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3,507 results for “Species identification”
Figure 13 in Description of six new species of Loxosceles (Araneae: Sicariidae) endemic to the Canary Islands and the utility of DNA barcoding for their fast and accurate identification
Figure 13. Graphical representation of the leg length/carapace length ratio variation for Leg 1 to Leg 4 in Loxosceles. Females are coloured in green and males in red. Continuous line corresponds to the linear regression for each sex and leg, with the 95% confidence interval in grey. (Colour version of figure available online.)
FIGURE 2 in Phytophagous and predatory mites on olive trees in Tunisia. Catalogue, description of one new species and key for identification (Acari, Eriophyidae, Tetranychidae, Tenuipalpidae and Phytoseiidae)
FIGURE 2: Ventral shields of the female of Typhlodromus (Anthoseius) mathieui n. sp.
FIGURE 1 in Phytophagous and predatory mites on olive trees in Tunisia. Catalogue, description of one new species and key for identification (Acari, Eriophyidae, Tetranychidae, Tenuipalpidae and Phytoseiidae)
FIGURE 1: Dorsal shield and peritreme of the female of Typhlodromus (Anthoseius) mathieui n. sp.
Figure 1 in Diet of the black rat (Rattus rattus) in a Canary laurel forest: species identification based on morphological markers and DNA sequences
Figure 1. (a) Map of the Canary Islands showing the location of La Palma Island Biosphere Reserve. (b) Current distribution of the laurel forest (grey) on the island and the study area in Bosque de Los Tilos. (c) Percentages of invertebrates and plants consumed, as detected after the barcode analysis. Each circle represents one location (including one or more separate microsites c. 200 m apart), located in the three plant formations (dominant laurel forest, Morella faya – Erica arborea woodland and fern patch).
FIGURE 46 in Identification of larvae of two Aphodius Helwig, 1798 (Coleoptera: Scarabaeidae: Aphodiinae) species using morphology and DNA barcode
FIGURE 46. Neighbor Joining tree (Jukes-Cantor model) for 49 COI sequences of 13 Aphodius species. Bootstrap values are shown next to the nodes, branch lengths representing evolutionary distances are shown under the branches (only non-zero values are indicated). The sequences obtained during this study are in bold.
FIGURES 37–45 in Identification of larvae of two Aphodius Helwig, 1798 (Coleoptera: Scarabaeidae: Aphodiinae) species using morphology and DNA barcode
FIGURES 37–45. Aphodius (B.) ictericus, third instar larva. 37–39, labrum in dorsal (37) and ventral (38, 39[SEM]) view; 40–41, left mandible in dorsal (40) and ventral (41) view; 42–43, right mandible in dorsal (42) and ventral (43) view; 44–45, labio-maxillary complex in dorsal (44) and ventral (45) view.
FIGURES 1–11 in Identification of larvae of two Aphodius Helwig, 1798 (Coleoptera: Scarabaeidae: Aphodiinae) species using morphology and DNA barcode
FIGURES 1–11. Aphodius (A.) hydrochaeris, third instar larva. 1–4, 9, head; 5, anal segment, caudal view; 6–8, anal sternite; 10, spinules of raster; 11, head sculpture at high magnification. Figures 9–11, SEM.
FIGURES 22–35 in Identification of larvae of two Aphodius Helwig, 1798 (Coleoptera: Scarabaeidae: Aphodiinae) species using morphology and DNA barcode
FIGURES 22–35. Aphodius (B.) ictericus, third instar larva. 22–25, 33, head; 26–31, anal sternite; 32, anal segment, caudal view; 34, head sculpture at high magnification; 35, spinules of raster. Figures 33–35, SEM.
FIGURE 2 in A new species of Maraenobiotus Mrázek, 1893 (Copepoda: Harpacticoida Canthocamptidae) from Colombian Andean mosses, with an identification key for the American species
FIGURE 2. Maraenobiotus wellsi sp. nov., female: A, habitus of holotype, lateral; B, habitus of holotype, dorsal; C, caudal seta V of paratype. Seta V (distal to breaking plane) missing in holotype.
FIGURE 4 in A new species of Maraenobiotus Mrázek, 1893 (Copepoda: Harpacticoida Canthocamptidae) from Colombian Andean mosses, with an identification key for the American species
FIGURE 4. Maraenobiotus wellsi sp. nov., female (holotype): A, anal somite and caudal rami, dorsal view; B, anal somite and caudal rami, lateral view; C, mandible; D, maxillule; E, maxilla; F, maxilliped; G, leg 5.
FIGURE 8 in Checklist and key for identification of larvae of Hydropsyche species (Hydropsychidae, Trichoptera) of the Maghreb
FIGURE 8. Pronota and mesonota of Maghreb Hydropsyche species. 8A, H. lobata McLachlan 1884; 8B, H. siltalai Döhler 1963. Scale bars = 1 mm.
FIGURE 7 in Checklist and key for identification of larvae of Hydropsyche species (Hydropsychidae, Trichoptera) of the Maghreb
FIGURE 7. Anterior ventral submentum of Maghreb Hydropsyche species. 7A, H. siltalai Döhler 1963 (similar H. fezana Navás 1932); 7B, H. pellucidula (Curtis 1834) (similar to H. iberomaroccana González & Malicky 1999 and H. maroccana Navás 1932); 7C, H. resmineda Malicky 1977. Scale bars = 1 mm.
FIGURE 5 in Checklist and key for identification of larvae of Hydropsyche species (Hydropsychidae, Trichoptera) of the Maghreb
FIGURE 5. Heads (dorsal) of larvae of Maghreb Hydropsyche species. 5A, H. obscura Navás 1928; 5B, H. siltalai morphotype 1 Döhler 1963; 5C, H. siltalai Döhler 1963 morphotype 2; 5D, H. fezana Navás 1932; 5E, H. maroccana Navás 1932; 5F, H. resmineda Malicky 1977. Scale bars = 1mm.
FIGURE 4 in Checklist and key for identification of larvae of Hydropsyche species (Hydropsychidae, Trichoptera) of the Maghreb
FIGURE 4. Anterior ventral apotomes of larvae of Maghreb Hydropsyche species. 4A, H. fezana Navás 1932 (similar to H. obscura Navás 1928 and H. siltalai Döhler 1963); 4B, H. iberomaroccana McLachlan 1884; 4C, H. maroccana Navás 1932 [similar to H. pellucidula (Curtis 1834) and H. resmineda Malicky 1977]. Scale bars = 1 mm.
FIGURE 3 in Checklist and key for identification of larvae of Hydropsyche species (Hydropsychidae, Trichoptera) of the Maghreb
FIGURE 3. Posterior prosternites of larvae of Maghreb Hydropsyche species. 3A, H. lobata McLachlan 1884 (similar to H. artax Malicky & Lounaci 1987, H. fezana Navás 1932, H. iberomaroccana González & Malicky 1999, H. maroccana Navás 1932, H. morla Malicky & Lounaci 1987, H. obscura Navás 1928, and H. siltalai Döhler 1963); 3B, H. resmineda Malicky 1977; 3C, H. pellucidula (Curtis 1834). Scale bars = 1 mm.
FIGURE 6 in Checklist and key for identification of larvae of Hydropsyche species (Hydropsychidae, Trichoptera) of the Maghreb
FIGURE 6. Heads (dorsal) of Maghreb Hydropsyche species. 6A, H. pellucidula (Curtis 1834); 6B, H. lobata McLachlan 1884; 6C, H. iberomaroccana González & Malicky 1999. Scale bars = 1mm.
FIGURE 1 in Checklist and key for identification of larvae of Hydropsyche species (Hydropsychidae, Trichoptera) of the Maghreb
FIGURE 1. The distribution of Hydropsyche species in the three Maghreb countries (Algeria, Morocco, and Tunisia).
FIGURES 50–58. Brazilian Heterothrips. H. flavitibia female 50–52 in The genus Heterothrips (Thysanoptera) in Brazil, with an identification key and seven new species
FIGURES 50–58. Brazilian Heterothrips. H. flavitibia female 50–52: 50. Dorsal view; 51. Antenna; 52. Abdominal tergites VI–VIII. H. angusticipeps 53–54: 53. Female antennal segment III–IV; 54. Male abdominal sternites VII–VIII pore plates. H. peixotoa female 55–58: 55. Fore wing; 56. Head; 57. Antenna; 58. Dorsal view.
FIGURES 73–81. Brazilian Heterothrips. H in The genus Heterothrips (Thysanoptera) in Brazil, with an identification key and seven new species
FIGURES 73–81. Brazilian Heterothrips. H. paulistarum sp.n. female 73, 75–80: 73. Dorsal view; 75. Antenna; 76. Antennal segments III–IV; 77. Head; 78. Pronotum; 79. Abdominal sternites II–VI; 80. Mesonotum and metanotum. H. paulistarum sp.n. male 74, 81: 74. Dorsal view; 81. Abdominal tergites IX–X.
FIGURES 82–92. Brazilian Heterothrips. H. varitibia female 82, 85 in The genus Heterothrips (Thysanoptera) in Brazil, with an identification key and seven new species
FIGURES 82–92. Brazilian Heterothrips. H. varitibia female 82, 85: 82. Dorsal view; 85. Pronotum. H. sanctaecatharinae sp.n. female 83–84, 86–88: 83. Dorsal view; 84. Mesonotum and metanotum; 86. Head; 87. Pronotum; 88. Antennal segment III. H. condei female 89–92: 89. Dorsal view; 90. Antenna; 91. Mesonotum and metanotum; 92. Abdominal sternites IV–VI setae.
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)
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.