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Table ²: Comparison of the results of analysis of variance on the shape of scapulae (occlusal view) and pelvis (side view) in Rhipidomys mastacalis from three vegetation classes in Brazil. Correspondence asymmetry was the only method used for asymmetry analysis. in Morphological symmetry of Rhipidomys mastacalis (Mammalia, Rodentia, Cricetidae) in fragmented habitats of the Atlantic Forest in Northeastern Brazil: a study on the influence of the environment on an endemic species
<p><b>Table ²:</b> Comparison of the results of analysis of variance on the shape of scapulae (occlusal view) and pelvis (side view) in <i>Rhipidomys mastacalis</i> from three vegetation classes in Brazil. Correspondence asymmetry was the only method used for asymmetry analysis.</p><table><tbody><tr><th><b>Shape procrustes ANOVA</b></th></tr></tbody><tbody><tr><th><b>Effect Sum of squares</b></th><td><b>Mean squares</b></td><td><b>Degrees of freedom</b></td><td><i>F statistic</i></td><td><i>p -Value</i></td><td><b>Pillai tr.</b></td><td><i>p -Value</i></td></tr><tr><th><b>Scapulae</b></th></tr><tr><th><b>Forested vegetation</b></th></tr><tr><th>Individual</th><td>0.0941373400</td><td>0.0010459705</td><td>90</td><td>3</td><td><0.0001</td><td>–</td><td>–</td></tr><tr><th>Side</th><td>0.0100439600</td><td>0.0010043960</td><td>2.88</td><td>0.0037</td><td>0.0003</td><td>–</td><td>–</td></tr><tr><th>Individual × side</th><td>0.0314069500</td><td>0.0003489662</td><td>90</td><td>5.89</td><td><0.0001</td><td>4.91</td><td><0.0001</td></tr><tr><th>Error 1</th><td>0.0118544100</td><td>0.0000592721</td><td>200</td><td>–</td><td>–</td><td>–</td><td>–</td></tr><tr><th><b>Occupancy mosaics in forested areas</b></th></tr><tr><th>Individual</th><td>0.2064168200</td><td>0.0010320841</td><td>200</td><td>4.82</td><td><0.0001</td><td>7.15</td><td><0.0001</td></tr><tr><th>Side</th><td>0.0262808000</td><td>0.0026280796</td><td>10</td><td>12.28</td><td><0.0001</td><td>0.86</td><td>0.0022</td></tr><tr><th>Individual × side</th><td>0.0428160400</td><td>0.0002140802</td><td>200</td><td>2.68</td><td><0.0001</td><td>4.98</td><td><0.0001</td></tr><tr><th>Error 1</th><td>0.0335675700</td><td>0.0000799228</td><td>420</td><td>–</td><td>–</td><td>–</td><td>–</td></tr><tr><th><b>Cocoa plantations</b></th></tr><tr><th>Individual</th><td>0.2508635400</td><td>0.0009291242</td><td>270</td><td>4.07</td><td><0.0001</td><td>7.11</td><td><0.0001</td></tr><tr><th>Side</th><td>0.0256608100</td><td>0.0025660812</td><td>10</td><td>11.24</td><td><0.0001</td><td>0.87</td><td><0.0001</td></tr><tr><th>Individual × side</th><td>0.0616394000</td><td>0.0002282941</td><td>270</td><td>3.10</td><td><0.0001</td><td>5.72</td><td><0.0001</td></tr><tr><th>Error 1</th><td>0.0412323300</td><td>0.0000736292</td><td>560</td><td>–</td><td>–</td><td>–</td><td>–</td></tr><tr><th><b>Pelvis</b></th></tr><tr><th><b>Forested vegetation</b></th></tr><tr><th>Individual</th><td>0.0543411200</td><td>0.0004312787</td><td>126</td><td>4.63</td><td><0.0001</td><td></td><td></td></tr><tr><th>Side</th><td>0.0043155600</td><td>0.0003082544</td><td>14</td><td>3.31</td><td>0.0002</td><td></td><td></td></tr><tr><th>Individual × side</th><td>0.0117297800</td><td>0.0000930935</td><td>126</td><td>2.31</td><td><0.0001</td><td>6.07</td><td><0.0001</td></tr><tr><th>Error 1</th><td>0.0112943700</td><td>0.000040337</td><td>280</td><td>–</td><td>–</td><td>–</td><td>–</td></tr><tr><th><b>Occupancy mosaics in forested areas</b></th></tr><tr><th>Individual</th><td>0.1059661700</td><td>0.0003440460</td><td>308</td><td>4.42</td><td><0.0001</td><td>9.69</td><td><0.0001</td></tr><tr><th>Side</th><td>0.0049395300</td><td>0.0003528236</td><td>14</td><td>4.53</td><td><0.0001</td><td>0.85</td><td>0.0311</td></tr><tr><th>Individual × side</th><td>0.0239852500</td><td>0.0000778742</td><td>308</td><td>2.00</td><td><0.0001</td><td>6.64</td><td><0.0001</td></tr><tr><th>Error 1</th><td>0.0251368400</td><td>0.0000390324</td><td>644</td><td>–</td><td>–</td><td>–</td><td>–</td></tr><tr><th><b>Cocoa plantations</b></th></tr><tr><th>Individual</th><td>0.1292837500</td><td>0.0003420205</td><td>378</td><td>5.68</td><td><0.0001</td><td>10.51</td><td><0.0001</td></tr><tr><th>Side</th><td>0.0043550500</td><td>0.0003110747</td><td>14</td><td>5.17</td><td><0.0001</td><td>0.84</td><td>0.0016</td></tr><tr><th>Individual × side</th><td>0.0227608400</td><td>0.0000602139</td><td>378</td><td>2.24</td><td><0.0001</td><td>6.17</td><td><0.0001</td></tr><tr><th>Error 1</th><td>0.0210413800</td><td>0.0000268385</td><td>714</td><td>–</td><td>–</td><td>–</td><td>–</td></tr></tbody></table>
Figure 1 in A new genus and species of Entomolepididae Brady, 1899 (Copepoda, Siphonostomatoida) associated with the endemic octocoral Phyllogorgia dilatata (Esper, 1806) (Cnidaria, Octocorallia) from Northeastern Brazil
Figure 1. Sampling site in Periperi Beach, Todos-os-Santos Bay, Salvador City, Bahia, Brazil.
FIGURE 3 in A new species of Stelletta (Demospongiae, Astrophorida) without microscleres from Abrolhos Archipelago, northeastern Brazil
FIGURE 3. Stelletta anasteria sp. nov. Spicules: A, plagiotriaenes; B, anatriaenes; C, oxeas.
FIGURE 4 in A new yellow-flowered ornithophilous Vriesea and an illustrated collection of the bromeliads from Pico Alto, Serra do Baturité, Ceará State, Northeastern Brazil
FIGURE 4. Holotype of Vriesea baturitensis deposited in the UFRN herbarium.
Figure 7 in Natural history of Copionodon pecten, an endemic trichomycterid catfish from Chapada Diamantina in northeastern Brazil
Figure 7. Percentage stages of gonadal maturation of Copionodon pecten in the sampled months.
Figure 6 in Natural history of Copionodon pecten, an endemic trichomycterid catfish from Chapada Diamantina in northeastern Brazil
Figure 6. Relationship between digestive tract length and body size of Copionodon pecten.
Figure 1 in Natural history of Copionodon pecten, an endemic trichomycterid catfish from Chapada Diamantina in northeastern Brazil
Figure 1. Study area showing Rio Paraguaçu basin and Rio Coisa Boa.
Figure 1 in Trichoptera (Insecta) from Pernambuco State, northeastern Brazil
Figure 1. Pernambuco State with the respective collecting localities.
FIGURE 1 in A new marine clupeoid fish from the Lower Cretaceous of the Sergipe-Alagoas Basin, northeastern Brazil
FIGURE 1. †Nolfia riachuelensis sp. nov. Photograph of Pz. UERJ 110 (holotype). Scale bar = 1.0 cm.
Fig. 4 in Astyanax vermilion and Astyanax burgerai: new characid fishes (Ostariophysi: Characiformes) from Northeastern Bahia, Brazil
Fig. 4. Map of northeastern Brazil, showing position of type locality of Astyanax burgerai (full triangle), type locality (full circle) and other sampled sites of Astyanax vermilion (full square), new species.
Fig. 8 in Astyanax vermilion and Astyanax burgerai: new characid fishes (Ostariophysi: Characiformes) from Northeastern Bahia, Brazil
Fig. 8. Type locality of Astyanax burgerai, Brazil, Bahia State, Almadina, córrego Água Boa, rio Almada drainage.
Fig. 7 in Microglanis pataxo, a new catfish from southern Bahia coastal rivers, northeastern Brazil (Siluriformes: Pseudopimelodidae)
Fig. 7. Branchial skeleton of Microglanis pataxo, MNRJ 28398, paratype. Dorsal view. Abbreviations: bb2-3, basibrachial 2 plus 3; bb4, basibrachial 4; cb1 to cb5, ceratobranchials 1 to 5; dp, dentigerous plate; eb1 to eb4, epibranchials 1 to 4; hb1 to hb4, hypobranchials 1 to 4; pb2 to pb4, pharyngobranchials 2 to 4. Scale bar, 1 mm.
Fig. 2 in Microglanis pataxo, a new catfish from southern Bahia coastal rivers, northeastern Brazil (Siluriformes: Pseudopimelodidae)
Fig. 2. Left pectoral-fin spine of Microglanis pataxo, MNRJ 28398, paratype. Dorsal view. Scale bar, 1 mm.
Fig. 9. a in Microglanis pataxo, a new catfish from southern Bahia coastal rivers, northeastern Brazil (Siluriformes: Pseudopimelodidae)
Fig. 9. a. Drainage map of eastern Brazil between rio São Francisco and rio Paraíba do Sul illustrating the distribution of the Microglanis species in the area. Dotted line indicates the study area. Symbols may represent more than one locality. b. Detail of collecting localities of Microglanis pataxo in the study area, between the rio Mucuri and rio Jequitinhonha.
Fig. 3 in A new cave species of Rhamdia (Siluriformes: Heptapteridae) from Serra do Ramalho, northeastern Brazil, with notes on ecology and behavior
Fig. 3. Lateral and dorsal views of large (218.6 mm SL; a and b, respectively; MZUSP 87777) and small (61.2 mm SL; c and d, respectively; LIRP 5643) individuals of R. enfurnada.
Fig. 2 in A new cave species of Rhamdia (Siluriformes: Heptapteridae) from Serra do Ramalho, northeastern Brazil, with notes on ecology and behavior
Fig. 2. Distribution of standard length (mm) classes relative to 121 individuals of R. enfurnada. Data collected in July 2005.
Fig. 6 in Aspects of fishing and reproduction of the black grouper Mycteroperca bonaci (Poey, 1860) (Serranidae: Epinephelinae) in the Northeastern Brazil
Fig. 6. Transverse section of a ripe ovary of Mycteroperca bonaci showing great amount of oocytes in the final phases of vitellogenic growth (*). Stain: H. E.
FIGURE 2 in Lepidaploa restingae (Asteraceae: Vernonieae), a new species from Northeastern Brazil
FIGURE 2. Geographic distribution of Lepidaploa restingae.
FIGURE 6 in A new species of annual fish, Hypsolebias tocantinensis sp. n. (Cyprinodontiformes: Rivulidae) from the rio Tocantins basin, northeastern Brazil
FIGURE 6. Type locality of Hypsolebias tocantinensis near rio Lajeado, rio Tocantins basin.
FIGURE 5 in A new species of annual fish, Hypsolebias tocantinensis sp. n. (Cyprinodontiformes: Rivulidae) from the rio Tocantins basin, northeastern Brazil
FIGURE 5. Geographic distribution of members Hypsolebias from rio Tocantins basin.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.