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FIGURE 10 in A new genus of Hemerobiidae (Neuroptera) from Baltic amber, with a critical review of the Cenozoic Megalomus - like taxa and remarks on the wing venation variability of the family
FIGURE 10. Proneuronema gradatum gen. et sp. nov., wing venation of the paratype SMF Be 376a. A, right forewing. B, right hind wing. Scale bar = 1 mm (both to scale).
FIGURE 10 in New taxa of the Lygistorrhinidae (Diptera: Sciaroidea) and their implications for a phylogenetic analysis of the family
FIGURE 10. Gracilorrhina gracilis sp. n. (holotype): part of male hypopygium (A) and gonostylus (B), ventral view. Scale 0.05 mm.
FIGURE 7 in New taxa of the Lygistorrhinidae (Diptera: Sciaroidea) and their implications for a phylogenetic analysis of the family
FIGURE 7. Blagorrhina blagoderovi sp. n. (paratypes): male thorax (A), lateral view, hind femur, tibia, and basitarsomere (B), retrolateral view, and apical part of hind tibia (C), retrolateral view. Scale for A and C 0.10 mm, for B 1 mm.
FIGURE 12. Female terminalia, lateral view. A in New taxa of the Lygistorrhinidae (Diptera: Sciaroidea) and their implications for a phylogenetic analysis of the family
FIGURE 12. Female terminalia, lateral view. A: Lygistorrhinidae sp. 1 (Malaysia). B: Lygistorrhinidae sp. 2. (Malaysia). Scale 0.05 mm. 1: sternite 8, 2: tergite 9, 3: tergite 10, 4: sternite 10, 5: basal segment of cercus, 6: apical segment of cercus, 7: egg, 8: spermatheca.
FIGURE 6 in New taxa of the Lygistorrhinidae (Diptera: Sciaroidea) and their implications for a phylogenetic analysis of the family
FIGURE 6. Gracilorrhina gracilis sp. n. (paratypes): male thorax (A), lateral view, hind femur, tibia and basitarsomere (B), prolateral view, apical part of hind tibia (C), retrolateral view and apical part of middle tarsus (D), prolateral view. Scale for A 0.10 mm, for B 1 mm, for C and D 0.05 mm. 1: scutum, 2: scutellum, 3: posterior pronotum, 4: anterior pronotum, 5: episternum 1, 6: prosternum, 7: anterior spiracle, 8: anterior anepisternum, 9: katepisternum, 10: position of pleural pit, 11: epimeron 2, 12: laterotergite, 13: episternum 3, 14: epimeron 3, 15: posterior spiracle, 16: mediotergite, 17: furcasternum 2, 18: coxa 1, 19: coxa 2, 20: coxa 3, 21: haltere, 22: abdominal tergite 1, 23: abdominal sternite 1, 24: socketed seta, 25: nonsocketed seta (trichium), 26: microtrichia, 27: dotlike sensillum.
FIGURE 4. Antennal flagellomere 4, lateral view. A in New taxa of the Lygistorrhinidae (Diptera: Sciaroidea) and their implications for a phylogenetic analysis of the family
FIGURE 4. Antennal flagellomere 4, lateral view. A: Blagorrhina blagoderovi sp. n. (paratype). B: Labellorrhina quantula sp. n. (paratype). C: Lygistorrhinidae sp. 1 (Malaysia). D: Blagorrhina brevicornis sp. n. (paratype). E: Gracilorrhina gracilis sp. n. (paratype). F: Labellorrhina grimaldii sp. n. (holotype). Scale 0.05 mm. 1: socketed seta, 2: setalike sensillum/unsocketed seta, 3: peglike sensillum.
FIGURE 5 in New taxa of the Lygistorrhinidae (Diptera: Sciaroidea) and their implications for a phylogenetic analysis of the family
FIGURE 5. Labellorrhina quantula sp. n. (paratypes): male thorax (A), lateral view, hind femur, tibia and basitarsomere (B), retrolateral view, apical part of hind tibia (C), retrolateral view and apical part of middle tarsus (D), lateral view. Scale for A 0.10 mm, for B 1 mm, for C and D 0.05 mm.
FIGURE 1 in New taxa of the Lygistorrhinidae (Diptera: Sciaroidea) and their implications for a phylogenetic analysis of the family
FIGURE 1. Phylogeny of Lygistorrhinidae. The strict consensus cladogram of 14 most parsimonious cladograms (78 steps, CI 61, RI 82) obtained with the program NONA. Black dot = unique (reversals allowed), open circle = homoplastic synapomorphy. Large numbers above branches refer to Bremer support values.
FIGURE 3 in New taxa of the Lygistorrhinidae (Diptera: Sciaroidea) and their implications for a phylogenetic analysis of the family
FIGURE 3. Male (A) and female (B) head, frontal view. A: Gracilorrhina gracilis sp. n. (paratype). B. Lygistorrhinidae sp. 1 (Malaysia). Scale 0.10 mm.
FIGURE 2 in New taxa of the Lygistorrhinidae (Diptera: Sciaroidea) and their implications for a phylogenetic analysis of the family
FIGURE 2. Male head, frontal view (A and C) and ventral part of head, lateral view (B). A: Labellorrhina quantula sp. n. (paratype). B: Labellorrhina grimaldii sp.n. (holotype). C: Blagorrhina blagoderovi sp. n. (paratype). Scale 0.20 mm. 1: compound eye, 2: ocellus, 3: frons, 4: membraneous stripe, 5: scapus, 6: pedicellus, 7: flagellomeres, 8: face, 9: clypeus, 10: labrum, 11: maxillary palp, 12: hyaline sensilla, 13: hypopharynx, 14: labellum.
FIGURE 11 in New taxa of the Lygistorrhinidae (Diptera: Sciaroidea) and their implications for a phylogenetic analysis of the family
FIGURE 11. Part of male hypopygium (A, C) and gonostylus (B, D), ventral view. A and B: Blagorrhina blagoderovi sp. n. (holotype). C and D: B. brevicornis sp. n. (holotype). Scale 0.05 mm. 1: sternite 8, 2: tergite 8, 3: tergite 9, 4: apodeme of tergite 9, 5: cercus, 6: sternite 10, 7: gonocoxite, 8: aedeagal apodeme, 9: tegmen, 10: apodeme of tegmen, 11: paramere, 12: parameral apodeme, 13: gonocoxal apodeme.
FIGURE 8 in New taxa of the Lygistorrhinidae (Diptera: Sciaroidea) and their implications for a phylogenetic analysis of the family
FIGURE 8. Male (BE) and female (A) wing, dorsal view. A: Lygistorrhinidae sp. 2 (Malaysia). B: Labellorrhina grimaldii sp. n. (holotype). C: L. quantula sp. n. (paratype). D: Gracilorrhina gracilis sp. n. (paratype). E: Blagorrhina blagoderovi sp. n. (paratype). Scale 0.50 mm.
FIGURE 9 in New taxa of the Lygistorrhinidae (Diptera: Sciaroidea) and their implications for a phylogenetic analysis of the family
FIGURE 9. Part of male hypopygium (A, C) and gonostylus (B, D), ventral view. A and B: Labellorrhina quantula sp. n. (holotype). C and D: L. grimaldii sp. n. (holotype). Scale 0.05 mm. 1: tergite 9, 2: apodeme of tergite 9, 3: gonocoxite, 4: gonostylus, 5: basolateral apophysis of gonostylus, 6: basomesial impression of gonostylus, 7: elongated basomesial seta of gonostylus, 8: apical tooth of gonostylus, 9: cercus, 10: sternite 10, 11: tegmen, 12: apodeme of tegmen, 13: aedeagal apodeme, 14: parameral apodeme, 15: gonocoxal apodeme.
FIGURE 1 in Xenosellidae, a new family of Janiroidea (Asellota: Isopoda: Crustacea), for Xenosella coxospinosa gen. nov., sp. nov., from the marine bathyal of eastern Australia
FIGURE 1. Xenosella coxospinosa sp. nov. A, holotype, female; B, paratype, male B; C, paratype, female C, setae omitted. op, operculum; pt, pleotelson; vv, ventral view. Scale bar for all three habitus illustrations: 0.5 mm.
FIGURE 4 in Xenosellidae, a new family of Janiroidea (Asellota: Isopoda: Crustacea), for Xenosella coxospinosa gen. nov., sp. nov., from the marine bathyal of eastern Australia
FIGURE 4. Xenosella coxospinosa sp. nov. A, holotype, female; all other illustrations, paratype, male D. dv, dorsal view; od, oviduct; oop, oopore; ov, ovary; pl1–5, pleopods 1–5; pt, pleotelson; sd, spermathecal duct; sdo, spermathecal duct opening; sp, spermatheca; vv, ventral view; 2–5 in A, pereonites 2–5.
FIGURE 3 in Xenosellidae, a new family of Janiroidea (Asellota: Isopoda: Crustacea), for Xenosella coxospinosa gen. nov., sp. nov., from the marine bathyal of eastern Australia
FIGURE 3. Xenosella coxospinosa sp. nov. Holotype, female. l, left; md, mandible; mx 1 and 2, maxilla 1 and 2; mxp, maxilliped, r, right; vv, ventral view.
FIGURE 2 in Xenosellidae, a new family of Janiroidea (Asellota: Isopoda: Crustacea), for Xenosella coxospinosa gen. nov., sp. nov., from the marine bathyal of eastern Australia
FIGURE 2. Xenosella coxospinosa sp. nov. A, holotype, female; B, paratype, male B; C, paratype, female C. cu, cuticular structure; lv, lateral view; mv, medial view; p1, 2, 6, pereopods 1, 2, 6; pt, pleotelson; up, uropod.
FIGURE 14 in The beetle family Carabidae of Costa Rica: The genus Epikastea Liebke of the Plochonida Group, with new Neotropical species and notes on their way of life (Insecta: Coleoptera, Lebiini, Agrina)
FIGURE 14. Geographical distribution map of the species of Epikastea Liebke in Costa Rica: Epikastea limonae Liebke (inverted triangle,).
FIGURE 7. Plochionus incultatus Bates, FIGURE 8 in The beetle family Carabidae of Costa Rica: The genus Epikastea Liebke of the Plochonida Group, with new Neotropical species and notes on their way of life (Insecta: Coleoptera, Lebiini, Agrina)
FIGURE 7. Plochionus incultatus Bates, FIGURE 8. Plochionus sp., female, dorsal female, dorsal aspect, specimen # ADP101451, aspect, specimen # BIOLAT/COLE000012873, Liberia, Costa Rica. Pakitza, Rio Manu, Perú.
FIGURE 1. Epikastea biolat Erwin n in The beetle family Carabidae of Costa Rica: The genus Epikastea Liebke of the Plochonida Group, with new Neotropical species and notes on their way of life (Insecta: Coleoptera, Lebiini, Agrina)
FIGURE 1. Epikastea biolat Erwin n. sp., FIGURE 2. Epikastea grace Erwin n. sp., male, dorsal aspect, specimen # ADP100400. female, dorsal aspect, specimen # ADP0093805.
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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.