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Fig. 4. Violin plots for height experiment 1 in A Baited Time Sorting Pitfall Trap Allowing More Temporal Fidelity of Dung Beetle (Coleoptera: Scarabaeidae) Activity
Fig. 4. Violin plots for height experiment 1 comparing: A) Abundance per trap type, B) Species richness per trap type, C) Shannon index for each trap type, D) Pielou evenness per trap type.
Figures 1–8. Coptorhina spp. 1 in Revision of the obligate mushroom-feeding African ''dung beetle'' genus Coptorhina Hope (Coleoptera: Scarabaeidae: Scarabaeinae)
Figures 1–8. Coptorhina spp. 1, lateral view of body; 2–6, head and pronotum in dorsal view; 7–8, pronotum in dorsal view. 1–2, C. auspicata; 3, C. nitidipennis; 4, C. excavata sp. n; 5, C. nitefacta; 6, C. klugii; 7, C. angolensis; 8, C. davidi. Figures are not to scale.
PLATE 5. Figures 93–121. Internal sac. 93 in Morphology and terminology of dung beetles (Coleoptera: Scarabaeidae: Scarabaeinae) male genitalia
PLATE 5. Figures 93–121. Internal sac. 93. Ataenius sp. 94. Byrrhidium convexum Scholtz & Howden, 1987. 95. Anomiopsoides heteroclyta (Blanchard, 1845). 96. Ennearabdus lobocephalus Harold, 1868. 97. Eucranium sp. 98. Bdelyrus sp. 99. Coptorhina excavata Frolov, Akhmetova, & Scholtz, 2008. 100. Dichotomius bos (Blanchard, 1846). 101. Copris dracunculus Ferreira, 1959. 102. Copris incertus Say, 1835. 103. Copris mesacanthus Harold, 1878. 104. Digitonthophagus gazella (Fabricius, 1787). 105. Onthophagus mirabilis Bates, 1886. 106. Proagoderus brucei Reiche, 1847. 107. Malagoniella astyanax columbica Harold, 1867. 108. Anomiopus sp. 109. Canthon angularis Harold, 1868. 110. Canthon sp. 111. Canthon lamproderes Redtenbacher, 1867. 112. Canthon auricollis Redtenbacher, 1867. 113. Scarabaeus (Pachysoma) sp. 114. Scarabaeus zambezianus Péringuey, 1901. 115. Sceliages adamastor (LePeletier & Serville, 1828). 116. Circellium bacchus (Fabricius, 1781). 117. Sylvicanthon bridarollii (Martínez, 1949). 118. Canthon unicolor Blanchard, 1846. 118a. Raspule. 119. Canthon fortemarginatus Balthasar, 1939. 119a. Raspule. 120. Canthon humectus (Say, 1832). 120a. Raspule. 121. Canthon virens Mannerheim, 1829. 121a. Raspule.
PLATE 3. Figures 44–67. Aedeagus. 44. Copris dracunculus Ferreira, 1959. 45. Copris incertus Say, 1835. 46. Copris mesacanthus Harold, 1878. 47 in Morphology and terminology of dung beetles (Coleoptera: Scarabaeidae: Scarabaeinae) male genitalia
PLATE 3. Figures 44–67. Aedeagus. 44. Copris dracunculus Ferreira, 1959. 45. Copris incertus Say, 1835. 46. Copris mesacanthus Harold, 1878. 47. Dichotomius bos (Blanchard, 1846). 48. Ontherus sanctaemartae Génier, 1996. 49. Oxysternon palaemon Laporte, 1840. 50. Garreta unicolor Fahraeus, 1857. 51. Gymnopleurus sp. 52. Anomiopsoides heteroclyta (Blanchard, 1845). 53. Ennearabdus lobocephalus Harold, 1868. 54. Eucranium sp. 55. Namakwanus irishi Scholtz & Howden, 1987. 56. Namakwanus sp. 57. Epirinus mucrodentatus Scholtz & Howden, 1987. 58. Epirinus relictus Scholtz & Howden, 1987. 59. Diorygopyx tibialis (MacLeay, 1871). 60. Circellium bacchus (Fabricius, 1781). 61. Anachalcos procerus Gerstaecker, 1874. 62. Epirinus validus Péringuey, 1901. 63. Gyronotus fimetarius Kolbe, 1894. 64. Canthonosoma castelnaui (Harold, 1868). 65. Streblopus opatroides Lansberge, 1874. 66. Temnoplectron reyi Paulian, 1934. 67. Scybalocanthon moniliatus (Bates, 1887).
FIG. 1 in Cladistic, phenetic and biogeographical analysis of the ¯ightless dung beetle genus, Gyronotus van Lansberge (Scarabaeidae: Scarabaeinae), in threatened eastern Afrotropical forests
FIG. 1. Geographical distribution of Gyronotus species from east to southern Africa (T, Tanzania; M, Malawi; SA, South Africa) (S, Swahili centre of endemism; SM, Swahili-M aputaland transition zone (Burgess et al., 1998); Ma, M aputaland centre of endemism; P, Pondoland centre of endemism which occupies a narrow coastal zone (van R ensburg et al., 1999 )).
FIG. 4 in Cladistic, phenetic and biogeographical analysis of the ¯ightless dung beetle genus, Gyronotus van Lansberge (Scarabaeidae: Scarabaeinae), in threatened eastern Afrotropical forests
FIG. 4. Distal and ventral views of canthonine aedeagi showing diOEerences in paramere morphology between: (A) Anachalcos procerus Gerstaecker (distal), (B) Canthodimorph a lawrencei Davis, Scholtz and Harrison (ventral), (C) east African Gyronotus van Lansberge (ventral) (C1, G. Wmetarius K olbe; C2, G. mulanjensis D avis, Scholtz and Harrison; C3, G. dispar (Felsche)) and (D) South African Gyronotus (ventral) (D 1, G. carinatus Felsche; D 2, G. glabrosus Scholtz and Howden; D 3, G. pumilus (Boheman)). Scale bars 5 1 mm.
Fig. 5 in Seasonal and Diel Activity of Dung Beetles (Coleoptera: Scarabaeoidea) Attracted to European Bison Dung in Białowieża Primeval Forest, Poland
Fig. 5. Dominance structure per six-hour trapping period of four scarabaeoid dung beetle species in each of six months of the vegetative season Białowieża Primeval Forest, Poland. 6, 12, 18, and 0 = traps emptied respectively at 6 am, noon, 6 pm, and midnight, respectively.
Figure 2 in Ateuchus fedescobari - a new dung beetle (Coleoptera: Scarabaeinae) species from Colombia, and redescription of the rare A. punctatissimus (Génier, 2010) from Brazil
Figure 2. Ateuchus (Lobidion) fedescobari sp. nov. male holotype. (a) habitus; (b) ventral view; (c) head frontal view; (d) ventrites and metafemora, arrow pointing the metafemora dentiform process; (e) aedeagus lateral view; (f) aedeagus dorsal view; (g) internal sac of the aedeagus; (h) endophallus.
FIGURE 6 in Distribution, Regionalization, and Diversity of the dung beetle genus Phanaeus MacLeay (Coleoptera: Scarabaeidae) using Species Distribution Models
FIGURE 6. Beta diversity (β) of Phanaeus within each dominion, segmented by its components (β + β ). total repl rich
Ivermectin resistance in dung beetles exposed for multiple generations
<p>Five databases and two R scripts</p>
Fig. 2 in Niche Preference of a Coprophagous Scarab Beetle (Coleoptera: Scarabaeidae) for Summer Moose Dung in Denali National Park, Alaska
Fig. 2. Winter moose dung, Denali National Park, Alaska. Coin is 24.3 mm wide.
Fig. 1 in Highest Elevation Recorded for a Nesting Dung Beetle (Coleoptera: Scarabaeidae: Scarabaeinae) in the Americas
Fig. 1. Homocopris achamas, male (minor) habitus. A) Dorsal, B) Ventral, and C) Lateral views.
Selective logging and plantation impacts on dung beetle abundances in Malaysian Borneo
<p>If you wish to use these data, please contact grcerullo AT gmail DOT com. </p> <p>This dataset represents a geolocated and standardised dung beetle sampling effort spanning a logging and plantation gradient in Sabah, Malaysian Borneo. Habitat types sampled in Jun-Aug 2022 include:</p> <ul> <li><strong>Primary forest </strong>(12 traps, 1 site)</li> <li><strong>Restored forest </strong>(once-logged forest subjected to liana cutting and enrichment planting) (24 traps, 2 sites)</li> <li><strong>Once-logged forest</strong> left naturally regenerating (24 traps, 2 sites)</li> <li><strong>Twice-logged forest </strong>(12 traps, 1 site)</li> <li><strong><em>Albizia falcataria</em></strong> plantations, grown on 12-yr rotation (36 traps, 3 sites)</li> <li><strong><em>Eucalyptus pellita</em> </strong>plantations, grown on 6-yr rotations. (36 traps, 3 sites)</li> </ul> <p>Efforts were made to sample across a chronosequence of harvesting and plantation ages. These data supplement historic dung beetle sampling efforts throughout the Ulu-Segama area, which will also be made openly available by Gianluca Cerullo (grcerullo AT gmail.com) on Zenodo prior to manuscript publication. </p> <p>Traps were located 200 m apart with sites > 1km apart, where possible. Pitfall traps were baited with human dung and left for 96 hrs, with beetles collected every 24hs and with traps rebaited after 48hrs. </p> <p>Dung beetles were identified by Gianluca Cerullo to species-level following the GBIF backbone. Reference collections are stored in the Entomology laboratory of UMS, in Kota Kinabalu, Sabah. All beetles collected have been stored in ethanol and are being shipped to NTU in Singapore.</p> <p><em>SHAPEFILES ARE ALSO PROVIDED FOR: </em></p> <p><strong>SabahSoftwoodCompartments</strong>: the area, size and location of different plantation compartments within the Sabah Softwood tree plantation area. This represents the largest timber plantation in Sabah with Eucalyptus pellita and Albizia falcataria the main plantation species. </p> <p><strong>SabahSoftwoodsPlantingYrs2022</strong>: The species planted in the plantation, plus the year of planting. These data were correct as of July 2022. </p> <p><strong>DanumValley_PrimaryForest: </strong>Shows the boundaries of primary forest in Danum Valley. </p> <p><strong>INFAPRO: </strong>Shows the location of areas logged and and then subjected to vine-cutting and strip-planting of native dipterocarp seedlings. </p> <p><strong>COUPES:</strong> Shows the location and age of different logging coupes in the Yayasan Sabah logging concession. </p> <p>Further information on sampling protocol and the study area can be found in Chapter 3 (and the appropriate Appendices) of GC's thesis: https://www.repository.cam.ac.uk/items/617f455b-2eb5-4b14-903a-9e6bbd968886 (this section will be updated upon manuscript publication). </p>
Dung beetle community and dung removal data 2011
<p>Old version. Corrected and updated version at 10.5281/zenodo.3247492</p> <p>Dung beetle community and dung removal data at SAFE second order points 2011</p>
Fig. 1 in Affinities of the Canthonini dung beetles of the Eastern Arc Mountains
Fig. 1 Eastern Arc Mountains (EAM) in Tanzania and Kenya
Fig. 4 in New Country Records for Dung Beetles (Coleoptera: Scarabaeidae: Scarabaeinae) in Bolivia and Paraguay
Fig. 4. Known collecting localities for Pseudocanthon pantanensis.
Fig. 1 in New Country Records for Dung Beetles (Coleoptera: Scarabaeidae: Scarabaeinae) in Bolivia and Paraguay
Fig. 1. Known collecting localities for Sylvicanthon candezei (top) and S. monnei (bottom).
Figure 70 in Predicted and recorded distribution maps of the genus Phanaeus (Coleoptera: Scarabaeidae). Supplementary material of Distribution, Regionalization, and Diversity of the dung beetle genus Phanaeus MacLeay (Coleoptera: Scarabaeidae) using Species Distribution Models
Figure 70: Predicted distribution of Phanaeus triangularis species group.
Figure 63 in Predicted and recorded distribution maps of the genus Phanaeus (Coleoptera: Scarabaeidae). Supplementary material of Distribution, Regionalization, and Diversity of the dung beetle genus Phanaeus MacLeay (Coleoptera: Scarabaeidae) using Species Distribution Models
Figure 63: Predicted and recorded distribution of Phanaeus quadridens.
Figure 62 in Predicted and recorded distribution maps of the genus Phanaeus (Coleoptera: Scarabaeidae). Supplementary material of Distribution, Regionalization, and Diversity of the dung beetle genus Phanaeus MacLeay (Coleoptera: Scarabaeidae) using Species Distribution Models
Figure 62: Predicted and recorded distribution of Phanaeus palliatus.
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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.