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Table 2 in Agistemus collyerae (Acari: Trombidiformes: Stigmaeidae) in South Africa: first record, introduction pathways and a re-description including additional life stages
<p><b>Table 2</b> <i>Agistemus collyerae</i> specimens detected on agricultural imports from other countries by South Africa.</p><table><tbody><tr><th><b>country</b></th><th><b>crop</b></th><th><b>commodity</b></th><th><b>import date(s)</b></th><th><b>specimens</b></th></tr></tbody><tbody><tr><th>Yemen</th><td>citrus (unspecified <i>Citrus sp</i>.)</td><td>budwood</td><td>Aug 1991</td><td>1 female</td></tr><tr><th>Australia</th><td>mandarin orange (<i>Citrus reticulata</i>) nectarine (<i>Prunus persica var. nucipersica</i>) peach (<i>Prunus persica)</i> citrus (unspecified <i>Citrus sp.</i>)</td><td>budwood budwood budwood budwood</td><td>Jan 2013 Feb 2007, Jan 2010, Feb 2010 Jan 2010, Mar 2013 Jan 2010</td><td>2 deutonymphs 5 females, 6 males 2 females, 1 male 3 females</td></tr><tr><th>Italy</th><td>olive (<i>Olea europaea</i>)</td><td>rooted cuttings</td><td>Oct 2007</td><td>Unable to locate specimen</td></tr><tr><th>Spain</th><td>apricot (<i>Prunus armeniaca</i>) grapes (<i>Vitis vinifera)</i></td><td>fresh fruit fresh fruit</td><td>Jun 2009 Oct 2015</td><td>1 female 1 female</td></tr><tr><th>Chile</th><td>grapevine (<i>Vitis vinifera)</i></td><td>budwood</td><td>Mar 2014</td><td>1 female</td></tr><tr><th>USA</th><td>nectarine (Prunus persica var. nucipersica) peach (<i>Prunus persica)</i> citrus (unspecified C <i>itrus sp.</i>)</td><td>budwood budwood budwood</td><td>Nov 2010 Nov 2011, Jan 2012, Nov 2012 May 2016</td><td>2 females 2 females, 1 male 1 female</td></tr><tr><th>France</th><td>nectarine (<i>Prunus persica var. nucipersica</i>)</td><td>budwood</td><td>Jan 2017</td><td>1 female</td></tr></tbody></table>
Map 1 in Re-description of the lycosiformis species group of Anyphops Benoit and description of two new species (Araneae, Selenopidae)
Map 1. Distribution of Anyphops species in South Africa.
FIGURE 2 in A Re-Description Of Typhlodromus (Anthoseius) Tamaricis (Kolodochka) (Mesostigmata: Phytoseiidae), A First Record For Iran
FIGURE 2: Typhlodromus (Anthoseius) tamaricis (female): a – Peritreme; b – Genu II; c – Leg IV; d – Spermatheca.
FIGURE 1 in A Re-Description Of Typhlodromus (Anthoseius) Tamaricis (Kolodochka) (Mesostigmata: Phytoseiidae), A First Record For Iran
FIGURE 1: Typhlodromus (Anthoseius) tamaricis (female): a – Dorsal shield; b – Chelicerae; c – Hypostome; d – Tectum; e – Tritosternum; f
FIGURE 2. A in Re-description of larvae of Chostonectes nebulosus (Macleay, 1871) (Coleoptera: Dytiscidae, Hydroporinae, Hydroporini, Sternopriscina) with an identification key to the known larvae of Chostonectes Sharp, 1882
FIGURE 2. A—selected head measurements and features of Chostonectes larvae. WSAN—width of spatulate apex of nasale; MWN—minimum width of nasale; B—mandible measurements; C—head capsule of C. nebulosus instar III showing distinctive colour pattern and distribution of setae; D—posterior view and E—anterior view of middle leg of C. nebulosus instar III; E—details of femur.
FIGURE 1 in Re-description of larvae of Chostonectes nebulosus (Macleay, 1871) (Coleoptera: Dytiscidae, Hydroporinae, Hydroporini, Sternopriscina) with an identification key to the known larvae of Chostonectes Sharp, 1882
FIGURE 1. Dorsal view of Chostonectes nebulosus A—larva, B—adult; scale bar is 4 mm for adult and 3.2 mm for larva.
FIGURE 10 in Sponges from Doumer Island, Antarctic Peninsula, with description of new species of Clathria (Axosuberites) Topsent, 1893 and Hymeniacidon Bowerbank, 1858, and a re-description of H. torquata Topsent, 1916
FIGURE 10. Clathria (Axosuberites) retamalesi sp. nov., holotype MNRJ 20638 (SEM of spicules). A, large styles (styles I); B, extremities of the large styles; C, larger intermediary styles (styles II); D, extremities of the styles II; E, smaller intermediary styles (styles III); F, extremities of the styles III; G, smaller styles (styles IV); H, extremities of the styles IV; I, large toxas (toxas I); J, intermediary category of toxas (toxas II); K, intermediary category of toxas (toxas III); L, small category of toxas (toxas IV); M, toxa II; N, toxa III; O, toxa IV. Scale bars: A, C, E, G = 100 µm; B, I–J = 50 µm; D, F, K–O = 25 µm; H = 5 µm.
FIGURE 7 in Sponges from Doumer Island, Antarctic Peninsula, with description of new species of Clathria (Axosuberites) Topsent, 1893 and Hymeniacidon Bowerbank, 1858, and a re-description of H. torquata Topsent, 1916
FIGURE 7. Hymeniacidon hentscheli sp. nov., holotype (ZMH S 2343): A, styles in several size and some of them bearing an annular swell close to the base; B, detail of the extremities of styles (some smaller forms of them). Scale bars: A = 100 µm; B = 10 µm.
FIGURE 6 in Sponges from Doumer Island, Antarctic Peninsula, with description of new species of Clathria (Axosuberites) Topsent, 1893 and Hymeniacidon Bowerbank, 1858, and a re-description of H. torquata Topsent, 1916
FIGURE 6. Hymeniacidon hentscheli sp. nov., holotype (ZMH S 2343): A, labels associated to the specimen; B, external surface of the major fragment; C, specimen turned over showing the inferior surface of the largest fragment, which was attached to the bottom; and smaller fragments pertaining to the holotype sample; D, detail of the ectosome, with abundant debris (sand grains); E, transverse section showing a reticulate skeleton and several rounded channels piercing the choanosome. Scale bars: B–C = 1 cm; D–E = 1000 µm. A–C photographs were taken by Dr. Andreas Schmidt-Rhaesa and MSc. Helma Roggenbuck (CeNak—Center of Natural History, Universität Hamburg—Zoologisches Museum).
FIGURE 8 in Sponges from Doumer Island, Antarctic Peninsula, with description of new species of Clathria (Axosuberites) Topsent, 1893 and Hymeniacidon Bowerbank, 1858, and a re-description of H. torquata Topsent, 1916
FIGURE 8. Clathria (Axosuberites) retamalesi sp. nov. A–D, holotype (MNRJ 20638). A, preserved specimen, with visible contracted surface membrane, and oscula; B, lateral view showing compressed longitudinal columns and overall cavernous architecture C, specimen in situ, arrow points to an oscule; D, freshly collected specimen; E, specimen in situ not collected; F, another specimen in situ not collected, arrow points to an oscule. Scale bars: A–C = 1 cm; D–F = 2 cm.
FIGURE 2. Hymeniacidon torquata Topsent, 1916 in Sponges from Doumer Island, Antarctic Peninsula, with description of new species of Clathria (Axosuberites) Topsent, 1893 and Hymeniacidon Bowerbank, 1858, and a re-description of H. torquata Topsent, 1916
FIGURE 2. Hymeniacidon torquata Topsent, 1916, habit (specimens in situ): A, specimen MNRJ 20667; B, specimen MNRJ 20689; C, specimen MNRJ 20693; D, specimen not collected; E, specimen not collected; F, specimen not collected; G, surface detail of the same specimen in " F ". Scale bars: A = 20 cm; B = 5 cm; C = 5 cm; D = 10 cm; E = 0.5 cm; F = 5 cm; G = 0.5 cm. Photographs by Dr. Cristian Lagger.
Figure 4 in Rediscovery and re-description of Rhaphaulus assamicus Godwin-Austenı 1886ı an endemic pupinid land snail from India (Gastropoda: Pupinidae)
Figure 4. (a) Field photograph of Rhaphaulus assamicus Godwin-Austen, 1886 [1882–1920]; (b–f) the habitats of R. assamicus in Namdapha National Park, Arunachal Pradesh, India.
FIGURE 53 in Re-description of Chinese mitten crab Eriocheir sinensis H. Milne Edwards, 1853 (Crustacea: Brachyura: Grapsoidea: Varunidae) zoeal development using confocal laser scanning microscopy
FIGURE 53. An example measurement of dorsal, lateral and rostral spines using a ZI stage of Cancer magister (adapted from Shirley et al. 1987).
FIGURE 50 in Re-description of Chinese mitten crab Eriocheir sinensis H. Milne Edwards, 1853 (Crustacea: Brachyura: Grapsoidea: Varunidae) zoeal development using confocal laser scanning microscopy
FIGURE 50. Eriocheir sinensis, ZVI, second maxilliped, CLSM images with Drishti processing. (A) coxa, basis and endopod, applying "large images" option with a scanned area of 1×2 fields for image stitching, (B) endopod with 0,1,7 setae, (C) exopod with 13 natatory setae. Objective: 20× dry. Scale bars A, C = 500 µm; B = 100 µm.
FIGURE 45 in Re-description of Chinese mitten crab Eriocheir sinensis H. Milne Edwards, 1853 (Crustacea: Brachyura: Grapsoidea: Varunidae) zoeal development using confocal laser scanning microscopy
FIGURE 45. Eriocheir sinensis, ZVI, antenna, CLSM images with Drishti processing. (A) antenna with apparent 2-articled endopod distal tip almost equal to length of protopod, applying "large images" option with a scanned area of 1×2 fields for image stitching, (B) antenna with endopod slightly shorter than length of protopod, image merged using Adobe Photoshop. Objective: A = 20× dry; B = 40× oil immersion. Scale bars = 200 µm.
FIGURE 42 in Re-description of Chinese mitten crab Eriocheir sinensis H. Milne Edwards, 1853 (Crustacea: Brachyura: Grapsoidea: Varunidae) zoeal development using confocal laser scanning microscopy
FIGURE 42. Eriocheir sinensis, ZV, CLSM images with Drishti processing. (A) dorsal view of pleon and telson, (B) lateral view of pleon and telson; both applying "large images" option with a scanned area of 2×3 fields for image stitching, (C) pleomere 1 with 7 medial setae, (D) dorsal view of telson showing a pair of medial setae. Objective: A-B = 10× dry; C-E =20× dry. Scale bars = 500 µm.
FIGURE 43 in Re-description of Chinese mitten crab Eriocheir sinensis H. Milne Edwards, 1853 (Crustacea: Brachyura: Grapsoidea: Varunidae) zoeal development using confocal laser scanning microscopy
FIGURE 43. Eriocheir sinensis, ZVI, CLSM images with Drishti processing. (A) general view of ventral carapace margin with a much shorter lateral spine, (B) ventral carapace margin detailed, (C) dorsal spine with 4 pairs of setae; all applying "large images" option with a scanned area of 2×3 fields for image stitching. Objective: 20× dry. Scale bars = 500 µm.
FIGURE 41 in Re-description of Chinese mitten crab Eriocheir sinensis H. Milne Edwards, 1853 (Crustacea: Brachyura: Grapsoidea: Varunidae) zoeal development using confocal laser scanning microscopy
FIGURE 41. Eriocheir sinensis, ZV, CLSM images with Drishti processing. (A) third maxilliped, applying "large images" option with a scanned area of 1×2 fields for image stitching, (B) pereiopods with bilobed chela, (C) ventral view of fifth pleopods with endopods and uropods without endopods; both applying "large images" option with a scanned area of 2×2 fields for image stitching. Objective: 20× dry. Scale bars A = 100 µm; B-C = 500 µm.
FIGURE 52 in Re-description of Chinese mitten crab Eriocheir sinensis H. Milne Edwards, 1853 (Crustacea: Brachyura: Grapsoidea: Varunidae) zoeal development using confocal laser scanning microscopy
FIGURE 52. Eriocheir sinensis, ZVI, pleon and telson, CLSM images with Drishti processing. (A) dorsal view of pleon and telson, (B) lateral view of pleon and telson; both applying "large images" option with a scanned area of 2×3 fields for image stitching, (C) pleomere 1 with 7 medial setae, (D) dorsal view of telson with 6 pairs of setae, (E) telson with a pair of medial setae. Objective: A-B = 10× dry; C-D =20× dry; E = 40× oil immersion. Scale bars A-D = 500 µm; E = 100 µm.
FIGURE 38 in Re-description of Chinese mitten crab Eriocheir sinensis H. Milne Edwards, 1853 (Crustacea: Brachyura: Grapsoidea: Varunidae) zoeal development using confocal laser scanning microscopy
FIGURE 38. Eriocheir sinensis, ZV, maxilla, CLSM images with Drishti processing. (A) whole appendage, applying "large images" option with a scanned area of 3×3 fields for image stitching, (B) coxal endite, (C) basial endite. Objective: 40× oil immersion. Scale bars A = 200 µm; B-C = 100 µm.
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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.