, G. sogdianus Semenov, 1892, labels of lectotype. Habitus laterally (7, 8); hind wings (9, 10); metafemur (11, 12); trochanter (13, 14); paramera and endophallus (15–17).
Figs 31–36 in Estimation of biomass of dung beetles (Coleoptera: Scarabaeoidea) from the Russian Far East
Figs 31–36. Models of length-weight relationship and functions for a large tunnelers (n=598) dung-beetles: 31–32 – untransformed data; 33–36 – log-logarithmic transformation data; 31 – exponential function model (R2=0.8205, AIC=5.08E05); 32 – logistic function model (R2=0.8276, AIC=4.88E05); 33 – linear function model (R2=0.5047, AIC=30.24); 34 – quadratic function model (R2=0.7814, AIC=17.61); 35 – power function model (R2=0.7089, AIC=21.44); 36 – exponential function model (R2=0.6979, AIC=22.03).
Figs 25–30 in Estimation of biomass of dung beetles (Coleoptera: Scarabaeoidea) from the Russian Far East
Figs 25–30. Models of length-weight relationship and functions for a large dwellers (figs 25–27, n=599) and large tunnelers (figs 28–30, n=598) dung-beetles: 23–27 – loglogarithmic transformation data; 28–30 – untransformed data; 25 – power function model (R2=0.5119, AIC=10.58); 26 – exponential function model (R2=0.5138, AIC=10.60); 27 – logistic function model (R2=0.5154, AIC=10.59); 28 – linear function model (R2=0.7259, AIC=7.75E09); 29 – quadratic function model (R2=0.8459, AIC=4.36E05); 30 – power function model (R2=0.813, AIC=4.77E05). 25
Figs 1–6 in Estimation of biomass of dung beetles (Coleoptera: Scarabaeoidea) from the Russian Far East
Figs 1–6. Models of length-weight relationship and functions for a small dwellers (n=1441) dung-beetles: 1–5 – untransformed data; 6 – log-logarithmic transformation data; 1 – linear function model (R2=0.5970, AIC=569.91); 2 – quadratic function model (R2=0.6094, AIC=554.40); 3 – power function model (R2=0.6103, AIC=553.25); 4 – exponential function model (R2=0.6113, AIC=551.78); 5 – logistic function model (R2=0.6104, AIC=553.01); 6 – linear function model (R2=0.6817, AIC=32.78).
Figs 7–12 in Estimation of biomass of dung beetles (Coleoptera: Scarabaeoidea) from the Russian Far East
Figs 7–12. Models of length-weight relationship and functions for a small dwellers (fig. 7, n=1441) and medium dwellers dung-beetles (figs 8–12, n=1808): 7 – log-logarithmic transformation data; 8–12 – untransformed data; 7 – quadratic function model (R2=0.6819, AIC=34.77); 8 – linear function model (R2=0.6535, AIC=3151.70), 9 – quadratic function model (R2=0.6937, AIC=2788.40); 10 – power function model (R2=0.6932, AIC=2793.50); 11 – exponential function model (R2=0.6922, AIC=2802.20); 12 – logistic function model (R2=0.6926, AIC=2897.20).
Figs 13–18 in Estimation of biomass of dung beetles (Coleoptera: Scarabaeoidea) from the Russian Far East
Figs 13–18. Models of length-weight relationship and functions for a medium dwellers (Figs 13–17, n=1808) and large dwellers (Fig. 18, n=599) dung-beetles: 13–17 – log-logarithmic transformation data; 18 – untransformed data; 13 – linear function model (R2=0.6242, AIC=24.92); 14 – quadratic function model (R2=0.6307, AIC=26.57); 15 – power function model (R2=0.6308, AIC=26.56); 16 – exponential function model (R2=0.6308, AIC=26.56); 17 – logistic function model (R2=0.6308, AIC=26.56); 18 – linear function model (R2=0.5320, AIC=11563). 23
Figs 43–47 in Estimation of biomass of dung beetles (Coleoptera: Scarabaeoidea) from the Russian Far East
Figs 43–47. Models of length-weight relationship and functions for a medium tunnelers (n=988) dung-beetles (log-logarithmic transformation data): 43 – linear function model (R2=0.8622, AIC=11.06); 44 – quadratic function model (R2=0.8638, AIC=12.99); 45 – power function model (R2=0.8639, AIC=12.99); 46 – exponential function model (R2=0.8609, AIC=13.14); 47 – logistic function model (R2=0.8632, AIC=13.02).
Figs 37–42 in Estimation of biomass of dung beetles (Coleoptera: Scarabaeoidea) from the Russian Far East
Figs 37–42. Models of length-weight relationship and functions for a large tunnelers (Fig. 37, n=598) and a medium tunnelers (Figs 38–42, n=988) dung-beetles: 37 – loglogarithmic transformation data; 38–42 – untransformed data; 37 – logistic function model (R2=0.5743, AIC=28.57); 38 – linear function model (R2=0.8348, AIC=5807.50); 39 – quadratic function model (R2=0.8419, AIC=5560.30); 40 – power function model (R2=0.8419, AIC=5560.10); 41 – exponential function model (R2=0.8418, AIC=5562.10); 42 – logistic function model (R2=0.8406, AIC=5607).
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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.