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128 results for “Cladogram”
FIGURE 9. Calibrated consensus cladogram from 16,800 MLT with 641 in On a new Melanosuchus species (Alligatoroidea: Caimaninae) from Solimões Formation (Eocene-Pliocene), Northern Brazil, and evolution of Caimaninae
FIGURE 9. Calibrated consensus cladogram from 16,800 MLT with 641 steps (CI: 0.382; RI: 0.807) restricted to Caimaninae. The thin lines indicate the inferred relationships. Dark large lines indicate the known temporal occurrence of the species. Gray large line indicate the known temporal occurrence of Melanosuchus cf. M. niger or Melanosuchus indet.
Fig. 1 Three early deuterostome cladograms and a consistent evolutionary scenario. a in The phylogeny, evolutionary developmental biology, and paleobiology of the Deuterostomia: 25 years of new techniques, new discoveries, and new ideas
Fig. 1 Three early deuterostome cladograms and a consistent evolutionary scenario. a The cladogram of Brusca and Brusca (1990). Characters are as follows: 1 Complete gut with mouth not arising from blastopore. 2 Mesoderm derived directly from archenteron. 3 Body cavity (coelom) tripartite and derived by enterocoely. 4 Sheets of subepidermal muscles derived, at least in part, from archenteric mesoderm. 5 Longitudinal nerve cords not ladder-like in arrangement and not emphasized ventrally. 6 Ciliated feeding tentacles derived from mesosome and containing extensions of the mesocoel. 7 Circulatory system derived, at least in part, from archenteric mesoderm (varies among taxa). 8 Pharyngeal gill slits. 9 Dorsal hollow nerve cord. 10 Loss of mesosomal tentacles. 11 Notochord. 12 Muscular, locomotor, postanal tail. 13 Endostyle. 14 Tadpole larva. b The cladogram of Schram (1991). Characters are as follows: 1 Loss of spiral quartet cleavage. 2 Loss of 4d mesoderm. 3 Upstream particle capture in adults. 4 Upstream particle capture in larvae. 5 Tornaria/bipinaria larva. 6 Loss of coiled/looped gut. 7 Loss of lophophore. 8 Loss of upstream
FIGURE 65. Majority rule consensus cladogram summarizing 100 in <strong>Taxonomic revision and systematics of continental Australian pygmy water boatmen (Hemiptera: Heteroptera: Corixoidea: Micronectidae)</strong>
FIGURE 65. Majority rule consensus cladogram summarizing 100 most parsimonius trees recovered from MP analysis of Australasian micronectid morphology data matrix with characters mapped over topology (length = 83; CI = 0.94; RI = 0.97). Non-homoplasious characters indicated with *. Numbers in (parentheses) above branches are Bremer support values. Numbers in black circles indicate respective node number discussed in text. Black bars indicate the characters; number below the bar corresponds to the character number listed in Table 20.
Figure 4. Cladograms resulting from phylogenetic analyses. Data matrix for each analysis includes 11 taxa and 46 in A new taeniolabidoid multituberculate (Mammalia) from the middle Puercan of the Nacimiento Formation, New Mexico, and a revision of taeniolabidoid systematics and phylogeny
Figure 4. Cladograms resulting from phylogenetic analyses. Data matrix for each analysis includes 11 taxa and 46 characters. Letters refer to nodes (see Appendix S3 for list of common synapomorphies for each node). Numbers above each node are Bremer support values. A, Essonodon browni as outgroup, 51 steps, nine trees, consistency index (CI) = 0.647, retention index (RI) = 0.600; B, Meniscoessus robustus as outgroup, 62 steps, two trees, CI = 0.677, RI = 0.615; C, Cimolomys gracilis as outgroup, 56 steps; two trees; CI = 0.661; RI = 0.604; D, Cimexomys judithae as outgroup, 64 steps; 25 trees; CI = 0.703; RI = 0.620; E, Microcosmodon conus as outgroup, 60 steps; two trees; CI = 0.733; RI = 0.673.
FIGURE 21. Cladogram 3 in Throscidae (Coleoptera) relationships, with descriptions of new fossil genera and species
FIGURE 21. Cladogram 3. Black dots = unique synapomorphies, circles homoplastic changes.
FIGURE 20. Cladogram 1 in Throscidae (Coleoptera) relationships, with descriptions of new fossil genera and species
FIGURE 20. Cladogram 1. Black dots = unique synapomorphies, circles homoplastic changes.
FIGURE 19. Cladogram 1 in Throscidae (Coleoptera) relationships, with descriptions of new fossil genera and species
FIGURE 19. Cladogram 1. Black dots = unique synapomorphies, circles homoplastic changes.
FIGURE 1. Cladogram being probed with a in Character correlation and its use for identification
FIGURE 1. Cladogram being probed with a wildcard scored for the first two characters.
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.