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Figure 100 from: Carolina Arias-Penna D, Whitfield JB, Janzen DH, Hallwachs W, Dyer LA, Smith MA, Hebert PD.N, Fernández-Triana JL (2019) A species-level taxonomic review and host associations of Glyptapanteles (Hymenoptera, Braconidae, Microgastrinae) with an emphasis on 136 new reared species from Costa Rica and Ecuador. ZooKeys 890: 1-685. https://doi.org/10.3897/zookeys.890.35786
Figure 100 Glyptapanteles henrytownesi sp. nov. male 02-SRNP-23728 DHJPAR0000027, 02-SRNP-23730 DHJPAR0000028 A Habitus B, E Head, mesosoma B Laterodorsal view E Lateral view C Metanotum, propodeum, laterodorsal view DT1–2, dorsolateral view F, G Metasoma F lateral view G Dorsolateral view H, I Wings H Fore I Hind.
Figure 5 in A new species of Stenoptilia Hübner (Lepidoptera: Pterophoridae) associated with Neobartsia peruviana (Orobanchaceae) in the Andes of northern Chile
Figure 5 Bayesian tree of the sequences of the DNA barcode fragment (658 bp) of the cytochrome c oxidase subunit I (COI) gene of Stenoptilia socoromaensis Vargas & Gielis sp. nov. (highlighted in red) and congeneric species. Numbers indicate node support (posterior probability) of branches.
Figure 1 in A new species of Stenoptilia Hübner (Lepidoptera: Pterophoridae) associated with Neobartsia peruviana (Orobanchaceae) in the Andes of northern Chile
Figure 1 Male holotype of Stenoptilia socoromaensis Vargas & Gielis sp. nov. in dorsal view. Scale bar: 1 mm.
Figure 2 in A new species of Stenoptilia Hübner (Lepidoptera: Pterophoridae) associated with Neobartsia peruviana (Orobanchaceae) in the Andes of northern Chile
Figure 2 Male paratype genitalia of Stenoptilia socoromaensis Vargas & Gielis sp. nov. A) Male genitalia in ventral view, phallus removed. B) Phallus in lateral view. C) Uncus in detail, ventral view. D) Lobe indicated by closed arrow in A). E) Detail of the cornutus, lateral view. F) Lobe indicated by open arrow in A). G) Apex of the processes of the anellus. Scale bars: 0.2 mm.
Figs. 6 and 7 in New record of Machaeriobia machaerii (Kieffer, 1913) (Diptera, Cecidomyiidae) in Brazil and association with host-plant species
Figs. 6 and 7. Distinctive characters of Machaeriobia machaerii found in the specimens from Ribeirão Preto, São Paulo State. 6. Terminal segment of larva, 7. Male terminalia (dorsal view).
Fig. 1 in New record of Machaeriobia machaerii (Kieffer, 1913) (Diptera, Cecidomyiidae) in Brazil and association with host-plant species
Fig. 1. Branch of Machaerium hirtum (Vell.) Stellfeld, host plant of Machaeriobia machaerii (Kieffer, 1913).
Figs. 7–10 in New species of Lopesia Rübsaamen (Diptera: Cecidomyiidae) associated with Andira humilis Mart. ex Benth. (Fabaceae)
Figs. 7–10. Lopesia andirae sp. nov. 7. Male postabdomem (lateral view). 8. Female postabdomen (ventro-lateral view).9. Male terminalia (ventral view). 10.Female ovipositor (lateral view).
Figure 2 in New parasitoid associations and geographical range extensions of Sceliphron Klug, 1801 (Hymenoptera: Sphecidae) in Brazil
Figure 2. Sceliphron spp. (Sphecidae). A. Sceliphron asiaticum (Linnaeus, 1758), female, lateral view. B. Sceliphron asiaticum, female, dorsal view. C. Sceliphron fistularium (Dahlbom, 1843), male, lateral view. D. Sceliphron fistularium, male, dorsal view. E. Sceliphron fistularium nest. / A. Sceliphron asiaticum (Linnaeus, 1758), hembra, vista lateral. B. Sceliphron asiaticum, hembra, vista dorsal. C. Sceliphron fistularium (Dahlbom, 1843), macho, vista lateral. D. Sceliphron fistularium, macho, vista dorsal. E. Nido de Sceliphron fistularium.
Figure 1 in New parasitoid associations and geographical range extensions of Sceliphron Klug, 1801 (Hymenoptera: Sphecidae) in Brazil
Figure 1. Parasitoid and solitary wasps emerged in Sceliphron nests. A. Photocryptus nigrosignatus (Kriechbaumer, 1901) (Ichneumonidae), female, lateral view. B. P. nigrosignatus, female, dorsal view. C. Photocryptus sp., male, lateral view. D. Leucospis sp., female (Leucospidae), lateral view. E. Pachodynerus nasidens (Latreille, 1812) (Vespidae), male, lateral view. / A. Photocryptus nigrosignatus (Kriechbaumer, 1901) (Ichneumonidae), hembra, vista lateral. B. P. nigrosignatus, hembra, vista dorsal. C. Photocryptus sp., macho, vista lateral. D. Leucospis sp., hembra (Leucospidae), vista lateral. E. Pachodynerus nasidens (Latreille, 1812) (Vespidae), macho, vista lateral.
Figures 8–10 in A new Tetranychus Dufour (Acari: Tetranychidae) associated with Solanaceae from Turkey
Figures 8–10. Tetranychus solanacearum Çobanoğlu & Ueckermann sp. nov. male, 8. Palp tarsus; 9a–d. Empodia I–IV; 10. Aedeagus.
Figs. 9–10 in Lopesia leandrae (Diptera, Cecidomyiidae), a new species of gall midge associated with Leandra ionopogon (Mart.) Cogn. (Melastomataceae), a native plant to Brazil
Figs. 9–10. Lopesia leandrae, sp. n., male. 9. 6th–8th abdominal segments (lateral view). 10. Terminalia (dorsal view). Scale bars in mm.
Fig. 58. Hoplopleura ileile, female. A in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 58. Hoplopleura ileile, female. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.
Fig. 57. Hoplopleura heinrichi, female. A in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 57. Hoplopleura heinrichi, female. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.
Fig. 60 in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 60. Valley of Danau Lindu, 1000 m, in the northern highlands of the western mountain block of Sulawesi's central core. Part of Tomado village is in the foreground on the shore of a small cove. Tropical lowland evergreen rain forest is at lake level and mantles hillsides of the closer ridges. Upper slopes and summits in the background are clothed in montane forest formations. The large, red tree squirrel Rubrisciurus rubriventer lives in intact forest near the lake and in forests on the ridges to about 1500 m. Montane forests on the upper slopes and summits of the higher ridges (Gunung Nokilalaki is the farthest ridge seen in the background), support one ground squirrel, Hyosciurus heinrichi, which abuts the range of the other ground squirrel H. ileile at 1400–1500 m, and that species, while uncommon, occurs throughout the region at lower altitudes. The tree squirrels Prosciurillus topapuensis and P. murinus inhabit all oldgrowth habitats, from lakeside to tops of the highest ridges. Photographed in 1976.
Fig. 53. Hoplopleura murinus, female. A in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 53. Hoplopleura murinus, female. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.
Fig. 44. A in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 44. A closer look at the squirrel shown in figure 43, just as it was fleeing the confines of the cage.
Fig. 42 in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 42. Habitat of Hyosciurus heinrichi in upper montane forest on Gunung Nokilalaki, 2256 m. Traps set on top and beneath the rotting log in foreground took examples of H. heinrichi, which is common on the summit and upper slopes in this mossy, wet and cold forest. Photographed in 1975.
Fig. 48. Hoplopleura leucomus, female. A in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 48. Hoplopleura leucomus, female. A, dorsoventral view; B, thoracic sternal plate; C, D, paratergal plates showing slight variation between specimens from two geographic regions (C is from the holotype louse from Labuan Sore in Central Sulawesi, D is from a louse specimen from Rurukan in north Sulawesi); E, genitalia.
Fig. 38 in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 38. Specimen scores representing population samples of Hyosciurus heinrichi (filled circle, Gunung Kanino and Gunung Nokilalaki; N 5 35) and H. ileile (filled triangle, Sungai Sadaunta, Gunung Kanino, and Sungai Tolewonu; N 5 11) projected onto the first and second principal components extracted from principal-components analysis. Each ellipse outlines 95% confidence limits for specimen scores of each cluster. Equations for the regression lines are: H. ileile, Y 5 20.121X+0.095 (F 5 3.20, P 5,0.10); H. heinrichi, Y 5 20.213X20.033 (F 5 18.96, P 5,0.001). The regression lines of the second principal component on the first are unambiguously distinct: their Y-intercepts are significantly different (+0.095 versus 20.033; F 5 15.38, P 5,0.001), but not their slopes (20.121 versus 20.213; F 5 1.16, P 5 0.288). The distribution of scores along the first axis is strongly influenced by length of tail, and the single point for H. ileile and the two for H. heinrichi situated far to the left of the main clouds of scores represent specimens with the shortest tails in the samples; the tails are naturally short, not damaged in traps or mangled by a predator and subsequently healed. Data were derived only from specimens captured and measured by Musser. See table 46 for correlations and percent variance.
Fig. 31 in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 31. Specimen scores representing Prosciurillus murinus (filled circle; N 5 57) and P. abstrusus (filled triangle; N 5 14) projected onto the first and second principal components extracted from principalcomponents analysis. Arrow identifies holotype of abstrusus. See table 39 for correlations and percent variance.
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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.