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Fig. 1 in A New Species of the Ghost Shrimp Family Ctenochelidae (Crustacea: Decapoda: Axiidea) from Japan
Fig. 1. Ctenocheloides nomurai sp. nov., holotype, male (cl 7.3 mm), CBM-ZC 11250. A, cephalothorax and cephalic appendages, lateral view (thoracic appendages removed); B, pleon and pleopods, lateral view (setae partially omitted). Scale bar: 2 mm.
Fig. 5 in A New Species of the Ghost Shrimp Family Ctenochelidae (Crustacea: Decapoda: Axiidea) from Japan
Fig. 5. Ctenocheloides nomurai sp. nov., holotype, male (cl 7.3 mm), CBM-ZC 11250. A, left cheliped, lateral view; B, same, mesial view; C, right cheliped, lateral view; D, same, close up of fingers, lateral view. Scale bars: 2 mm for A–C; 1 mm for D.
Fig. 8 in Three New Species of the Family Eosentomidae (Protura) from the Nasu Imperial Villa, Central Japan
Fig. 8. Larval chaetotaxy of Pseudanisentomon villaticum sp. nov. A, Dorsal view of abdomen II–IV of Larva II; B, dorsal view of abdomen VIII of Larva II; C, dorsal view of abdomen II–IV of Larva I. Scale bars: 20 µm.
Fig.1 in Three New Species of the Family Eosentomidae (Protura) from the Nasu Imperial Villa, Central Japan
Fig.1. Eosentomon villare sp. nov., holotype, female (NSMT-Ap 539). A, Dorsal view of the head; B, labrum and rostral region; C, maxillary palpus; D, galea; E, mandible; F, pseudoculus; G, interior view of the foretarsus; H, exterior view of the foretarsus; I, distal part of the middle tarsus; J, dorsal view of the hind tarsus. Abbreviations: as, anterior sensillum; cs, clypeal seta; I, inner digit; lb, labral seta; M, median digit; md, dorsal sensillum; ml, lateral sensillum; O, outer digit; p, median posterior seta; pa, posterior additional seta; pp, a pair of sensilla posterior to pseudoculus; ps, posterior sensillum; rs, rostral seta; sp, median subposterior seta; sr, subrostral seta. Arrows show pores. Scale bars: 10 µm.
Fig. 7 in Three New Species of the Family Eosentomidae (Protura) from the Nasu Imperial Villa, Central Japan
Fig. 7. Pseudanisentomon villaticum sp. nov., holotype, female (NSMT-Ap 551). A, Dorsal view of thorax III; B, dorsal view of abdomen VI–VII; C, dorsal view of abdomen VIII–XI; D, ventral view of abdomen VIII–X. Arrows show pores. Scale bars: 20 µm.
Fig. 2 in Three New Species of the Family Eosentomidae (Protura) from the Nasu Imperial Villa, Central Japan
Fig. 2. Eosentomon villare sp. nov., holotype, female (NSMT-Ap 539). A, Dorsal view of thorax III, right side; B, dorsal view of abdomen VI–VIII, right side; C, ventral view of abdomen VIII–X; D, female squama genitalis. Arrows show pores. Scale bars: 20 µm.
Figures 808–815 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 808–815: Male karyotypes of scorpiopid species based on postpachytene. Figure 808. Scorpiops oligotrichus (2n=105, 51II+III). Figure 809. Scorpiops pakseensis sp. n. (2n=87, 42II+III). Figure 810. Scorpiops phatoensis sp. n. (2n=105, 51II+III). Figure 811. Scorpiops problematicus (2n=97, 47II+III). Figure 812. Scorpiops schumacheri sp. n. (2n=63, 60II+III). Figure 813. Scorpiops sherwoodae sp. n. (2n=104, 52II). Figure 814. Scorpiops thailandus sp. n. (2n=147, 72II+III). Figure 815. Scorpiops thaomischi (2n=94, 47II). Insets show the location of 18S rDNA (red signal) on the same chromosome as in the karyogram (ppach) and additionally on chromosomes during pachytene (pach) or metaphase II (met II). Abbreviation of postpachytene configuration: II – bivalent, III – trivalent. Scale bar: 10 μm.
Figures 758–765 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 758–765: Scorpiops thailandus sp. n. Figures 758–760, 762. Male holotype, metasoma and telson lateral (758), ventral (759), and dorsal (760) views, and telson lateral (762). Figures 761, 763–765. Female paratype, telson lateral (761), and metasoma and telson lateral (763), ventral (764), and dorsal (765) views. Scale bars: 10 mm (758–760, 763–765).
Figures 726–728 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 726–728. Scorpiops sherwoodae sp. n., male holotype in vivo habitus at type locality (726), Female juvenile (non type) in vivo habitus (727), and type locality (728, also type locality for S. dunlopi sp. n.).
Figures 686–687 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 686–687. Scorpiops schumacheri sp. n., male holotype (686) and female paratype (687) in vivo habitus.
Figures 708–713 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 708–713: Scorpiops sherwoodae sp. n. Figures 708–709. Male paratype in dorsal (708) and ventral (709) views. Figures 710–713. Male holotype, telson lateral (710), and metasoma and telson lateral (711), ventral (712), and dorsal (713) views. Scale bars: 10 mm (708–709, 711–713).
Figures 657–668 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 657–668: Scorpiops schumacheri sp. n. Figures 657–663, 666–668. Male holotype, carapace and tergites I–IV (657), coxosternal area and sternites (658), right legs I–IV, retrolateral aspect (659–662 respectively), telson lateral (663), and metasoma and telson lateral (666), ventral (667), and dorsal (668) views. Figures 664–665. Female paratype, telson lateral (664), and metasoma and telson lateral (665). Scale bar: 10 mm (665–668).
Figures 647–652 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 647–652: Scorpiops scheibeae sp. n., male holotype. Figures 647–648. Carapace and tergites I–III (647), coxosternal area and sternites III–IV (648), left chelicera in dorsal (649) and ventral (650) views. Figure 651. Telson lateral view. Figure 652. Male holotype in vivo habitus.
Figures 639–642 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 639–642: Scorpiops scheibeae sp. n., male holotype, pedipalp segments. Chela and patell dorsal (639), external (640) and ventral (641) views. Movable finger dentition (642). Trichobothrial pattern is indicated by white circles (639–641).
Figures 793–794 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 793–794: Scorpiops thailandus sp. n., female (793) and male (794) paratypes in vivo habitus.
Figures 679–685 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 679–685. Scorpiops schumacheri sp. n., female paratype, pedipalp segments. Chela dorsal (679), external (680) and ventral (681) views. Patella dorsal (682), external (683) and ventral (684) views. Movable finger dentition (685).
Figures 613–626 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 613–626: Scorpiops prasiti sp. n., pedipalp segments. Figures 613–619. Male holotype, chela dorsal (613), external (614) and ventral (615) views. Patella dorsal (616), external (617) and ventral (618) views. Movable finger (619) dentition. Trichobothrial pattern is indicated by white circles (613–618). Figures 620–625. Female paratype, chela dorsal (620), external (621) and ventral (622) views. Patella dorsal (623), external (624) and ventral (625) views. Movable finger (626) dentition under UV light.
Figures 601–604 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 601–604: Scorpiops prasiti sp. n. Figures 601–602. Male holotype in dorsal (601) and ventral (602) views. Figures 603–604. Female paratype in dorsal (603) and ventral (604) views. Scale bar: 10 mm.
Figures 688–689 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 688–689. Scorpiops schumacheri sp. n., female paratype with newborns (688) and with juveniles after first ecdysis (689).
Figures 690–707 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)
Figures 690–707: Comparison of three similar species Scorpiops neradi (690–691, 693, 697–698, 703, 705), S. schumacheri sp. n. (692–693, 695, 699–700, 704, 705), and S. dunlopi sp. n. (696, 701–702, 707). Figures 690–693, 697–702. Pedipalp chela dorsal and external views of males (690–693) and females (697–702). Figures 694–696. Movable finger dentition under UV light. Figures 703–707. Telson lateral views of males (703–704) and females (705–707).
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.