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FIGURE 4 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 4. Uropods of the two species of Siriella recorded in New Zealand waters. a, Siriella denticulata (Thomson, 1880); b, S. thomsoni (Milne-Edwards, 1837) (a, after Thomson 1900; b, after Pillai 1973).
FIGURE 7 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 7. Anterior carapaces of a, Tenagomysis chiltoni Tattersall, 1923; b, T. producta Tattersall, 1923; c, T. macropsis Tattersall, 1923 (a, after Tattersall 1923; b–c, after Fukuoka & Bruce 2005).
FIGURE 1 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 1. Map of New Zealand showing the collection locales of the Mysidae species in New Zealand collections and as mentioned in literature.
FIGURE 3 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 3. Antennal scales of the three species of Euchaetomera recorded in New Zealand waters. a. Euchaetomera zurstrasseni (Illig, 1906); b, E. oculata Hansen, 1910; c, E. typica Sars 1884 (a-b, after Illig 1930; c, after Hansen 1912).
FIGURE 2 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 2. Telsons of all species of Mysidae occurring in New Zealand waters, as depicted in the literature. a, Tenagomysis thomsoni Tattersall, 1923; b, T. tenuipes Tattersall, 1918; c, T. longisquama Fukuoka & Bruce, 2005; d, T. producta Tattersall, 1923; e, T. scotti Tattersall, 1923; f, T. chiltoni Tattersall, 1923; g, T. robusta Tattersall, 1923; h, T. similis Tattersall, 1923; i, T. novaezealandia (Thomson, 1900); j, T. macropsis Tattersall, 1923; k, Siriella thompsonii (Milne-Edwards, 1837); l, S. denticulata (Thomson, 1880); m, Boreomysis rostrata Illig, 1906; n, Gastrosaccus australis, Tattersall 1923; o, Euchaetomera zurstrasseni (Illig, 1906); p, E. typica, Sars, 1884; q, E. oculata Hansen 1910. (a, e-h, j, n after Tattersall 1923; b, after Tattersall 1918; c-d, after Fukuoka & Bruce 2005; i, l, after Thomson 1900; k, after Ii 1964; m, o, q after Illig 1930; p, after Hansen 1912).
FIGURE 5 in Mysidae (Mysida) of New Zealand; a checklist, identification key to species and an overview of material in New Zealand collections
FIGURE 5. Antennal scales of the two species of Siriella recorded in New Zealand waters. a, Siriella denticulata (Thomson, 1880); b, S. thomsoni (Milne-Edwards, 1837) (a, after Thomson 1900; b, after Ii 1964).
Fig. 1 in Identification of Twelve Species of Coccinellidae (Coleoptera) Predatory on Melanaphis sacchari (Zehntner) (Hemiptera: Aphididae) in Mexico, and Submission of Reference Coi Sequences
Fig. 1. Coccinellid predators of Melanaphis sacchari in cultivated sorghum in Mexico. A) Brachiacantha decora, B) Coccinella septempunctata, C) Coleomegilla maculata lengi, D) Cycloneda sanguinea sanguinea, E) Diomus roseicollis, F) Diomus terminatus, G) Exochomus childreni guexi, H) Harmonia axyridis, I) Hippodamia convergens, J) Olla v-nigrum, K) Scymnus (Pullus) dozieri, and L) Scymnus (Pullus) loewii.
Figure 15. A 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 15. A, graphical representation of the barcode gap comparing the minimum interspecific Kimura two-parameter (K2P) distance to the maximum intraspecific K2P distance. Values above the 1:1 line indicate the presence of a 'barcode gap'. B, graphical representation of the identification error. False positives in blue and false negatives in red. The optimum threshold value is between 5.5 and 9.8% K2P distance, with an error of 0%.
Figure 11 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 11. ♂ Loxosceles hupalupa sp. nov. A, palp, prolateral view; B, palp, retrolateral view; C, bulb and embolus; D, cephalothorax, dorsal view; E, palp, dorsal view. Scale bars: A, B, C, E = 0.5 mm; D = 1 mm.
Figure 12 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 12. ♀ Loxosceles hupalupa sp. nov. vulva: A, ventral view; B, dorsal view; C, anterior view; D, posterior view. Scale bars = 0.2 mm.
Figure 5 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 5. ♀ Loxosceles tazarte sp. nov. vulva: A, ventral view; B, dorsal view; C, anterior view; D, posterior view. Abbreviations: il, inner lobe of seminal receptacle; ol, outer lobe of seminal receptacle. Scale bars = 0.2 mm.
Figure 4 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 4. ♂ Loxosceles tazarte sp. nov. A, palp, prolateral view; B, palp, retrolateral view; C, bulb and embolus; D, cephalothorax, dorsal view; E, palp, dorsal view. Scale bars: A, B, C, E = 0.5 mm; D = 1 mm.
Figure 2 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 2. ♂ Loxosceles mahan sp. nov. A, palp, prolateral view; B, palp, retrolateral view; C, bulb and embolus; D, cephalothorax, dorsal view; E, palp, dorsal view. Abbreviation: eb, embolus base. Scale bars: A, B, C, E = 0.5 mm; D = 1 mm.
Figure 1. A 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 1. A, geographical position of the Canary Islands, indicated by the inset box. B, phylogenetic relationships amongst the Canary Islands endemic Loxosceles species; lineages with more than one individual are collapsed (see Planas and Ribera, 2014 for further information). C, sampling localities of the Canary Islands endemic Loxosceles; colours correspond to B.
Figure 7 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 7. ♀ Loxosceles bentejui sp. nov. vulva: A, ventral view; B, dorsal view; C, anterior view; D, posterior view. Scale bars = 0.2 mm.
Figure 10 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 10. ♂ Loxosceles guayota sp. nov. A, palp, prolateral view; B, palp, retrolateral view; C, bulb and embolus; D, palp, dorsal view; E, cephalothorax, dorsal view. Scale bars: A, B, C, E = 0.5 mm; D = 1 mm.
Figure 6 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 6. ♂ Loxosceles bentejui sp. nov. A, palp, prolateral view; B, palp, retrolateral view; C, bulb and embolus; D, cephalothorax, dorsal view; E, palp, dorsal view. Scale bars: A, B, C, E = 0.5 mm; D = 1 mm.
Figure 8 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 8. ♂ Loxosceles tibicena sp. nov. A, palp, prolateral view; B, palp, retrolateral view; C, bulb and embolus; D, cephalothorax, dorsal view; E, palp, dorsal view. Scale bars: A, B, C, E = 0.5 mm; D = 1 mm.
Figure 3 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 3. ♀ Loxosceles mahan sp. nov. vulva: A, ventral view; B, dorsal view; C, anterior view; D, posterior view. Abbreviations: a, apical part of seminal receptacle; b, base of seminal receptacle; m, medium part of seminal receptacle. Scale bars = 0.2 mm.
Figure 14 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 14. Neighbour-joining (NJ) tree constructed with the cytochrome oxidase 1 (COI) sequences of the Canary Islands endemic Loxosceles species. Codes at the tips correspond to specimen code, followed by island name abbreviation and number referring to the haplotype network. Haplotype networks are drawn using the internal transcribed spacer 2 sequences. Each circle represents a haplotype, and numbers within the circles correspond to those in the NJ tree.
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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.