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247 results for “Anchialine caves”
FIGURE 4 in Heteromysoides taramensis, a new species of mysid (Mysida: Mysidae) from an anchialine cave on Tarama Island, Ryukyu Islands, southwestern Japan
FIGURE 4. Heteromysoides taramensis sp. nov. paratype (SMBL-V0586): A, lateral view of left fourth thoracopod; B, lateral view of left fifth thoracopod; C, lateral view of left sixth thoracopod. Scale bar = 100μm.
FIGURE 3 in Heteromysoides taramensis, a new species of mysid (Mysida: Mysidae) from an anchialine cave on Tarama Island, Ryukyu Islands, southwestern Japan
FIGURE 3. Heteromysoides taramensis sp. nov. paratype (SMBL-V0586): A, ventral view of left maxillula; B, dorsal view of left maxilla; C, left first thoracopodal endopod; D, medial view of left second thoracopod; E, medial view of seta on merus enlarged; F, medial view of simple seta on carpopropodus enlarged; G, medial view of barbed seta on dactylus enlarged; H, lateral view of left third thoracopod; I, lateral view of pectinate seta on carpopropodus enlarged; J, lateral view of simple seta on carpopropodus enlarged. Scale bars = 100 μm.
FIGURE 5 in Heteromysoides taramensis, a new species of mysid (Mysida: Mysidae) from an anchialine cave on Tarama Island, Ryukyu Islands, southwestern Japan
FIGURE 5. Heteromysoides taramensis sp. nov. paratype (SMBL-V0586): A, lateral view of right seventh thoracopod; B, medial view of right eighth thoracopod. Scale bar 100 = μm.
Figure 2 in Discovery of a new scale worm (Annelida: Polynoidae) with presumed deep-sea affinities from an anchialine cave in the Balearic Islands (western Mediterranean)
Figure 2. Phylogenetic hypothesis of Polynoidae, yielding two main clades (A, B), inferred from a maximum likelihood analysis based on the full dataset of four concatenated genetic markers (18S rRNA, 28S rRNA, 16S rRNA and COI); COI was aligned with MUSCLE v.3.8.1551 (Edgar 2004) using default parameters, whereas 18S rRNA, 28S rRNA and 16S rRNA were aligned with MAFFT v.7.397 (Katoh & Standley, 2013) using the xinsi option, which considers the secondary structure of RNA. Support values in branches correspond, per order and separated by '/', to the bootstrap support (BS) values of the maximum likelihood IQ-TREE, the number of genes (concordance) and the number of positions (concondance).
Fig. 5 in How might sea level change affect arthropod biodiversity in anchialine caves: a comparison of Remipedia and Atyidae taxa (Arthropoda: Altocrustacea)
Fig. 5 Scatterplot of the distances of cave openings from the current coastline and the coastline 18,000 years ago during the last glacial maximum. Analysis limited to caves in regions where both remipedes and atyid shrimp co-occur (Table 2). Box in the lower corner of (a) is enlarged to show finer scale remipede distributions in (b). Regressions. (a) Shrimp: y = 0.2376x+10.0617, r 2 =0.4297; Neither: y =0.2610x +9.0827, r 2 = 0.4568. (b) Remipede: y =- 0.3130x+0.3040, r 2 =0.6379
Fig. 2 in How might sea level change affect arthropod biodiversity in anchialine caves: a comparison of Remipedia and Atyidae taxa (Arthropoda: Altocrustacea)
Fig. 2 Atyid species richness in (a) the Yucatan Peninsula, (b) the Caribbean, (c) southern Europe, (d) Australia, and (e) global species richness. Species richness by cave correlates with the size of white circles. For (e), only the caves with the highest richness in the region are shown. The present-day coastlines are outlined in black, and the
FIGURE 45 in Ostracoda (Myodocopa) from Anchialine Caves and Ocean Blue Holes
FIGURE 45. Pontopolycope storthynx, new species, holotype USNM 1021454, A-1 female: a, complete specimen from left side, length with spine 0.29 mm. USNM 1021455, paratype, A-1 female: b, complete specimen from right side, length with spine 0.30 mm; c, right first antenna, lv; d, endopod right second antenna, dv; e, right mandible, mv; f, left maxilla, mv; g, ventral view of both fifth limbs; h, dorsal view of Bellonci Organ and proximal parts of first antennae; i, left lamella of furca, lv. Scale equals 0.02 mm (c–i).
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.