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zenodo32/100

Figure 19 in Phylogenetic relationships and systematics of the jumping spider genus Colopsus with the description of eight new species from Sri Lanka (Araneae: Salticidae)

Figure 19. Pancorius alboclypeus sp. nov. (a, c, e, g) and Pancorius altus sp. nov. (b, d, f, h); (a, b). ventral view of palp, (c, d). ventral view of epigynum, (e, f). retrolateral view of palp, (g, h). dorsal view of vulva.

opennotspecifiedApr 2021View details →
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FIGURE 1B in Marasmius tricystidiatus sp. nov. (Agaricales, Marasmiaceae) and its morphological and phylogenetic relationship with Marasmius jalapensis

FIGURE 1B. Continued. Bayesian Inference phylogeny based on ITS sequence data. Marasmius from this work are indicated in bold type in the grey box. Support values, when present, consist of the ML bootstrap (BS) followed by Bayesian posterior probabilities (BPP), separated by /. Only nodes with support above 50 % percent were annotated and support values greater than 70/0,90 are shown (--designates a lower value).

opennotspecifiedMar 2021View details →
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FIGURE 5 in Marasmius tricystidiatus sp. nov. (Agaricales, Marasmiaceae) and its morphological and phylogenetic relationship with Marasmius jalapensis

FIGURE 5. Macroscopic and microscopic features of Marasmius jalapensis (414F). A. General aspect and habit. B. Basidiospores. C. Pleurosetae. D. Cheilosetae. E. Thick-walled Siccus-type broom cells of pileipellis. F. Pileosetae. G. Caulosetae. Scale bars A = 10 mm, B–G = 10 µm. Photographs by F. Piris da Motta; drawings by N.A. Ramírez.

opennotspecifiedMar 2021View details →
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FIGURE 1A in Marasmius tricystidiatus sp. nov. (Agaricales, Marasmiaceae) and its morphological and phylogenetic relationship with Marasmius jalapensis

FIGURE 1A. Bayesian Inference phylogeny based on ITS sequence data. Marasmius from this work are indicated in bold type in the grey box. Support values, when present, consist of the ML bootstrap (BS) followed by Bayesian posterior probabilities (BPP), separated by /. Only nodes with support above 50 % percent were annotated and support values greater than 70/0,90 are shown (--designates a lower value).

opennotspecifiedMar 2021View details →
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FIGURE 3 in Marasmius tricystidiatus sp. nov. (Agaricales, Marasmiaceae) and its morphological and phylogenetic relationship with Marasmius jalapensis

FIGURE 3. Marasmius tricystidiatus (NR 100). General aspect and habit. Scale bar = 15 mm. Photograph by N.A. Ramírez.

opennotspecifiedMar 2021View details →
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FIGURE 4 in Marasmius tricystidiatus sp. nov. (Agaricales, Marasmiaceae) and its morphological and phylogenetic relationship with Marasmius jalapensis

FIGURE 4. Micromorphological features of Marasmius tricystidiatus (NR 100). A. Basidiospores. B. Basidia. C. Pleurosetae. D. Cheilosetae. E. Siccus-type broom cells cheilocystidia. F. Transitional elements between setae and broom cells on the lamellae edge. G. Siccus-type broom cells of the pileipellis. H. Pileosetae and transitional elements in the pileipellis. I. Caulosetae and transitional elements in the stipitipellis. Scale bars = 10 µm. Drawings by N.A. Ramírez.

opennotspecifiedMar 2021View details →
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FIGURE 2 in Marasmius tricystidiatus sp. nov. (Agaricales, Marasmiaceae) and its morphological and phylogenetic relationship with Marasmius jalapensis

FIGURE 2. Bayesian Inference phylogeny based on combined dataset (ITS and LSU). Marasmius from this work are indicated in bold type in the grey box. Support values, when present, consist of the ML bootstrap (BS) followed by Bayesian posterior probabilities (BPP), separated by /. Only nodes with support above 50 % percent were annotated and support values greater than 70/0,80 are shown (--designates a value below 70%).

opennotspecifiedMar 2021View details →
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FIGURE 7 in Marasmius tricystidiatus sp. nov. (Agaricales, Marasmiaceae) and its morphological and phylogenetic relationship with Marasmius jalapensis

FIGURE 7. SEM micrographs of cheilocystidia. A–B. Marasmius tricystidiatus (NR 100). C. Marasmius jalapensis (type material, Murrill & Murrill 84). D. Marasmius jalapensis (414F). E–F. Uganda specimen (K 134432). Scale bars A–B = 5 µm, C–F = 10 µm. Photos by N.A. Ramírez.

opennotspecifiedMar 2021View details →
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FIGURE 6 in Marasmius tricystidiatus sp. nov. (Agaricales, Marasmiaceae) and its morphological and phylogenetic relationship with Marasmius jalapensis

FIGURE 6. SEM micrographs of basidiospores. A. Marasmius tricystidiatus (NR 100). B. Marasmius jalapensis (414F). C. Marasmius jalapensis (type material, Murrill & Murrill 84). D. Uganda specimen (K 134432). Scale bars = 2 µm. Photos by N.A. Ramírez.

opennotspecifiedMar 2021View details →
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Figure 2. Phylogenetic relationships among the 78 in The impact of the Congo River and its tributaries on the rodent genus Praomys: speciation origin or range expansion limit?

Figure 2. Phylogenetic relationships among the 78 Praomys specimens retained, based on the maximum likelihood tree (PHYML). The total number of sequenced specimens from this clade in our unpublished data is noted in brackets. Support values: maximum parsimony, MP ± 85%; maximum likelihood, ML ± 85%; and Markov chain Monte Carlo, MCMC ± 0.99. Solid black nodes are supported by all three analyses, nodes with diagonal stripes are supported by MP and ML analyses, and nodes with horizontal lines are supported by MP and Bayesian analyses. Open nodes are only supported by MP. Country codes follow the ISO list: BF, Burkino Faso; BJ, Benin; CD, Democratic Republic of Congo; CF, Central African Republic; CG, Republic of the Congo (Brazzaville); CI, Ivory Coast; CM, Cameroon; GA, Gabon; GN, Guinea; KE, Kenya; LR, Liberia; ML, Mali; NG, Nigeria; SL, Sierra Leone; SN Senegal; TZ, Tanzania. The species abbreviation Mve stands for Praomys verschureni (identified as Malacomys on GenBank).

opennotspecifiedOct 2011View details →
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Figure 22 in Osteology and phylogenetic relationships of Tehuelchesaurus benitezii (Dinosauria, Sauropoda) from the Upper Jurassic of Patagonia

Figure 22. Simplified reduced consensus tree, showing the minimal implied stratigraphic gaps in the basal neosauropod radiation as predicted by the topology presented here. The stratigraphic position of Jobaria is based on Rauhut & López-Arbarello (2009).

opennotspecifiedAug 2011View details →
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Figure 23 in Osteology and phylogenetic relationships of Tehuelchesaurus benitezii (Dinosauria, Sauropoda) from the Upper Jurassic of Patagonia

Figure 23. Occurrences of macronarians in the Late Jurassic. 1, Cañadón Calcáreo Formation (Tithonian–?Valangianian); Tehuelchesaurus benitezii, unidentified brachiosaurid. 2, Tendaguru Formation (Oxfordian–Tithonian); Giraffatitan brancai, Janenschia robusta. 3, Kadzi Formation (Late Jurassic); 'Brachiosaurus' sp. (probably Giraffatitan), Janenschia sp.,?Camarasaurus sp. 4, Morrison Formation (Kimmeridgian–Tithonian); Haplocanthosaurus spp., Camarasaurus spp., Brachiosaurus altithorax. 5, Sobral Unit (Tithonian); Lusotitan atalaiensis; Villar de Arzobispo Formation (Tithonian-Berriasian); Galvesaurus herreroi. 6, unnamed carbonate unit at Oker (Kimmeridgian); Europasaurus holgeri; unnamed unit, Damparis (Oxfordian); 'French Bothriospondylus' (probable brachiosaurid).

opennotspecifiedAug 2011View details →
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Figure 21. A in Osteology and phylogenetic relationships of Tehuelchesaurus benitezii (Dinosauria, Sauropoda) from the Upper Jurassic of Patagonia

Figure 21. A, strict consensus of MPTs, showing the phylogenetic position of Tehuelchesaurus. B, reduced consensus tree of the MPTs after the exclusion of Malarguesaurus, Tendaguria, and Venenosaurus. Stem based groups are symbolized by arrows and node-based groups with open circles. Node definitions: Eusauropoda (Upchurch et al., 2004); Neosauropoda (Wilson & Sereno, 1998); Diplodocoidea (Wilson & Sereno, 1998); Macronaria (Wilson & Sereno, 1998); Camarasauromorpha (Upchurch et al., 2004); Titanosauriformes (Wilson & Sereno, 1998); Somphospondyli (Sereno, 2005); Titanosauria (Wilson & Upchurch, 2003).

opennotspecifiedAug 2011View details →
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Figure 20 in Osteology and phylogenetic relationships of Tehuelchesaurus benitezii (Dinosauria, Sauropoda) from the Upper Jurassic of Patagonia

Figure 20. Tuelchesaurus benitezii, right femur in posterior (A) and proximal views (B) and left femur in posterior (C), and medial views (D). Abbreviations: 4tr, fourth trochanter; epc, epicondyle; fbc, fibular condyle; lb, lateral bulge; tbc, tibial condyle. Scale bar = 10 cm.

opennotspecifiedAug 2011View details →
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Figure 19 in Osteology and phylogenetic relationships of Tehuelchesaurus benitezii (Dinosauria, Sauropoda) from the Upper Jurassic of Patagonia

Figure 19. Tehuelchesaurus benitezii, ischium. Left ischium in anterolateral view, stereophotographs (A), right ischial shaft in posterior view, stereophotographs (B), and outline of pubic peduncle of left ischium (C). Abbreviations: ac, acetabular rim; ic, contact area between left and right ischium; ilpd, iliac peduncle; pupd, pubic peduncle. Scale bar = 10 cm.

opennotspecifiedAug 2011View details →
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Figure 18 in Osteology and phylogenetic relationships of Tehuelchesaurus benitezii (Dinosauria, Sauropoda) from the Upper Jurassic of Patagonia

Figure 18. Tehuelchesaurus benitezii, rigth pubis. Lateral view, stereophotographs (A), posterolateral view (B), and outline of ischial peduncle (C). Abbreviation: obf, obturator foramen. Scale bar = 10 cm.

opennotspecifiedAug 2011View details →
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Figure 17 in Osteology and phylogenetic relationships of Tehuelchesaurus benitezii (Dinosauria, Sauropoda) from the Upper Jurassic of Patagonia

Figure 17. Tehuelchesaurus benitezii, left radius. Medial view, stereophotographs (A), and anterior view (B). Abbreviations: d, depression; in, incision; ut, tubercle for contact with the ulna. Scale bar = 10 cm.

opennotspecifiedAug 2011View details →
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Figure 13 in Osteology and phylogenetic relationships of Tehuelchesaurus benitezii (Dinosauria, Sauropoda) from the Upper Jurassic of Patagonia

Figure 13. Tehuelchesaurus benitezii, lateral view of the posterior half of the ninth and tenth preserved dorsal vertebra and the four anterior sacral vertebrae. The cross-section in Figure 12 corresponds to the anterior end of the articulated series. Stereophotographs (A) and line drawing (B). Scale bar = 10 cm. For abbreviations see text.

opennotspecifiedAug 2011View details →
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Figure 16 in Osteology and phylogenetic relationships of Tehuelchesaurus benitezii (Dinosauria, Sauropoda) from the Upper Jurassic of Patagonia

Figure 16. Tehuelchesaurus benitezii, left ulna. Anterolateral view, stereophotographs (A), proximal view (B; anterior is to the left), distal view (C; anterior is to the left), lateral view, stereophotographs (D), and posterior view (E). Abbreviations: ap, anterior process; lp, lateral process; rr, rugosity for contact with radius. Scale bar = 10 cm.

opennotspecifiedAug 2011View details →
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Figure 14 in Osteology and phylogenetic relationships of Tehuelchesaurus benitezii (Dinosauria, Sauropoda) from the Upper Jurassic of Patagonia

Figure 14. Tehuelchesaurus benitezii, right scapulocoracoid in lateral view, with cross-section of proximal shaft. Abbreviations: corf, coracoid foramen; gl, glenoid; igl, infraglenoid lip. Scale bar = 10 cm.

opennotspecifiedAug 2011View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

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behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record