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Figures 17–28 in Remarks on the subgenus Cylinderina Rivalier (Coleoptera: Cicindelidae: Cylindera) from the Philippines with description of a new species 144. Contribution towards the knowledge of the Cicindelidae
Figures 17–28. Cylindera (Cylinderina). All scales = 1 mm. 17–22. C. (C.) sierramadrensis, new species. 17) Habitus, paratype female from Dingalan (JWGC). 18) Left lateral view of aedeagus, holotype from Dingalan (JWGC). 19–20. Left elytron. 19) Holotype male from Dingalan (JWGC). 20) Paratype female from Dingalan (JWGC). 21–22. Labrum. 21) Holotype male from Dingalan (JWGC). 22) Paratype female from Dingalan (JWGC). 23–28. C. (C.) pseudonana (Horn, 1924). 23) Habitus, lectotype male from Mt. Banahao (SDEI). 24) Left lateral view of aedeagus, lectotype from Mt. Banahao (SDEI). 25–26. Left elytron. 25) Lectotype male from Mt. Banahao (SDEI). 26) Paralectotype female (SDEI). 27–28. Labrum. 27) Lectotype male from Mt. Banahao (SDEI). 28) Paralectotype female (SDEI).
Ellora वेरुळ लेणी (District Aurangabad, Maharashtra). Cave 12, part of the relief carving of twelve knowledge goddesses.
<p><a href="https://en.wikipedia.org/wiki/Ellora_Caves">Ellora</a> वेरुळ लेणी (District Aurangabad, Maharashtra). Cave 12, part of the relief carving of twelve knowledge goddesses, the central figure showing Mahāmāyūrī with a peacock, circa 730</p>
Figure 4 in The Middle Eastern Biodiversity Network: Generating and sharing knowledge for ecosystem management and conservation
Figure 4. Joint field research in Yemen: Project participants sample fish in Socotra Island for studies of connectivity among populations. Th e results are important for fisheries management (photo U. Zajonz).
Figure 3 in The Middle Eastern Biodiversity Network: Generating and sharing knowledge for ecosystem management and conservation
Figure 3. Collection management and museum curatorship training workshop: Participants sampling biological specimens aboard the RV "Senckenberg" (photo N. Manasfi).
Figure 2 in The Middle Eastern Biodiversity Network: Generating and sharing knowledge for ecosystem management and conservation
Figure 2. Red Sea coral reef: Th e Red Sea is the enclosed sea with the highest biodiversity on Earth (photo F. Krupp).
Figure 4. Callytron monalisa. A in Increasing knowledge of the entomological fauna of the United Arab Emirates and the role of private collections
Figure 4. Callytron monalisa. A living specimen of Callytron monalisa, one of two specimens collected by B. Howarth in 2007 on Reem Island, Abu Dhabi. This rare species is known only from the Iranian side of the Arabian Gulf (photograph by D. Gardner).
Figure 2. The jewel beetle Pseudocastalia arabica. A in Increasing knowledge of the entomological fauna of the United Arab Emirates and the role of private collections
Figure 2. The jewel beetle Pseudocastalia arabica. A jewel beetle from the JAAENHG Insect Collection; this specimen was originally collected by J. N. B. Brown in Abu Dhabi and kept in the ENHG Collection there (photograph by B. Howarth).
Figure 3 in Increasing knowledge of the entomological fauna of the United Arab Emirates and the role of private collections
Figure 3. The flat-headed borer jewel beetle, Capnodis excisa. This specimen was collected by J. N. B. Brown in the Madam area, UAE; originally in the Abu Dhabi Collection, it is now housed in the JAAEN- HG Insect Collection in Al Ain (photograph by B. Howarth).
Figure 6 in Increasing knowledge of the entomological fauna of the United Arab Emirates and the role of private collections
Figure 6. An unidentified fly from the family Mydidae (photographed by D. Gardner). Whilst Mydidae had been observed in neighbouring Oman, before 2006 no records were known from the UAE.
Fig. 1 in Contributions to the knowledge of Atlantic Canadian Histeridae (Coleoptera)
Fig. 1. The distribution of Margarinotus faedatus, Paromalus teres, Aeletes politus, Hister curtatus, and Atholus bimaculatus in Atlantic Canada.
Figure 1 in The Middle Eastern Biodiversity Network: Generating and sharing knowledge for ecosystem management and conservation
Figure 1. Terrestrial biodiversity in the Middle East is strongly influenced by seasonality: Desert area in northern Saudi Arabia after the winter rainfall (photo F. Krupp).
Fig. 16 in Contributions to the knowledge of Formicidae (Hymenoptera, Aculeata): a new diagnosis of the family, the first global male-based key to subfamilies, and a treatment of early branching lineages
Fig. 16. Male representatives of three subfamilies. A–B. Formica wheeleri, Formicinae (U.S.A., CASENT0173024, A. Nobile). C–D. Rhytidoponera, Ectatomminae, ectaheteromorph clade (Australia, CASENT0004610, A. Nobile). E–F. Pogonomyrmex rastratus (Argentina, CASENT0172673, A. Nobile). Scale bars: A, C = 0.5 mm, B, D, F = 1.0 mm, E = 0.2 mm.
Fig. 9 in Contributions to the knowledge of Formicidae (Hymenoptera, Aculeata): a new diagnosis of the family, the first global male-based key to subfamilies, and a treatment of early branching lineages
Fig. 9. Apomyrma CD01, male, photomicrographs. A. Forewing. B. Hindwing. C. Abdominal sternum IX, ventral view. D. Genital capsule, dorsal view. E. Genital valves, slightly splayed and without cupula, ventral view. F. Genital capsule, lateral view. G. Volsella and paramere, mesal view. H. Penisvalva in situ, mesal view. Scale bars: A–B = 0.5 mm, C–H = 0.1 mm. Abbreviations: see Material and Methods.
Fig. 10 in Contributions to the knowledge of Formicidae (Hymenoptera, Aculeata): a new diagnosis of the family, the first global male-based key to subfamilies, and a treatment of early branching lineages
Fig. 10. Representative males of Leptanillinae, lateral view A. Protanilla "TH01" (Thailand, CASENT0119776, A. Nobile), arrow indicates loss of abdominal segment II petiolation. B. Protanilla "TH03" (Thailand, CASENT0119791, E. Prado). C. Leptanilla swani (Australia, CASENT0172318, A. Nobile). D. Protanilla sp. (Indonesia, CASENT0178838, A. Nobile), arrow indicates basolateral basimeral process. E. Scyphodon sp. (Indonesia, MCZ155112w, A. Nobile). F. Noonilla sp., used with permission from Petersen (1968). Scale bars: A, C, E–F = 0.2 mm, D = 0.5 mm, B = 1.0 mm.
Fig. 12 in Contributions to the knowledge of Formicidae (Hymenoptera, Aculeata): a new diagnosis of the family, the first global male-based key to subfamilies, and a treatment of early branching lineages
Fig. 12. Martialis heureka Rabeling & Verhaagh, 2008, male, wing photomicrographs and genitalia illustrations, genital membranes not shown. A. Forewing. B. Hindwing. C. Abdominal sternum IX, ventral view. D. Genital capsule, dorsal view. E. Genital capsule, ventral view. F. Genital capsule, lateral view. G. Volsella and paramere, mesal view. H. Penisvalva in situ, mesal view. Scale bars: A–B = 0.5 mm, C–H = 0.1 mm. Abbreviations: see Material and Methods.
Fig. 15 in Contributions to the knowledge of Formicidae (Hymenoptera, Aculeata): a new diagnosis of the family, the first global male-based key to subfamilies, and a treatment of early branching lineages
Fig. 15. Male representatives of three subfamilies. A, D. Frontal view. B–C, E. Lateral view. — A–B. Pseudomyrmex holmgreni, Pseudomyrmecinae (Paraguay, CASENT0173758, A. Nobile). C. Aneuretus simoni, Aneuretinae, used with permission from Wilson et al. (1956). D–E. Technomyrmex difficilis, Dolichoderinae (Madagascar, CASENT0049968, A. Nobile). Scale bars: A, D = 0.2 mm, B = 1.0 mm, E = 0.5 mm, no scale available for C.
Fig. 14 in Contributions to the knowledge of Formicidae (Hymenoptera, Aculeata): a new diagnosis of the family, the first global male-based key to subfamilies, and a treatment of early branching lineages
Fig. 14. Male representatives of three subfamilies. A, C, E. Frontal view. B, D, F. Lateral view. — A–B. Proceratium creek, Proceratiinae (U.S.A., CASENT010441, A. Nobile). C–D. Acanthostichus, Dorylinae (French Guiana, CASENT0056970, A. Nobile). E–F. Myrmecia chasei, Myrmeciinae (Australia, CASENT0903663, W. Ericson). Scale bars: A, C = 0.2 mm, B, E = 0.5 mm, D = 1.0 mm, E = 2.0 mm.
Fig. 4. Male morphology. A–C. Abdominal sternum IX in Contributions to the knowledge of Formicidae (Hymenoptera, Aculeata): a new diagnosis of the family, the first global male-based key to subfamilies, and a treatment of early branching lineages
Fig. 4. Male morphology. A–C. Abdominal sternum IX in ventral view. B. Oblique. D–E. Petiole in lateral view. F. Forewing in dorsal view. G–H. Propodeum in lateral view. — A. Aenictogiton indet. (Zambia, CASENT0106126, M. Branstetter). B. Cerapachys "parasyscia" lineage (Kenya, B. Boudinot). C. Emeryopone buttelreepeni (Thailand, CASENT0278779, B. Boudinot). D. Paraponera clavata (?Panama, B. Boudinot). E. Cerapachys lividus (Madagascar, CASENT0138502, D. Raharinjanahary). F. Phaulomyrma indet. (Thailand, UCRENT150358, A. Nobile). G. Leptanillinae indet. (Thailand, CASENT0156249, B. Boudinot); arrow indicates dorsal margin of petiolar foramen. H. Adelomyrmex dentivagans; arrow indicates propodeal lobe. All scale bars = 0.2 mm, except D–E = 1.0 mm.
Fig. 11 in Contributions to the knowledge of Formicidae (Hymenoptera, Aculeata): a new diagnosis of the family, the first global male-based key to subfamilies, and a treatment of early branching lineages
Fig. 11. Martialis heureka Rabeling & Verhaagh, 2008, male, photomicrographs. A. Head, frontal view. B. Head, anteroventral oblique view. C. Body, lateral view. D. Body, dorsal view. Scale bars: A–B = 0.2 mm, C–D = 0.5 mm.
Fig. 8 in Contributions to the knowledge of Formicidae (Hymenoptera, Aculeata): a new diagnosis of the family, the first global male-based key to subfamilies, and a treatment of early branching lineages
Fig. 8. Apomyrma CD01, male, photomicrographs (CASENT0086073, E. Prado). A. Head, frontal view. B. Body, lateral view. C. Body, dorsal view. Scale bars: A = 0.2 mm, B–C = 0.5 mm.
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.