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FIGURE 13 in Descriptions of larvae of four mainly DNA barcode-matched species of chlorocyphids from south-east Asia (Odonata: Chlorocyphidae) with notes on the generic and species level larval identification of Oriental region members of the family.
FIGURE 13. Mandibles of Heliocypha biseriata: (a) right mandible, (b) left mandible in frontal view; (c) right mandible, (d) left mandible in ventral view; (e) detail of right molar crest in profile; (f) slightly postero-ventro-interior view of left mandible showing marginal teeth and molar crest on edge; (e) detail of denticles of left molar crest. Scale bars a–d, f, 0.5 mm; e, g, 0.1 mm as indicated.
FIGURE 12 in Descriptions of larvae of four mainly DNA barcode-matched species of chlorocyphids from south-east Asia (Odonata: Chlorocyphidae) with notes on the generic and species level larval identification of Oriental region members of the family.
FIGURE 12. Details of maxillae—(a–d) Right maxillae: Heliocypha biseriata, (a) ventral view, (b) oral view; (c) Sundacypha petiolata distal detail, oral view; (d) L. hyalina oral view. (e–h) Left maxillae, oral view, details of terminal strong spine with three shorter basal to median supplementary spines: (e) Heliocypha biseriata, (f) Aristocypha fenestrella, (g) Sundacypha petiolata, (h) Libellago hyalina. Scale bars: above 1 mm; below 0.25 mm.
FIGURE 10 in Descriptions of larvae of four mainly DNA barcode-matched species of chlorocyphids from south-east Asia (Odonata: Chlorocyphidae) with notes on the generic and species level larval identification of Oriental region members of the family.
FIGURE 10. Details of anterior prementum and labial palp Heliocypha biseriata: (a) anterior prementum and labial palp in dorsal view (base of movable hook dotted to reveal details of palpal lobe below); (b) labial palp and anterior margin of prementum, frontal view; (c) labial palp, interior view. Scale bar 0.5 mm.
FIGURE 11 in Descriptions of larvae of four mainly DNA barcode-matched species of chlorocyphids from south-east Asia (Odonata: Chlorocyphidae) with notes on the generic and species level larval identification of Oriental region members of the family.
FIGURE 11. Details of anterior prementum and labial palp in dorsal view (base of movable hook dotted to reveal details of palpal lobe below): (a) Aristocypha fenestrella, (b) Sundacypha petiolata, (c) Libellago hyalina. Scale bar 0.5 mm.
FIGURE 8 in Descriptions of larvae of four mainly DNA barcode-matched species of chlorocyphids from south-east Asia (Odonata: Chlorocyphidae) with notes on the generic and species level larval identification of Oriental region members of the family.
FIGURE 8. Ventral view of head with mask at rest and anterior two thoracic segments in ventral view: (a) Heliocypha biseriata, (b) Aristocypha fenestrella, (c) Sundacypha petiolata, (d) Libellago hyalina. Scale bar 1 mm.
FIGURE 2 in Descriptions of larvae of four mainly DNA barcode-matched species of chlorocyphids from south-east Asia (Odonata: Chlorocyphidae) with notes on the generic and species level larval identification of Oriental region members of the family.
FIGURE 2. NJ gene tree for species of Rhinocypha (humeralis, stygia, spinifer, cucullata aurofulgens), Rhinoneura (caerulaea, villosipes) and Sundacypha, with larvae also used for morphology indicated with a bold RMNH number. Male and female are indicated by m and f respectively and larvae by L.
FIGURE 3 in Descriptions of larvae of four mainly DNA barcode-matched species of chlorocyphids from south-east Asia (Odonata: Chlorocyphidae) with notes on the generic and species level larval identification of Oriental region members of the family.
FIGURE 3. NJ gene tree for species of Libellago and Pachycypha, with larvae also used for morphology indicated with a bold RMNH number. Male and female are indicated by m and f respectively and larvae by L.
FIGURE 1 in Descriptions of larvae of four mainly DNA barcode-matched species of chlorocyphids from south-east Asia (Odonata: Chlorocyphidae) with notes on the generic and species level larval identification of Oriental region members of the family.
FIGURE 1. NJ gene tree for species of Heliocypha and Aristocypha, with larvae also used for morphology indicated with a bold RMNH number. Male and female are indicated by m and f respectively and larvae by L.
FIGURE 5 in Descriptions of larvae of four mainly DNA barcode-matched species of chlorocyphids from south-east Asia (Odonata: Chlorocyphidae) with notes on the generic and species level larval identification of Oriental region members of the family.
FIGURE 5. Detail of heads, antennae and prothoraces of: (a) Heliocypha biseriata, (b) Aristocypha fenestrella, (c) Sundacypha petiolata, (d) Libellago hyalina. Scale bar 1 mm.
Model output for Chester et al. (2024): On the origin of Holocene sea-level transgressions in formerly glaciated regions
<p>Model output files and post-processing/plotting scripts for Chester et al. (2024, QSR). </p> <p>This repository contains:</p> <p>Files for reproducing figures:</p> <ol> <li> hingeline_tracker_zenodo.m. This code takes GIA model output and identifies the hinge line for a given transect following Chester et al. (2024) (e.g. Figures 4-6). </li> <li> transgression_magnitude_id_loop_zenodo.m. This code takes GIA model output and identifies and magnitude of a transgression and timing of the highstand for a given region (e.g. Figures 9, 10 and 12 in Chester et al., 2024). </li> </ol> <p>Zip files with GIA model output in .mat form:</p> <ol> <li>LN-SL_ICE7G_100km_plusBestFitting.zip: output from the LN-SL model with the ICE7G reconstruction, a 100 km lithosphere, and the mantle viscosities indicated in Table 1. The folder also includes the output from the two best-fitting simulations used to create Figures 9 and 10 in Chester et al. (2024). </li> <li>LN-NO_ICE7G_100km.zip: output from the LN-NO model with the ICE7G reconstruction, a 100 km lithosphere and the mantle viscosities indicated in Table 1. </li> <li>FN-NO_discload.zip: output from simulations with the FN-NO model. The model was run with the disc load ice sheet and the Earth structures indicated in Table 1. </li> </ol> <p>For GIA model runs with different parameter combinations please contact me at schester@ldeo.columbia.edu. </p> <p>Note on file labeling: 'rsl_ice7g.l60CC.ump1.lm10.mat' translates to, ice model: ICE7G, lithospheric thickness: 60 km, upper mantle viscosity: 0.1 * 10^21 Pa s, lower mantle viscosity: 10 * 10^21 Pa s. </p> <p> </p> <p> </p>
FIGURE 45A–D in The water mite family Mideopsidae (Acari: Hydrachnidia): a contribution to the diversity in the Afrotropical region and taxonomic changes above species level
FIGURE 45A–D. Photographs of selected sampling localities. A. Madagascar, Joffreville (M.d'Ambre, Antsiranana), Maison Rousettes, river with small cascade and pool. Home of Djeboa amethystica sp. nov.; B. Madagascar, Ionilahy (Fianarantsoa), lake Ranovory. Home of Djeboa amendano sp. nov.; C. Ghana, Kyabobo NP, Kue River. Locus typicus of Djeboa wondergemi sp. nov.; D. Ghana, Ankasa NP, Ankasa River. Locus typicus of Djeboa ghanaensis sp. nov. and home of Djeboa ferruginea K. Viets, 1914 and D. unimaculata (Cook. 1966). Photos. A–B Gerecke, C–D Smit.
FIGURE 42A–F. Mideopsellides geae K.O. Viets, 1962 in The water mite family Mideopsidae (Acari: Hydrachnidia): a contribution to the diversity in the Afrotropical region and taxonomic changes above species level
FIGURE 42A–F. Mideopsellides geae K.O. Viets, 1962 (A–B, D–F = male, C = female): A = dorsal shield; B–C = idiosoma, ventral view; D = palp; E = I-L; F = IV-L.
FIGURE 41A–H in The water mite family Mideopsidae (Acari: Hydrachnidia): a contribution to the diversity in the Afrotropical region and taxonomic changes above species level
FIGURE 41A–H. Photographs of dorsal shield. A–C. Djeboa multidentata K. Viets, 1911: A—male holotype (SMF 43185); B–C—male (SMF 43203). D–E. Mideopsellides geae K.O. Viets, 1962: D—male holotype; E—female paratype; F. Phreatomideopsis arrenuripalpis Schwoerbel, 1986: lectotype female. G–H. Xystonotus madagascariensis sp. nov., female: G = holotype; H = paratype.
FIGURE 38A–L in The water mite family Mideopsidae (Acari: Hydrachnidia): a contribution to the diversity in the Afrotropical region and taxonomic changes above species level
FIGURE 38A–L. Photographs of dorsal shield. A–B. Djeboa globulipalpis sp. nov.: A—holotype female; B—paratype male; C Djeboa wondergemi sp. nov., female holotype. D–F. Djeboa nzia sp. nov.: D–E—female paratype, Fetekro, Côte d'Ivoire; F—paratype male, Kolomikro, Côte d'Ivoire. G Djeboa crocodilorum sp. nov., holotype male. H–J. Djeboa amethystica sp. nov.: H—female from Madagascar 135a. I—holotype male; J—paratype female. K–L. Djeboa turmalinica sp. nov.: Kfemale holotype; L—female paratype.
FIGURE 36A–E in The water mite family Mideopsidae (Acari: Hydrachnidia): a contribution to the diversity in the Afrotropical region and taxonomic changes above species level
FIGURE 36A–E. Djeboa wondergemi sp. nov., female: A = dorsal shield; B = idiosoma, ventral view; C = I-L; D = IV-L-4-6; E = palp.
FIGURE 35A–F in The water mite family Mideopsidae (Acari: Hydrachnidia): a contribution to the diversity in the Afrotropical region and taxonomic changes above species level
FIGURE 35A–F. Djeboa vanilla sp. nov. (B = male, A, C–F = female): A = dorsal shield; B–C = idiosoma, ventral view; D = palp; E = I-L; F = IV-L.
FIGURE 44A–F in The water mite family Mideopsidae (Acari: Hydrachnidia): a contribution to the diversity in the Afrotropical region and taxonomic changes above species level
FIGURE 44A–F. Xystonotus madagascariensis sp. nov., female: A = dorsal shield; B = idiosoma, ventral view; C = palp; D = palp, chelicera and gnathosoma; E = genital field; F = I-L; G = IV-L.
FIGURE 33A–E in The water mite family Mideopsidae (Acari: Hydrachnidia): a contribution to the diversity in the Afrotropical region and taxonomic changes above species level
FIGURE 33A–E. Djeboa turmalinica sp. nov., female: A = dorsal shield; B = idiosoma, ventral view; C = palp; D = I-L-3-6; E = IV-L.
FIGURE 37A–L in The water mite family Mideopsidae (Acari: Hydrachnidia): a contribution to the diversity in the Afrotropical region and taxonomic changes above species level
FIGURE 37A–L. Photographs of dorsal shield. A–B. Djeboa amendano sp. nov.: A—holotype male; B—paratype female. C. Djeboa curtipalpis sp. nov., holotype male. D. Djeboa depressa sp. nov., holotype male. E. Djeboa compressa K. Viets, 1914, female lectotype (SMF 43190). F. Djeboa expansipalpis (Cook, 1966), female, Tinbé, Côte d'Ivoire. G. Djeboa gledhilli. sp. nov., holotype male. H. Djeboa ghanaensis sp. nov., holotype male. I–J. Djeboa angulipalpis sp. nov.: I—holotype male; J— paratype female. K–L. Djeboa mandena sp. nov.: K—holotype male; L—paratype female.
FIGURE 32A–E in The water mite family Mideopsidae (Acari: Hydrachnidia): a contribution to the diversity in the Afrotropical region and taxonomic changes above species level
FIGURE 32A–E. Djeboa projecta (Cook, 1966), female: A = dorsal shield; B = idiosoma, ventral view; C = palp; D = I-L; E = IV-L.
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.