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Fig. 39 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 39. Stictopsallus aspersus: Male genitalia (male 1 [left hand], AMNH_PBI 00062641; male 2 [right hand], AMNH_PBI 00063197); female genitalia (AMNH_PBI 00062622).
Fig. 16 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 16. Ceratopsallus pantherinus: Male genitalia (AMNH_PBI 00077250; vesica drawn at 50% scale of other structures).
Fig. 8 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 8. Bisulcopsallus fuscipunctatus: Male genitalia (AMNH_PBI 00062958; entire vesica drawn at 50% scale of other structures; upper phallotheca: AMNH_PBI 00062836); female genitalia (AMNH_PBI 00062921).
Fig. 12 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 12. Bisulcopsallus texanus: Male genitalia (male 1, AMNH_PBI 00068583; male 2, 00068573; entire vesica drawn at 50% scale of other structures).
Fig. 11 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 11. Bisulcopsallus polhemorum: Male genitalia (upper, AMNH_PBI 00055996; lower, 00063432; entire vesica drawn at 50% scale of other structures); female genitalia (AMNH_PBI 00074879, 00063959).
Fig. 10 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 10. Bisulcopsallus pallidus: Male genitalia (AMNH_PBI 00068621; entire vesica drawn at 50% scale of other structures).
Fig. 5 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 5. Angelopsallus gregalis (upper) (male genitalia: AMNH_PBI 00077130; female genitalia: AMNH_PBI 00077131). Arizonapsallus stonedahli (lower) (male genitalia: AMNH_PBI 00096983, right paramere only, AMNH_PBI 00063971; female genitalia: AMNH_PBI 00063971).
Fig. 4 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 4. Arizonapsallus stonedahli: A. Lateral view of head. B. Mesothoracic spiracle and metathoracic scent-efferent system. C. Setae on costal margin of wing. D. Ventral view of pretarsus.
Fig. 3 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 3. Habitus views of Phymatopsallus-group taxa: Cercocarpopsallus gracilis, Knightopsallus, Phymatopsallus, Salicopsallus, Stictopsallus, Schaffneropsallus (see appendix for specimens examined).
Fig. 2 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 2. Habitus views of Phymatopsallus-group taxa: Ceratopsallus croceus–Ceratopsallus vauqueliniae, Cercocarpopsallus bispinosus (see appendix for specimens examined).
Fig. 6 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 6. Bisulcopsallus fuscipunctatus: A. Lateral view of head. B. Mesothoracic spiracle and metathoracic scent-efferent system. C. Setae on costal margin of wing. D. Lateral view of pretarsus. E. Lateral view of pygophore. F. Bisulcopsallus huachucae: Confocal microscopic image, lateral view, showing in situ position of vesica in pygophore and abdomen.
Fig. 1 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 1. Habitus views of Phymatopsallus-group taxa: Angelopsallus, Arizonapsallus, Bisulcopsallus, Ceratopsallus aquilonius (see appendix for specimens examined).
Fig. 9 in Revision, Phylogenetic, Biogeographic, And Host Analyses Of The Endemic Western North American Phymatopsallus Group, With The Description Of 9 New Genera And 15 New Species (Insecta: Hemiptera: Miridae: Phylinae)
Fig. 9. Bisulcopsallus huachucae: Male genitalia (AMNH_PBI 00062967; entire vesica drawn at 50% scale of other structures).
Figure 2 in Forest monkeys and Pleistocene refugia: a phylogeographic window onto the disjunct distribution of the Chlorocebus lhoesti species group
Figure 2. All possible patterns of relationships among the lhoesti group species. A, topology consistent with a vicariant scenario in which the distribution of a widespread common ancestor fragments into three segments – nearly simultaneously – as the result of habitat deterioration associated with a Pleistocene glacial cycle. B, topology consistent with an alternative vicariant scenario, in which ancestral populations of Chlorocebus preussi and Chlorocebus solatus remain in contact for a short time after the divergence of Chlorocebus lhoesti, because the former two stocks range within the same Pleistocene refuge. C, tree consistent with a dispersal hypothesis in which early C. preussi populations (following divergence from C. solatus) migrate along the northern rim of the Congo Basin, and found a new lineage (C. lhoesti) in the Albertine region (see Fig. 1). D, tree consistent with a dispersal hypothesis in which early C. solatus populations (following divergence from C. preussi) conduct a similar transcontinental migration, but along the southern rim of the Congo Basin (see Fig. 1).
Figure 13 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 13. Spinoncaea tenuis sp. nov., female (Red Sea). (A) Antenna; (B) labrum, anterior; (C) same, posterior; (D) mandible, showing individual elements; (E) maxillule; (F) maxilla; (G) maxilliped, anterior; (H) paragnaths, ventral.
Figure 6 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 6. Spinoncaea ivlevi (Shmeleva, 1966) comb. nov., female, elongate form (Red Sea). (A) Habitus, dorsal; (B) urosome, dorsal, seta V on CR omitted [b: P5-bearing somite, ventral, showing midventral spinous processes, exopodal setae omitted]; (C) P4, endopod, anterior, showing reduced inner setae on second segment. Spinoncaea ivlevi (Shmeleva, 1966) comb. nov., female (Adriatic Sea). (D) Habitus, dorsal, pore pattern on prosome not fully discerned; (E) urosome, dorsal; (F) caudal ramus, dorsal, seta VII shown separately; (G) P4, endopod, posterior.
Figure 9 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 9. Spinoncaea humesi sp. nov., female (Red Sea). (A) Antenna; (B) labrum, anterior; (C) same, posterior; (D) mandible, showing individual elements; (E) maxillule; (F) maxilla; (G) maxilliped, anterior.
Figure 4 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 4. Spinoncaea ivlevi (Shmeleva, 1966) comb. nov., female, robust form (Red Sea). (A) P1, anterior [a: second endopod segment, arrow indicating ornamentation on inner margin]; (B) P2, anterior, intercoxal sclerite not shown; (C) P3, posterior; (D) P4, anterior, intercoxal sclerite not shown.
Figure 3 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 3. Spinoncaea ivlevi (Shmeleva, 1966) comb. nov., female, robust form (Red Sea). (A) Antenna, lateral elements are numbered using Roman numerals, distal elements are identified by capital letters; (B) labrum, anterior; (C) same, posterior; (D) mandible, showing individual elements, which are identified by capital letters; (E) maxillule; (F) maxilla; (G) maxilliped, anterior.
Figure 1 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 1. Location of stations. ' = VALDIVIA-Cruise 29, October 1980; - = METEOR-Cruise 5/1, January 1987; • = METEOR-Cruise 5/3b, May 1987; ' = METEOR-Cruise 5/5, July/August 1987; · = METEOR-Cruise 44/2, March 1999.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.