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Figure 4 in A new species of Prosansanosmilus: implications for the systematic relationships of the family Barbourofelidae new rank (Carnivora, Mammalia)
Figure 4. One of eight most parsimonious trees obtained from the cladistic analysis. See text for discussion and Table 3 for character support.
Figure 12 in Weintrauboa, a new genus of pimoid spiders from Japan and adjacent islands, with comments on the monophyly and diagnosis of the family Pimoidae and the genus Pimoa (Araneoidea, Araneae)
Figure 12. One of the four minimal length trees of 172 steps that result from the analysis of the data matrix presented in Appendix 2 (CI = 0.56, RI = 0.74). Exclusion of parsimony uninformative characters decreases the tree length to 164 steps and the ensemble consistency index to 0.54. Most of the ambiguous character changes are resolved under 'Farris optimization'. Closed rectangles represent non-homoplasious character changes. The three nodes that collapse in the strict consensus cladogram of the four most parsimonious trees are marked with a closed circle. The basal trichotomy has been resolved according to the araneoid topology presented in Griswold et al. (1998) (see text for details).
Figure 8 in Weintrauboa, a new genus of pimoid spiders from Japan and adjacent islands, with comments on the monophyly and diagnosis of the family Pimoidae and the genus Pimoa (Araneoidea, Araneae)
Figure 8. Weintrauboa contortipes (Karsch), female spinnerets. A, left group; B, ALS; C, PMS; D, PLS.
Figure 7 in Weintrauboa, a new genus of pimoid spiders from Japan and adjacent islands, with comments on the monophyly and diagnosis of the family Pimoidae and the genus Pimoa (Araneoidea, Araneae)
Figure 7. Weintrauboa contortipes (Karsch), male first metatarsus. A, ectoventral; B, ventral; C, dorsal; D, dorsal.
Figure 6 in Weintrauboa, a new genus of pimoid spiders from Japan and adjacent islands, with comments on the monophyly and diagnosis of the family Pimoidae and the genus Pimoa (Araneoidea, Araneae)
Figure 6. Weintrauboa chikunii (Oi) (A–D), W. contortipes (Karsch) (E,F). A, paracymbium and pimoid cymbial sclerite, ectal; B, detail tegular division, ectal; C, cymbial process; D, cymbial cuspules; E, male epiandrous fusules; F, male epiandrous fusules, detail.
Figure 2 in Weintrauboa, a new genus of pimoid spiders from Japan and adjacent islands, with comments on the monophyly and diagnosis of the family Pimoidae and the genus Pimoa (Araneoidea, Araneae)
Figure 2. Weintrauboa chikunii (Oi) n. comb. (A–D), W. contortipes (Karsch) n. comb. (E–F). A–F, male palp, from Juzhno-Sakhalinsk, Sakhalin Island, Russia; E,F, epigynum, Mt Takiyama, Nagi-cho, Katsuta-gun, Okayama Pref., Japan. A, mesal; B, ectal; C, dorsal; D, cymbium, apical; E, ventral; F, lateral. Scale bars, 0.5 mm (A–D), 0.25 (E,F).
Figure 3 in Weintrauboa, a new genus of pimoid spiders from Japan and adjacent islands, with comments on the monophyly and diagnosis of the family Pimoidae and the genus Pimoa (Araneoidea, Araneae)
Figure 3. Weintrauboa contortipes (Karsch) n. comb. (A–H), W. chikunii (Oi) n. comb. (I,J). A, epigynum (cleared), dorsal; B, epigynum (cleared), ventral; C, epigynum (cleared), dorsal (schematic); D, prosoma, dorsal; E, prosoma, ventral; F, prosoma, anterior; G, male first leg, lateral; H, male first metatarsus, dorsal; I, male first leg, lateral; J, male first metatarsus, dorsal. Scale bars, 0.1 mm (A–C), 0.5 (D–F, H,J), 1.0 (G,I).
Figure 4 in Weintrauboa, a new genus of pimoid spiders from Japan and adjacent islands, with comments on the monophyly and diagnosis of the family Pimoidae and the genus Pimoa (Araneoidea, Araneae)
Figure 4. Weintrauboa contortipes (Karsch). Male (A) and female (B) from Doi, Sakuto-Cho, Okayama Pref. (Japan). Carapace width 2.15 (male), 2.25 (female).
Figure 1 in Weintrauboa, a new genus of pimoid spiders from Japan and adjacent islands, with comments on the monophyly and diagnosis of the family Pimoidae and the genus Pimoa (Araneoidea, Araneae)
Figure 1. Weintrauboa contortipes (Karsch) n. comb., male palp. A–F, from Doi, Sakuto-Cho, Okayama Pref., Japan; E–J, from Japan (MNHN 3837), partially expanded. A, ventral; B, caudoectal; C, ectal; D, mesal; E, dorsal; F, cymbium, apical; G, apical; H–J, details of tegular division. Scale bars, 0.5 mm.
Figure 42 in A phylogenetic study of the neotropical catfish family Cetopsidae (Osteichthyes, Ostariophysi, Siluriformes), with a new classification
Figure 42. Ethmoid region and associated structures in Cetopsis oliveirai (MZUSP 79338). Ventral view. Anterior to top. Scale bar = 1 mm.
Figure 32. Two most parsimonious trees, A and B in A phylogenetic study of the neotropical catfish family Cetopsidae (Osteichthyes, Ostariophysi, Siluriformes), with a new classification
Figure 32. Two most parsimonious trees, A and B (L = 272, CI = 54, RI = 83) of relationships among Cetopsidae and outgroups, based on matrix in Appendix 2. Note in particular alternative topologies within Cetopsidium.
Figure 31 in A phylogenetic study of the neotropical catfish family Cetopsidae (Osteichthyes, Ostariophysi, Siluriformes), with a new classification
Figure 31. Posterior basipterygial cartilages. Ventral views. Anterior to top. A, Cetopsis plumbea (MUSM 4201); B, C. gobioides (MZUSP 39599). Scale bars = 1 mm.
Figure 29 in A phylogenetic study of the neotropical catfish family Cetopsidae (Osteichthyes, Ostariophysi, Siluriformes), with a new classification
Figure 29. Posterior basipterygial cartilages. Ventral views. Anterior to top. A, Cetopsis coecutiens (MZUSP 38765); B, Cetopsis candiru (MZUSP 48102). Scale bars = 1 mm.
Figure 24 in A phylogenetic study of the neotropical catfish family Cetopsidae (Osteichthyes, Ostariophysi, Siluriformes), with a new classification
Figure 24. Pectoral-fin radials of Denticetopsis macilenta (AMNH 55332). Ventral view of left side. Scale bar = 1 mm.
Figure 22 in A phylogenetic study of the neotropical catfish family Cetopsidae (Osteichthyes, Ostariophysi, Siluriformes), with a new classification
Figure 22. Weberian apparatus of juvenile specimen of Cetopsis coecutiens (LACM 43102-3). Ventral view. Scale bar = 1 mm.
Figure 18 in A phylogenetic study of the neotropical catfish family Cetopsidae (Osteichthyes, Ostariophysi, Siluriformes), with a new classification
Figure 18. Weberian apparatus of Cetopsidium ferreirai (INPA 6501). Ventral view, anterior facing top. Scale bar = 1 mm.
Figure 17 in A phylogenetic study of the neotropical catfish family Cetopsidae (Osteichthyes, Ostariophysi, Siluriformes), with a new classification
Figure 17. Hyoid bar, branchiostegal rays, and some opercular elements of Cetopsis sandrae (MZUSP 61051). Medial view of right side. Arrows indicate comparatively smaller third and fourth branchiostegal rays. Scale bar = 1 mm.
Figure 15 in A phylogenetic study of the neotropical catfish family Cetopsidae (Osteichthyes, Ostariophysi, Siluriformes), with a new classification
Figure 15. Upper branchial arches in Cetopsis coecutiens (MZUSP 38765). Left side, dorsal view. Anterior to top. Scale bar = 1 mm.
Figure 14 in A phylogenetic study of the neotropical catfish family Cetopsidae (Osteichthyes, Ostariophysi, Siluriformes), with a new classification
Figure 14. Anterior ventral branchial-arch elements in Denticetopsis praecox (AMNH 74449SW). Dorsal view. Anterior to top. Scale bar = 1 mm.
Figure 13 in A phylogenetic study of the neotropical catfish family Cetopsidae (Osteichthyes, Ostariophysi, Siluriformes), with a new classification
Figure 13. Lower branchial arches in Cetopsidium morenoi (UF 26156). Dorsal view. Anterior to top. Scale bar = 1 mm.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.