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106 results for “Arthrotardigrada”
Fig. 2 in Revision of Angursa (Arthrotardigrada: Styraconyxidae) with the description of a new species from Japan
Fig. 2. Drawing of Angursa abyssalis Renaud-Mornant, 1981, cephalic region (ventral view) (USNM W 50900).
Fig. 5 in Revision of Angursa (Arthrotardigrada: Styraconyxidae) with the description of a new species from Japan
Fig. 5. Micrographs of Angursa capsula Bussau, 1992 (SMF 28). A. Cephalic region with paired globular bodies (black arrowheads). B. Caudal region.
Fig. 1 in Revision of Angursa (Arthrotardigrada: Styraconyxidae) with the description of a new species from Japan
Fig. 1. Micrographs of Angursa bicuspis Pollock, 1979 (USNM W 50900). A. Habitus. B. Cephalic region with paired globular bodies (black arrowheads). C. Caudal region. D. Leg IV digits.
Fig. 4 in Revision of Angursa (Arthrotardigrada: Styraconyxidae) with the description of a new species from Japan
Fig. 4. Micrographs of Angursa lanceolata Renaud-Mornant, 1981 paratype. A. Cephalic region. B. Caudal region with leg IV sensory organ terminating in short, apical spine (white arrowheads).
Fig. 3-8 in A closer look at Batillipes dicrocercus and new records of Batillipes potiguarensis (Tardigrada: Arthrotardigrada) from the Brazilian coast with comments on intra- and interspecific variability
Fig. 3-8. Batillipes potiguarensis Santos, Rocha, Gomes Jr & Fontoura, 2017: 3, detail of a bifurcated caudal appendage; 4, posterior portion of the body, showing an asymmetric caudal appendage with one short spike only (arrowhead); 5, posterior portion of the body showing an asymmetric caudal appendage with one short spine only (white arrowhead). The black arrowhead shows the blunt lateral projection between legs III–IV; 6, caudal appendage without spines. The sense organ on leg IV is visible (arrowhead); 7, dorsal cuticle with visible folds and punctation not uniformlY distributed; 8, detail of the first leg showing the oblique tarsus and spatula-like toe discs. Scale bars: 10 µm.
Figs 1,2 in A closer look at Batillipes dicrocercus and new records of Batillipes potiguarensis (Tardigrada: Arthrotardigrada) from the Brazilian coast with comments on intra- and interspecific variability
Figs 1,2. Batillipes potiguarensis Santos, Rocha, Gomes Jr & Fontoura, 2017: 1, specimen from our samples with a bifurcated caudal appendage. The arrowhead shows the well-developed secondarY clava; 2, holotYpe with a rounded caudal protrusion. Scale bars: 50 µm.
Fig. 9-11. Batillipes dicrocercus Pollock, 1970 in A closer look at Batillipes dicrocercus and new records of Batillipes potiguarensis (Tardigrada: Arthrotardigrada) from the Brazilian coast with comments on intra- and interspecific variability
Fig. 9-11. Batillipes dicrocercus Pollock, 1970: 9, paratype. Conical body projections between legs III–IV (black arrowhead) and sense organ on leg IV (white arrowhead) are visible; 10, anterior region of a specimen showing the head and cephalic appendages. 11, posterior region of the body showing long sense organ on leg IV (asterisk), conical body projections between legs III–IV (black arrowhead) and lateral processes on legs IV (white arrowhead). Scale bars: 10 µm.
Fig. 18 in A new genus and five new species of the subfamily Florarctinae (Tardigrada, Arthrotardigrada)
Fig. 18. Higginsarctus alatus (Gomes-Júnior, E. Santos, da Rocha, P.J.P. Santos & Fontoura, 2018) gen. et comb. nov. A. Holotype (C.VII-84). Close up on the caudal region, ventral view showing the gonopore, genital stoup, anus and genital papillae. B. Paratype (C.VII-87). Close up on the secondary clava. Abbreviations: see Material and methods.
Fig. 17 in A new genus and five new species of the subfamily Florarctinae (Tardigrada, Arthrotardigrada)
Fig. 17. Higginsarctus alatus (Gomes-Júnior, E. Santos, da Rocha, P.J.P. Santos & Fontoura, 2018) gen. et comb. nov. A. Paratype (C.VII-87). Close up on the head, ventral view showing the cephalic cirri and secondary clavae. B. Holotype (C.VII-84). Close up on the caudal region, ventral view showing the gonopore, genital stoup, anus and seminal receptacles with genital papillae. Abbreviations: see Material and methods. Drawing by Stine B. Elle.
Fig. 16 in A new genus and five new species of the subfamily Florarctinae (Tardigrada, Arthrotardigrada)
Fig. 16. DIC-micrographs of Higginsarctus laurae gen. et sp. nov. A. Paratype, ♀ (NHMD-293907). Overview. B–D. Paratype, ♀ (NHMD-293908). B. Close up on the head, ventral view showing the external cirri and secondary clavae. C. Close up on the caudal region, ventral view showing the folia and gonopore. D. Close up on the bucco-pharyngeal apparatus. Abbreviations: see Material and methods.
Fig. 15 in A new genus and five new species of the subfamily Florarctinae (Tardigrada, Arthrotardigrada)
Fig. 15. Micrographs ofHigginsarctus laurae gen. et sp. nov., holotype, ♀ (NHMD-293905). A. Overview (PhC). B. Close up on the head (DIC), ventral view showing the secondary clavae. C. Close up on the head (PhC), ventral view showing the secondary clavae. D. Close up on the caudal ala (PhC), dorsal view showing the procuticular ramuli. E. Close up on the caudal ala (DIC), dorsal view showing the epicuticular pillars. Abbreviations: see Material and methods.
Fig. 14 in A new genus and five new species of the subfamily Florarctinae (Tardigrada, Arthrotardigrada)
Fig. 14. Higginsarctus laurae gen. et sp. nov., holotype, ♀ (NHMD-293905). Ventral overview. Abbreviations: see Material and methods. Drawing by Stine B. Elle.
Fig. 4 in A new genus and five new species of the subfamily Florarctinae (Tardigrada, Arthrotardigrada)
Fig. 4. SEM-micrographs of Higginsarctus signeae gen. et sp. nov., paratype, ♀ (NHMD-293902). A. Ventro-lateral overview. B. Close up on the head, lateral view showing cephalic cirri and secondary clava. C. Internal cirrus. D. External cirrus. E. Gonopore and genital stoup. F–G. Scapus of cirrus E broken in two (note the unique small papillae of scapus). H. Primary clavae (broken) and lateral cirrus. Abbreviations: see Material and methods.
Fig. 13 in A new genus and five new species of the subfamily Florarctinae (Tardigrada, Arthrotardigrada)
Fig. 13. Micrographs of Higginsarctus martini gen. et sp. nov., holotype, ♀ (NHMD-293903). A. Overview (PhC). B. Close up on the head (DIC), ventral view showing the cephalic cirri and secondary clavae. C. Close up on the bucco-pharyngeal apparatus (DIC). D. Close up on the caudal region (DIC), ventral view showing the gonopore, genital stoup and anus. Abbreviations: see Material and methods.
Fig. 7 in A new genus and five new species of the subfamily Florarctinae (Tardigrada, Arthrotardigrada)
Fig. 7. DIC-micrographs of Higginsarctus signeae gen. et sp. nov., allotype, ♂ (NHMD-293900). A. Overview. B. Close up on the head, ventral view showing the external cirri, secondary clavae and the very refractive cupola of the mouth cone. Note the presence of bacteria underneath the secondary clavae. C. Close up on the bucco-pharyngeal apparatus and the insertion of the primary clava with large refractive structures inside the base (white solid arrows) and van der Land's body. D. Close up on the external claw of leg I, with evident internal notch (white solid arrow). Abbreviations: see Material and methods.
Fig. 8 in A new genus and five new species of the subfamily Florarctinae (Tardigrada, Arthrotardigrada)
Fig. 8. Higginsarctus shintai gen. et sp. nov., holotype, ♀ (NHMD-293904). Ventral overview. Abbreviations: see Material and methods. Drawing by Stine B. Elle.
Fig. 3 in A new genus and five new species of the subfamily Florarctinae (Tardigrada, Arthrotardigrada)
Fig. 3. DIC-micrographs of Higginsarctus signeae gen. et sp. nov. A. Paratype, ♀ (NHMD-293898), overview. B–E. Holotype, ♀ (NHMD-293899). B. Close up on the head, ventral view showing the secondary clavae and the very refractive cupola of the mouth cone. White solid arrows indicate elevation of the cuticle associated with the secondary clavae. C, E. Optical sections of the caudal end, showing gonopore, genital stoup, duct openings (white hollow arrows), ducts of the seminal receptacles (white solid arrows) and the ventral folium with anus (C), and ovum, duct of the seminal receptacles (white solid arrow) and vesicle of seminal receptacles (white hollow arrow) (E). D. Close up on the procuticular branches (ramuli) in the ala, the internal and external claw of leg II and the sense organ of leg III. Abbreviations: see Material and methods.
Fig. 9 in A new genus and five new species of the subfamily Florarctinae (Tardigrada, Arthrotardigrada)
Fig. 9. DIC-micrographs of Higginsarctus shintai gen. et sp. nov., holotype, ♀ (NHMD-293904). A. Overview. B. Bucco-pharyngeal apparatus. C. Close up on the head, ventral view showing the secondary clava, internal and external cirri. Abbreviations: see Material and methods.
Fig. 10 in A new genus and five new species of the subfamily Florarctinae (Tardigrada, Arthrotardigrada)
Fig. 10. Higginsarctus lassei gen. et sp. nov., holotype, ♀ (NHMD-293913). Ventral overview. Abbreviations: see Material and methods. Drawing by Stine B. Elle.
Fig. 2 in A new genus and five new species of the subfamily Florarctinae (Tardigrada, Arthrotardigrada)
Fig. 2. Higginsarctus signeae gen. et sp. nov. Ventral overview. Holotype, ♀ (NHMD-293899). Abbreviations: see Material and methods. Drawing by Stine B. Elle.
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)
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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.