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FIG. 3 in Systematics of Neotropical Spiny Mice, Genus Neacomys Thomas, 1900 (Rodentia: Cricetidae), from Southeastern Amazonia, with Descriptions of Three New Species
FIG. 3. Scatter plots of PC1 (horizontal axis) and PC2 (vertical axis) for pairwise analyses of craniodental measurement data for species in the Dubosti Group of Neacomys. In each plot, species are represented by minimum convex polygons that enclose all points in the plane of PC1 and PC2. A, N. dubosti (dub) versus N. marajoara (mar); B, N. dubosti versus N. vossi (vos); C, N. dubosti versus N. xingu (xin); D, N. marajoara versus N. vossi; E, N. marajoara versus N. xingu; F, N. vossi versus N. xingu.
FIG. 7 in Systematics of Neotropical Spiny Mice, Genus Neacomys Thomas, 1900 (Rodentia: Cricetidae), from Southeastern Amazonia, with Descriptions of Three New Species
FIG. 7. Dorsal, ventral, and lateral cranial views and lateral view of mandible of Neacomys marajoara (MPEG 40432, holotype).
FIG. 5 in Systematics of Neotropical Spiny Mice, Genus Neacomys Thomas, 1900 (Rodentia: Cricetidae), from Southeastern Amazonia, with Descriptions of Three New Species
FIG. 5. Collection localities of specimens of the Dubosti Group of Neacomys examined in the present study. Numbers are keyed to entries in our gazetteer (appendix 1).
FIG. 2 A–C in Systematics of Neotropical Spiny Mice, Genus Neacomys Thomas, 1900 (Rodentia: Cricetidae), from Southeastern Amazonia, with Descriptions of Three New Species
FIG. 2 A–C (above and following two pages). Bayesian phylogeny of Neacomys based on cytochrome b sequence data. Numbers represent Bayesian posterior probabilities (above) and ML bootstrap support (below) at nodes recovered by both analyses (bootstrap support for nodes only recovered by our ML analysis are shown in appendix 2). Only ML bootstrap support>50% is shown. Branch tips are labeled with geographic identifiers and voucher codes listed in table 1. Specimens marked with asterisks (*) indicate holotypes.
FIG. 1 in Systematics of Neotropical Spiny Mice, Genus Neacomys Thomas, 1900 (Rodentia: Cricetidae), from Southeastern Amazonia, with Descriptions of Three New Species
FIG. 1. SEM images of molar toothwear age classes of Neacomys amoenus used in this study (based on Voss, 1991). From left to right: age class 1 (UFMT 4050), age class 2 (UFMT 1758), age class 3 (UFMT 1760), age class 4 (UFMT 1759), and age class 5 (UFMT 915). Arrows indicate the incompletely erupted M3 in age class 1, the distinct M2 anteroloph (not fused with the paracone) in age class 3, and the obliterated M2 anteroloph (fused with the paracone) in age class 4.
Fig. 9 in Three new species of Hyphessobrycon (Characiformes: Characidae) from the upper rio Araguaia basin in Brazil
Fig. 9. Hyphessobrycon weitzmanorum, holotype, MZUSP 73315, 22.1 mm SL, Brazil, Mato Grosso, município de Alto Araguaia, córrego Mosquito.
Fig. 8 in Three new species of herb gall wasps (Hymenoptera: Cynipidae) from Turkey
Fig. 8. Phanacis urhani sp. nov., ♀. a. Mesosoma in lateral view. b. Mesopleuron. c. Mesosoma in posterior view. d. Antenna. e. Leg. f. Radial cell of forewing.
Fig. 4 in Three new species of herb gall wasps (Hymenoptera: Cynipidae) from Turkey
Fig. 4. Phanacis ciceki sp. nov., ♀. a. Head in anterior view. b. Mesosoma in dorsal view. c. Metasoma in lateral view. d. Pronotum in dorsal view. e. Scutum in dorsal view. f. Scutellum in dorsal view.
Fig. 5 in Three new species of herb gall wasps (Hymenoptera: Cynipidae) from Turkey
Fig. 5. Phanacis ciceki sp. nov., ♀. a. Antenna. b. Head in dorsal view. c. Radial cell of forewing. d. Mesosoma in lateral view. e. Mesopleuron. f. Scutellum in lateral view.
Fig. 1 in Three new species of herb gall wasps (Hymenoptera: Cynipidae) from Turkey
Fig. 1. Aulacidea turguti sp. nov., ♀. a. Head in anterior view. b. Mesosoma in dorsal view. c. Metasoma in lateral view. d. Head in posterior view. e. Scutum in dorsal view. f. Scutellum in dorsal view.
Fig. 7 in Three new species of herb gall wasps (Hymenoptera: Cynipidae) from Turkey
Fig. 7. Phanacis urhani sp. nov., ♀. a. Head in anterior view. b. Mesosoma in dorsal view. c. Metasoma in lateral view. d. Head in dorsal view. e. Scutum in dorsal view. f. Scutellum in dorsal view.
Fig. 2 in Three new species of herb gall wasps (Hymenoptera: Cynipidae) from Turkey
Fig. 2. Aulacidea turguti sp. nov., ♀. a. Mesosoma in lateral view. b. Mesosoma in posterior view. c. Metasomal tergites T2, T3 and T4. d. Antenna. e. Leg. f. Radial cell of forewing.
Fig. 9 in Three new species of herb gall wasps (Hymenoptera: Cynipidae) from Turkey
Fig. 9. Phanacis urhani sp. nov., mature gall on host plant, Cirsium vulgare (Savi) Ten. (photos by M. Azmaz).
Armature formula of P1–P4 as follows: P5 (Fig. 2B). With outer seta of BENP arising from long setophore. Endopodal lobe triangular, reaching middle of exopod; with small spinules along outer margin and at base of inner setae; with five elements – one outer subdistal, one apical and one inner subdistal normal seta, and two inner bifurcate elements. Exopod elongate, 2.8 times as long as wide; with spinules along inner margin and with few proximal outer spinules; with six elements – three outer slender, short setae, two apical elements, of which outermost one shorter, and one inner seta. in Proposal of new genera and species of the subfamily Diosaccinae (Copepoda: Harpacticoida: Miraciidae)
Armature formula of P1–P4 as follows: P5 (Fig. 2B). With outer seta of BENP arising from long setophore. Endopodal lobe triangular, reaching middle of exopod; with small spinules along outer margin and at base of inner setae; with five elements – one outer subdistal, one apical and one inner subdistal normal seta, and two inner bifurcate elements. Exopod elongate, 2.8 times as long as wide; with spinules along inner margin and with few proximal outer spinules; with six elements – three outer slender, short setae, two apical elements, of which outermost one shorter, and one inner seta.
FIG. 10. — Malloryalna susanae n. gen., n in Five new species, a new genus and a new record of cicadas from French Guiana with four new combinations and three new synonymies (Insecta, Hemiptera, Cicadoidea, Cicadidae)
FIG. 10. — Malloryalna susanae n. gen., n. sp.: A, holotype ♂ habitus; B, holotype ♂ dorsum; C, holotype ♂ timbal; D, paratype ♂ operculum; E, holotype ♂ lateral view of genitalia; F, holotype ♂ posterior view of genitalia; G, holotype ♂ aedeagus; H, holotype ♂ claspers. Scale bars: A, 2 cm; B, 2 mm; C-H, 1 mm.
FIG. 5 in Five new species, a new genus and a new record of cicadas from French Guiana with four new combinations and three new synonymies (Insecta, Hemiptera, Cicadoidea, Cicadidae)
FIG. 5. — Guyalna bicolor (Olivier, 1790) n. comb.: A, ♂ habitus, French Guiana (left) (AFSC) and ♂ habitus, Costa Rica (right) (AFSC); B, ♂ dorsum, French Guiana; C, ♂ dorsum, Costa Rica; D, ♂ timbal cover, French Guiana; E, ♂ timbal cover, Costa Rica; F, ♂ lateral view of genitalia, French Guiana; G, ♂ lateral view of genitalia, Costa Rica; H, ♂ posterior view of genitalia, French Guiana; I, ♂ posterior view of genitalia, Costa Rica; J, ♀ lateral view of genitalia, French Guiana; K, ♀ lateral view of genitalia, Costa Rica; L, ♀ posterior view of genitalia, French Guiana; M, ♀ posterior view of genitalia, Costa Rica. Scale bars: A, 2 cm; B-C, 5 mm; D-I, 1 mm; J-M, 2 mm.
FIG. 4. — Ariasa russelli n in Five new species, a new genus and a new record of cicadas from French Guiana with four new combinations and three new synonymies (Insecta, Hemiptera, Cicadoidea, Cicadidae)
FIG. 4. — Ariasa russelli n. sp.: A, holotype ♂ and paratype ♀ habitus; B, holotype ♂ dorsum; C, holotype ♂ timbal; D, paratype ♂ operculum; E, paratype ♀ operculum; F, holotype ♂ lateral view of genitalia; G, holotype ♂ posterior view of genitalia; H, paratype ♀ lateral view of genitalia; I, paratype ♀ ventral view of genitalia. Scale bars: A, 2 cm; B, 5 mm; C-E, 2 mm; F-I, 1 mm.
FIG. 7. — Guyalna jamesi n in Five new species, a new genus and a new record of cicadas from French Guiana with four new combinations and three new synonymies (Insecta, Hemiptera, Cicadoidea, Cicadidae)
FIG. 7. — Guyalna jamesi n. sp.: A, holotype ♂; B, holotype ♂ dorsum; C, holotype ♂ timbal; D, paratype ♂ operculum; E, paratype ♀ operculum; F, holotype ♂ lateral view of genitalia; G, holotype ♂ posterior view of genitalia; H, paratype ♀ lateral view of genitalia; I, paratype ♀ ventral view of genitalia. Scale bars: A, 2 cm; B, 5 mm; C-I, 2 mm.
FIG. 9 in Five new species, a new genus and a new record of cicadas from French Guiana with four new combinations and three new synonymies (Insecta, Hemiptera, Cicadoidea, Cicadidae)
FIG. 9. — Carineta cearana Distant, 1906 and C. illustris Distant, 1905: A, C. cearana ♂ habitus, French Guiana (AFSC) (left) and C. illustris ♂ habitus, Peru (AFSC) (right); B, C. cearana ♂ lateral view of genitalia; C, C. cearana ♂ posterior view of genitalia; D, C. illustris ♂ lateral view of genitalia; E, C. illustris ♂ posterior view of genitalia. Scale bars: A, 2 cm; B-E, 1 mm.
FIG. 3. — Ariasa maryannae n in Five new species, a new genus and a new record of cicadas from French Guiana with four new combinations and three new synonymies (Insecta, Hemiptera, Cicadoidea, Cicadidae)
FIG. 3. — Ariasa maryannae n. sp.: A, holotype ♂ and paratype ♀ habitus; B, holotype ♂ dorsum; C, holotype ♂ timbal cover; D, paratype ♂ operculum. E, paratype ♀ operculum; F, holotype ♂ lateral view of genitalia; G, holotype ♂ posterior view of genitalia; H, paratype ♀ lateral view of genitalia; I, paratype ♀ ventral view of genitalia. Scale bars: A, 2 cm; B, 5 mm; C-E, 2 mm; F-I, 1 mm.
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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.