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Fig. 2. A–E in A new semiterrestrial freshwater crab in the genus Badistemon and a new record of Indochinamon from northern Thailand (Brachyura: Potamidae)
Fig. 2. A–E, Indochinamon bhumibol, male, carapace length 51.6 mm. A, carapace anterior and lateral surfaces, dorsal view; B, maxilliped III; C, male distal pleonal somites, ventral view; D, gonopod I, ventral view; E, male gonopod II. F–I, Badistemon nanensis, new species, holotype male, ZRC 2021.0454. F, maxilliped III; G, male distal pleonal somites, ventral view; H, gonopod I, ventral view; I, male gonopod II.
Figs. 1–5 in Two new species and six new records of linyphiid spiders from Vietnam (Araneae: Linyphiidae)
Figs. 1–5. Habitus of Oia probosciella, new species, male holotype (1–3) and female paratype (4, 5). 1–3, male body, dorsal, lateral and frontal views, respectively; 4, 5, female body, dorsal and ventral views, respectively. Scale bar = 0.5 mm.
Figs. 6–11 in Two new species and six new records of linyphiid spiders from Vietnam (Araneae: Linyphiidae)
Figs. 6–11. Details of male palp structure of Oia probosciella, new species, male holotype (6–10) and epigyne of female paratype (11). 6, 7, right palpal tibia, retrolateral and prolateral viewers, respectively; 8, patella and palpal tibia, prolateral view; 9, distal suprategular apophysis, antero-retrolateral view; 10, distal suprategular apophysis and embolic division, ventro-prolateral view; 11, epigyne, ventral view. Scale bars = 0.05 mm.
Fig. 1 in A new semiterrestrial freshwater crab in the genus Badistemon and a new record of Indochinamon from northern Thailand (Brachyura: Potamidae)
Fig. 1. Badistemon nanensis, new species, holotype male, ZRC 2021.0454. A, colour in life, anterior view; B, colour in life, dorsal view; C, preserved, anterior view; D, preserved, dorsal view; E, thoracic sternites.
Figs. 18–23 in Two new species and six new records of linyphiid spiders from Vietnam (Araneae: Linyphiidae)
Figs. 18–23. Details of male palp structure of Nasoonaria annam, new species, male paratype (18–22) and epigyne of female paratype (23). 18, 19, right palp, retrolateral and prolateral views, respectively; 20, palpal tibia and paracymbium, dorsal view; 21, distal suprategular apophysis, frontal view; 22, embolic division, ventro-prolateral view; 23, epigyne, ventral view. Scale bars = 0.1 mm.
Fig. 5. A in Targeted collections reveal new species and records of Bryozoa and the discovery of Pterobranchia in Singapore
Fig. 5. A, Pleurocodonellina microperforata Tilbrook, 2006, with one ovicellate zooid and a small avicularium adjacent to each orifice; B‒D, Arthropoma subarensis, new species, at three magnifications; note the four arrowed spine bases in C, with paired spine bases in ovicellate zooids; D shows the reticulate dimpled patterning of the ovicell endooecium, with minute perforations at the bottom of each dimple. Scale bars = 0.5 mm (A, B); 0.2 mm (C); 0. 1 mm (D).
Fig. 3. A‒C in Targeted collections reveal new species and records of Bryozoa and the discovery of Pterobranchia in Singapore
Fig. 3. A‒C, Caulibugula mortenseni (Marcus, 1925); A, a single stem from a very large multistemmed colony; B, frontal and abfrontal sides of branches; C, autozooids and two birds-head avicularia; D, E, Cribrilaria vicariata (Waters, 1923); D, autozooids with four oral spine-bases and avicularia; E, a zooid with five oral spine-bases and an ovicell. Scale bars = 2 mm (A); 0.1 mm (B, C); 0.3 mm (D); 0.2 mm (E).
Fig. 2. A, B in Targeted collections reveal new species and records of Bryozoa and the discovery of Pterobranchia in Singapore
Fig. 2. A, B, Exidmonea sp., respectively showing dichotomous branching and a gonozooid; the ooeciopore is indicated by an arrow; C, Arbopercula angulata Levinsen, 1909; D, Parellisina albida (Hincks, 1880a), arrows indicate two of the open avicularian mandibles; E, Setosellina constricta Harmer, 1926; F, Canda pecten Thornely, 1907, note the curved avicularium at the bottom of the left-hand branch. Scale bars = 1 mm (A); 0.5 mm (B‒F).
Fig. 1 in Targeted collections reveal new species and records of Bryozoa and the discovery of Pterobranchia in Singapore
Fig. 1. Map of Singapore showing sites targeted for bryozoan collecting in this study. Sites in red are where new bryozoan records were collected; bryozoans were collected from all sites in previous studies.
Fig. 7. A in Targeted collections reveal new species and records of Bryozoa and the discovery of Pterobranchia in Singapore
Fig. 7. A, Thornelya fuscina Tilbrook, Hayward & Gordon, 2001; white arrows indicate three unbroken latero-oral avicularia; B, Scorpiodinipora costulata (Canu & Bassler, 1929); C‒G, Rhabdopleura sp.; C, D, lateral view of erect tubes with annular fusellar rings; E, part of creeping basal tube in vicinity of three broken bases of erect tubes; here the fusellar sutures are parallel to oblique; F, G, parts of creeping basal tube in which the fusellar sutures (arrowheads) are arranged obliquely. Scale bars = 0.5 mm (A, B); 0.1 mm (C, D); 0.2 mm (E‒G).
Fig. 6. A‒E in Targeted collections reveal new species and records of Bryozoa and the discovery of Pterobranchia in Singapore
Fig. 6. A‒E, Microporella sargassophilia, new species; A, part of fertile colony showing three ovicellate orifices and an avicularium with mandible; note the well-developed persona (ps), appearing as an erect ridge between the ascopore and orifice in one zooid; B, tatiform ancestrula; C, isolated zooid (with proximal ovicell) showing distribution of basal pore-chambers; minute denticulation is visible inside the orificial rim; D, avicularian cystid and ascopore; E, avicularium with mandible. Scale bars = 0.2 mm (A); 0.05 mm (B, D, E); 0.1 mm (C).
Fig. 4. A‒C in Targeted collections reveal new species and records of Bryozoa and the discovery of Pterobranchia in Singapore
Fig. 4. A‒C, Reptadeonella riatanae, new species; A, unbleached autozooids, and avicularia with mandibles in place; B, bleached autozooids with long slit-like spiramina; C, light micrograph showing an ancestrular tetrad (radiating yellow arrows) and a vicarious avicularium (white arrow); D, Reptadeonella cellulanus Tilbrook, Hayward & Gordon, 2001. Scale bars = 0.5 mm (B, D); 0.3 mm (A, C).
Fig. 5. A in New records and redescription of Labracinus atrofasciatus (Herre, 1933) (Teleostei: Pseudochromidae)
Fig. 5. A, putative female of Labracinus atrofasciatus, in situ photograph taken in Lajo Island, Palawan, Philippines; B, holotype of L. atrofasciatus, CAS-SU 25518, 105.5 mm SL holotype (image adapted from Gill, 2004). Note the posterior dorsal-fin spot and faint vertical bars in both specimens. Photographs by G. R. Allen & M. V. Erdmann (A) and P. Crabb (B).
Fig. 2 in New records and redescription of Labracinus atrofasciatus (Herre, 1933) (Teleostei: Pseudochromidae)
Fig. 2. Freshly dead Labracinus atrofasciatus specimens from Macuao Island, northern Palawan, Philippines. A, PNM 15645, 146.5 mm SL; B, PNM 15646, 142.0 mm SL; C, AMS I.49470-001, 134.4 mm SL. Photographs by V. Brun (A) and K. E. S. Sorgon (B, C).
Fig. 3. X in New records and redescription of Labracinus atrofasciatus (Herre, 1933) (Teleostei: Pseudochromidae)
Fig. 3. X-radiographs of Labracinus atrofasciatus. A, CAS-SU 25518, 105.5 mm SL holotype (via Smithsonian Division of Fishes); B, PNM 15645, 146.5 mm SL; C, PNM 15646, 142.0 mm SL; D, AMS I.49470-001, 134.4 mm SL. Radiographs by K. Parkinson (B–D).
Fig. 1 in New records and redescription of Labracinus atrofasciatus (Herre, 1933) (Teleostei: Pseudochromidae)
Fig. 1. Two specimens of Labracinus atrofasciatus (approximately 150 and 190 mm TL) amongst catch of other reef fishes at a fish landing site in Barangay Sandoval, Municipality of Taytay, northern Palawan, Philippines. Specimens not retained. Photograph by V. Brun.
Figure 1 in Eriophyoid (Trombidiformes: Eriophyoidea) mite species associated with boxes worldwide with a new record of Eriophyes canestrinii (Nalepa, 1890) from Iran
Figure 1. Schematic drawings of Eriophyes canestrinii (Nalepa, 1890) – AD. Prodorsal shield; AL. Lateral view of anterior body region; CG. Female coxigenital region; em. Empodium; GM. Genital region, Male; IG. Internal female genitalia; LO. Lateral view of annuli; L1. Leg I; PM. Lateral view of posterior opisthosoma. Scale bar: 10
Figure 1. A in The Caspian red deer, Cervus elaphus maral (Mammalia: Cervidae): a new host record for Rhipicephalus (Boophilus) annulatus (Acari: Ixodidae) in northern Iran
Figure 1. A combined phylogenetic tree constructed using Bayesian Inference method based on ITS2/16S rRNA sequence data of Rhipicephalus (Boophilus) species in this study with sequences originated from various part of world retrieved from GenBank database. The main R. (B.) annulatus clade separated by a vertical double headed line. The taxa were defined with a name of species, country, GenBank accession number (taxon of the present study is bold). Posterior probability values inserted in the place of nodes. Branch lengths are proportional to the evolutionary changes. Rhipicephalus sanguineus assigned as outgroup taxon.
Figures 18–24. Mecas spp. 18–21 in New species, new synonymies, a new rank, and new records in Desmiphorini, Saperdini, and Hemilophini (Coleoptera: Cerambycidae: Lamiinae)
Figures 18–24. Mecas spp. 18–21) Mecas skillmani sp. nov., holotype female. 18) Dorsal habitus. 19) Ventral habitus. 20) Lateral habitus. 21) Head, frontal view. 22–24) Mecas linsleyi Knull, 1975, holotype male. 22) Dorsal habitus. 23) Ventral habitus. 24) Lateral habitus. Figures 22–24 by Stephanie Ware.
Figures 25–32. Pannychis and Pannychina spp. 25 in New species, new synonymies, a new rank, and new records in Desmiphorini, Saperdini, and Hemilophini (Coleoptera: Cerambycidae: Lamiinae)
Figures 25–32. Pannychis and Pannychina spp. 25) Pannychis callicera Bates, 1881, holotype female. 26) Pannychis sericea Thomson, 1864, left side, not type, identified as male, right side, holotype. 27) Pannychis ducalis Bates, 1881, type. 28) Pannychina atripennis (Bates, 1885), holotype. 29–32) Elytral apex: 29) Pannychis atripennis, holotype; 30) Pannychis callicera, holotype female; 31) Pannychis ducalis, type; 32) Pannychis sericea, holotype. All by Jesus Santiago Moure.
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.