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3,761 results for “phylogenetic relationships”
FIGURE 3 in A threatened new species of Oligosarcus and its phylogenetic relationships, with comments on Astyanacinus (Teleostei: Characidae)
FIGURE 3. Oligosarcus itau, CI-FML 3858, 61.4 mm SL: Upper jaw and nasal in medial view. PMX: right premaxilla, MAX: right maxilla. Scale bar=1 mm.
FIGURE 2 in A threatened new species of Oligosarcus and its phylogenetic relationships, with comments on Astyanacinus (Teleostei: Characidae)
FIGURE 2. Oligosarcus itau; above: CI-FML 3856, male, holotype, 62.1 mm SL; below: CI-FML 3857, female paratype, 66.2 mm SL. Alcohol-preserved specimens.
FIGURE 5 in A threatened new species of Oligosarcus and its phylogenetic relationships, with comments on Astyanacinus (Teleostei: Characidae)
FIGURE 5. Oligosarcus pintoi, CI-FML 4015, 28.4 mm SL: Detail of neurocranium from lateral view; right side, reversed image. 13(1): absence of temporal foramen, 366(1): sphenotic spine notched, PTO: pterotic, SPH: sphenotic. Scale bar=1 mm.
FIGURE 1 in A threatened new species of Oligosarcus and its phylogenetic relationships, with comments on Astyanacinus (Teleostei: Characidae)
FIGURE 1. Oligosarcus itau; above: CI-FML 3856, male, holotype, 62.1 mm SL; below: CI-FML 3857, female paratype, 66.2 mm SL. Fresh specimens, just after capture.
FIGURES 2–5. Potamobates tumaquensis n in A new species of Potamobates Champion from Colombia with a re-analysis of phylogenetic relationships (Hemiptera: Gerridae)
FIGURES 2–5. Potamobates tumaquensis n. sp. 2 Male, dorsal habitus (legs omitted), 3–4, male terminal abdomen, 3 lateral view, 4, ventral view; 5–6, female terminal abdomen, 5, dorsal view, 6 ventral view.
FIGURE 2. a in Phylogenetic position of Dendropsophus gaucheri (Lescure and Marty 2000) highlights the need for an in-depth investigation of the phylogenetic relationships of Dendropsophus (Anura: Hylidae)
FIGURE 2. a. Picture of an uncollected calling male taken in Sipaliwini, Suriname. b. specimen from Oriximiná voucher ZUEC 17682 (18.84mm) the white bar stands for 1cm; c. dorsal and ventral view of a preserved specimen from Campos de Ariramba, PA, Brazil, voucher MZUSP 54055 (20mm). The white bar stands for 1cm.
FIGURE 1 in Phylogenetic position of Dendropsophus gaucheri (Lescure and Marty 2000) highlights the need for an in-depth investigation of the phylogenetic relationships of Dendropsophus (Anura: Hylidae)
FIGURE 1. Phylogenetic relationships of the genus Dendropsophus hypothesized from Bayesian analysis using 808 bp of combined mtDNA sequences (12S+16S). Nodal supports represent BA posterior probabilities (*100) and MP bootstrap values (in %). Posterior probabilities ≥ 0.95 and bootstrap values ≥ 95% are indicated with * and "-" are used to indicate bootstrap support <50%. The map illustrates the six known localities of occurrence of D. gaucheri with in filled black the populations included in the molecular dataset and in open circles the two other populations in Pará, one reported by Avila-Pires et al. (2010) and one represented by specimens in the MZUSP collection that were newly identified.
FIGURE 10 in A new sauropod (Macronaria, Titanosauria) from the Adamantina Formation, Bauru Group, Upper Cretaceous of Brazil and the phylogenetic relationships of Aeolosaurini
FIGURE 10. Ischia of Aeolosaurines and closely related taxa. A, Aeolosaurus maximus. B, Aeolosaurus sp. C, Aeolosaurus rionegrinus (composite of left and right ischia). D, Gondwanatitan faustoi. E, Rinconsaurus caudamirus. F, Muyelensaurus pecheni. Redrawn from: B, Salgado and Coria (1993); C, Powell (2003); D, Kellner and Azevedo (1999); E, Calvo et al. (2007b). Not to scale.
FIGURE 7 in A new sauropod (Macronaria, Titanosauria) from the Adamantina Formation, Bauru Group, Upper Cretaceous of Brazil and the phylogenetic relationships of Aeolosaurini
FIGURE 7. Aeolosaurus maximus sp. nov., holotype, haemal arches (MPMA 12-0001-97). A–F, anterior haemal arches in posterior, anterior, and lateral views. G, middle haemal arch in posterior, anterior, and left lateral views. H, posterior haemal arch in posterior, anterior, and left lateral views. Scale bar represents 5 cm.
FIGURE 4 in A new sauropod (Macronaria, Titanosauria) from the Adamantina Formation, Bauru Group, Upper Cretaceous of Brazil and the phylogenetic relationships of Aeolosaurini
FIGURE 4. Aeolosaurus maximus sp. nov., holotype (MPMA 12-0001-97). A–B, anterior caudal in left lateral and dorsal views. C–D, anterior caudal in left lateral and posterior views. E–F, anterior caudal in anterior and left lateral views. G, anterior caudal in left lateral view. H, anterior caudal in anterior view. I, middle anterior caudal in posterior and left lateral views. K, posterior caudal in left lateral view. Scale bar equals 10 cm in A–J and 5 cm in K.
FIGURE 1 in A new sauropod (Macronaria, Titanosauria) from the Adamantina Formation, Bauru Group, Upper Cretaceous of Brazil and the phylogenetic relationships of Aeolosaurini
FIGURE 1. Aeolosaurus maximus sp. nov., map showing the location of the fossil site and sketches depicting the way the bones were found in the filed and their anatomical position in the skeleton.
FIGURE 6 in A new sauropod (Macronaria, Titanosauria) from the Adamantina Formation, Bauru Group, Upper Cretaceous of Brazil and the phylogenetic relationships of Aeolosaurini
FIGURE 6. Aeolosaurus maximus sp. nov., holotype, cervical and dorsal ribs (MPMA 12-0001-97). A, distal portion of the cervical ribs as they were found in the field. B, anterior dorsal rib with pneumatic foramen. C1–3, right anterior dorsal rib in anterior, posterior, and proximal views, respectively. D1–6, right mid-thoracic rib in anterior, medial, posterior, and medial views, and section at the middle diaphysis and distal end, respectively. E1–3, right posterior rib in anterior, medial, and, posterior views, respectively. Scale bars represent 20 cm.
FIGURE 9 in A new sauropod (Macronaria, Titanosauria) from the Adamantina Formation, Bauru Group, Upper Cretaceous of Brazil and the phylogenetic relationships of Aeolosaurini
FIGURE 9. Aeolosaurus maximus sp. nov., holotype. A1–4, left femur in lateral, posterior, and distal views (MPMA 12-0001- 97). B1–2, left ischium in lateral and anteroventral views (MPMA 12-0001-97). Scale bar represents 10 mm.
FIGURE 3 in A new sauropod (Macronaria, Titanosauria) from the Adamantina Formation, Bauru Group, Upper Cretaceous of Brazil and the phylogenetic relationships of Aeolosaurini
FIGURE 3. Aeolosaurus maximus sp. nov., holotype (MPMA 12-0001-97). A, anterior dorsal vertebra in right lateral view. B1-2, dorsal centrum in anterior and posterior views. C1-2, posterior dorsal vertebra in posterior and latero-posterior views. Scale bar equals 10 cm.
FIGURE 5 in A new sauropod (Macronaria, Titanosauria) from the Adamantina Formation, Bauru Group, Upper Cretaceous of Brazil and the phylogenetic relationships of Aeolosaurini
FIGURE 5. Anterior and middle caudal vertebrae of aeolosaurines in left lateral view (D1 reversed). A, Aeolosaurus sp. B, Gondwanatitan faustoi. C1–2, Aeolosaurus rionegrinus. D1–2, Aeolosaurus sp. E1–2, Aeolosaurus colhuehuapensis. F1–2, Aeolosaurus maximus. Redrawn from: A, Salgado et al. (1997a); B, Kellner and Azevedo (1999); C1–2, Powell (2003); D1–2, Salgado and Coria (1993); E1–2, Casal et al. (2007). Dashed lines indicate broken parts. Not to scale.
FIGURE 12 in A new sauropod (Macronaria, Titanosauria) from the Adamantina Formation, Bauru Group, Upper Cretaceous of Brazil and the phylogenetic relationships of Aeolosaurini
FIGURE 12. Aeolosaurus sp. (CPP 248). A, middle caudal in left lateral view. B, ventral view. Scale bar equals 5 mm.
FIGURE 2 in A new sauropod (Macronaria, Titanosauria) from the Adamantina Formation, Bauru Group, Upper Cretaceous of Brazil and the phylogenetic relationships of Aeolosaurini
FIGURE 2. Aeolosaurus maximus sp. nov., holotype. A, articulated posterior cervical vertebrae (MPMA 12-0001-97) in left lateral view. B, reconstruction of the posteriormost cervical vertebrae (MPMA 12-0001-97) in left lateral view. Shaded areas represent preserved portions. Dark grey corresponds to putative large depressions. Scale bar equals 50 cm.
FIGURE 8 in A new sauropod (Macronaria, Titanosauria) from the Adamantina Formation, Bauru Group, Upper Cretaceous of Brazil and the phylogenetic relationships of Aeolosaurini
FIGURE 8. Aeolosaurus maximus sp. nov., holotype, humeri and radius (MPMA 12-0001-97). A, right humerus in anterior view. B, left humerus in posterior view. C, probable radius. Scale bar represents 50 cm.
FIGURE 11 in A new sauropod (Macronaria, Titanosauria) from the Adamantina Formation, Bauru Group, Upper Cretaceous of Brazil and the phylogenetic relationships of Aeolosaurini
FIGURE 11. Resulting cladogram using the data matrix from Wilson (2002). A, strict consensus of ten most parsimonious trees. B, Major-rule consensus. Bootstrap (percentages in bold type) and Bremer support values are indicated in the strict consensus trees. Percentages in B depict the result of major-rule consensus.
FIGURE 5. Genus Protosuberites. Phylogenetic tree obtained using a in Coping with brackish water: A new species of cave-dwelling Protosuberites (Porifera: Demospongiae: Suberitidae) from the Western Mediterranean and a first contribution to the phylogenetic relationships within the genus
FIGURE 5. Genus Protosuberites. Phylogenetic tree obtained using a concatenated analysis of COI, 18S, and 28S and analyzed by both Bayesian inference (BI) and maximum likelihood (ML) methods. Numbers over branches indicate posterior probabilities and below bootstrap values. Only posterior probabilities over 0.95 and bootstrap values over 70 are indicated.
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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.