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Figure 3 in Higher-order phylogeny of modern birds (Theropoda, Aves: Neornithes) based on comparative anatomy. II. Analysis and discussion
Figure 3. Morphological phylogenetic trees proposed in previous studies (see Fig. 1 for details), III. A, Mayr (2005b); B, Mayr (2005f: fig. 9), excluding fossils Prefica and Paraprefica.
Figure 16 in Higher-order phylogeny of modern birds (Theropoda, Aves: Neornithes) based on comparative anatomy. II. Analysis and discussion
Figure 16. Detailed segment of strict consensus tree of all MPTs recovered in present study. Part E. Neornithes: Falconiformes, Strigiformes, Cuculiformes and Psittaciformes. Nodes are labelled above by percentages of bootstrapped replicates in which node was retained (italics), and below by Bremer support indices (bold type).
Figure 12 in Higher-order phylogeny of modern birds (Theropoda, Aves: Neornithes) based on comparative anatomy. II. Analysis and discussion
Figure 12. Detailed segments of strict consensus tree of all MPTs recovered in present study. Part A. Outgroup (non-neornithine) taxa. Nodes are labelled by percentages of bootstrapped replicates in which node was retained (numerator), and below by Bremer support indices (denominator).
Fig. 38 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 38. Lateral view of posteroventral region of suspensorium and opercular series of (A) Ituglanis proops, MZUSP 60255 (77.0 mm SL), right side, image flipped horizontally to facilitate comparisons; (B) Trichomycterus stawiarski, LIRP 5088 (50.1 mm SL), left side.
Fig. 39 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 39. Ventral view of parurohyal of (A) Trichomycterus davisi, LIRP 2798 (56.7 mm SL); (B) Trichomycterus cf. itatiayae, LIRP 5086 (43.3 mm SL) and (C) Ituglanis sp. 1, MCP 15930 (53.3 mm SL).
Fig. 37 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 37. Diagram comparing phylogenetic relationships of subfamilies of Trichomycteridae according to the present analysis of dorsolateral head muscles (left) and to the literature based on other morphological and behavioral characters (right). Tree from literature is compilation of hypotheses of Baskin (1973); Britski & Ortega (1983); Arratia (1990); de Pinna & Britski (1991); de Pinna (1992, 1998); Costa & Bockmann (1993, 1994); Bockmann et al. (2004); and Bichuette et al. (2008). Gray area represents subfamily Trichomycterinae.
Fig. 35 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 35. Schematic representation of a transverse section through posterior region of opercle and attached opercular muscles of various catfishes.
Fig. 16 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 16. Dorsal view of head of Microcambeva ribeirae (Sarcoglanidinae), MZUSP 65764 (41.8 mm SL). Core of nasal barbels and core of right maxillary barbel, rictal barbel, lower jaw, interopercle, adductor mandibulae, dilatator operculi, levator operculi, and protractor operculi removed.
Fig. 12 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 12. Medial view of left adductor mandibulae and attached lower jaw of Trichomycterus brasiliensis (Trichomycterinae), LIRP 1968 (95.1 mm SL). Arrows indicates space occupied by levator arcus palatini.
Fig. 19 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 19. Medial view of right adductor mandibulae and attached lower jaw of Listrura tetraradiata (Glanapteryginae), MNRJ 31534 (paratype; 39.0 mm SL). Image flipped horizontally to facilitate comparisons.
Fig. 23 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 23. Dorsal view of head of Haemomaster venezuelae (Stegophilinae), LIRP 7438 (36.9 mm SL). Left eye removed. Arrow indicates anterior projection of eyeball capsule anchoring to tip of mesethmoid cornu.
Fig. 8 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 8. Medial view of left adductor mandibulae and attached lower jaw of Trichogenes longipinnis (Trichogeninae), LIRP 1059 (60.8 mmSL).
Fig. 31 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 31. Most parsimonious cladogram of relationships of Trichomycteridae derived from character matrix in Table 2. Letters above nodes are conform to those used in text; numbers below nodes are their respective Bremer supports. Representative images for each subfamily modified from following (from top to bottom): Copionodon pecten (de Pinna, 1992), Trichogenes longipinnis (Sazima, 2004), Trichomycterus reinhardti (Eigenmann, 1918), Sarcoglanis simplex (Myers & Weitzman, 1966), Typhlobelus ternetzi (Myers, 1944), Tridens melanops (Eigenmann, 1918), Ochmacanthus alterus (Myers, 1944), and Vandellia sanguinea (Eigenmann, 1918).
Fig. 10 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 10. Dorsal view of head of Trichomycterus cf. iheringi (Trichomycterinae), LIRP 3182 (72.2 mm SL). Right core of nasal barbel, interopercle, buccopalatal membane, dilatator operculi, levator operculi, protractor operculi, supracarinalis anterior, and superficial portions of epaxialis removed; right A2 and A3' sections of adductor mandibulae transversely sectioned.
Fig. 4 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 4. Dorsal view of left adductor mandibulae and attached lower jaw and maxilla of Copionodon pecten (Copionodontinae), LIRP 1012 (51.7 mm SL). Arrow indicates space occupied by levator arcus palatini.
Fig. 34 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 34. Longitudinal section of right rictal region of Trichomycterus davisi, LIRP 2798 (37.5 mm SL). (A) 20× magnification; (B) magnification of rectangle of (A).
Fig. 3 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 3. Left lateral view of head of Copionodon pecten (Copionodontinae), LIRP 1012 (49.5 mm SL). Antorbital and core of nasal barbels removed.
Fig. 2 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 2. Medial view of left adductor mandibulae and attached lower jaw of Nematogenys inermis (Nematogenyidae), LBP 1002 (76.4 mmSL).
Fig. 5 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 5. Medial view of left adductor mandibulae and attached lower jaw of Copionodon pecten (Copionodontinae), LIRP 1012 (51.7 mmSL).
Fig. 33 in Dorsolateral head muscles of the catfish families Nematogenyidae and Trichomycteridae (Siluriformes: Loricarioidei): comparative anatomy and phylogenetic analysis
Fig. 33. Dorsal view of the left posterolateral region of the head of Trichomycterus chiltoni, LBP 1001 (104.2 mm SL).
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.