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53 results for “multivariative morphometric analysis”
Figure 15 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 15. Geographical distribution of Pseudonaja nuchalis specimens examined in this study (closed circles) and/or included in Skinner et al.'s (2005) phylogenetic analysis (open circles represent specimens not included in the morphometric analyses). Codes for geographical groups correspond with those in Table 2.
Figure 14 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 14. Geographical distribution of Pseudonaja mengdeni specimens examined in this study (closed circles) and/or included in Skinner et al.'s (2005) phylogenetic analysis (open circles represent specimens not included in the morphometric analyses). Codes for geographical groups correspond with those in Table 2.
Figure 7 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 7. Plot of scores for first and second canonical roots extracted in a discriminant function analysis including all male specimens.
Figure 11 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 11. Geographical distribution of Pseudonaja aspidorhyncha specimens examined in this study (closed circles) and/or included in Skinner et al.'s (2005) phylogenetic analysis (open circles represent specimens not included in the morphometric analyses). Codes for geographical groups correspond with those in Table 2.
Figure 6 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 6. Plots of scores for first and second, and first and third canonical roots extracted in a discriminant function analysis including female P. affinis, P. nuchalis 'Darwin', P. nuchalis 'Orange with black head'-'Pale head, grey nape' and P. nuchalis 'Southern' clade group specimens.
Figure 2 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 2. Pseudonaja mengdeni (SAMA R20981), lateral perspective of head; see Table 1 for abbreviations.
Figure 5 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 5. Plot of scores for first and second canonical roots extracted in a discriminant function analysis including all female specimens.
Figure 9 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 9. Plot of scores for first and second canonical roots extracted in a discriminant function analysis including male P. affinis, P. inframacula and P. textilis clade group specimens.
Figure 13 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 13. Geographical distribution of Pseudonaja inframacula specimens examined in this study (closed circles) and/or included in Skinner et al.'s (2005) phylogenetic analysis (open circles represent specimens not included in the morphometric analyses). Codes for geographical groups correspond with those in Table 2.
Figure 12 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 12. Pseudonaja inframacula (SAMA R38606), ventrolateral perspective of midbody illustrating contrasting sectorial markings on ventrals laterally.
Figure 16 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 16. Geographical distribution of Pseudonaja textilis specimens examined in this study (closed circles) and/or included in Skinner et al.'s (2005) phylogenetic analysis (open circles represent specimens not included in the morphometric analyses). Skinner et al.'s (2005) analysis also included two specimens from Merauke, West Papua (not shown). Codes for geographical groups correspond with those in Table 2.
Supplementary material 1 from: Rakotonirina JC, Csősz S, Fisher BL (2016) Revision of the Malagasy Camponotus edmondi species group (Hymenoptera, Formicidae, Formicinae): integrating qualitative morphology and multivariate morphometric analysis. ZooKeys 572: 81-154. https://doi.org/10.3897/zookeys.572.7177
Measurements of individual specimens : Explanation note: Basic measurements of individual specimens arranged by species code, collection code, and specimen code (unique identification number). See text for abbreviations.
Figure 1 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 1. Pseudonaja aspidorhyncha (SAMA R18600), dorsal perspective of head (left); P. mengdeni (SAMA R20981), dorsal perspective of head (right); see Table 1 for abbreviations.
Figure 10 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 10. Geographical distribution of Pseudonaja affinis specimens examined in this study (closed circles) and/or included in Skinner et al.'s (2005) phylogenetic analysis (open circles represent specimens not included in the morphometric analyses). Codes for geographical groups correspond with those in Table 2.
Figure 4 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 4. Pseudonaja nuchalis (SAMA R58381), ventral perspective of head; see Table 1 for abbreviations.
Figure 3 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 3. Pseudonaja affinis (SAMA R15900A), anterior perspective of head; see Table 1 for abbreviations.
Figure 8 in A multivariate morphometric analysis and systematic review of Pseudonaja (Serpentes, Elapidae, Hydrophiinae)
Figure 8. Plots of scores for first and second, and second and third canonical roots extracted in a discriminant function analysis including male P. affinis, P. nuchalis 'Darwin', P. nuchalis 'Orange with black head'-'Pale head, grey nape' and P. nuchalis 'Southern' clade group specimens.
Figure 9 from: Rakotonirina JC, Csősz S, Fisher BL (2016) Revision of the Malagasy Camponotus edmondi species group (Hymenoptera, Formicidae, Formicinae): integrating qualitative morphology and multivariate morphometric analysis. ZooKeys 572: 81-154. https://doi.org/10.3897/zookeys.572.7177
Figure 9 - Mesosoma in dorsal view. A Camponotus androy (CASENT0453723) B Camponotus bevohitra (CASENT0437238).
Figure 6 from: Rakotonirina JC, Csősz S, Fisher BL (2016) Revision of the Malagasy Camponotus edmondi species group (Hymenoptera, Formicidae, Formicinae): integrating qualitative morphology and multivariate morphometric analysis. ZooKeys 572: 81-154. https://doi.org/10.3897/zookeys.572.7177
Figure 6 - Individual minor worker in profile. A Camponotus ethicus (CASENT0409948) B Camponotus alamaina (CASENT0499291).
Figure 8 from: Rakotonirina JC, Csősz S, Fisher BL (2016) Revision of the Malagasy Camponotus edmondi species group (Hymenoptera, Formicidae, Formicinae): integrating qualitative morphology and multivariate morphometric analysis. ZooKeys 572: 81-154. https://doi.org/10.3897/zookeys.572.7177
Figure 8 - Mesosoma in lateral view. A Camponotus alamaina (CASENT0499291) B Camponotus androy (CASENT0453723).
ScienceDex guides
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Allen Brain Atlas
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International Brain Laboratory public data
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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.