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726 results for “Laniatores”
Figure 23 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 23. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in Assamiidae: A–C, Pungoica simoni; D–F, Sermowaius sp.
Figure 15 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 15. Cladogram depicting proposed phylogenetic relationships for Laminata. The small 'Navajo rugs' at selected branches indicate which of the four analyses supports a given clade. A key to the analyses is given in the set of four squares at the bottom left, abbreviated as: 1 = implied weights, concavity 1; 3 = same, concavity 3; 6 = same, concavity 6; E = strict consensus of the analysis under equal weights. Numerals at branches represent absolute Bremer support/ standard Bootstrap resampling percentage values. GG, Greater Gonyleptidae; La, Laminata; Mi, Microsetata.
Figure 17 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 17. Jabbastygnus huttorum sp. nov., male holotype (IAvH 3000110): A, habitus, dorsal view; B, same, lateral view; C, carapace, pedipalpi and chelicerae, frontal view; D, free tergites and sternites, posterior view. Scale bars = 1 mm.
Figure 18 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 18. Jabbastygnus huttorum sp. nov., male holotype (IAvH 3000110): A, habitus, dorsal view; B, same, lateral view; C, right pedipalpus, ectal view; D, right pedipalpus Pa–Ta, mesal view; E, right leg IV, prolateral view; F, same, dorsal view; G, same, ventral view; H, tarsus IV, lateral view. Scale bars = 1 mm.
Figure 14 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 14. Cladogram depicting proposed phylogenetic relationships for Gonyleptoidea. This tree was the only one obtained with concavity = 3, and the characters are mapped in the unambiguous optimization.
Figure 21 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 21. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in Epedanidae: A–C, Epedanus pictus; D–F, Dibunus similis. All adapted from Weber (1988).
Figure 19 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 19. Jabbastygnus huttorum sp. nov., male holotype (IAvH 3000110), distal part of penis: A, dorsal view; B, lateral view; C, ventral view; D, apical view. Scale bars = 0.1 mm.
Figure 13 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 13. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in Ampycinae: A–C, Acanthopachylus aculeatus; D–F, Mitobates triangulus; G–I, Gonyleptes horridus.
Figure 12 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 12. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in Ampycinae: A–C, Hexabunus armillatus; D–F, Hernandarioides plana; G–I, Hutamaia caramaschii.
Figure 7 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 7. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in Cosmetidae and Metasarcidae: A–C, Metalibitia paraguayensis; D–F, Chacoikeontus clavifemur.
Figure 6 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 6. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in Cosmetidae: A–C, Metarhaucus sp.; D–F, Sibambea sp.
Figure 8 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 8. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in Nomoclastidae: A–C, Quindina bella; D–F, Zygopachylus albomarginis; G–I, Nomoclastes quasimodo.
Figure 10 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 10. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in Cranaidae 1: A–C, Phalangodus sp.; D–F, Chiriboga albituber.
Figure 2 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 2. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in Agoristenidae: A–C, Agoristenus sp.; D–F, Globibunus rubrofemoratus.
Figure 1 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 1. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in Stygnopsidae: A–C, Hoplobunus boneti; D–F, Karos sp.
Figure 5 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 5. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in Stygnidae: A–C, Eutimesius sp.; D–F, Ricstygnus quineti.
Figure 65. A in Cladistic analysis and taxonomic revision of the genus Karos Goodnight & Goodnight, 1944 (Opiliones, Laniatores, Stygnopsidae)
Figure 65. A, dorsal view of the male genitalia of Hoplobunus boneti. B, lateral view of the male genitalia of Hoplobunus boneti. C, ventral view of the male genitalia of Hoplobunus boneti. D, lateral view of femur IV of Hoplobunus boneti. E, lateral view of chelicera of Hoplobunus boneti. F, frontal view of the cheliceral fingers of Hoplobunus boneti. The images in (A–C) are at the same scale indicate on (C). Images (D–F) are not at the same scale.
Figure 64. A in Cladistic analysis and taxonomic revision of the genus Karos Goodnight & Goodnight, 1944 (Opiliones, Laniatores, Stygnopsidae)
Figure 64. A, mesodorsal view of pedipalp femur and patella of Huasteca silhavyi sp. nov.; arrows indicate the setiferous tubercles on mesal side of these segments. B, dorsal view of pedipalp femur of Karos barbarikos; arrow indicates the mesodistal setiferous tubercle. C, apical portion of metatarsus IV of Karos singularis sp. nov., the circle indicates the swollen area. D, dorsal view of pars distalis of Karos barbarikos; line indicates the exposed base of the follis. E, dorsal view of pars distalis of Philora tuxtlae; line indicates the base of the follis in apical depression. F, dorsal view of pars distalis of Paramitraceras granulatum; arrows indicate the pars distalis width/follis width ratio. G, dorsal view of pars distalis of Crettaros valdezi sp. nov.; arrows indicate the pars distalis width/follis width ratio. H, ventral view of pars distalis of Chapulobunus unispinosus; arrow indicates the width at the middle of the ventral plate. I, ventral view of pars distalis of Mictlana inops the white arrow indicates the slight width in the middle of ventral plate, the black dotted line indicates the apical end of ventral plate. J, ventral view of pars distalis of Karos barbarikos, the white dotted line indicates the apical end of ventral plate. K, ventral view of pars distalis of Chapulobunus poblano sp. nov., the white dotted line indicates the apical end of ventral plate. L, dorsal view of pars distalis of Potosa dybasi; arrows indi-
Figure 59 in Cladistic analysis and taxonomic revision of the genus Karos Goodnight & Goodnight, 1944 (Opiliones, Laniatores, Stygnopsidae)
Figure 59. Distribution map of the species of the Karos genus-group, continued. White circles with black outline, Karos tersum sp. nov.; white circles with blue outline, Karos projectus; white circles with red outline, Karos singularis sp. nov.; black squares, Huasteca gratiosa comb. nov.; white square with black outline, Huasteca silhavyi sp. nov.; white square with red outline, Huasteca rugosa comb. nov.; black circles, Karos barbarikos.
Figure 34 in Cladistic analysis and taxonomic revision of the genus Karos Goodnight & Goodnight, 1944 (Opiliones, Laniatores, Stygnopsidae)
Figure 34. Chapulobunus poblano sp. nov., male genitalia. A, dorsal view. B, ventral view. C, lateral view. White arrows indicate ventral microsetae in (B) and parastylar setae in (C).
ScienceDex guides
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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.