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139 results for “Social parasitism”
FIGURE 8 in The socially parasitic ant genus Strongylognathus Mayr in North Africa (Insecta: Hymenoptera: Formicidae)
FIGURE 8. Distribution of Strongylognathus species in the western Mediterranean. Circles: S. afer Emery; Triangles: S. caeciliae1 Forel; Squares: S. destefanii Emery; Diamonds: S. insularis Baroni Urbani.
FIGURES 13 in The socially parasitic ant genus Strongylognathus Mayr in North Africa (Insecta: Hymenoptera: Formicidae)
FIGURES 13. Strongylognathus afer Emery, female (queen) from J. Gora'a. 1, Head (frontal view); 2, mesosoma (dorsal view); 3, petiolar nodes (dorsal view); scale bar 1mm; drawings by A. Schulz.
FIGURES 46. Strongylognathus afer Emery, workers. 4 in The socially parasitic ant genus Strongylognathus Mayr in North Africa (Insecta: Hymenoptera: Formicidae)
FIGURES 46. Strongylognathus afer Emery, workers. 4, Head (frontal view) of worker from J. Gora'a (smallest specimen); 5, head (frontal view) of worker from Nefza (largest specimen); 6, petiolar nodes (dorsal view) of worker from Nefza (same as 5); scale bar mm; drawings by A. Schulz.
FIGURE 2 in A new social parasite in the ant genus Ectatomma F. S m i t h (Hymenoptera, Formicidae, Ectatomminae)
FIGURE 2. Morphometric scatterplot of head width by scape length, differentiating gynes of Ectatomma parasiticum and E. tuberculatum. Measurements are in mm.
FIGURE 1 in A new social parasite in the ant genus Ectatomma F. S m i t h (Hymenoptera, Formicidae, Ectatomminae)
FIGURE 1. Paratype gyne of Ectatomma parasiticum: A, head in full face view; B, lateral view; C, dorsal view.
Fig. 16–18 in Species Paraphyly and Social Parasitism: Phylogenomics, Morphology, and Geography Clarify the Evolution of the Pseudomyrmex elongatulus Group (Hymenoptera:
Fig. 16–18. Pseudomyrmex elongatulus group, workers, full-face dorsal view of head (a) and lateral profile of body (b). 16, P. nimbus, holotype, Costa Rica (CASENT0863541); 17, P. salvini, syntype, Mexico (CASENT0902879); 18, P. veracruzensis, holotype, Mexico (CASENT0863542). Images from AntWeb (www. antweb.org); photographers Phil Ward (16, 18), Zach (Ziv) Lieberman (17).
Fig. 3 in Species Paraphyly and Social Parasitism: Phylogenomics, Morphology, and Geography Clarify the Evolution of the Pseudomyrmex elongatulus Group (Hymenoptera:
Fig. 3. Bivariate plots of measurements and indices concerned with eye size and petiole shape, in workers of P. apache (n = 17) and P. arcanus (n = 17). (a) PL/ LHT (petiole length/metatibia length) by HW (head width); (b) REL2 (eye length/head width) by PLI (petiole height/petiole length).
Fig. 13–15 in Species Paraphyly and Social Parasitism: Phylogenomics, Morphology, and Geography Clarify the Evolution of the Pseudomyrmex elongatulus Group (Hymenoptera:
Fig. 13–15. Pseudomyrmex elongatulus group, workers, full-face dorsal view of head (a), and lateral profile of body (b). 13, P. capillatus, holotype, Mexico (CASENT0863535); 14, P. exoratus, holotype worker, Mexico (CASENT0863539); 15, P. fasciatus, holotype, Costa Rica (CASENT0863540). Images from AntWeb (www.antweb.org); photographer Phil Ward.
Fig. 19–26 in Species Paraphyly and Social Parasitism: Phylogenomics, Morphology, and Geography Clarify the Evolution of the Pseudomyrmex elongatulus Group (Hymenoptera:
Fig. 19–26. Pseudomyrmex elongatulus group: distribution maps. 19, P. apache; 20, P. arcanus (circles), P. fasciatus (triangles); 21, P. championi; 22, P. capillatus (triangles), P. cognatus (circles); 23, P. elongatulus (circles), probable introduced populations (stars); 24, P. comitator (square), P. ereptor (triangle), P. exoratus (circles); 25, P. salvini; 26, P. nimbus (circles), P. veracruzensis (triangle).
Figure 1 in The first known riodinid 'cuckoo' butterfly reveals deep-time convergence and parallelism in ant social parasites
Figure 1. Adult types of Aricoris described from Uruguay. A, Hamearis gauchoana, holotype female in dorsal view (left), ventral view (centre) and labels (right). B, Hamearis montana, lectotype male in dorsal view (left), ventral view (centre) and labels (right). C, H. montana, female paralectotype in dorsal view (left), ventral view (centre) and labels (right). D, Hamearis arenarum, lectotype male in dorsal view (left), ventral view (centre) and labels (right). E, H. arenarum, female paralectotype in dorsal view (left), ventral view (centre) and labels (right). Scale bar: 1 cm.
Figure 4 in The first known riodinid 'cuckoo' butterfly reveals deep-time convergence and parallelism in ant social parasites
Figure 4. Scanning electron micrographs of the first (A–E) and second (F–J) instars of Aricoris arenarum. A, lateral view. B, lateral setae on mesothorax. C, dorsal seta and PCO on mesothorax. D, opening of TNO (arrow). E, proleg of segment A4 in lateroventral view. F, lateral view; note reduce setae on metathorax (arrow). G, head in laterofrontal view. H, dorsal setae in lateral view; note reduced setae on metathorax (arrow). I, dendritic setae and PCOs on mesothorax. J, opening of TNO (arrow).
Figure 6 in The first known riodinid 'cuckoo' butterfly reveals deep-time convergence and parallelism in ant social parasites
Figure 6. Life cycle of Aricoris arenarum tended by 'black morphs' of Camponotus punctulatus ants on Geoffroea decorticans (Fabaceae), showing both free-living and social parasitic phases. A, female at post-alighting phase. B, eggs close to anttended treehoppers (dashed ellipse). C, eggs (white arrows) and first instar caterpillars (black arrows) close to scale insets, both tended by ant workers. D, first instar caterpillar (black arrow) close to ant-tended treehoppers. E, sequence of worker drinking honeydew from treehopper (top panel, white arrow) and first instar requesting trophallaxis from ant (bottom panel, white arrow); note the typical larval posture and long prothoracic setae. F, last instar caterpillar tended by ants inside brood chamber. G, penultimate instar (black arrow indicates the everted larval TNO) and pupa inside the ant nest (white arrow). Scale bars: 5 mm in A, B, C, D, F, G; 2 mm in E.
Figure 3 in The first known riodinid 'cuckoo' butterfly reveals deep-time convergence and parallelism in ant social parasites
Figure 3. Scanning electron micrographs of Aricoris arenarum egg. A, lateral view. B, hexagonal cells of the exochorion with aeropyles (Ac) in the rib intersections. C, micropylar area (Mp).
Figure 2 in The first known riodinid 'cuckoo' butterfly reveals deep-time convergence and parallelism in ant social parasites
Figure 2. Adults of Aricoris arenarum. (A) In copula in Castillos, Uruguay, showing the female (left) and male (right); note cryptic coloration on the ground. (B–F) Male (B–D) and female (E, F) genitalia of A. arenarum. B, lateral view. C, ventral view. D, eighth sternite in ventral view. E, ventral view. F, papilla analis. Scale bar: 0.5 mm.
Figure 5 in The first known riodinid 'cuckoo' butterfly reveals deep-time convergence and parallelism in ant social parasites
Figure 5. Scanning electron micrographs of the last instar (A–H) and pupa (I–L) of Aricoris arenarum. A, head and thorax in lateral view. B, head in laterofrontal view. C, long dorsal setae on mesothorax. D, vibratory papillae. E, detail of spiniform elevations (arrow) on cephalodorsal area. F, dendritic setae and PCOs on segment A2. G, opening of TNO (arrow). H, prothoracic spiracle. I, dorsal view of metathorax. J, cluster of dendritic setae and PCOs above spiracle (sp) on segment A5. K, detail of dendritic setae and PCOs. L, detail of cremaster crochet.
Fig. 16–18 in Species Paraphyly and Social Parasitism: Phylogenomics, Morphology, and Geography Clarify the Evolution of the Pseudomyrmex elongatulus Group (Hymenoptera:
Fig. 16–18. Pseudomyrmex elongatulus group, workers, full-face dorsal view of head (a) and lateral profile of body (b). 16, P. nimbus, holotype, Costa Rica (CASENT0863541); 17, P. salvini, syntype, Mexico (CASENT0902879); 18, P. veracruzensis, holotype, Mexico (CASENT0863542). Images from AntWeb (www. antweb.org); photographers Phil Ward (16, 18), Zach (Ziv) Lieberman (17).
Fig. 3 in Species Paraphyly and Social Parasitism: Phylogenomics, Morphology, and Geography Clarify the Evolution of the Pseudomyrmex elongatulus Group (Hymenoptera:
Fig. 3. Bivariate plots of measurements and indices concerned with eye size and petiole shape, in workers of P. apache (n = 17) and P. arcanus (n = 17). (a) PL/ LHT (petiole length/metatibia length) by HW (head width); (b) REL2 (eye length/head width) by PLI (petiole height/petiole length).
Fig. 19–26 in Species Paraphyly and Social Parasitism: Phylogenomics, Morphology, and Geography Clarify the Evolution of the Pseudomyrmex elongatulus Group (Hymenoptera:
Fig. 19–26. Pseudomyrmex elongatulus group: distribution maps. 19, P. apache; 20, P. arcanus (circles), P. fasciatus (triangles); 21, P. championi; 22, P. capillatus (triangles), P. cognatus (circles); 23, P. elongatulus (circles), probable introduced populations (stars); 24, P. comitator (square), P. ereptor (triangle), P. exoratus (circles); 25, P. salvini; 26, P. nimbus (circles), P. veracruzensis (triangle).
Fig. 5 in Acromyrmex fowleri: a new inquiline social parasite species of leaf-cutting ants from South America, with a discussion of social parasite biogeography in the Neotropical region
Fig. 5 Mating flight activity of Acromyrmex fowleri alates recorded between 1994 and 1996. The number of alate A. fowleri individuals is depicted on the y-axis and the time period of our collections is depicted on the x-axis
Fig. 4 in Acromyrmex fowleri: a new inquiline social parasite species of leaf-cutting ants from South America, with a discussion of social parasite biogeography in the Neotropical region
Fig. 4 Comparative anatomy of male genitalia (a, b), female forewings (c, d), and female hindwings (e, f) of Acromyrmex fowleri (a, c, e) and Acromyrmex rugosus (b, d, f). The scale bars represent 0.1 mm in a, 0.2 mm in b, and 1 mm in c–f
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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.