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Fig. 4. Pseudosuberites youngilensis n in Ten new species of families Suberitidae and Polymastiidae (Demospongia: Heteroscleromorpha) from Korea
Fig. 4. Pseudosuberites youngilensis n. sp. A, hermit crab live in hole (under side); B, spicules; C, head of spicules; D, tylostrongyles; E, microrhabd; F, microrhabd closed up. Scale bars: A = 1.3 cm, B = 300 μm, C = 50 μm, D = 100 μm, E = 20 μm, F = 500 μm.
Fig. 6. Suberites chujaensis n in Ten new species of families Suberitidae and Polymastiidae (Demospongia: Heteroscleromorpha) from Korea
Fig. 6. Suberites chujaensis n. sp. A, external morphology; B, underside of sponge; C, tylostyles; D, flexus spicules; E, velvety brush-like surface spicules; F, choanosome spicules. Scale bars: A = 1.6 cm, B = 2 cm, C, D, F = 50 μm, E = 100 μm.
Fig. 5. Suberites hwasunensis n in Ten new species of families Suberitidae and Polymastiidae (Demospongia: Heteroscleromorpha) from Korea
Fig. 5. Suberites hwasunensis n. sp. A, external morphology; B, spicules; C, D, brush-like surface spicules; E, F, bundle of spicules at choanosome; G, H, tylostyles. Scale bars: A = 1 cm, B, C = 100 μm, D, E = 50 μm, F-H = 25 μm.
Рис. 2–6. ÀетаΛи строения пауков семейства Gnaphosidae. 2 – Gnaphosa cumensis; 3 – G. cf.cumensis; 4 – Haplodrassus rugosus; 5–6 – Zelotes fuscus. 2–4 – паΛьпа самца, вентраΛьно; 5 – эпигина, вентраΛьно; 6 – эпигина, ΑорсаΛьно. Масштабные Λинейки 0.2 мм. Figs 2–6. Family Gnaphosidae, details of structure. 2 – Gnaphosa cumensis; 3 – G. cf. cumensis; 4 – Haplodrassus rugosus; 5–6 – Zelotes fuscus. 2–4 – male palp, ventral view; 5 – epigyne, ventral view; 6 – epigyne, dorsal view. Scale bars 0.2 mm. in New data on spiders (Aranei) of the Naurzum State Natural Reserve (Kostanay Region, Kazakhstan)
Рис. 2–6. ÀетаΛи строения пауков семейства Gnaphosidae. 2 – Gnaphosa cumensis; 3 – G. cf.cumensis; 4 – Haplodrassus rugosus; 5–6 – Zelotes fuscus. 2–4 – паΛьпа самца, вентраΛьно; 5 – эпигина, вентраΛьно; 6 – эпигина, ΑорсаΛьно. Масштабные Λинейки 0.2 мм. Figs 2–6. Family Gnaphosidae, details of structure. 2 – Gnaphosa cumensis; 3 – G. cf. cumensis; 4 – Haplodrassus rugosus; 5–6 – Zelotes fuscus. 2–4 – male palp, ventral view; 5 – epigyne, ventral view; 6 – epigyne, dorsal view. Scale bars 0.2 mm.
A new family of Asellota (Crustacea, Isopoda) from the deep sea of Zealandia: Supplementary Information
<p>Supplementary files for publication:</p> <p>A new family of Asellota (Crustacea, Isopoda) from the deep sea of Zealandia</p> <p>George D. F. Wilson, Saugatuck Natural History Laboratory, Michigan, USA</p> <p>Files from TNT 1.5-1.6 analyses of data of the Janiroidean Asellotans.</p> <ol> <li> <p>Janiroidea_taxon_list.odt - list of taxa used in analysis with authorities</p> </li> <li> <p>Janiroidea.prt - character names and states</p> </li> <li> <p>Janiroidea.tnt - TNT analysis file</p> </li> <li> <p>Janiroidea_simplified.nex - Simplified Nexus file used in the analysis, without character descriptions</p> </li> <li> <p>Janiroidea_unweighted_majority-rule_tree.pdf - consensus summary of branches that appear in all trees. The branch numbers indicate the percentage of times a branch appears in all trees with a value of 50% or above. 1 means that the branch appears in all trees.</p> </li> <li> <p>Janiroidea_unweighted_Jac33_tree.pdf - symmetric jackknife analysis where each branch had a 33% chance of being duplicated or deleted. The branch values are the percentage of trees that the branch was found and the percentage where branch was uncontradicted. The square brackets mean that the number was negative.</p> </li> <li> <p>Janiroidea_K24.355468_Jac33_tree.pdf - same as the unweighted analysis but the optimal concavity value (24.355468) was used in the implied weighted analysis.</p> </li> <li> <p>Janiroidea_K24-355468_Jac33_50collapsed_tree.pdf. Same as above but all branches with values of 50% or less were collapsed. Family names indicated on the right.</p> </li> <li> <p>Janiroidea_K3-30_majority-rule_tree.pdf. Consensus of analysis testing a range of k from 3 to 30. All trees found were used in the consensus. The branch numbers indicate the percentage of times a branch appears in all trees with a value of 50% or above. 1 means that the branch appears in all trees.</p> </li> <li> <p>Janiroidea_no-Janiroidea_no-Basoniscus_unweighted_Jac33_tree.pdf. Same as item 6 but without <em>Basoniscus</em> n.gen. in the taxon list.</p> </li> <li> <p>Janiroidea_no-Basoniscus_K23.876952_Jac33_tree.pdf. Same as item 7 but without <em>Basoniscus</em> n.gen. in the taxon list.</p> </li> </ol> <p> </p>
Figure 10. Lateral abdominal sclerites showing a in Caradiophyodidae, a New Family of Micro-Wasps (Hymenoptera: Platygastroidea) Based on the Description of Caradiophyodus saradae gen. et sp. nov. in Mid-Cretaceous Burmese Amber
Figure 10. Lateral abdominal sclerites showing a possible coiled ovipositor (arrow) of holotype of Caradiophyodus saradae gen. and sp. nov. in Burmese amber. Scale bar = 14 µm. Insert shows structure with possible developing eggs. Scale bar = 4.1 µm.
Figure 11 in Caradiophyodidae, a New Family of Micro-Wasps (Hymenoptera: Platygastroidea) Based on the Description of Caradiophyodus saradae gen. et sp. nov. in Mid-Cretaceous Burmese Amber
Figure 11. Expanded structures attached to the antennae of holotype of Caradiophyodus saradae gen. and sp. nov. in Burmese amber. (A) Structures on left and right antennae. Scale bar = 180 µm. (B) Opposite side of structure on left antenna. Scale bar = 120 µm. (C) Opposite side of structure on right antenna. Scale bar = 100 µm.
Figure 9 in Caradiophyodidae, a New Family of Micro-Wasps (Hymenoptera: Platygastroidea) Based on the Description of Caradiophyodus saradae gen. et sp. nov. in Mid-Cretaceous Burmese Amber
Figure 9. Terminalia of holotype of Caradiophyodus saradae gen. and sp. nov. in Burmese amber showing tip of ovipositor flanked by paired ovipositor sheaths (between arrows). Scale bar = 34 µm.
Figure 13. A in Caradiophyodidae, a New Family of Micro-Wasps (Hymenoptera: Platygastroidea) Based on the Description of Caradiophyodus saradae gen. et sp. nov. in Mid-Cretaceous Burmese Amber
Figure 13. A reconstruction of the holotype of Caradiophyodus saradae gen. and sp. nov. in Burmese amber showing basic features. Scale bar = 0.3 mm.
Figure 7 in Caradiophyodidae, a New Family of Micro-Wasps (Hymenoptera: Platygastroidea) Based on the Description of Caradiophyodus saradae gen. et sp. nov. in Mid-Cretaceous Burmese Amber
Figure 7. Metatibial spurs of holotype of Caradiophyodus saradae gen. and sp. nov. in Burmese amber. Scale bar = 40 µm.
Figure 8 in Caradiophyodidae, a New Family of Micro-Wasps (Hymenoptera: Platygastroidea) Based on the Description of Caradiophyodus saradae gen. et sp. nov. in Mid-Cretaceous Burmese Amber
Figure 8. Foreleg pretarsus of holotype of Caradiophyodus saradae gen. and sp. nov. in Burmese amber. Scale bar = 12 µm.
Figure 12 in Caradiophyodidae, a New Family of Micro-Wasps (Hymenoptera: Platygastroidea) Based on the Description of Caradiophyodus saradae gen. et sp. nov. in Mid-Cretaceous Burmese Amber
Figure 12. Basic features presented in stylized drawings of holotype of Caradiophyodus saradae gen. and sp. nov. in Burmese amber. (A) Head. C = cleft; E = eye; H = horseshoe sclerite; P = pedicel; S = scape; SS = subocular sclerite. (B) Forewing venation. M = marginal vein; Me = nebulous medial vein; P = pterostigma; Pm = limit of postmarginal vein; Rs = Rs vein; S = stigmal vein; Sm = nebulous submarginal vein. Figures not drawn to scale.
Figure 4 in Caradiophyodidae, a New Family of Micro-Wasps (Hymenoptera: Platygastroidea) Based on the Description of Caradiophyodus saradae gen. et sp. nov. in Mid-Cretaceous Burmese Amber
Figure 4. Head, antennae, and head cleft (between arrows) of holotype of Caradiophyodus. saradae gen. and sp. nov. in Burmese amber. Scale bar = 130 µm.
Figure 5 in Caradiophyodidae, a New Family of Micro-Wasps (Hymenoptera: Platygastroidea) Based on the Description of Caradiophyodus saradae gen. et sp. nov. in Mid-Cretaceous Burmese Amber
Figure 5. Head showing horseshoe sclerite (H); fusiform first flagellomere (F); pedicel (P); scape (S); subocular sclerites (Sb); and area of cleft (area within the white box) of holotype of Caradiophyodus saradae gen. and sp. nov. in Burmese amber. Scale bar = 97 µm.
Figure 3 in Caradiophyodidae, a New Family of Micro-Wasps (Hymenoptera: Platygastroidea) Based on the Description of Caradiophyodus saradae gen. et sp. nov. in Mid-Cretaceous Burmese Amber
Figure 3. Lateral view of metasoma (MT) and mesosoma (MS) of holotype of Caradiophyodus saradae gen. and sp. nov. in Burmese amber. Scale bar = 150 µm.
Figure 2 in Caradiophyodidae, a New Family of Micro-Wasps (Hymenoptera: Platygastroidea) Based on the Description of Caradiophyodus saradae gen. et sp. nov. in Mid-Cretaceous Burmese Amber
Figure 2. Lateral view of holotype of Caradiophyodus saradae gen. and sp. nov. in Burmese amber. C = cleft in head; F = flange on pedicel; B = expanded structures attached to antennae. Scale bar = 324 µm.
Figure 1 in Caradiophyodidae, a New Family of Micro-Wasps (Hymenoptera: Platygastroidea) Based on the Description of Caradiophyodus saradae gen. et sp. nov. in Mid-Cretaceous Burmese Amber
Figure 1. Lateral dorsal view of holotype of Caradiophyodus saradae gen. and sp. nov. in Burmese amber. Scale bar = 290 µm.
Supplementary data files for: Huston, D.C., Cribb, T.H. and Smales, L.R. 20XX. Molecular characterisation of acanthocephalans from Australian marine teleosts: proposal of a new family, synonymy of another and transfer of taxa between orders. Systematic Parasitology, Jan 2020.
<p>These are the supplementary data files for the manuscript "<strong>Molecular characterisation of acanthocephalans from Australian marine teleosts: proposal of a new family, synonymy of another and transfer of taxa between orders." </strong>Published in the Journal Systematic Parasitology on the 7 of January 2020.</p> <p>Included are the Nexus and Phylip alignment files used for the phylogenetic analyses, and the resulting tree files (in nexus format).</p> <p> </p>
Fig. 6 in Thoridae (Crustacea: Decapoda) can penetrate the Abyss: a new species of Lebbeus from the Sea of Okhotsk, representing the deepest record of the family
Fig. 6. Lebbeus sokhobio sp. nov., ♂ from st. 4-9 (paratype, SMF 51579), live coloration.
Text-figure 1. Mormotomyia hirsuta Austen, 3. Greatly enlarged. in A Remarkable Semi-Apterous Fly (Diptera) found in a Cave in East Africa, and representing a new Family, Genus, and Species.
Text-figure 1. Mormotomyia hirsuta Austen, 3. Greatly enlarged.
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)
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.