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1,994 results for “Tailings”
Fig. 55 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 55. Lasioglossum (D.) mesillense (Cockerell, 1898), ♀. A. Dorsal habitus. B. Lateral habitus. C. Propodeum and metasoma. D. Face. Scale bars: 1 mm.
Fig. 54 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 54. Georeferenced collection records of Lasioglossum (D.) lilianae 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. One doubtful record from Tulare County, California was left out of the analysis.
Fig. 76 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 76. Lasioglossum (D.) rufornatum sp. nov., ♂. A. Dorsal habitus. B. Face. C. Lateral habitus. D. Propodeum and metasoma. Scale bars: 1 mm.
Fig. 83 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 83. Georeferenced collection records of Lasioglossum (D.) tessellatosum 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.
Fig. 89 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 89. Georeferenced collection records of Lasioglossum (D.) zephyrus (Smith, 1853) (black squares) and predicted distribution by maximum entropy ecological niche modeling in Maxent (colour shading). Warmer colours indicate higher cloglog probability of occurrence.
Fig. 79 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 79. Lasioglossum (D.) spivakae sp. nov., ♂. A. Dorsal habitus. B. Lateral habitus. C. Face. D. Propodeum. E. Metasoma. Scale bars: 1 mm.
Fig. 72 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 72. Georeferenced collection records of Lasioglossum (D.) perditum 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. The predicted distribution was generated with a regularization multiplier of 0.5 to obtain a more conservative prediction. Due to the very small number of records, this distribution should be interpreted with caution.
Fig. 80 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 80. Georeferenced collection records of Lasioglossum (D.) spivakae 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.
Fig. 92. Head and mesonotum. A in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 92. Head and mesonotum. A. Lasioglossum (D.) vierecki (Crawford, 1904), ♀, with thickly plumose hair short and scale-like. B. L. (D.) cembrilacus sp. nov., ♀, with thickly plumose hair long. Scale bars: 1 mm.
Fig. 91. Tegula. A in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 91. Tegula. A. Lasioglossum (D.) hunteri (Crawford, 1932), ♀, enlarged, reaching scutellum, with concave inner posterior margin. B. L. (D.) clematisellum (Cockerell, 1904), ♀, ovoid and not reaching scutellum. Scale bars: 1 mm.
Fig. 88 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 88. Georeferenced collection records of Lasioglossum (D.) vierecki (Crawford, 1904) (black squares) and predicted distribution by maximum entropy ecological niche modeling in Maxent (colour shading). Warmer colours indicate higher cloglog probability of occurrence.
Fig. 87 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 87. Georeferenced collection records of Lasioglossum (D.) tuolumnense 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. Note that L. (D.) tuolumnense is also believed to occur in Oregon based on a photographed specimen.
Fig. 52 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 52. Lasioglossum (D.) lilianae sp. nov., ♀. A. Dorsal habitus. B. Lateral habitus. C. Face. D. Propodeum and metasoma. Scale bars: 1 mm.
Fig. 53 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 53. Lasioglossum (D.) lilianae sp. nov., ♂. A. Dorsal habitus. B. Lateral habitus. C. Face. D. Propodeum. E. Metasoma. Scale bars: 1 mm.
Fig. 51 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 51. Georeferenced collection records of Lasioglossum (D.) kunzei (Cockerell, 1898) (vermilion squares), L. (D.) semibrunneum (Cockerell, 1895) (blue-green squares) and intermediate specimens of uncertain identity (yellow squares) as well as predicted distribution by maximum entropy ecological niche modeling in Maxent (colour shading). Warmer colours indicate higher cloglog probability of occurrence. Maxent analysis was run separately for L. (D.) kunzei (left) and L. (D.) semibrunneum (right), but all georeferenced records for both species are shown on both maps to highlight distributional differences. Lasioglossum (D.) kunzei and L. (D.) semibrunneum have largely non-overlapping distributions, but are predicted to intermix in northern Utah, southern Arizona/northern Sonora, and northern Nevada (although no L. (D.) semibrunneum records are known from Nevada).
Fig. 48 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 48. Georeferenced collection records of Lasioglossum (D.) julipile 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.
Fig. 47 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 47. Lasioglossum (D.) julipile sp. nov., ♂. A. Dorsal habitus. B. Face. C. Lateral habitus. D. Propodeum and metasoma. Scale bars: 1 mm.
Fig. 49 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 49. Lasioglossum (D.) kunzei (Cockerell, 1898), ♀. A. Lateral habitus. B. Face. C. Dorsal habitus. D. Propodeum and metasoma. Scale bars: 1 mm.
Fig. 45 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 45. Georeferenced collection records of Lasioglossum (D.) imbriumbrae 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.
Fig. 40 in The 'red-tailed' Lasioglossum (Dialictus) (Hymenoptera: Halictidae) of the western Nearctic
Fig. 40. Georeferenced collection records of Lasioglossum (D.) festinum 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.
ScienceDex guides
Understand access before you commit
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.