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390 results for “Character Analysis”
Figure 15 in Phylogenetic analysis of Eurytominae (Chalcidoidea: Eurytomidae) based on morphological characters
Figure 15. Aximopsis sp. from Colombia, mesopleuron in ventral view: AsA, adscrobal area; ApVs, anterior projection of ventral shelf; CxC2, midcoxal cavities; EpC, epicnemial carina; Epm, epicnemium; FmS, femoral scrobe (= femoral depression); L Pct, lateral prepectus; MsFP, mesofurcal pit; MtFP, metafurcal pit; Mtpl, metapleuron; Sl Pct, sublateral prepectus; Pct, subventral carinae of prepectus; VS Mspl, ventral shelf of mesopleuron; VS Mtpl, ventral shelf of metapleuron; Vt Pct, ventral prepectus.
Figure 5. Dental character states. A in The phylogeny and taxonomy of Hippopotamidae (Mammalia: Artiodactyla): a review based on morphology and cladistic analysis
Figure 5. Dental character states. A, upper canine cross section (from left to right: in Anthracokeryx ulnifer, in Hippopotamus amphibius, in Hexaprotodon bruneti, in Hex. harvardi). B, outline of the P1/alveolus (bottom: in Hex. protamphibius, top: in Hex. sivalensis). C, occlusal view of the P3/ (left: in Hex. bruneti, right: in Hex. protamphibius). D, occlusal view of the P4/ (left: in Hex. harvardi, right: both in Hex. protamphibius). E, occlusal view of the P/4 (left: in Hex. mingoz, right: in Hex. aethiopicus).
Figure 6. Cladogram 4 in Phylogenetic analysis of Eurytominae (Chalcidoidea: Eurytomidae) based on morphological characters
Figure 6. Cladogram 4. Phylogeny of the Eurytominae: strict consensus tree (CS) of the equally weighted trees (n = 45). Study carried out with 156 morphological characters and 178 taxa using a 'successive approach' as defined in the text (Step 5 of Analysis 1). Bootstrap values are given above the branches. Length of the tree: 464.433; consistency index, CI = 0.204; retention index, RI = 0.814; rescaled consistency index, RC = 0.166. Two large clades, including species distributed in the New World and in the Old World, respectively, are shaded. Species or genera conflicting with the general distribution are outlined.
Figure 4. Cladogram 2 in Phylogenetic analysis of Eurytominae (Chalcidoidea: Eurytomidae) based on morphological characters
Figure 4. Cladogram 2. Phylogeny of the Eurytominae: strict consensus tree (CS) of the equally weighted trees (n = 35). Study carried out with 150 morphological characters and 56 taxa using a 'successive approach' as defined in the text (Step 4 of Analysis 1). Bootstrap values are given above the branches. Length of the tree: 262.92; consistency index, CI = 0.353; retention index, RI = 0.856; rescaled consistency index, RC = 0.302.
Figure 4. Mandibular character states. A in The phylogeny and taxonomy of Hippopotamidae (Mammalia: Artiodactyla): a review based on morphology and cladistic analysis
Figure 4. Mandibular character states. A, dorsal view of Hexaprotodon aff. sahabiensis mandible. B, dorsal view of Hippopotamus amphibius mandible. C, dorsal view of Hex. karumensis mandible. D, sagittal cross section (at the I/1-I/1 diastema) of the symphysis (bottom: in Hex. sivalensis, top: in Hip. amphibius); E, three schematic anterior views of the symphysis (from left to right: in Hex. mingoz, in some Hex. protamphibius, in Hex. bruneti). F, three schematic lateral views of the vertical ramus (from bottom to top: in Hip. amphibius, in Hex. sivalensis, in Anthracokeryx ulnifer).
Figure 2. Cranial character states. A in The phylogeny and taxonomy of Hippopotamidae (Mammalia: Artiodactyla): a review based on morphology and cladistic analysis
Figure 2. Cranial character states. A, ventral view of a Hippopotamus amphibius skull. B, ventral view of a Hexaprotodon liberiensis skull. C, Schematic view of Hex. harvardi tympanic bulla area. D, Schematic view of A. ulnifer glenoid articular area. E, Three dorsal views of different bone contacts in the lachrymal area (from bottom to top: in Hex. harvardi, in Hex. protamphibius, in Hip. amphibius). A1 and A2 are Hex. liberiensis autapomorphies (see text).
Figure 12 in Phylogenetic analysis of Eurytominae (Chalcidoidea: Eurytomidae) based on morphological characters
Figure 12. Eurytoma aspila, postgenal bridge (PGB): FM, Foramen magnum; FS, foraminal setae; Ie PGG, inner edge of the postgenal groove; IeSu, inner edge of the sulci; LFP, lateral foraminal plate; Lm LFP, Lateral margin of the lateral foraminal plate; MSO, median stripe of ornamentation on the postgenal bridge; PGB, postgenal bridge; PTP, posterior tentorial pits; Su, Sulci of the postgenal bridge.
Figure 5 in Phylogenetic analysis of Eurytominae (Chalcidoidea: Eurytomidae) based on morphological characters
Figure 5. (B) Cladogram 3B. Cladogram 3 with feeding habits, when known, mapped on cladogram 3: phytophagous vs. entomophagus. Taxa not shaded or surrounded denote unknown or ambiguous feeding habit.
Figure 3. Cladogram 1 in Phylogenetic analysis of Eurytominae (Chalcidoidea: Eurytomidae) based on morphological characters
Figure 3. Cladogram 1. Phylogeny of the Eurytominae: strict consensus tree (= CS) of the equally weighted trees (n = 35). Study carried out with 150 morphological characters and 178 taxa using a 'consensus weighting approach' as defined in the text (Step 3 of Analysis 1). Boostrap values are given above the branches. Length of the tree: 165.96; consistency index, CI = 0.275; retention index, RI = 0.844; rescaled consistency index, RC = 0.232. The generic groups, large genera, and some species groups, as defined in the text, are shaded. The Bephrata group is not monophyletic on this cladogram. Syceurytoma ficus and the Eurytoma from San Alberto were finally excluded from the Phylloxeroxenus clade; they are shaded in dark grey to underline an ambiguous placement on this cladogram. Plutarchia always branches within the genus Philolema sensu largo in all cladograms. As this placement seems doubtful the genus is also superimposed. Putative placement of the type species for each of the largest genera is indicated.
Figure 14 in Phylogenetic analysis of Eurytominae (Chalcidoidea: Eurytomidae) based on morphological characters
Figure 14. Eurytoma Cébazan, pronotum and mesonotum in lateral view: AsA, adscrobal area; AsC, adscrobal carina; ApVs, anterior projection of the ventral shelf; CxC2, midcoxal cavities; EpC, epicnemial carina; Epm, epicnemium; FmS, femoral scrobe (= femoral depression); Fov LpPn, foveae on lateral panel of pronotum; L Pct, lateral prepectus; MVT Pct, medioventral tooth of prepectus; SaP, subalar pit; Sl Pct, sublateral prepectus; Vs Mspl, ventral shelf of mesopleuron.
Figure 2 in Phylogenetic analysis of Eurytominae (Chalcidoidea: Eurytomidae) based on morphological characters
Figure 2. Cumulative number of described species of Eurytomidae distributed from less diverse genera to most diverse. Data from Noyes (2002).
Figure 9. Cladogram 7 in Phylogenetic analysis of Eurytominae (Chalcidoidea: Eurytomidae) based on morphological characters
Figure 9. Cladogram 7. Phylogeny of the terminal zone of the Eurytominae: unique tree obtained. Study carried out with 156 morphological characters and 44 taxa (Analysis 4). Bootstrap values are given above the branches. Length of the tree: 168.672; consistency index, CI = 0.356; retention index, RI = 0.780; rescaled consistency index, RC = 0.280. The generic groups, large genera, and some species groups, as defined in the text, are shaded.
FIGURE 13 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 13: Conspicuous metaconid in the fifth lower postcanine of Otaria byronia (MCN 2701 a, vestibular view; b, lingual view; scale, 5 cm).
FIGURE 12 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 12: Multiple roots in the fifth upper postcanines (a, MCN 2624 Otaria byronia, vestibular view; b, MCN 2699 Arctocephalus australis, vestibular view; scale, 5 cm).
FIGURE 9 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 9: Presence of the lingual cingulum in the third upper incisor of Arctocephalus australis (MCN 2509; scale, 5 cm).
FIGURE 6 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 6: Condylar process above the level of the postcanine alveolar series in Otaria byronia (MCN 2629; scale, 5 cm).
FIGURE 2 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 2: Orientation of the postcanine alveolar series showing medial concavity in Otaria byronia (MACN 4-3-12; scale, 2 cm).
FIGURE 1 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 1: Nasal process of the premaxillary (arrow) not prominent in O. byronia (MCN 2629; scale, 2 cm).
FIGURE 11 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 11: Multiple roots in the fourth upper postcanine of Arctocephalus australis (MCN 2456: a, vestibular view; b, apical view; scale, 5 cm).
FIGURE 8 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 8: Internal auditory meatus showing incipient separation for the canals for the facial and vestibulocochlear nerves in Arctocephalus australis (MCN 2501; scale, 5 cm).
ScienceDex guides
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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.