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2,219 results for “new distributional records”
FIGURE 3. Neocarus haicolous n in The family Opilioacaridae (Parasitiformes: Opilioacarida) in Mexico, description of two new species, new records, and geographical distribution
FIGURE 3. Neocarus haicolous n. sp. A. Lateral view of female chelicerae, B. Male chelicerae and details of denticles, ventral view of hypostome. C. Female, D. Male. A1–B1. (Circle: detail of ventral denticles).
FIGURE 13. Neocarus queretanus n in The family Opilioacaridae (Parasitiformes: Opilioacarida) in Mexico, description of two new species, new records, and geographical distribution
FIGURE 13. Neocarus queretanus n. sp. A. Chelicera female, A1. Denticle, B. Chelicera male, B1. Denticle, C. Subcapitulum, female, C1. Detail of some paralabial setae, D. Subcapitulum, male.
FIGURE 12. Neocarus haicolous n in The family Opilioacaridae (Parasitiformes: Opilioacarida) in Mexico, description of two new species, new records, and geographical distribution
FIGURE 12. Neocarus haicolous n. sp. Tn. A. Anal plate, B. Sternitogenital area, C. Antero-dorsal shield of Tn.
FIGURE 4. New records from Brazil. A in Contributions to the knowledge and distribution of Pucciniales (rust fungi) in three Brazilian biomes
FIGURE 4. New records from Brazil. A: Teriospores of Chaconia clusiae; B–D: Puccinia phyllostachidis: B: Urediniospore (arrow) and uredinial captate paraphyses; C: Urediniospore in median view; D: Urediniospore in superficial view; E–G: Puccinia parianicola: E-F: Urediniospores and paraphyses; E: Median view; F: Superficial view; G: Teliospores. Bars: A, C, D, E, F, G = 10 μm; C = 20 μm.
FIGURE 1 in On the validity and distribution of Myxobolus curemae Vieira, Agostinho, Negrelli Silva, Azevedo and Abdallah, 2022 (Myxozoa: Bivalvulida) from a new record on the coast of southeastern Brazil
FIGURE 1. Mature myxospores of Myxobolus curemae Vieira, Agostinho, Negrelli, Silva, Azevedo and Abdallah, 2022 from white mullet Mugil curema Valenciennes, 1836 on the coast of the State of Rio de Janeiro, Brazil. A–B. Frontal view; C. Lateral view. Bar = 5 μm.
FIGURE 2 in New species and distributional records of the genus Broscosoma Rosenhauer, 1846 (Coleoptera, Carabidae, Broscinae) from Fujian, China
FIGURE 2. Diagnostic features of Broscosoma wuyishanum sp. nov. A. Antenna; B. Head and pronotum, dorsal view; C. Elytra, dorsal view. Features in red: sut, elytral suture; s1‒s8, elytral striae; red dots: setigerous punctures.
FIGURE 1 in Protoptilinae (Trichoptera: Glossosomatidae) from Roraima state, northern Brazil: A new species of Itauara Müller 1888 and new distributional records for species of Protoptila Banks 1904
FIGURE 1. Itauara marcellina sp. n. Male genitalia. 1A, left lateral; 1B, dorsal; 1C, ventral. Abbreviations: dm. pr = dorsomesal process (paired); enph. = endophallus; inf. ap. = inferior appendage process; phb = phallobase; phc. = phallicata; phc. pr. = phallicata process; pmr = paramere (paired); t. X = tergum X; vl. pr. = ventrolateral process (paired).
FIGURE 3 in New species and distributional records of the genus Broscosoma Rosenhauer, 1846 (Coleoptera, Carabidae, Broscinae) from Fujian, China
FIGURE 3. Diagnostic features of Broscosoma wuyishanum sp. nov. A. Male, aedeagus, lateral view; B. Ditto, Left paramere; C. Ditto, right paramere; D. Ovipositor. Red dots: setae.
FIGURE 4. A in New species and distributional records of the genus Broscosoma Rosenhauer, 1846 (Coleoptera, Carabidae, Broscinae) from Fujian, China
FIGURE 4. A. General environment of the type locality of Broscosoma wuyishanum sp. nov; B. Living adult of B. wuyishanum sp. nov; C. distributional map of known Broscosoma species from Fujian Province.
FIGURE 2. Diagnostic features. A–G in A study on the genus Lagria from China with one new species and new distributional records (Coleoptera: Lagriinae)
FIGURE 2. Diagnostic features. A–G. Tibiae and aedeagus of Lagria (Lagria) medogensis sp. nov.. A. Male protibia; B. Male mesotibia; C. Male metatibia; D. Female mesotibia, arrows indicating tiny denticles; E. Female metatibia; F. Aedeagus, lateral view; G. Aedeagus, ventral view; H–I. Aedeagus of Lagria (Lagria) indicola. H. Lateral view; I. Ventral view.
FIGURE 3 in A study on the genus Lagria from China with one new species and new distributional records (Coleoptera: Lagriinae)
FIGURE 3. Dorsal view of habitus. A–B. Lagria (Ammocera) bhutanicola. A. Dorsal view of male; B. Dorsal view of female; C–D. Lagria (Lagria) indicola. C. Dorsal view of male (right middle leg missing); D. Dorsal view of female (hairs of dorsal surface missing; pronotum not symmetrical, probably caused by abnormal development).
FIGURE 1 in A study on the genus Lagria from China with one new species and new distributional records (Coleoptera: Lagriinae)
FIGURE 1. Habitus and diagnostic features of Lagria (Lagria) medogensis sp. nov.. A. Dorsal view of male holotype; B. Dorsal view of female paratype (Xizang, Mêdog County, Renqing-beng Mountain, WBḆṉƌḸḂDZƜ); C. Ventral view of holotype, dashed circle indicating the tooth on metasternum; D. Magnified lateral view of partial holotype (not to scale), dashed circle indicating the tooth on metasternum.
FIGURE 4 in A study on the genus Lagria from China with one new species and new distributional records (Coleoptera: Lagriinae)
FIGURE 4. Habitat of Lagria species. A–B. Habitat with blooming plants and living female adult of Lagria (Ammocera) bhutanicola (Xizang, Yatung County, WBûḵƌ); C–D. Field environment and living female adult of Lagria (Ammocera) unicolor, specimens were collected on grasses and bushes by sweeping method (Xizang, Mêdog county, WBḆṉƌ); E–F. General habitat and living male adult of Lagria (Lagria) indicola, specimens were collected in the open grassy field (photographed by Dr. Wenbo Yi; Xizang, Gyirong County, WBĠssƌ).
FIGURE 3 in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records
FIGURE 3. Erpocotyle catenulata female reproductive system. Abbreviations: ao, anterior portion of ovary; cvd, common vitelline duct; gic, gastrointestinal canal; me, Mehlis' glands associated with base of ôtype; od, oviduct; ovo, ovovitelline duct; oot, base of ôtype; po, proximal portion of ovary; sr, seminal receptacle; tvd, transverse vitelline duct; ut, uterus; v, vagina. Scale bar = 500 μm.
FIGURE 8. Hypanocotyle bullardi. A in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records
FIGURE 8. Hypanocotyle bullardi. A. Whole mount; B. Sucker-complex sclerites 1–3; C. Hamulus. Abbreviations as for Figures 1, 2 and 3; note: proximal portion of vagina (pv) is unilaterally dilated as a likely result of recent copulation. Scale bars: A = 4000 μm; B = 500 μm; C = 60 μm.
FIGURE 2 in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records
FIGURE 2. Erpocotyle catenulata male reproductive system. Abbreviations: dr, distal region of male copulatory organ (= cr, cirrus); mco, male copulatory organ; pc, prostatic gland cells; vd, vas deferens. Scale bar = 100 μm.
FIGURE 10 in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records
FIGURE 10. Hypanocotyle bullardi female reproductive system. Abbreviations as for Figures 3 and 7. Scale bar = 1000 μm.
FIGURE 7 in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records
FIGURE 7. Heteronchocotyle gymnurae female reproductive system. Abbreviations: fsr, false seminal receptacle. Other abbreviations as for Figures 3 and 4. Scale bar = 200 μm.
FIGURE 4. Heteronchocotyle gymnurae. A in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records
FIGURE 4. Heteronchocotyle gymnurae. A. Whole mount, ventral view; B. Sucker-complex sclerites 1a, b; 2a, b; 3 (representing both a and b); C. Hamulus. Abbreviations: ag, anterior gland duct openings; eg, egg; pg, pharyngeal glands; pv, proximal section of vagina; other abbreviations as for Figures 1, 2 and 3. Scale bars: A = 2000 μm; B = 100 μm; C = 50 μm.
FIGURE 1. Erpocotyle catenulata. A in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records
FIGURE 1. Erpocotyle catenulata. A. Whole mount, ventral view; B. Sucker-complex sclerites 1–3; C. Hamulus. Abbreviations: app, appendix; aps, appendix sucker; i, intestinal caecum; os; oral sucker; p, pharynx; pap, region of papillae associated with oral sucker; t, testes; vit, vitellarium; vp, vaginal pore. Scale bars: A = 4000 μm; B = 500 μm; C = 70 μm.
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.