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365 results for “Aphodiinae”
Fig. 3 in A review of the genus Rhyparus in the Philippines, with descriptions of two new species from Mindanao (Coleoptera: Scarabaeidae: Aphodiinae)
Fig. 3. Habitus of Rhyparus gracilis Arrow, 1905: a – dorsal view; b – right dorsolateral view; c – right lateral view. Scale bar = 1.0 mm.
Figures 27–28 in Two new scarab beetles from the southwestern USA (Coleoptera: Scarabaeidae: Melolonthinae and Aphodiinae)
Figures 27–28. Cinacanthus cunninghami ventral views of mesofemora. 27) Male (arrows indicating setal tufts). 28) Female, setal tufts lacking.
Figures 20–23. Cinacanthus cunninghami. 20 in Two new scarab beetles from the southwestern USA (Coleoptera: Scarabaeidae: Melolonthinae and Aphodiinae)
Figures 20–23. Cinacanthus cunninghami. 20) Male dorsal habitus. 21) Female ventral habitus. 22) Male genitalia, dorsal view of parameres. 23) Lateral view of parameres.
Figures 18–19 in Two new scarab beetles from the southwestern USA (Coleoptera: Scarabaeidae: Melolonthinae and Aphodiinae)
Figures 18–19. Male Phyllophaga senex, Monahans Sand Dunes near Kermit, Texas. 18) Dorsal habitus. 19) genitalia, lateral view.
Figures 3–4 in Two new scarab beetles from the southwestern USA (Coleoptera: Scarabaeidae: Melolonthinae and Aphodiinae)
Figures 3–4. Male genitalia of Phyllophaga species, lateral view. 3) P. senex, Albuquerque, New Mexico. 4) P. benwarneri.
Figures 1–2 in Two new scarab beetles from the southwestern USA (Coleoptera: Scarabaeidae: Melolonthinae and Aphodiinae)
Figures 1–2. Male dorsal habitus of Phyllophaga species. 1) P. benwarneri. 2) P. senex, Albuquerque, New Mexico.
Figures 12–17. Phyllophaga benwarneri tarsal claws, lateral view. 12, 13, 14 in Two new scarab beetles from the southwestern USA (Coleoptera: Scarabaeidae: Melolonthinae and Aphodiinae)
Figures 12–17. Phyllophaga benwarneri tarsal claws, lateral view. 12, 13, 14) Male pro-, meso- and metatarsi, respectively. 15, 16, 17) Female pro-, meso- and metatarsi, respectively.
Figures 8–11. Female Phyllophaga species dorsal and posterior habitus. 8, 10 in Two new scarab beetles from the southwestern USA (Coleoptera: Scarabaeidae: Melolonthinae and Aphodiinae)
Figures 8–11. Female Phyllophaga species dorsal and posterior habitus. 8, 10) P. benwarneri. 9, 11) P. senex, Albuquerque, New Mexico.
Figures 5–7 in Two new scarab beetles from the southwestern USA (Coleoptera: Scarabaeidae: Melolonthinae and Aphodiinae)
Figures 5–7. Males of Phyllophaga species. 5) P. benwarneri forebody, dorsoanterior view. 6–7) P. senex (Albuquerque, New Mexico): 6) Forebody, dorsoanterior view. 7) Pygidium (arrow points to 6th abdominal ventrite medial process).
Figure 54-60 in The morphology of the labrum (epipharynx, ikrioma and aboral surface) of adult Aphodiini (Coleoptera: Scarabaeidae: Aphodiinae), and its implications for systematics
Figure 54-60. Dissection and mounting of parts. 54-57) Sequential steps for removing the labrum from the head of an Aphodiinae. 58) Preparation of the slide (dashed lines represent the line of cutting). 59a-d) Sequential steps for mounting the labrum. 60) Suggested order of the cards pinned under a specimen (a: card with D.M.H.F. mounted dissected parts; b: slide with labrum; c: label with collecting and other data).
Figure 48-53. Epipharyngeal features. 48 in The morphology of the labrum (epipharynx, ikrioma and aboral surface) of adult Aphodiini (Coleoptera: Scarabaeidae: Aphodiinae), and its implications for systematics
Figure 48-53. Epipharyngeal features. 48) Cryptoscatomaseter explanatus (LeConte, 1878). 49) Oscarinus spiniclypeus (Hinton, 1934). 50) Cephalocyclus fuliginosus (Harold, 1863). 51) Drepanocanthoides walshii (Horn, 1870). 52) Cryptoscatomaseter oklahomensis (Brown, 1928). 53) Stenotothorax badipes (Melsheimer, 1844).
Figure 30-35. Epipharyngeal features. 30 in The morphology of the labrum (epipharynx, ikrioma and aboral surface) of adult Aphodiini (Coleoptera: Scarabaeidae: Aphodiinae), and its implications for systematics
Figure 30-35. Epipharyngeal features. 30) Tetraclipeoides giulianii (Gordon, 1977). 31) Tetraclipeoides denticulatus (Haldeman, 1848). 32) Coelotrachelus symbius (Gordon and Howden, 1973). 33) Ammoecius elevatus (Olivier, 1789). 34) Plagiogonus arenarius (Olivier, 1789). 35) Loraspis frater (Mulsant and Rey, 1870).
Figure 24-29. Epipharyngeal features. 24 in The morphology of the labrum (epipharynx, ikrioma and aboral surface) of adult Aphodiini (Coleoptera: Scarabaeidae: Aphodiinae), and its implications for systematics
Figure 24-29. Epipharyngeal features. 24) Cesamexico constricticollis (Bates, 1889). 25) Haroldiellus lansbergei (Harold, 1874). 26) Pseudagolius coloradensis (Horn, 1870). 27) Blackburneus saylorea (Robinson, 1940). 28) Coelotrachelus kuntzeni (Schmidt, 1913). 29) Blackburneus troglodytes (Hubbard, 1894).
Figure 6-11. Epipharyngeal features. 6 in The morphology of the labrum (epipharynx, ikrioma and aboral surface) of adult Aphodiini (Coleoptera: Scarabaeidae: Aphodiinae), and its implications for systematics
Figure 6-11. Epipharyngeal features. 6) Aphodius fimetarius (Linné, 1758). 7) Xeropsamobeus desertus VanDyke, 1918. 8) Luxolinus luxatus (Horn, 1887). 9) Gonaphodiellus hoffmanni (Islas, 1945). 10) Gonaphodiellus opisthius (Bates, 1887). 11) Dellacasiellus kirni (Cartwright, 1944).
Figure 10-14 in Neotrichaphodioides, new genus of Neotropical Aphodiini, with description of a new species from Peru (Scarabaeoidea: Scarabaeidae: Aphodiinae)
Figure 10-14. Neotrichaphodioides ecuadoriensis (Petrovitz, 1961) (holotype male). 10) Morphological details of habitus. 11-12) Aedeagus (dorsal and lateral view). 13) Epipharynx. 14) Habitus.
Figure 15-19 in Neotrichaphodioides, new genus of Neotropical Aphodiini, with description of a new species from Peru (Scarabaeoidea: Scarabaeidae: Aphodiinae)
Figure 15-19. Neotrichaphodioides forsterianus (Balthasar, 1960) (allotype male). 15) Morphological details of habitus. 16-17) Aedeagus (dorsal and lateral view). 18) Epipharynx. 19) Habitus.
Figure 18-23. Epipharyngeal features. 18 in The morphology of the labrum (epipharynx, ikrioma and aboral surface) of adult Aphodiini (Coleoptera: Scarabaeidae: Aphodiinae), and its implications for systematics
Figure 18-23. Epipharyngeal features. 18) Cephalocyclus pullatus (Schmidt, 1913). 19) Blackburneus tenuistriatus (Horn, 1887). 20) Dellacasiellus concavus (Say, 1823). 21) Cryptoscatomaseter magnificens (Robinson, 1940). 22) Cephalocyclus luridiventris (Harold, 1862). 23) Cephalocyclus luteolus (Horn, 1887).
Figure 3-5. Labrum general terminology. 3 in The morphology of the labrum (epipharynx, ikrioma and aboral surface) of adult Aphodiini (Coleoptera: Scarabaeidae: Aphodiinae), and its implications for systematics
Figure 3-5. Labrum general terminology. 3) Epipharyngeal regions. 4) Aboral frames. 5) Epipharyngeal muscles and nerves.
Figure 5-9 in Neotrichaphodioides, new genus of Neotropical Aphodiini, with description of a new species from Peru (Scarabaeoidea: Scarabaeidae: Aphodiinae)
Figure 5-9. Neotrichaphodioides caracanus (Balthasar, 1970) (holotype male). 5) Morphological details of habitus. 6-7) Aedeagus (dorsal and lateral view). 8) Epipharynx. 9) Habitus.
Figure 1-2. Labrum general terminology. 1 in The morphology of the labrum (epipharynx, ikrioma and aboral surface) of adult Aphodiini (Coleoptera: Scarabaeidae: Aphodiinae), and its implications for systematics
Figure 1-2. Labrum general terminology. 1) Epipharynx. 2) Labral aboral surface and inner scleromes.
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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.