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712 results for “Beetle diversity”
FIGURE 6 in Cryptic diversity in the Azorean beetle genus Tarphius Erichson, 1845 (Coleoptera: Zopheridae): An integrative taxonomic approach with description of four new species
FIGURE 6. Details on the number of seta on the external row of the lateral margin of pronotum in the complex "azoricuswollastoni-depressus": T. azoricus (restricted to São Miguel and Flores) (A); Tarphius wollastoni (restricted to Faial) (B); Tarphius gabrielae sp. nov. (restricted to Pico) (C); Tarphius floresensis sp. nov. (restricted to Flores) (D); and T. depressus (restricted to S. Maria) (E). Scales 0.25 mm (Photos: Erno-Endre Gergely).
FIGURE 8 in Cryptic diversity in the Azorean beetle genus Tarphius Erichson, 1845 (Coleoptera: Zopheridae): An integrative taxonomic approach with description of four new species
FIGURE 8. Detail on the number of seta on the external row of the lateral margin of pronotum in Tarphius tornvalli Gillerfors. Scale 0.25 mm (Photo: Erno-Endre Gergely).
Fig. 3 in Diversity of Water Beetles in Picos de Europa National Park, Spain: Inventory Completeness and Conservation Assessment
Fig. 3. Historic species richness curve (1882–2005) (dots) together with the number of species collected for the first time each year (bars).
Fig. 1 in Diversity of Water Beetles in Picos de Europa National Park, Spain: Inventory Completeness and Conservation Assessment
Fig. 1. Location of Picos de Europa National Park in northern Spain. Numbers indicate locations of 2005 sampling sites: 1 = Puerto de Panderrueda (León province); 2 = Soto de Valdeón (León province); 3 = Brañarredonda (León province); 4 = Caín (León province); 5 = Posada de Valdeón (León province); 6 = Puerto de Pandetrave (León province); 7 = Begés (Cantabria province); 8 = Invernal del Texu (Asturias province); 9 = Tresviso (Cantabria province); 10 = Sotres (Asturias province); 11 = Valfrío-Tielve (Asturias province).
Fig. 2 in Diversity of Water Beetles in Picos de Europa National Park, Spain: Inventory Completeness and Conservation Assessment
Fig. 2. Species accumulation curves generated from the database with the fitted Clench function and the non-parametric estimators. Only one of each 20 points is shown for clarity.
Fig. 4 in Diversity of Water Beetles in Picos de Europa National Park, Spain: Inventory Completeness and Conservation Assessment
Fig. 4. Species accumulation curve during final sampling period (1981–2005) and fitted Clench function.
FIGURE 3 in A new genus and species in the diverse dung beetle tribe Onthophagini Streubel, 1846 (Scarabaeidae: Scarabaeinae) from South Africa
FIGURE 3. Map of South Africa showing the type locality of Hathor spinosa Deschodt, new genus and species (red dot west of Pretoria).
FIGURE 1 in A new genus and species in the diverse dung beetle tribe Onthophagini Streubel, 1846 (Scarabaeidae: Scarabaeinae) from South Africa
FIGURE 1. Hathor spinosa Deschodt, new genus and species. (A) habitus in dorsal view showing the reduced fourth denticle of the protibiae; (B) habitus in ventral view; (C) habitus in lateral view showing the spine on the pronotum and; (D) frontal view showing the characteristic horns on the vertex and the triangular spine-like process situated anteromedially on the prothorax.
Fig. 2 in Notes on the Diversity and Foraging Height of Carrion Beetles (Coleoptera: Silphidae) of the Nassawango Creek Preserve, Maryland, USA
Fig. 2. Seasonality (June to September) of Nicrophorinae captured in the Nassawango Creek Preserve, Maryland.
DATASET - Climate heterogeneity shapes the diversity of specialist beetle species across mountains in Malaysia
Open the record for dataset details and reuse information.
Figure 2 in Flowers are essential to maintain high beetle diversity (Coleoptera) in a Neotropical rainforest canopy
Figure 2. Small white flowers of the generalist pollination syndrome in a lowland rainforest canopy, Venezuela. (a) Flowers of Hymenopus heteromorphus (Benth.) Sothers and Prance var. heteromorphus (Chrysobalanaceae), March 1999. (b) Macraspis festiva Burmeister (Scarabaeidae) mating on flowering Matayba guianensis Aubl. (Sapindaceae), September 1997.
Figure 3 in Flowers are essential to maintain high beetle diversity (Coleoptera) in a Neotropical rainforest canopy
Figure 3. Diversity of Chrysomelidae beetles visiting flowers of Hymenopus heteromorphus (Benth.) Sothers and Prance var. heteromorphus (Chrysobalanaceae), March 1999. (a) Colaspis Fabricius (Eumolpinae). (b) Coroicona danieli Bechyné (Alticini). (c) Griburius auricapillus (Suffrian) (Cryptocephalinae). (d) Hecataeus Jacoby (Galerucinae).
Figure 1 in Flowers are essential to maintain high beetle diversity (Coleoptera) in a Neotropical rainforest canopy
Figure 1. Specialised flower-visiting beetles often have mouth parts adapted to feed effectively on pollen and nectar. Adaptations can include prolonged mouthparts and dense brushes on the maxillae as in (a) Mecometopus Thomson sp. (Cerambycidae), or enlarged and securiform maxillary palpomeres as in (b) Mordellistena Costa sp. 3 (Mordellidae).
FIGURE 100 in The Batrisini of Tibet: unveiling an enigmatic ant-loving beetle diversity at Earth's "Third Pole" (Coleoptera, Staphylinidae, Pselaphinae)
FIGURE 100. Environment of and collecting sites at Nyingchi area (A–E) and Chamdo (ăƀ) (F). A. 80K. B. 96K. C–E. Xiachayu (T察ø). F. pass of Jueba Mountain (ẅ巴山口), Markam (Ẽ康). Photo Credit: A by Zhong Peng; B by Xiao-Bin Song; F by Wen-Xuan Bi.
FIGURE 98 in The Batrisini of Tibet: unveiling an enigmatic ant-loving beetle diversity at Earth's "Third Pole" (Coleoptera, Staphylinidae, Pselaphinae)
FIGURE 98. Environment of and collecting sites at Nyingchi area. A, B. Lage (Ń格). C, D. Hanmi (汗ṁ). E, F. Aniqiao (Nj 尼桥). Photo Credit: A, B by Chao Wu; C, D by Wen-Xuan Bi; E, F by Hao Huang.
FIGURE 99 in The Batrisini of Tibet: unveiling an enigmatic ant-loving beetle diversity at Earth's "Third Pole" (Coleoptera, Staphylinidae, Pselaphinae)
FIGURE 99. Environment of and collecting sites at Nyingchi area. A. Beibeng Township (Ü崩乡). B. Road near Gelin Village (格ff村). C. A bridge at Yarang (亚ü). D. A village near Guoguotang Great Bend (果果Ƌkm弯). E. Environment near Mêdog County (ẸṘ县). F. Path to Renqingbeng Temple (仁ů崩寺). G. An overall view of Guoguotang Great Bend. Photo Credit: E, F by Xiao-Bin Song.
FIGURE 97 in The Batrisini of Tibet: unveiling an enigmatic ant-loving beetle diversity at Earth's "Third Pole" (Coleoptera, Staphylinidae, Pselaphinae)
FIGURE 97. Environment of and collecting sites at Nyingchi area. A. Sign of Yigong Tea Farm (ƌŭē厂). B. Forest near Yigong. C. Forest at Pailong Township (ḦË乡). D. Forest near Tongmai Town (ȃ9W).
FIGURE 96 in The Batrisini of Tibet: unveiling an enigmatic ant-loving beetle diversity at Earth's "Third Pole" (Coleoptera, Staphylinidae, Pselaphinae)
FIGURE 96. Environment of and collecting sites at Nyingchi area (ffż地区). A. Gongbo'gyamda (工布ȕḭ). B. Zhongzhe Village (ΦĖ村). C. Kading Valley (ϮŤ沟). D. Chongge Cuo (ṗẋś). E, F. A slope near Serjila mountain pass (DzĻŃ山 口). Photo Credit: A, B, E, F by Zhong Peng.
FIGURE 94 in The Batrisini of Tibet: unveiling an enigmatic ant-loving beetle diversity at Earth's "Third Pole" (Coleoptera, Staphylinidae, Pselaphinae)
FIGURE 94. Environment of and collecting sites at Yatung Valley (亚东沟). General environment (A) of and collecting sites (B, C) at Xiayadong (T亚东). Photo Credit: A by Jian-Qing Zhu.
FIGURE 95 in The Batrisini of Tibet: unveiling an enigmatic ant-loving beetle diversity at Earth's "Third Pole" (Coleoptera, Staphylinidae, Pselaphinae)
FIGURE 95. Environment of and collecting sites at Lebu Valley (勒布沟). Forests at 2400 m (A, B), and 3650 m (C, D).
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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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.