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FIG. 13 in A taxonomic revision of the ant subgenus Coptoformica Mueller, 1923 (Hymenoptera, Formicidae)
FIG. 13. — Formica foreli worker; SEM picture of the ocellar triangle showing a very dense and short pubescence. Scale bar: 100 µm.
FIG. 8 in A taxonomic revision of the ant subgenus Coptoformica Mueller, 1923 (Hymenoptera, Formicidae)
FIG. 8. — Formica forsslundi worker; SEM picture of a seta and three pubescence hairs in the ocellar region; the maximum strength of hairs is usually 1-2 µm in pubescence and 4-8 µm in setae. Scale bar: 20 µm.
FIG. 7. — Discriminant score D in A taxonomic revision of the ant subgenus Coptoformica Mueller, 1923 (Hymenoptera, Formicidae)
FIG. 7. — Discriminant score D(5) calculated with the characters sqrtPDF, sqrtPDG, SL/CL, ML, and GLANZ to separate Formica foreli and pressilabris queens. The bars mark the position of the following type material: n, type series of F. naefi Kutter; g, type series of F. goesswaldi Kutter; t, paratype of F. tamarae Dlussky.
FIG. 3 in A taxonomic revision of the ant subgenus Coptoformica Mueller, 1923 (Hymenoptera, Formicidae)
FIG. 3. — Setae and pubescence on clypeus of Formica foreli, bruni, pressilabris, and fennica; the arrows in fore point to the tentorial pits. Scale bar: 400 µm.
FIG. 5 in A taxonomic revision of the ant subgenus Coptoformica Mueller, 1923 (Hymenoptera, Formicidae)
FIG. 5. — Head of the paratype queen of Formica fennica from nest No 1996.07.13-86. Scale bar: 400 µm.
FIG. 6. — Discriminant score D in A taxonomic revision of the ant subgenus Coptoformica Mueller, 1923 (Hymenoptera, Formicidae)
FIG. 6. — Discriminant score D(4) calculated with the characters sqrtPDF, sqrtPDG, SL/CS, and TERG to separate Formica foreli and pressilabris worker nest samples; the bars mark the position of the following type material: n, type series of F. naefi Kutter, 1957; g, type series of F. goesswaldi Kutter, 1967; f, holotype of F. foreli Emery, 1909; t, topotypical series of F. tamarae Dlussky, 1964; p, type series of F. pressilabris Nylander, 1846.
FIG. 2 in A taxonomic revision of the ant subgenus Coptoformica Mueller, 1923 (Hymenoptera, Formicidae)
FIG. 2. — Hind tibiae in workers of Formica exsecta, suecica, fennica, bruni, forsslundi, and pressilabris. The view is not fully directed on the large tibial diameter; there is a slight tilt for better visualisation of setae on outer margin of flexor profile. Scale bar: 400 µm.
FIG. 11 in A taxonomic revision of the ant subgenus Coptoformica Mueller, 1923 (Hymenoptera, Formicidae)
FIG. 11. — Formica forsslundi worker. SEM picture of the ocellar triangle showing a very sparse pubescence. The 2 setae seen in this specimen are frequently absent in forsslundi. Scale bar: 100 µm.
FIG. 9 in A taxonomic revision of the ant subgenus Coptoformica Mueller, 1923 (Hymenoptera, Formicidae)
FIG. 9. — Formica foreli worker; SEM picture of short eye hairs; F. foreli, pressilabris, forsslundi, and suecica show frequently such hairs that are visible at steroemicroscopic magnifications higher than 150 x. Scale bar: 10 µm.
FIG. 1. — A in A taxonomic revision of the ant subgenus Coptoformica Mueller, 1923 (Hymenoptera, Formicidae)
FIG. 1. — A, count of nHTFL. The seta count excludes the apical seta on outer flexor apex representing a counterpart to the big spur on the inner flexor apex (spur and apical seta left empty) and includes all remaining setae on outer margin of hind tibia flexor profile(filled blackish); B, position of measuring lines in the ocellar triangle for calculation of the character sqrtPDF; C, anterior head in profile; position of the different levels of clypeal setae to describe the character ClySet; D, caudal mesosoma; the seta count nMET is restricted to the hatched area; E, Formica suecica worker, short head type with rounded outlines; F, Formica fennica worker, long head type with more linear outlines. Scale bar: 500 µm.
FIG. 4 in A taxonomic revision of the ant subgenus Coptoformica Mueller, 1923 (Hymenoptera, Formicidae)
FIG. 4. — Pubescence in the ocellar region of Formica foreli, bruni, pressilabris, and fennica. Scale bar: 300 µm.
FIG. 18 in A taxonomic revision of the ant subgenus Coptoformica Mueller, 1923 (Hymenoptera, Formicidae)
FIG. 18. — Paratype worker of Formica dlusskyi; A, head; B, anterior clypeus; C, hind tibia, view not fully directed on the large tibial diameter, there is a slight tilt for better visualisation of setae on outer margin of flexor profile. Scale bar: A, 635 µm; B, C, 400 µm.
Fig. 6 in Phylogeny and Taxonomic Revision of Nuchequula Whitley 1932 (Teleostei: Leiognathidae), with the Description of a New Species
Fig. 6. Illustrations: (A) Non-type Indian specimen of Nuchequula blochii from Day (1875). (B) Non-type Australian specimen of Nuchequula decora from Jones (1985). (C) Holotype of Nuchequula nuchalis from Temminck and Schlegel (1845). (D) Holotype of Nuchequula pan from Wongratana (1988).
Fig. 5 in Phylogeny and Taxonomic Revision of Nuchequula Whitley 1932 (Teleostei: Leiognathidae), with the Description of a New Species
Fig. 5. Fresh material from Tonshi Fish Market, Taiwan. (A) Two paratypes of Nuchequula mannusella, new species. (B) Nuchequula nuchalis.
Fig. 4 in Phylogeny and Taxonomic Revision of Nuchequula Whitley 1932 (Teleostei: Leiognathidae), with the Description of a New Species
Fig. 4. Nuchequula mannusella, new species: (A) Holotype, AMNH 238753, 85.5 mm SL, Taiwan. (B) Right side of holotype. (C) Drawing of holotype. (D) Paratype, AMNH 238759, 94.1 mm SL, Taiwan.
Fig. 2 in Phylogeny and Taxonomic Revision of Nuchequula Whitley 1932 (Teleostei: Leiognathidae), with the Description of a New Species
Fig. 2. PCA for species of Nuchequula (plot of PC1 versus PC2). Individuals of Nuchequula mannusella. are represented by black crosses; N. decora (all identified by Jones AMS I.22990002) is represented by squares; and N. nuchalis is represented by triangles. Type specimens are represented by open shapes, including N. blochii syntypes (rectangles) and N. pan paratype (circle). (Only N. pan paratype USNM 276536 is included because the holotype and other paratypes of this species were examined at CUMZ and were not available for this analysis.)
Fig. 1 in Phylogeny and Taxonomic Revision of Nuchequula Whitley 1932 (Teleostei: Leiognathidae), with the Description of a New Species
Fig. 1. Landmarks used for PCA: (1) rostral tip of premaxilla; (2) posterior end of nuchal spine; (3) anterior insertion of dorsal fin; (4) posterior insertion of dorsal fin; (5) dorsal insertion of caudal fin; (6) midpoint of caudal border of hypural plate; (7) ventral insertion of caudal fin; (8) posterior insertion of anal fin; (9) anterior insertion of anal fin; (10) dorsal base of pelvic fin; (11) ventral end of lower jaw articulation; (12) posterior end of maxilla; (13) anterior margin through midline of eye; (14) posterior margin through midline of eye; (15) dorsal end of opercle; (16) dorsal base of pectoral fin. Base figure modified from Nelson (2006).
Fig. 24. Ptychochromis grandidieri, AMNH 88018 in Phylogeny and Taxonomic Revision of the Endemic Malagasy Genus Ptychochromis (Teleostei: Cichlidae), with the Description of Five New Species and a Diagnosis for Katria, New Genus
Fig. 24. Ptychochromis grandidieri, AMNH 88018: (A) palatine, (B) LPJ, (C) first gill arch, (D) infraorbital series, and (E) premaxilla.
Fig. 16 in Phylogeny and Taxonomic Revision of the Endemic Malagasy Genus Ptychochromis (Teleostei: Cichlidae), with the Description of Five New Species and a Diagnosis for Katria, New Genus
Fig. 16. Ptychochromis loisellei, new species, paratype, AMNH 231258: (A) palatine, (B) LPJ, (C) first gill arch, and (D) infraorbital series.
Fig. 20 in Phylogeny and Taxonomic Revision of the Endemic Malagasy Genus Ptychochromis (Teleostei: Cichlidae), with the Description of Five New Species and a Diagnosis for Katria, New Genus
Fig. 20. Ptychochromis insolitus, new species, holotype, UMMZ 237066: (A) palatine, (B) LPJ, (C) first gill arch, and (D) infraorbital series.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.