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170 results for “hyporheic”
FIGURE 1A–D. A in Water mites (Acari: Hydrachnidia) from the hyporheic waters of the Selwyn River (New Zealand), with descriptions of nine new species
FIGURE 1A–D. A—Map of the Selwyn River mainstem showing location of 10 sampling sites. Dotted lines indicate borders between river reaches and geomorphic regions. Sampling site number abrreviations are as follows: 1—Coalgate, 2—Scotts, 3—Gillanders, 4—Hororata, 5—Ridgens, 6—Westenras, 7—Withell, 8—Raywell Farm, 9—Chamberlain's Ford, 10—Old Bridge Rd., 11—Coes Ford. Modified after Datry et al. (2007). B—Coalgate (Photo. S. Larned); C— Gillanders (Photo. S. Larned); D—Old Bridge (Photo. S. Larned).
FIGURE 9A–B in Water mites (Acari: Hydrachnidia) from the hyporheic waters of the Selwyn River (New Zealand), with descriptions of nine new species
FIGURE 9A–B. Taintaturus rostratus Pesic & Smit sp. nov., male: A = palp (P-1 missing); B = IV-L. Scale bars = 100 μm.
FIGURE 14A–C in Water mites (Acari: Hydrachnidia) from the hyporheic waters of the Selwyn River (New Zealand), with descriptions of nine new species
FIGURE 14A–C. Canterburaturus minutus Pesic & Smit sp. nov., female: A = dorsal shield; B = ventral shield; C = anterodorsal portion of ventral shield. Scale bars = 100 μm.
FIGURE 6A–F in Water mites (Acari: Hydrachnidia) from the hyporheic waters of the Selwyn River (New Zealand), with descriptions of nine new species
FIGURE 6A–F. Taintaturus selwynus Pesic & Smit sp. nov., male (A–D, F holotype, E paratype): A = dorsal shield; B = ventral shield; C = anterodorsal portion of ventral shield; D = palp; E = palp (P-1 missing); F = IV-L. Scale bars = 100 μm.
FIGURE 23A–G in Water mites (Acari: Hydrachnidia) from the hyporheic waters of the Selwyn River (New Zealand), with descriptions of nine new species
FIGURE 23A–G. Zelandalbia longipalpis Pesic & Smit sp. nov., (A–B, F male, C–E, G female): A = dorsal shield; B = ventral shield; C = anterodorsal portion of ventral shield; D = palp; E = capitulum and chelicera; F = IV-L; G = posterior part of ventral shield. Scale bars = 100 μm.
FIGURE 19A–E. Piotaturus bovalus Cook, 1983 in Water mites (Acari: Hydrachnidia) from the hyporheic waters of the Selwyn River (New Zealand), with descriptions of nine new species
FIGURE 19A–E. Piotaturus bovalus Cook, 1983, male: A = idiosoma, dorsal view; B = ventral shield; C = idiosoma, lateral view; D = ventral shield, posterior part; E = palp (P-1 missing). Scale bars = 100 μm.
FIGURE 12A–H in Water mites (Acari: Hydrachnidia) from the hyporheic waters of the Selwyn River (New Zealand), with descriptions of nine new species
FIGURE 12A–H. Abelaturus schwoerbeli Pesic & Smit sp. nov., (A–D, H male, E–G female): A = dorsal shield; B = capitulum and palp; C = palp (P-1 missing); D, F = ventral shield; E = anterodorsal portion of ventral shield; G = posterior part of idiosoma, dorsal view; H = IV-L. Scale bars = 100 μm.
FIGURE 11A–F in Water mites (Acari: Hydrachnidia) from the hyporheic waters of the Selwyn River (New Zealand), with descriptions of nine new species
FIGURE 11A–F. Taintaturus waikirikiri Pesic & Smit sp. nov., male: A = dorsal shield; B = ventral shield; C = anterodorsal portion of ventral shield; D–E = palp; F = IV-L. Scale bars = 100 μm.
FIGURE 8. Tree number 8 in A new genus and species of Ingolfiellidae (Crustacea, Ingolfiellida) from the hyporheic zone in the Sierra de la Ventana, and its biogeographic relevance
FIGURE 8. Tree number 8 (rooted by using user-specified out group): Tree length: 276. Consistency indeX (CI): 0.348, Retention indeX (RI): 0.547. Black dot indicates the node eXplained in the teXt.
FIGURE 3. Yacana ventania n. gen. n in A new genus and species of Ingolfiellidae (Crustacea, Ingolfiellida) from the hyporheic zone in the Sierra de la Ventana, and its biogeographic relevance
FIGURE 3. Yacana ventania n. gen. n. sp. A. Right mandible, paratype female. B. Left mandible, paratype female. C. Right mandible, paratype male. D. Left mandible, paratype male. E. Right maXilla 1, paratype female. F. Left maXilla 1, paratype female. G. Detail of inner seta of outer lobe of maXilla 1, indicated with an arrow on left maXilla 1. H. Right and left maXilla 2, respectiVely. I. Right maXilliped, paratype female. J. Left maXilliped, paratype female. Scales bars: 50 µm.
FIGURE 4. Yacana ventania n. gen. n in A new genus and species of Ingolfiellidae (Crustacea, Ingolfiellida) from the hyporheic zone in the Sierra de la Ventana, and its biogeographic relevance
FIGURE 4. Yacana ventania n. gen. n. sp. A. Right gnathopod 1, lateral, paratype male. B. Right gnathopod 1, detail of palm and dactylus, paratype male. C. Left gnathopod2, lateral, paratype male. D. Left gnathopod 2, detail of palm and dactylus, paratype male. Scale bars: 50 µm.
FIGURE 7. Yacana ventania n. gen. n in A new genus and species of Ingolfiellidae (Crustacea, Ingolfiellida) from the hyporheic zone in the Sierra de la Ventana, and its biogeographic relevance
FIGURE 7. Yacana ventania n. gen. n. sp. A. Pleopod 1, paratype female. B. Pleopod 2, paratype female. C. Pleopod 3, paratype female. D. Pleopod 1, allotype male. E. Pleopod 2, allotype male. F. Pleopod 3, allotype male. G. Left uropod 1, paratype female. H. Right uropod 2, paratype female. I. Left uropod 1, allotype male. J. Uropods 2, detail of inner side, allotype male. K. Uropods 3 and telson, paratype female, lateral View. L. Detail of uropods and telson, paratype female, lateral View. Scale bars: 100 µm.
FIGURE 2. A. Yacana ventania n. gen. n in A new genus and species of Ingolfiellidae (Crustacea, Ingolfiellida) from the hyporheic zone in the Sierra de la Ventana, and its biogeographic relevance
FIGURE 2. A. Yacana ventania n. gen. n. sp., holotype female. Scale bar: 1 mm. B. Antenna 1, paratype female. Scale bar: 100 µm. C. Detail of antenna 1. Scale bar: 100 µm. D. Left antenna 2 and basis-merus of right antenna 2, the arrows show the gland cones, paratype female. Scale bar: 50 µm. E. Labrum, paratype female. Scale bar: 100 µm. F. Labium, paratype female. Scale bar: 50 µm.
FIGURE 1. A in A new genus and species of Ingolfiellidae (Crustacea, Ingolfiellida) from the hyporheic zone in the Sierra de la Ventana, and its biogeographic relevance
FIGURE 1. A. Map of a section of Ventana Stream showing the sampling site where Yacana ventania n. gen. n. sp. was collected. B. Rithronic sector of Ventana Stream showing the different size of clasts where the hyporheic water emerges. C. Sampling of the material.
FIGURE 6. Yacana ventania n. gen. n in A new genus and species of Ingolfiellidae (Crustacea, Ingolfiellida) from the hyporheic zone in the Sierra de la Ventana, and its biogeographic relevance
FIGURE 6. Yacana ventania n. gen. n. sp. A. Left pereiopod 6, paratype female. B. Detail of merus and carpus of left pereiopod 6, paratype female. C. Detail of claw of pereiopod 6, paratype female. D. Left pereiopod 7, paratype female. E. Setation and spines of merus and carpus of female´s pereiopod 7. F. Claw of female's pereiopod 7. Scale bars: Scale bars: 50 µm. G. Left pereiopod 7, allotype male. H. Detail of the arrangement of the setae of male pereiopod 7. I. Claw of male's pereiopod 7. J. Sensory feature of seta, indicated with an arrow on pereiopods 7 of the female and male specimens. Scale bars: 100 µm.
FIGURE 5. Yacana ventania n. gen. n in A new genus and species of Ingolfiellidae (Crustacea, Ingolfiellida) from the hyporheic zone in the Sierra de la Ventana, and its biogeographic relevance
FIGURE 5. Yacana ventania n. gen. n. sp. A. Left pereiopod 3, paratype female. B. Detail of claw of pereiopod 3, paratype female. C. Right pereiopod 4, paratype male. D. Detail of claw of pereiopod 4, paratype male. E. Left pereiopod 5, paratype female. F. Detail of claw of pereiopod 5, paratype female. Scale bars: Scale bars: 50 µm.
A unifying model for turbulent hyporheic mass flux under a wide range of near-bed hydrodynamic conditions
Open the record for dataset details and reuse information.
FIGURE 11 in Two new species of Pseudocrangonyx (Amphipoda: Pseudocrangonyctidae) from the hyporheic zones in South Korea
FIGURE 11. Maximum likelihood and Bayesian inference analyses based on nuclear 28S rRNA and mitochondrial COI sequences. Numbers on nodes represent bootstrap values for maximum likelihood and Bayesian posterior probabilities.
FIGURE 7 in Two new species of Pseudocrangonyx (Amphipoda: Pseudocrangonyctidae) from the hyporheic zones in South Korea
FIGURE 7. Pseudocrangonyx danyangensis sp. nov., holotype female, NNIBRIV69645. A–G, I, J; paratype male, NNIBRIV69646, H. A, antenna 1, medial view; B, accessory flagellum of antenna 1, medial view; C, antenna 2, medial view; D, upper lip, posterior view; E, left mandible, medial view; F, incisor, lacinia mobilis of right mandible, medial view; G, lower lip, dorsal view; H, maxilla 1, dorsal view; I, maxilla 2, dorsal view; J, maxilliped, ventral view.
FIGURE 1 in Two new species of Pseudocrangonyx (Amphipoda: Pseudocrangonyctidae) from the hyporheic zones in South Korea
FIGURE 1. Map showing the collection locality of the specimens examined in this study. A, type locality (Seomjingang River) of Pseudocrangonyx seomjinensis sp. nov.; B, type locality (Namhangang River) of Pseudocrangonyx danyangensis sp. nov..
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.