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Fig. 1. – Bayesian 50 in Description and phylogenetic position of a new species of Nematanthus (Gesneriaceae) from Bahia, Brazil
Fig. 1. – Bayesian 50 % majority rule consensus tree of Nematanthus resulting from the combined analysis of plastid loci atpB-rbcL, matK, rps16, rpl16, trnT-trnL, trnL-trnF, trnS-trnG, and the nuclear regions ncpGS and ITS. Numbers above branches are Bayesian posterior probabilities. Numbers below branches are maximum likelihood bootstrap when ≥50 %. Asterisks indicate species with funnel-shaped and laterally compressed corollas.
Fig. 1 in Ormocarpopsis anosyana Thulin & Razafim. (Fabaceae), a new species from southern Madagascar and its phylogenetic position
Fig. 1. – Best tree from the RAxML analysis of Ormocarpopsis R. Vig. and allied genera based on ITS data. Bootstrap support values are shown above and Bayesian posterior probabilities below the branches.
Fig. 2 in Ormocarpopsis anosyana Thulin & Razafim. (Fabaceae), a new species from southern Madagascar and its phylogenetic position
Fig. 2. – Ormocarpopsis anosyana Thulin & Razafim. A. Front view of flower; B. Flowering branch; C. Fruiting branch, showing fruit with a single seed developed.
Figure 4 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 4. Anterior region of neurocranium of Acestrorhynchus nasutus, MZUSP 47698, 69.4-mm standard length; left side, anterior to left. Arrow points to process of vomer that articulates with palatine.
Figure 6 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 6. Anterior portion of mesethmoid of (A) Acestrorhynchus nasutus, MZUSP 29270, 71.8-mm standard length (SL), and (B) Acestrorhynchus minimus, MZUSP 34988, 66.4-mm SL; dorsal view, anterior to left. Arrows point to posterior portion of lateral wing of the mesethmoid.
Figure 2 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 2. Anterior region of neurocranium of Acestrorhynchus falcirostris, MZUSP 20592, 113.9-mm standard length; left side, anterior to left. Arrow points to process of vomer that articulates with palatine.
Figure 3 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 3. Anterior region of neurocranium of Acestrorhynchus britskii, MZUSP 27892, 143.6-mm standard length; left side, anterior to left. Left arrow points to process of vomer that articulates with palatine. Right arrow points to dorsolateral process of vomer.
Figure 10 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 10. Dorsal surface of neurocranium and associated bones, middle, and posterior sections of Acestrorhynchus falcatus, MZUSP 4572-91, 119.4-mm standard length; right side, anterior to left. Arrow points to portion of supraorbital laterosensory canal posterior to branching point of the parietal branch of the canal.
Figure 9 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 9. Dorsal surface of neurocranium and associated bones, middle, and posterior sections of Acestrorhynchus microlepis, MZUSP 34957, 123.1-mm standard length; right side, anterior to left. Arrow points to lateral process of frontal.
Figure 13 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 13. Otic region, ventral section, of Acestrorhynchus grandoculis, MZUSP 29281, 83.9-mm standard length; left side, anterior to left. Arrow points to free bony process of parasphenoid.
Figure 21 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 21. Pelvic girdle and basal portions of fin of (A) Acestrorhynchus lacustris, MZUSP 47309, 110.0-mm standard length (SL), and (B) Acestrorhynchus minimus, MZUSP 34987, 74.6-mm SL; ventral view, anterior at top.
Figure 26 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 26. Strict consensus cladogram of two most parsimonious hypotheses of the relationships of Acestrorhynchus species and examined outgroups (length = 294 steps, consistency index = 45, retention index = 79). Bremer support values are given above the branches.
Figure 25 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 25. Cladograms of the two most parsimonious hypotheses of relationships of the Acestrorhynchus species (length = 294 steps, consistency index = 45, retention index = 79), (A) Hypothesis 1; (B) hypothesis 2 (outgroups not shown).
Figure 12 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 12. Posterior orbital and otic regions of Acestrorhynchus pantaneiro, MZUSP 59893, 103.8-mm standard length; left side, anterior to left. Arrow points to free bony process of parasphenoid.
Figure 23 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 23. Caudal fin skeleton of (A) Acestrorhynchus falcirostris, MZUSP 22121, 146.4-mm standard length (SL), and (B) Acestrorhynchus microlepis, MZUSP 34957, 123.1-mm SL; lateral view, anterior to left.
Figure 20 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 20. Dorsal portion of basibranchials of (A) Acestrorhynchus falcatus, MZUSP 4572-91, 119.4-mm standard length (SL), and (B) Acestrorhynchus abbreviatus, MZUSP 14731, 105.4-mm standard length; anterior to left.
Figure 11 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 11. Dorsal surface of neurocranium and associated bones, middle, and posterior sections of Acestrorhynchus falcirostris, MZUSP 20592, 140.8-mm standard length; right side, anterior to left. Arrow points to parietal branch of supraorbital laterosensory canal.
Figure 8 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 8. Orbital region of Acestrorhynchus lacustris, MZUSP 47309, 110.0-mm standard length; lateral view, anterior to left.
Figure 16 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 16. Supraorbital of (A) Acestrorhynchus microlepis, MZUSP 34957, 122.4-mm standard length (SL); (B) Acestrorhynchus lacustris, MZUSP 54682, 93.3-mm SL; left side, medial view, anterior to right.
Figure 22 in Phylogenetic relationships among Acestrorhynchus species (Ostariophysi: Characiformes: Acestrorhynchidae)
Figure 22. Anterior portion of anal fin of (A) Acestrorhynchus falcatus, MZUSP 4572-91, 119.4-mm standard length (SL), and (B) Acestrorhynchus microlepis, MZUSP 20188, 59.2-mm SL; lateral view, anterior to left. Arrows point to process on proximal radial of seventh anal-fin pterygiophore.
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.