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Figure 1 from: Barroso CX, Pereira de Freitas JE, Matthews-Cascon H, Arruda Bezerra LE, da Cruz Lotufo TM (2020) Molecular evidences confirm the taxonomic separation of two sympatric congeneric species (Mollusca, Gastropoda, Neritidae, Neritina). ZooKeys 904: 117-130. https://doi.org/10.3897/zookeys.904.46790

Figure 1 Molecular phylogenetic hypothesis (Bayesian tree) of some species of Neritidae of the Western Atlantic. The Bayesian tree was based on partial mitochondrial COI and 16S sequences. The Neritina meleagris and Neritina virginea clades (ingroup) are highlighted. The other taxa were used as outgroup. Numbers on and below the main branches represent the posterior Bayesian probabilities (BP) (>0.90) and bootstrap values for maximum likelihood (ML) (>70%), respectively. Specimens with the number "1" are from Camocim beach (Ceará State, NE Brazil) and those with numbers "2", "3", and "4" are from Barra Grande beach (Piauí State, NE Brazil). The numbered specimens of N. virginea (1, 2, 3, and 4) and N. meleagris (1, 2, 3, and 4) are the same specimens shown in Figure 3.

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Figure 1 from: Peretolchina TE, Khanaev IV, Enushchenko IV, Sherbakov DY, Kravtsova LS (2020) The diversity of the Baikal lineage of Hydra oligactis Pallas, 1766: molecular and morphological evidence. ZooKeys 912: 1-12. https://doi.org/10.3897/zookeys.912.46898

Figure 1 Bayesian phylogenetic tree based on COI (A) and ITS1–5.8S–ITS2 unique haplotype sequences. Posterior probabilities (>0.5) are given at nodes. Tip names with '_o' belong to H. oligactis specimens and those with '_b' belong to H. baikalensis specimens. Tip names marked in grey color indicate nucleotide sequences from GenBank.

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Figure 3 from: Peretolchina TE, Khanaev IV, Enushchenko IV, Sherbakov DY, Kravtsova LS (2020) The diversity of the Baikal lineage of Hydra oligactis Pallas, 1766: molecular and morphological evidence. ZooKeys 912: 1-12. https://doi.org/10.3897/zookeys.912.46898

Figure 3 A cnidome of Baikal H. oligactisB cnidome of H. oligactis, figure adapted from Schuchert (2010). From left to right: stenoteles, holotrichous isorhizas, atrichous isorhizas and desmonemes. Scale bars: 10 μm.

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Figure 2 from: Peretolchina TE, Khanaev IV, Enushchenko IV, Sherbakov DY, Kravtsova LS (2020) The diversity of the Baikal lineage of Hydra oligactis Pallas, 1766: molecular and morphological evidence. ZooKeys 912: 1-12. https://doi.org/10.3897/zookeys.912.46898

Figure 2 AH. oligactis, living polyp from Lake Baikal. B–F morphological variability of holotrichous isorhizas B, FH. baikalensis; C, D, EH. oligactis (B Bolshie Koty C Posolskiy Sor D Chivyrkuiskiy Bay F Sobolev) E Photo adapted from Schuchert (2010). J desmonemes F, G atrichous isorhizas H, K holotrichous isorhizas I stenoteles. Scale bars: 5 mm (A), 10 μm (B–K).

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Figure 12 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 12 Octomeris intermedia (CEL-Thai-359, Krabi, Thailand). A Cirrus V. B Intermediate segments of posterior ramus of cirrus V. C Distal segments of anterior ramus of cirrus V. D Cirrus VI. E Intermediate segments of posterior ramus of cirrus VI. F Distal segment of anterior ramus of cirrus VI. G Penis. H Distal end of penis. Scale bars in μm.

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Figure 10 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 10 Octomeris intermedia (CEL-Thai-359, Krabi, Thailand). A Cirrus I. B Posterior ramus of cirrus I. C Bidentate serrate setae at tip of distal segment of posterior ramus. D Bidentate serrate setae at tip of anterior ramus. E Cirrus II. F Dorsal side of posterior ramus. G, H Bidentate serrate setae at posterior ramus. Scale bars in μm.

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Figure 18 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 18 Maximum likelihood (ML) phylogenetic tree based on the COI and 12S rRNA sequences. The SH-aLRT support, ultrafast bootstrap support, and posterior probability (%) above 80 are represented at the nodes.

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Figure 7 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 7 Octomeris brunnea (CEL-KT-131, Hai Kou, Taiwan). A Cirrus V. B Intermediate segments of posterior ramus of cirrus V. C Distal segments of anterior ramus of cirrus V. D Cirrus VI. E Intermediate segments of posterior ramus of cirrus VI. F Dorsal surface of proximal segments of posterior ramus of cirrus VI. G Penis. H Distal end of penis. Scale bars in μm.

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Figure 1 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 1 Sampling locations for Octomeris intermedia (black circles) and Octomeris brunnea (black squares). Open circle indicates the sampling location of O. intermedia in the Mergui Archipelago stated in Nilsson-Cantell (1938).

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Figure 4 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 4 Octomeris brunnea (CEL-KT-131, Hai Kou, Taiwan) and O. intermedia (CEL-Thai-359, Krabi, Thailand). AOctomeris brunnea, young specimens showing the straight tergo-scutal junction and the inner and outer sides of left scutum and tergum. BO. brunnea, older eroded specimen, showing the sinuous tergo-scutal junction and inner and outer sides of left scutum and tergum. CO. intermedia. Very small individual (shell length < 10 mm) showing the straight tergo-scutal margin and inner and outer sides of scutum and tergum. Note only very small individuals of O. intermedia have straight tergo-scutal margin. DO. intermedia. Larger specimens, showing the sinuous tergo-scutal margin and inner and outer surfaces of scutum and tergum. Scale bars in mm.

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Figure 15 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 15 Variation in the occurrence of small spines along the cutting edge of second and third teeth of mandibles in O. intermedia (A-C) (CEL-Thai-359, Krabi, Thailand) and O. brunnea (D-F) (CEL-KT-131, Hai Kou, Taiwan). Scale bars in μm.

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Figure 11 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 11 Octomeris intermedia (CEL-Thai-359, Krabi, Thailand). A Cirrus III. B Intermediate segments of posterior ramus of cirrus III. C Distal segment of anterior ramus of cirrus III. D Simple setae at intermediate segments of anterior ramus of cirrus III. E Cirrus IV. F Intermediate segments of posterior ramus cirrus IV. G Intermediate segment of posterior ramus of cirrus IV. H distal segment of anterior ramus of cirrus IV. Scale bars in μm.

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Figure 9 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 9 Octomeris brunnea. A Mandible. B First tooth of mandible. C Second and third teeth of mandible. D Lower margin. E Mandibular palp. F Serrulate setae at outer margin of mandibular palp. G Labrum. H Small teeth on middle part of cutting edge of labrum. Scale bars in μm.

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Figure 8 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 8 Octomeris brunnea (CEL-KT-131, Hai Kou, Taiwan). A Maxilla. B Magnified view of distal lobe showing serrulate setae. C Inner margin of proximal lobe of maxilla showing serrulate setae. D Outer margin of maxilla showing serrulate setae. E Maxillule; note the two deep notches on upper and lower 1/3 of the cutting edge. F Cutting edge above upper notch. G Middle portion of cutting edge. H Lower portion of cutting edge below lower notch. Scale bars in μm.

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Figure 6 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 6 Octomeris brunnea (CEL-KT-131, Hai Kou, Taiwan). A Cirrus III. B Intermediate segments of posterior ramus of cirrus III. C Distal segments of anterior ramus of cirrus III. D. Simple type setae on anterior ramus of cirrus III. E Cirrus IV. F Intermediate segments of cirrus IV. G Dorsal surface of proximal segment of posterior ramus of cirrus IV. H Distal segments of anterior ramus of cirrus IV. Scale bars in μm.

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Figure 14 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 14 Octomeris intermedia (CEL-Thai-359, Krabi, Thailand). A Mandible, whole view B First and second teeth of mandible. C Second and third teeth of mandible of another specimen. D Lower margin of mandible. E Distal part of mandibular palp. F Serrulate setae at distal margin of mandibular palp. G Labrum. H Cutting edge of labrum, middle part. Scale bars in μm.

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Figure 17 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 17 The neighbor-joining trees reconstructed with COI A and 12S rRNA B by MEGA X. Bootstrap values above 90 are represented at the nodes. "*" indicates the sequences from Fisher et al. (2004) and Pérez-Losada et al. (2012), which were designated as O. brunnea in their studies.

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Figure 13 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 13 Octomeris intermedia (CEL-Thai-359, Krabi, Thailand). A Maxilla. B Magnified view of distal lobe showing serrulate setae. C Inner margin of maxilla showing serrulate setae. D Outer margin of maxilla showing serrulate setae. E Maxillule; note the two shallow notches on upper and lower 1/3 of the cutting edge. F Cutting edge above upper notch. G Middle portion of cutting edge. H Lower portion of cutting edge. Scale bars in μm.

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Figure 5 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 5 Octomeris brunnea (CEL-KT-131, Hai Kou, Taiwan). A Cirrus I. B Posterior ramus of cirrus I. C Bidentate serrate setae at tip of segment. D Bidentate serrate setae at tip of anterior ramus. E Cirrus II. F Dorsal side of posterior ramus. G, H Bidentate serrate setae at posterior ramus. Scale bars in μm.

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Figure 3 from: Chan BKK, Tsao YF, Ganmanee M (2020) Morphological and molecular evidence support the intertidal barnacle Octomeris intermedia Nilsson-Cantell, 1921 (Thoracica, Chthamalidae) as a valid species in Indo-Pacific waters. ZooKeys 914: 1-31. https://doi.org/10.3897/zookeys.914.49328

Figure 3 Shape of the tergo-scutal junction (TS junction, indicated by arrows) of Octomeris brunnea (CEL-KT-131, Hai Kou, Taiwan) and O. intermedia (CEL-Thai-359, Krabi, Thailand) All specimens share the same scale bar.

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Allen Brain Atlas

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

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abode-home-cage
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