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1,994 results for “Tailings”

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Fig. 10 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 10. Georeferenced collection records of Lasioglossum (D.) arenisaltans sp. nov. (black squares) and predicted distribution by maximum entropy ecological niche modeling in Maxent (colour shading). Warmer colours indicate higher cloglog probability of occurrence.

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Fig. 19 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 19. Lasioglossum (D.) cembrilacus sp. nov., ♀. A. Dorsal habitus. B. Lateral habitus. C. Face. D. Propodeum. Scale bars: 1 mm.

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Fig. 9 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 9. Lasioglossum (D.) arenisaltans sp. nov., ♂. A. Dorsal habitus. B. Lateral habitus. C. Face. D. Propodeum. E. Metasoma. Scale bars: 1 mm.

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Fig. 24 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 24. Georeferenced collection records of Lasioglossum (D.) clastipedion sp. nov. (black squares) and predicted distribution by maximum entropy ecological niche modeling in Maxent (colour shading). Warmer colours indicate higher cloglog probability of occurrence.

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Fig. 6 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 6. Two-dimensional representation of clusters created by PAM. A. ♀♀. B. ♂♂. Actual species identifications are indicated by the colour of filled centre points, and cluster assignments by PAM are indicated by borders around each point. Black borders in B indicate a second cluster corresponding to L. (D.) perditum sp. nov.

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Fig. 37 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 37. Georeferenced collection records of Lasioglossum (D.) eophilus (Ellis, 1914) (black squares) and predicted distribution by maximum entropy ecological niche modeling in Maxent (colour shading). Warmer colours indicate higher cloglog probability of occurrence. Due to the very small number of records, this distribution should be interpreted with caution.

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Fig. 7. 50 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 7. 50% majority-rule consensus tree of red-tailed Lasioglossum (Dialictus) and representatives of other major lineages of L. (D.) based on a Bayesian phylogenetic analysis of 654-bp CO1 barcode sequences downloaded from BOLD. MCMC tree search was run in MrBayes ver. 3.2.7 for 30000 000 generations, using a GTR+I+Γ model of evolution, with L. (Austrevylaeus) sordidum (Smith, 1853) set as the outgroup. Node labels are posterior probabilities. Names in vermilion text are red-tailed species; BOLD process IDs are given before species names. In addition to the labeled red-tailed species, L. (D.) rufulipes (Cockerell, 1938) is hypothesized to be an additional lineage containing the red-tailed species L. (D.) testaceum (Robertson, 1897), for which CO1 barcodes were not available. As this phylogeny is based on very limited data, some relationships are likely misleading or incorrect (particularly those with low posterior probability); however, it serves to illustrate the point that the redtailed L. (Dialictus) are an unnatural grouping.

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Fig. 8 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 8. Lasioglossum (D.) arenisaltans sp. nov., ♀. A. Dorsal habitus. B. Face. C. Lateral habitus. D. Propodeum. E. Metasoma. Scale bars: 1 mm.

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Fig. 44 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 44. Lasioglossum (D.) imbriumbrae sp. nov., ♂. A. Dorsal habitus. B. Lateral habitus. C. Face. D. Propodeum and metasoma. Scale bars: 1 mm.

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Fig. 34 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 34. Lasioglossum (D.) droegei Gibbs, 2009, ♂. A. Dorsal habitus. B. Lateral habitus. C. Face. D. Propodeum and metasoma. Scale bars: 1 mm.

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Fig. 41 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 41. Georeferenced collection records of Lasioglossum (D.) griswoldi Gibbs, 2009 (black squares) and predicted distribution by maximum entropy ecological niche modeling in Maxent (colour shading). Warmer colours indicate higher cloglog probability of occurrence.

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Fig. 5 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 5. Ordination plot of redundancy analysis of morphometrics. A–C. ♀♀. D–F. ♂♂. A–C and D–F depict the same plot and analysis; three groups of species are each shown separately for ease of interpretation. Characters are represented by open black circles. Crosshairs indicate centroids for species clusters.

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Fig. 33 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 33. Georeferenced collection records of Lasioglossum (D.) decorum sp. nov. (black squares) and predicted distribution by maximum entropy ecological niche modeling in Maxent (colour shading). Warmer colours indicate higher cloglog probability of occurrence. Due to the very small number of records, this distribution should be interpreted with caution.

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Fig. 3. Clypeus apicolateral denticles. A in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 3. Clypeus apicolateral denticles. A. Lasioglossum (D.) minckleyi sp. nov., acute points. B. L. (D.) arenisaltans sp. nov., low knobs.

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Fig. 1 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 1. Colour variation in the metasoma of Lasioglossum (D.) hudsoniellum (Cockerell, 1919). A. Yellow-orange. B. Red-orange. C. Reddish brown. D. Black. "Red-tailed" Lasioglossum (Dialictus) are considered to be any species with natural colour matching A or B.

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Fig. 4 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic

Fig. 4. Head morphometric measurements and examples of variation in face length/width ratios. A. Face short (length/width ratio ~0.75). Dotted lines and arrows show face length and width measurements. B. Face round (length/width ratio ~0.85). Dotted lines and arrows show supraclypeal area length and width measurements. C. Face long (length/width ratio ~0.95). Dotted lines and arrows show clypeus length and lower interocular distance measurements.

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Fig. 3 in First records and a new genus of comb-tailed spiders (Araneae: Hahniidae) from Thailand with comments on the six-eyed species of this family

Fig. 3. Hexamatia seekhaow gen. et sp. nov., holotype, ♂ (RMNH.ARA.18411). a–e. Palp. a. Ventral view, cleared. b. Retrolateral view. c. Dorso-retrolateral view, cleared. d. Prolateral view. e. Dorsoretrolateral view. f. Male spinnerets, ventral view. g. Chelicera. Posterior view. Scale bars: a–f = 0.15 mm; g = 0.5 mm.

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Fig. 2 in First records and a new genus of comb-tailed spiders (Araneae: Hahniidae) from Thailand with comments on the six-eyed species of this family

Fig. 2. Hexamatia seekhaow gen. et sp. nov., holotype, ♂ (RMNH.ARA.18411). a–c. Habitus. a. Ventral view. b. Lateral view. c. Dorsal view. d. Prosoma, anterior view. e–f. Palp. e. Retrolateral view. f. Ventral view. Scale bars: a–c = 0. 5 mm; d–f = 0.15 mm.

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Fig. 6. Female spinnerets and genitals. a–c in First records and a new genus of comb-tailed spiders (Araneae: Hahniidae) from Thailand with comments on the six-eyed species of this family

Fig. 6. Female spinnerets and genitals. a–c. Hahnia ngai sp. nov., holotype (RMNH.ARA.18415). a. Spinnerets, ventral view. b. Epigynum, cleared, dorsal view. c. Ventral view. d–f. Hahnia saccata Zhang, Li & Zheng, 2011 (RMNH.ARA.18412). d. Spinnerets, ventral view. e. Epigynum, cleared, dorsal view. f. Ventral view. Scale bars: a, d–f = 0.25 mm; b–c = 0.1 mm.

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Fig. 5. Hahnia saccata Zhang, Li in First records and a new genus of comb-tailed spiders (Araneae: Hahniidae) from Thailand with comments on the six-eyed species of this family

Fig. 5. Hahnia saccata Zhang, Li & Zheng, 2011, ♀ (RMNH.ARA.18412). a–c. Habitus. a. Ventral view. b. Lateral view. c. Dorsal view. d. Prosoma, anterior view. e. Chelicerae, posterior view. f–g. Epigynum. f. Dorsal view, cleared. g. Ventral view. Scale bars: a–c = 1.0 mm; d = 0.50 mm; e–g = 0.25 mm.

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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.

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

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.

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