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54 results for “alpha taxonomy”
Figure 5 in Junior synonymy of Mulloides armatus and intraspecific comparisons of the yellowstripe goatfish Mulloidichthys flavolineatus (Mullidae) using a comprehensive alpha-taxonomy approach
Figure 5. – Results of PCA for Mulloidichthys flavolineatus body shape showing (A) relationships between SL and the first principal component (PC1) and (B) relationships between the second to fourth principal components (PC2-4). The subspecies M. f. flavicaudus and populations of M. f. flavolineatus from selected regions are indicated by different symbols. The dashed line encloses M. f. flavicaudus and the dotted line encloses the population of M. f. flavolineatus from the entire Pacific.
Figure 4 in Junior synonymy of Mulloides armatus and intraspecific comparisons of the yellowstripe goatfish Mulloidichthys flavolineatus (Mullidae) using a comprehensive alpha-taxonomy approach
Figure 4. – Standard length against five morphometric characters and one meristic character in Mulloidichthys flavolineatus and the HT of M. armatus with distinction of M. f. flavicaudus and populations of M. f. flavolineatus from selected regions by different symbols. The hatched line indicates the minimum size for adult/subadult fish.
Figure 3. – Mulloidichthys flavolineatus flavolineatus from Wake Island. A in Junior synonymy of Mulloides armatus and intraspecific comparisons of the yellowstripe goatfish Mulloidichthys flavolineatus (Mullidae) using a comprehensive alpha-taxonomy approach
Figure 3. – Mulloidichthys flavolineatus flavolineatus from Wake Island. A: BPBM 4089, 286 mm SL (Loreen O'Hara); B: Adult (Phillip & Lisa Lobel); C: Several adults or subadults; one of the four fish at top right has a yellow caudal fin (Phillip & Lisa Lobel). Scale bar = 4 cm.
Figure 2 in Junior synonymy of Mulloides armatus and intraspecific comparisons of the yellowstripe goatfish Mulloidichthys flavolineatus (Mullidae) using a comprehensive alpha-taxonomy approach
Figure 2. – Standard length against total length in 12 adult/subadult specimens of Mulloidichthys flavolineatus flavolineatus from the SW Pacific, with projected placement of the HT of M. armatus, allowing approximation of standard length.
Figure 1. – Merluccius merluccius. A in Figure 1. - A in Junior synonymy of Mulloides armatus and intraspecific comparisons of the yellowstripe goatfish Mulloidichthys flavolineatus (Mullidae) using a comprehensive alpha-taxonomy approach
Figure 1. – Merluccius merluccius. A: Normal pigmentation; B: Yellowalbino phenotype 616 mm TL; C: Dark spots on dorsal part; D: Black marks on the dorsal fin margin.
Fig. 4. Tetrapod Kinelia broomi Novikov 2002 in Alpha taxonomy of the Russian Permian procolophonoid reptiles
Fig. 4. Tetrapod Kinelia broomi Novikov 2002, Kutlukskaya Svita, uppermost Tatarian; PIN 4538/3 (holotype), partial right dentary. In medial (A) and lateral (B) views.
Fig. 1 in Alpha taxonomy of the Russian Permian procolophonoid reptiles
Fig. 1. Procolophonid reptile Suchonosaurus minimus Tverdokhlebova and Ivakhnenko, 1994, Salarevskaya Svita, uppermost Tatarian; SGU 104B/1326 (holotype), right maxilla. In anterolateral (A), medial (B), and medioocclusal (C) views.
Fig. 7. Seymouriamorph Microphon exiguus Ivakhnenko, 1983 in Alpha taxonomy of the Russian Permian procolophonoid reptiles
Fig. 7. Seymouriamorph Microphon exiguus Ivakhnenko, 1983, Severodvinian Gorizont, Tatarian; PIN 3585/31 (holotype), right maxilla, in lateral view (A), lateral view of the anterior end (B; attached to the maxilla incorrectly in A), and medial view (C).
Fig. 3. Procolophonid reptile Contritosaurus convector Ivakhnenko 1974 in Alpha taxonomy of the Russian Permian procolophonoid reptiles
Fig. 3. Procolophonid reptile Contritosaurus convector Ivakhnenko 1974, Vokhmian Gorizont, Induan, earliest Triassic; PIN 3357/2, partial right maxilla. In lateral (A), medial (B), and occlusal (C) views.
Fig. 2 in Alpha taxonomy of the Russian Permian procolophonoid reptiles
Fig. 2. Procolophonid reptile Suchonosaurus minimus Tverdokhlebova and Ivakhnenko, 1994, Salarevskaya Svita, uppermost Tatarian; SGU 104B/1326 (holotype), right maxilla. In lateral (A), medial (B), and occlusal (C) views.
Fig. 6. Seymouriamorph Microphon exiguus Ivakhnenko, 1983 in Alpha taxonomy of the Russian Permian procolophonoid reptiles
Fig. 6. Seymouriamorph Microphon exiguus Ivakhnenko, 1983, Severodvinian Gorizont, Tatarian; PIN 3585/31 (holotype), right maxilla, in lateral (A) and medial (B) views.
Fig. 5. Tetrapod Kinelia broomi Novikov 2002 in Alpha taxonomy of the Russian Permian procolophonoid reptiles
Fig. 5. Tetrapod Kinelia broomi Novikov 2002, Kutlukskaya Svita, uppermost Tatarian; PIN 4538/3 (holotype), partial right dentary. In medial (A), occlusal (B), and lateral (C) views. D. Schematic representation of the four well−preserved tooth crowns of the dentary teeth from posterior view. Lingual to the right, not to scale.
Figure 2. – Raja montagui. A in Figure 1. - A in Junior synonymy of Mulloides armatus and intraspecific comparisons of the yellowstripe goatfish Mulloidichthys flavolineatus (Mullidae) using a comprehensive alpha-taxonomy approach
Figure 2. – Raja montagui. A: Normal pigmentation; B: Xanthochromic specimen, female 658 mm TL.
Supplementary material 1 from: Huemer P, Mutanen M (2015) Alpha taxonomy of the genus Kessleria Nowicki, 1864, revisited in light of DNA-barcoding (Lepidoptera, Yponomeutidae). ZooKeys 503: 89-133. https://doi.org/10.3897/zookeys.503.9590
Sample information for specimens used in this study.: Explanation note: Details of collecting data, images, sequences, and trace files for the barcoded specimens are available in the public BOLD dataset "DS-LEAKE", accessed at https://doi.org/10.5883/DS-LEAKE
FIGURE 19 in Alpha-taxonomy and phylogeny of African Junoniini butterflies based on morphological data, with an emphasis on genitalia, and COI barcode (Lepidoptera Nymphalidae)
FIGURE 19. Maximum Parsimony tree based on morphological characters. The left value is the Bremer support, and the right value is the Bootstrap support.
FIGURE 18 in Alpha-taxonomy and phylogeny of African Junoniini butterflies based on morphological data, with an emphasis on genitalia, and COI barcode (Lepidoptera Nymphalidae)
FIGURE 18. Bayesian Inference tree based on morphological characters with the posterior probability.
FIGURE 15 in Alpha-taxonomy and phylogeny of African Junoniini butterflies based on morphological data, with an emphasis on genitalia, and COI barcode (Lepidoptera Nymphalidae)
FIGURE 15. Female genitalia, in lateral view. A: Hypolimnas monteironis, Uganda, Mpanga, prep. genit. 1897; B: Hypolimnas deceptor, Kenya, Mrima, prep. genit. 1895; C: Hypolimnas usambara Kenya, Buda, prep. genit. 1893; D: Hypolimnas misippus, Kenya, Mrima, prep. genit. 1892.
FIGURE 17 in Alpha-taxonomy and phylogeny of African Junoniini butterflies based on morphological data, with an emphasis on genitalia, and COI barcode (Lepidoptera Nymphalidae)
FIGURE 17. Maximum Likelihood Cladogram based on COI sequences. Bootstrap support values higher than 0.6 indicated on the nodes.
FIGURE 14 in Alpha-taxonomy and phylogeny of African Junoniini butterflies based on morphological data, with an emphasis on genitalia, and COI barcode (Lepidoptera Nymphalidae)
FIGURE 14. Female genitalia, in lateral view. A: Precis antilope, Nigeria, Nsukka, prep. genit. 1941; B: Precis cuama, Zambia, prep. genit. 1943; C: Precis octavia, Nigeria, Nsukka, prep. genit. 1886; D: Precis ceryne, Uganda, Mpanga Forest, prep. genit. 1878.
FIGURE 16 in Alpha-taxonomy and phylogeny of African Junoniini butterflies based on morphological data, with an emphasis on genitalia, and COI barcode (Lepidoptera Nymphalidae)
FIGURE 16. Female genitalia, in lateral view. A: Yoma algina, New Guinea, Sogeri, prep. genit. 1891: B: Yoma sabina atomaria, Indonesia?, prep. genit. 1799; C: Rhinopalpa polynice, Thailand, Ranong, prep. genit. 1790.
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)
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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.