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4,368 results for “male description”
Figs 4–7 in Functional morphology of the male genitalia of the family Autostichidae (Lepidoptera) with description of a new genus and a new species from the Russian Far East
Figs 4–7. Laszlogozmanya eclecticus sp. n., genitalia. 4 – male genitalia without aedeagus,
Figs 1–3 in Functional morphology of the male genitalia of the family Autostichidae (Lepidoptera) with description of a new genus and a new species from the Russian Far East
Figs 1–3. Laszlogozmanya eclecticus sp. n., male 1 – adult, holotype; 2 – wing venation;
Fig. 2 in Description of the unknown male of Conocephalus yunnanensis Shi et Feng, 2009 (Othoptera: Tettigoniidae)
Fig. 2. Habitus of Conocephalus (Anisoptera) yunnanensis Shi et Feng, 2009, lateral
Figures 1-2. Phidippus pacosauritus male, anterior view. Figure 2 in Description of Phidippus pacosauritus sp. nov. (Salticidae: Salticinae: Dendryphantini: Dendryphantina), with a reanalysis of related species in the mystaceus group
Figures 1-2. Phidippus pacosauritus male, anterior view. Figure 2. Arrow pointing at femur I dorsal setal tuft. Photo credits: Colin Hutton.
Figures 24-29. Phidippus mystaceus clade group members, male anterior view. Figure 24. Phidippus mystaceus, Oklahoma. Figure 25. Phidippus toro, Arizona. Figure 26. Phidippus pacosauritus, Sinaloa. Figure 27 in Description of Phidippus pacosauritus sp. nov. (Salticidae: Salticinae: Dendryphantini: Dendryphantina), with a reanalysis of related species in the mystaceus group
Figures 24-29. Phidippus mystaceus clade group members, male anterior view. Figure 24. Phidippus mystaceus, Oklahoma. Figure 25. Phidippus toro, Arizona. Figure 26. Phidippus pacosauritus, Sinaloa. Figure 27. Phidippus arizonensis, central Mexico, state uncertain. Figure 28. Phidippus cruentus, Jalisco. Figure 29. Phidippus adonis, Morelos. Photo credits: Figures 24, 26-29, David Hill.
Figures 20-23. Phidippus pacosauritus genital structures. Figures 20-21. Male palp. Figure 20. Ventral view. Figure 21. Lateral view. Figures 22-23. Female epigyne. Figure 22. Ventral view. Figure 23 in Description of Phidippus pacosauritus sp. nov. (Salticidae: Salticinae: Dendryphantini: Dendryphantina), with a reanalysis of related species in the mystaceus group
Figures 20-23. Phidippus pacosauritus genital structures. Figures 20-21. Male palp. Figure 20. Ventral view. Figure 21. Lateral view. Figures 22-23. Female epigyne. Figure 22. Ventral view. Figure 23. Dorsal view cleared.
Figures 16-19. Preserved Phidippus pacosauritus, ventral view. Figure 16. Male. Figures 17-19 in Description of Phidippus pacosauritus sp. nov. (Salticidae: Salticinae: Dendryphantini: Dendryphantina), with a reanalysis of related species in the mystaceus group
Figures 16-19. Preserved Phidippus pacosauritus, ventral view. Figure 16. Male. Figures 17-19. Female variations.
Figures 13-15. Live Phidippus pacosauritus, ventral view. Figure 13. Male. Figures 14-15 in Description of Phidippus pacosauritus sp. nov. (Salticidae: Salticinae: Dendryphantini: Dendryphantina), with a reanalysis of related species in the mystaceus group
Figures 13-15. Live Phidippus pacosauritus, ventral view. Figure 13. Male. Figures 14-15. Female variations. Photo credits: David Hill.
Figures 30-33. Phidippus mystaceus clade group members, male anterior view. Figure 30. Phidippus tigris, Arizona. Figure 31. Phidippus arizonensis, New Mexico. Figure 32. Phidippus toro, Arizona. Figure 33 in Description of Phidippus pacosauritus sp. nov. (Salticidae: Salticinae: Dendryphantini: Dendryphantina), with a reanalysis of related species in the mystaceus group
Figures 30-33. Phidippus mystaceus clade group members, male anterior view. Figure 30. Phidippus tigris, Arizona. Figure 31. Phidippus arizonensis, New Mexico. Figure 32. Phidippus toro, Arizona. Figure 33. Phidippus adonis, Morelos. Observe that many species have the foreleg pattern repeated on the following legs. This is particularly noticeable when the male raises the forelegs, as the second leg pair are shifted forward to support him. The four leg pattern formed by the first and second pair of legs is quite striking when the pattern is complex, and it seems likely that the second pair of legs augments the display when the forelegs are raised, perhaps during courtship (Figure 30), but also during threat displays (Figure 31, with forelegs raised; Figures 32-33 taken just after forelegs were lowered from full threat display). Note also that in P. arizonensis and P. cruentus (see previous figure plate), this is not true, as at least the femora of the forelegs are unique, unlike the succeeding leg pairs. Photo credits: Figures 30, 33, Colin Hutton.
Fig. 4 in Description of the male and the larva of IxodES CollarIS Hornok, 2016 with drawings of all stages
Fig. 4 Dorsal view of Ixodes vespertilionis (a) and I. collaris (b) larvae
Figure 7 in First report of Hestiasula castetsi (Bolivar, 1897) from Kerala, India with description of unique male specimens (Mantodea: Hymenopodidae: Acromantinae)
Figure 7. Apex of abdomen.
Figure 5 in First report of Hestiasula castetsi (Bolivar, 1897) from Kerala, India with description of unique male specimens (Mantodea: Hymenopodidae: Acromantinae)
Figure 5. Inner view of left fore leg.
Figure 10 in First report of Hestiasula castetsi (Bolivar, 1897) from Kerala, India with description of unique male specimens (Mantodea: Hymenopodidae: Acromantinae)
Figure 10. Genital, in situ photo.
Fig. 2 in Taxonomic description of the male Tortanus (Atortus) murrayi Scott A., 1909 (Copepoda, Calanoida, Tortanidae) from the Great Nicobar Island, Indian Ocean
Fig. 2 — Tortanus (Atortus) murrayi Scott A., 1909, male dorsal view
Fig. 1 in Taxonomic description of the male Tortanus (Atortus) murrayi Scott A., 1909 (Copepoda, Calanoida, Tortanidae) from the Great Nicobar Island, Indian Ocean
Fig. 1 — Map showing sampling location at Great Nicobar Island, Andaman & Nicobar archipelago
Fig. 1 in New Data On Spider Fauna Of The Katunskiy State Nature Biosphere Reserve (Altai, Russia), With Description Of The Male Oreonetides Sajanensis Eskov, 1991 (Arachnida: Araneae)
Fig. 1. Black spot – location of the Katunskiy State Nature Biosphere Reserve.
Fig. 5 in Two new species of Dermestidae for French Guiana, with description of the male of Valdesetosum atrum Háva 2014 (Coleoptera: Dermestidae: Megatomini).
Fig. 5.- Thaumaglossa anthrenoides (Pic, 1918): habitus (female, dorsal aspect).
Fig. 1 in First Description of the Male of Aeolocoelotes cornutus (Nishikawa, 2009) n. comb. (Araneae, Agelenidae) from Japan
Fig. 1. Aeolocoelotes cornutus (Nishikawa, 2009) n. comb. Male, dorsal view. Scale bar: 2.0 mm.
Heteromudas bicolor Hardy, male genitalia: 82, ventral view; 83, dorsal view; 84, lateral view. in The American Genera of Mydidae (Diptera), with the Description of three new Genera and two new Species
Heteromudas bicolor Hardy, male genitalia: 82, ventral view; 83, dorsal view; 84, lateral view.
Figure 3 Euvelia meta, male. a in Veliidae (Insecta: Heteroptera: Gerromorpha) from Colombia: Description of a new species and of the male of Euvelia meta Molano, Moreira & Morales, 2016
Figure 3 Euvelia meta, male. a) Dorsal view, b) Ventral view, c) Vesical sclerites, d) Paramere.
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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.