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522 results for “Osteichthyes”
Figure 6 in Early Oligocene (Rupelian) fishes (Chondrichthyes, Osteichthyes) from the Ashley Formation (Cooper Group) of South Carolina, USA
Figure 6. Selachian teeth from the Givhans Ferry Member, Ashley Formation (Rupelian), Dorchester County, South Carolina. A–C. Squalus sp. tooth, SC2007.36.3 in lingual (A), labial (B), and basal (C) views. D–E. Squalus sp. tooth, SC2015.29.17 in labial (D) and lingual (E) views. F–G. Squatina sp. tooth, SC2007.36.4 in labial (F) and distal (G) views. H. Squatina sp. placoid scale, SC2015.29.18 in apical view. I. Squatina sp. placoid scale, SC2007.36.126 in apical view. J–K. Pristiophorus sp., SC2015.29.20 in occlusal (J) and labial (K) views. Scale bar=0.5 mm in H; 1 mm in I; 5 mm in A–G, J, K.
Figure 10 in Early Oligocene (Rupelian) fishes (Chondrichthyes, Osteichthyes) from the Ashley Formation (Cooper Group) of South Carolina, USA
Figure 10.?Labridae indet. teeth from the Givhans Ferry Member, Ashley Formation (Rupelian), Dorchester County, South Carolina. A–C. SC2007.36.209.1 in occlusal (A), profile (B), and basal (C) views. D–F. SC2007.36.209.2 in occlusal (D), profile (E), and basal (F) views. Scale bars=0.5 mm.
Linked collectors and determiners for: Annotated catalogue of type specimens of flatfishes (Osteichthyes: Pleuronectiformes) in the Zoological Institute, St. Petersburg, Russia.
Natural history specimen data linked to collectors and determiners held within, "Annotated catalogue of type specimens of flatfishes (Osteichthyes: Pleuronectiformes) in the Zoological Institute, St. Petersburg, Russia". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/72e5bd66-b8bf-4267-b245-a766bcfbfcd0">https://bionomia.net/dataset/72e5bd66-b8bf-4267-b245-a766bcfbfcd0</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/72e5bd66-b8bf-4267-b245-a766bcfbfcd0">https://gbif.org/dataset/72e5bd66-b8bf-4267-b245-a766bcfbfcd0</a>. Formatted as a Frictionless Data package.
Fig. 6 in Morphometric Analysis Of Trianchoratus Price & Berry, 1966 (Monogenea: Heteronchocleidinae) From Channa Spp. (Osteichthyes: Channidae) Of Peninsular Malaysia
Fig. 6. PCA plot of Trianchoratus malayensis, with geographical origin of data indicated. The horizontal and vertical barplots indicate one-dimensional summary of the PC axes.
Fig. 3 in Morphometric Analysis Of Trianchoratus Price & Berry, 1966 (Monogenea: Heteronchocleidinae) From Channa Spp. (Osteichthyes: Channidae) Of Peninsular Malaysia
Fig. 3. Biplot of the first two principal components for the four species of Trianchoratus, with mean coordinates of the species indicated. Only vectors (IL1, OL1, IR1, OR1 and pt1) from one ventral anchor are shown.
Fig. 1. A in Morphometric Analysis Of Trianchoratus Price & Berry, 1966 (Monogenea: Heteronchocleidinae) From Channa Spp. (Osteichthyes: Channidae) Of Peninsular Malaysia
Fig. 1. A well-developed anchor of Trianchoratus species showing the basic measurements taken for morphometric analysis.
Fig. 4 in Morphometric Analysis Of Trianchoratus Price & Berry, 1966 (Monogenea: Heteronchocleidinae) From Channa Spp. (Osteichthyes: Channidae) Of Peninsular Malaysia
Fig. 4. Chernoff faces: graphical summary of the mean of each of the 15 variables in the four Trianchoratus species represented as different facial features.
Fig. 5 in Morphometric Analysis Of Trianchoratus Price & Berry, 1966 (Monogenea: Heteronchocleidinae) From Channa Spp. (Osteichthyes: Channidae) Of Peninsular Malaysia
Fig. 5. Fisher's linear discriminant analysis plots of the first three LD functions, which account for 65%, 21% and 14% of the total variation, respectively. Indicators: Trianchoratus malayensis (-); T. pahangensis (+); T. ophicephali (o); T. longianchoratus (l).
Fig. 8 in Morphometric Analysis Of Trianchoratus Price & Berry, 1966 (Monogenea: Heteronchocleidinae) From Channa Spp. (Osteichthyes: Channidae) Of Peninsular Malaysia
Fig. 8. PCA plot of Trianchoratus ophicephali with geographical origin of data indicated. The horizontal and vertical barplots indicate one-dimensional summary of the PC axes.
Fig. 2 in Taxonomic And Nomenclatural Status Of Perca Argentea Linnaeus, 1758, Perca Vaila Osbeck, 1770, And Perca Indica Gronow In Gray, 1854 (Osteichthyes, Terapontidae And Moronidae)
Fig. 2. The holotype (unique): NRM 4295-1 of Perca argentea Linnaeus. (Photograph by: Sven Kullander).
Fig. 3 in Taxonomic And Nomenclatural Status Of Perca Argentea Linnaeus, 1758, Perca Vaila Osbeck, 1770, And Perca Indica Gronow In Gray, 1854 (Osteichthyes, Terapontidae And Moronidae)
Fig. 3. The holotype (unique) NRM 4295-1 of Perca argentea Linnaeus. Detail of the head region showing the strong opercular spine. (Photograph by: Sven Kullander).
Fig. 2 in Feeding ecology of Phalloceros anisophallos (Osteichthyes: Cyprinodontiformes) from Andorinha Stream, Ilha Grande, Brazil
Fig. 2. Comparison of alimentary index (IA i) of each food category consumed by Phalloceros anisophallos from córrego Andorinha (Ilha Grande, Rio de Janeiro) during the rainy (white bars) and dry (grey bars) seasons. Alg = autochthonous algae, AutoAn = autochthonous animal, AlloAn = allochthonous animal and Detr = detritus.
Fig. 4 in Ageneiosus uranophthalmus, a new species of auchenipterid catfish (Osteichthyes: Siluriformes) from river channels of the central Amazon basin, Brazil
Fig. 4. Drainage map of northern South America illustrating the geographic distribution of Ageneiosus uranophthalmus. Type locality represented by triangle. Some symbols represent more than one locality or lot of specimens. Base map by Marilyn Weitzman.
Fig. 1 in Ageneiosus uranophthalmus, a new species of auchenipterid catfish (Osteichthyes: Siluriformes) from river channels of the central Amazon basin, Brazil
Fig. 1. Ageneiosus uranophthalmus, holotype, INPA 8945, 92.1 mm SL, Brazil, Amazonas State, Itacoatiara, rio Amazonas below Paraná da Eva, in lateral (a), dorsal (b), and ventral (c) views.
Fig. 1 in Feeding ecology of Phalloceros anisophallos (Osteichthyes: Cyprinodontiformes) from Andorinha Stream, Ilha Grande, Brazil
Fig. 1. Comparison between juvenile (white) and adult (grey) alimentary index (IA i) of each food category consumed by Phalloceros anisophallos from córrego Andorinha (Ilha Grande, Rio de Janeiro).
Fig. 1 in Cost of territorial maintenance by Parodon nasus (Osteichthyes: Parodontidae) in a Neotropical stream
Fig. 1. Study site showing location Camarinha Stream in Serra das Araras, State of Mato Grosso, Brazil.
Fig. 2 in Cost of territorial maintenance by Parodon nasus (Osteichthyes: Parodontidae) in a Neotropical stream
Fig. 2. Relationship between the number of attacks on intruders (a), the time foraging (b) and the time resting (c) with the size of the territory defended by Parodon nasus in a stream in Serra das Araras, State of Mato Grosso, Brazil (October 2008).
Fig. 10 in Catfishes of the genus Auchenipterichthys (Osteichthyes: Siluriformes: Auchenipteridae); a revisionary study
Fig. 10. Map of central and northern South America showing distribution of Auchenipterichthys punctatus (triangles; holotype locality inexact = "probably Brazil", 1 = holotype locality of Auchenipterichthys dantei), and A. thoracatus (dots; 2 = Guaporé, presumably = rio Guaporé, the type locality of species) (some symbols represent more than one locality or lot of specimens).
Fig. 2 in Catfishes of the genus Auchenipterichthys (Osteichthyes: Siluriformes: Auchenipteridae); a revisionary study
Fig. 2. Auchenipterichthys coracoideus, life coloration, ANSP 178446, 94 mm SL, Río Nanay, at Pampa Chica, village 4.54 km W of Iquitos (3°45'09"S, 73°17'00"W). Basal adipose fin spot not readily evident in this photograph, but can be seen in the photograph of the same specimen after specimen had been preserved (Fig. 3). Photograph by Mark Sabaj.
Fig. 9. Auchenipterichthys punctatus, MCNG 25981, 149 in Catfishes of the genus Auchenipterichthys (Osteichthyes: Siluriformes: Auchenipteridae); a revisionary study
Fig. 9. Auchenipterichthys punctatus, MCNG 25981, 149 mm SL; Venezuela, Amazonas, río Siapa approximately 124 km from mouth in río Casiquiare (1°49'N, 65°48'W).
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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.