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Fig. 41 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 41. Aenictus congolensis, worker (CASENT0066799). A, head, dorsal view. B, habitus, lateral view. C, mesosoma, petiole and postpetiole, lateral view. D, mesosoma, petiole and postpetiole, dorsal view.
Fig. 34 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 34. Aenictus hitai sp. nov., minor, holotype (NHMUK012849306). A, head, dorsal view. B, habitus, lateral view. C, mesosoma, petiole and postpetiole, lateral view. D, mesosoma, petiole and postpetiole, dorsal view.
Fig. 59 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 59. Aenictus ugaduwensis sp. nov., holotype (NHMUK012849272). A, head, dorsal view. B, habitus, lateral view. C, mesosoma, petiole and postpetiole, lateral view. D, mesosoma, petiole and postpetiole, dorsal view.
Fig. 39 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 39. Aenictus steindachneri, syntype (CASENT0919642). A, head, dorsal view. B, habitus, lateral view. C, mesosoma, petiole and postpetiole, lateral view. D, mesosoma, petiole and postpetiole, dorsal view.
Fig. 44 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 44. Aenictus guineensis, major worker (CASENT0876634). A, head, dorsal view. B, habitus, lateral view. C, mesosoma, petiole and postpetiole, lateral view. D, mesosoma, petiole and postpetiole, dorsal view. E, mandibles and clypeus, dorsal view.
Fig. 54 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 54. Aenictus nyuyi sp. nov., paratype (KGCOL00562). A, head, dorsal view. B, habitus, lateral view. C, mesosoma, petiole and postpetiole, lateral view. D, mesosoma, petiole and postpetiole, dorsal view.
Fig. 20 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 20. Aenictus koloi sp. nov., paratype (KGCOL00552). A, head, dorsal view. B, habitus, lateral view. C, mesosoma, petiole and postpetiole, lateral view. D, mesosoma, petiole and postpetiole, dorsal view. E, mandibles and clypeus, dorsal view.
Fig. 22 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 22. Aenictus susanae sp. nov., holotype (CASENT0406728). A, head, dorsal view. B, habitus, lateral view. C, mesosoma, petiole and postpetiole, lateral view. D, mesosoma, petiole and postpetiole, dorsal view.
Fig. 2. Head sculpture and femora shapes. A, C in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 2. Head sculpture and femora shapes. A, C, Aenictus guineensis (CASENT0876634). B, Aenictus xegi sp. nov. (NHMUK012849243). D, Aenictus susanae sp. nov. (CASENT0406729).
Fig. 9 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 9. Aenictus villiersi, syntype (CASENT0915327). A, head, dorsal view. B, habitus, lateral view. C, mesosoma, petiole and postpetiole, lateral view. D, mesosoma, petiole and postpetiole, dorsal view.
Fig. 18 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 18. Aenictus mvuvii sp. nov., holotype (CASENT0350555). A, head, dorsal view. B, habitus, lateral view. C, mesosoma, petiole and postpetiole, lateral view. D, mesosoma, petiole and postpetiole, dorsal view. E, mandibles and clypeus, dorsal view.
Fig. 1. Mandibular and clypeal shapes for the different species groups. A in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 1. Mandibular and clypeal shapes for the different species groups. A, gr. rotundatus (Aenictus guineensis, CASENT0876634). B, gr. koloi (Aenictus koloi, sp. nov., KGCOL00552). C, gr. eugenii (Aenictus eugenii, CASENT0235822). D, gr. eugenii (Aenictus mvuvii, sp. nov., CASENT0350555). E, gr. popeyei (Aenictus popeyei, sp. nov., CASENT0810234). F, gr. decolor (Aenictus decolor, CASENT0317077). G, gr. asantei (Aenictus asantei, NHMUK012849241). H, gr. rixator (Aenictus rixator, CASENT0907030).
Fig. 7 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 7. Aenictus decolor, worker (CASENT0317077). A, head, dorsal view. B, habitus, lateral view. C, mesosoma, petiole and postpetiole, lateral view. D, mesosoma, petiole and postpetiole, dorsal view. E, mandibles and clypeus, dorsal view.
Fig. 5 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 5. Aenictus bidentatus, worker (CASENT0350562). A, head, dorsal view. B, habitus, lateral view. C, mesosoma, petiole and postpetiole, lateral view. D, mesosoma, petiole and postpetiole, dorsal view.
Fig. 11 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 11. Aenictus eugenii, worker (CASENT0235822). A, head, dorsal view. B, habitus, lateral view. C, mesosoma, petiole and postpetiole, lateral view. D, mesosoma, petiole and postpetiole, dorsal view.
Fig. 3 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig. 3. Aenictus asantei, worker (NHMUK012849241). A, head, dorsal view. B, habitus, lateral view. C, mesosoma, petiole and postpetiole, lateral view. D, mesosoma, petiole and postpetiole, dorsal view. E, mandibles and clypeus, dorsal view.
Fig.12 in A revision of the Afrotropical species of the Dorylinae ant genus Aenictus (Hymenoptera: Formicidae) based on the worker caste
Fig.12. Type images of A. eugenii (A, head dorsal view, B, habitus lateral view) and its synonyms: A. brazzai (C, head dorsal view, D, habitus lateral view), A. eugenii caroli (E, head dorsal view, F, habitus lateral view), A. eugenii henrii (G, head dorsal view, H, habitus lateral view), and A. eugenii kenyensis (I, head dorsal view, J, habitus lateral view).
Distribution. Islands off peninsular Thailand (Koh Samui) and Peninsular Malaysia (Tioman, and Mapur); one old specimen from Mt Tahan, Pahang State, Malaysia, might also belong to this species, but no recent confirmation of this taxon on the Malay Peninsula cast doubts about the existence of such a continental population of Peninsular White-toothed Shrew. in Soricidae
Distribution. Islands off peninsular Thailand (Koh Samui) and Peninsular Malaysia (Tioman, and Mapur); one old specimen from Mt Tahan, Pahang State, Malaysia, might also belong to this species, but no recent confirmation of this taxon on the Malay Peninsula cast doubts about the existence of such a continental population of Peninsular White-toothed Shrew.
Head and mandible shapes are highly integrated yet represent two distinct modules within and among worker sub-castes of the ant genus Pheidole
<p>Ants use their mandibles for a wide variety of tasks related to substrate manipulation, brood transport, food processing, and colony defence. Due to constraints involved in colony upkeep, ants evolved a remarkable diversity of mandibular forms, often related to specific roles such as specialized hunting and seed milling. Considering these varied functional demands, we focused on understanding how the mandible and head shape vary within and between <em>Pheidole </em>sub-castes. Using x-ray microtomography and 3D geometric morphometrics, we tested if these structures are integrated and modular, and how ecological predictors influenced these features. Our results showed that mandible and head shape of majors and minor workers tend to vary from robust to slender, with some more complex changes related to the mandibular base. Additionally, we found that head and mandible shapes are characterized by a high degree of integration, but with little correlation with feeding and nesting habits. Our results suggest that a combination of structural (allometric) constraints and the behavioural flexibility conferred by caste dimorphism might largely buffer selective pressures that would otherwise lead to a fine-tuning between ecological conditions and morphological adaptation.</p>
Coupling Silicon Lithography with Metal Casting-Data Set
<p>Dataset corresponding to the article Coupling Silicon Lithography with Metal Casting <a href="https://doi.org/10.1016/j.apmt.2022.101647">https://doi.org/10.1016/j.apmt.2022.101647</a> </p>
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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.