Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
7,959
datasets available to search
ShareScore release 0.9.0
Dataset results
7,959 results for “sp. n.”
Figs 4–8 in Eniochthonius Mahunkai Sp. N. (Acari: Oribatida: Eniochthoniidae), From North American Peatlands, With A Redescription Of Eniochthonius And A Key To North American Species
Figs 4–8. Eniochthonius mahunkai sp. n., adult: 4 = leg I, femur, genu and tibia; 5 = leg I, tibia and tarsus; 6 = leg II, except trochanter; 7 = leg III; 8 = leg IV. All abaxial view; all to same scale (50 µm). Unlabeled setae include: proral pair (p) inserted dorsally at base of claws on all legs; two setae on reverse side of Fig. 5, indicated only by dotted circles: a' and tc' (respectively below and above seta a"
Figs 1–3 in Eniochthonius Mahunkai Sp. N. (Acari: Oribatida: Eniochthoniidae), From North American Peatlands, With A Redescription Of Eniochthonius And A Key To North American Species
Figs 1–3. Eniochthonius mahunkai sp. n., adult (contracted specimen): 1 = dorsal aspect; 2 = lateral aspect; 3 = ventral aspect. Legs and gnathosoma partly shown (1, 3) or omitted (2). All to same scale
Figs 51–56. Eniochthonius spp., adults. 51A in Eniochthonius Mahunkai Sp. N. (Acari: Oribatida: Eniochthoniidae), From North American Peatlands, With A Redescription Of Eniochthonius And A Key To North American Species
Figs 51–56. Eniochthonius spp., adults. 51A = lateral aspect of E. mahunkai n. sp. (top, e = egg); 51B = E. minutissimus (bottom) from same sample at Cicero, New York; 52 = E. minutissimus, anterolateral aspect of bothridial seta (bo) and nearby region, specimen from Germany; 53 = E. crosbyi, dorsal aspect of bothridial seta, with insert showing dorsolateral aspect of famulus of E. crosbyi (A) and E. minutissimus (B), each ca. 10 µm; 54 = E. mahunkai sp. n., ventral aspect of genital region (cf. Fig. 3; arrow points to oblique articulation between middle and anterior aggenital plates; 55 = E. crosbyi, same, but from dissected specimen; 56 = E. minutissimus, same (intact specimen from Poland). Scale bars: 100 µm (51), 10 µm (all others); ag = alveolus of aggenital seta; e = egg; pp = plicature plate. Fig. 52 SEM micrograph (from ALBERTI et al. 1994); others from light microscope
Figs 42–50 in Eniochthonius Mahunkai Sp. N. (Acari: Oribatida: Eniochthoniidae), From North American Peatlands, With A Redescription Of Eniochthonius And A Key To North American Species
Figs 42–50. Eniochthonius mahunkai sp. n., immatures: 42 = notogastral seta c1 of larva; 43 = bothridial seta and interlamellar seta (in) of larva, near-dorsal aspect; 44 = humeral region of larval notogaster, lateral aspect, showing porose area (arrowhead) and seta c3; 45 = same, but tritonymph with pleural carina bearing posterior porose area (app) and cupule ia on underside seen by transparency (apa = anterior porose area); 46 = sagittal section of tritonymph notogaster at transverse scissure (anterior to left; arrowhead indicates extremely narrow articulating cuticle); 47 = subcapitulum of tritonymph, ventral aspect in polarized light, showing lack of demineralization in mentum; 48 = partial tarsus I of tritonymph, lateral aspect, showing famulus (e); 49 = posteroventral region of larval opisthosoma, lateral aspect, showing preanal spine (sp) and anal apodeme (aa); 50 = same, enlarged.
Figs 23–26 in Marionina Scintillans Sp. N., A New Enchytraeid Species (Annelida: Oligochaeta) From Hungarian Green Houses
Figs 23–26. Photographs of Marionina scintillans sp. n.: 23 = sperm funnel (marked with white arrow), sperm duct (marked with black arrow) and penial bulb (p), segments XI–XII (living specimen); 24 = penial bulbs (marked with arrows), ventral view (living specimen); 25 = sperm funnel (marked with arrow) of a fixed and stained specimen; 26 = spermatheca of a fixed and stained specimen. The
Figs 17–22 in Marionina Scintillans Sp. N., A New Enchytraeid Species (Annelida: Oligochaeta) From Hungarian Green Houses
Figs 17–22. Marionina scintillans sp. n., photographs: 17 = coelomocytes (marked with arrow) in living enchytraeid worm; 18 = dried coelomocytes on slide glass; 19 = conspicuous vesicles of the nephridial efferent duct at the openings (marked with white arrow) in segments VII and VIII (lateral view, living specimen); 20 = chloragogen cells in VIII (living specimen); 21 = enlargened end of the nephridial efferent duct (the vesicles marked with black arrow) and a degenerated sack of the other nephridia in VIII (marked with white arrow, living specimen); 22 = degenerated nephridial sack in XVI (marked with white arrow, living specimen)
Figs 1–5 in Marionina Scintillans Sp. N., A New Enchytraeid Species (Annelida: Oligochaeta) From Hungarian Green Houses
Figs 1–5. Marionina scintillans sp. n.: 1 = chaetae, 2 = coelomocytes, 3 = clitellar region with clitellar glands, lateral view (penial bulb marked with arrow), 4 = brain, 5 = nephridium
Figs 11–16 in Marionina Scintillans Sp. N., A New Enchytraeid Species (Annelida: Oligochaeta) From Hungarian Green Houses
Figs 11–16. Marionina scintillans sp. n.: 11–14 = clitellar glands, 11 = granular cells around the penial bulb (bulb marked with white arrow, living worm, lateral view), 12 = photograph of a fixed worm, lateral view (penial bulb marked with arrow), 13 = photograph of a living specimen (dorsal view), 14 = photograph of a fixed and stained specimen (dorsal view); 15 = large epithelial cells (marked with arrow) in the inner ventral wall of the intestine in ½ XVI–XVIII. Photograph of a fixed
Figs 6–10 in Marionina Scintillans Sp. N., A New Enchytraeid Species (Annelida: Oligochaeta) From Hungarian Green Houses
Figs 6–10. Marionina scintillans sp. n.: 6 = pharyngeal glands, dorsal view, segments III–VI; 7 = pharyngeal glands, lateral view, segments III–VI; 8 = spermatheca (empty); 9 = spermatheca (full
Figs 6–7 in Dodia Maja Sp. N., A New Tiger Moth From The Magadan Territory, Russia (Lepidoptera, Arctiidae)
Figs 6–7. Male genitalia of Dodia sp.: 8 = D. albertae DYAR, 1901, Yukon Territory, Canada; 9 = D. kononenkoi TSHISTJAKOV et LAFONTAINE, 1984, Magadanskaia oblast, Russia; 10 = D. maja sp. n.,
Figs 17–19 in Dodia Maja Sp. N., A New Tiger Moth From The Magadan Territory, Russia (Lepidoptera, Arctiidae)
Figs 17–19. Genitalia of D. maja sp. n.: 17 = m, holotype; 18 = aedeagus with vesica everted, holotype; 19 = f, paratype
Figs 15–16 in Dodia Maja Sp. N., A New Tiger Moth From The Magadan Territory, Russia (Lepidoptera, Arctiidae)
Figs 15–16. Female genitalia of Dodia sp.: 15 = D. kononenkoi TSHISTJAKOV et LAFONTAINE, 1984, Yukon Territory, Canada; 16 = D. maja sp. n., paratype
Figs 11–14 in Dodia Maja Sp. N., A New Tiger Moth From The Magadan Territory, Russia (Lepidoptera, Arctiidae)
Figs 11–14. Male genitalia – aedeagus with everted vesica of Dodia sp.: 11 = D. albertae DYAR, 1901, Yukon Territory, Canada; 12 = D. kononenkoi TSHISTJAKOV et LAFONTAINE, 1984, Magadanskaia
Figs 1–11. 1–10 in Hypogastrura Pomorskii Sp. N. From Kyrgyzstan And Notes On The Related Species H. Tatrica (Stach, 1949) (Collembola: Hypogastruridae)
Figs 1–11. 1–10 = Hypogastrura pomorskii sp. n. 1 = chaetotaxy of thoracic terga II–III; 2 = chaetotaxy of abdominal terga III–VI; 3 = postantennal organ, accessory boss and neighbour ocelli; 4 = apical vesicle on antennal segment IV; 5 = chaetotaxy of antennal segments III–IV; 6 = tibiotarsus I, claws and empodial appendage; 7 = dens and mucro; 8 = mucro, lateral view; 9 = chaetotaxy of ventral tubus; 10 = strongly plurichaetotic chaetotaxy of abdominal tergum V; 11 = Hypogastrura tatrica
Figs 16–17 in Free-Living Nematodes From Two Dolomite Hills In Hungary, With Description Of Sclerolaimus Hungaricus Sp. N.
Figs 16–17. Sclerolaimus hungaricus sp. n.: 16 = female genital region, 17 = male genital region. (Scale bars 40 µm each)
Figs 12–15 in Free-Living Nematodes From Two Dolomite Hills In Hungary, With Description Of Sclerolaimus Hungaricus Sp. N.
Figs 12–15. Sclerolaimus hungaricus sp. n.: 12 = anterior end, 13 = female tail, 14–15 = male tail. (Scale bars 40 µm each)
Figs 5–10 in Free-Living Nematodes From Two Dolomite Hills In Hungary, With Description Of Sclerolaimus Hungaricus Sp. N.
Figs 5–10. Sclerolaimus hungaricus sp. n.: 5–6 = male tail, 7–11 = female tail. (Scale bars 20 µm each)
Figs 1–4 in Free-Living Nematodes From Two Dolomite Hills In Hungary, With Description Of Sclerolaimus Hungaricus Sp. N.
Figs 1–4. Sclerolaimus hungaricus sp. n.: 1 = anterior end, 2 = cardial region, 3 = vulval region, 4 = intestine–prerectal junction. (Scale bars 20 µm each)
Fig. 7 Broeckinella hensoni n in Broeckinella Hensoni N. Sp., A New Larger Benthic Foraminifera From The Upper Maastrichtian Of Iran And A Revision Of The Genus Broeckinella Henson, 1948
Fig. 7 Broeckinella hensoni n. sp., upper Maastrichtian Tarbur Formation of the Naghan section, Zagros Zone, SW Iran. a, c Subaxial sections. Specimen shown in A displays more than 40 chambers in the uncoiled adult part. d Detail from c showing initial coiled part. e Oblique equatorial section. f Slightly oblique equatorial section showing flabelliform test morphology (test diameter: ~6.6 mm). Thin-sections: 2NG 153 (a), 2NGN (b, f), 2NG 38 (c–d), NG 197-1 (e). Scale bars 1.0 mm.
Fig. 6 in Broeckinella Hensoni N. Sp., A New Larger Benthic Foraminifera From The Upper Maastrichtian Of Iran And A Revision Of The Genus Broeckinella Henson, 1948
Fig. 6 Broeckinella arabica Henson, upper Maastrichtian Tarbur Formation of the Mandegan (a, d) and Naghan sections (b– c, e–f), Zagros Zone, SW Iran. a, c–d Oblique equatorial sections, partly fragmentary, in some parts crossing the subepidermal network (e.g., a and left side of d). Note the undivided central part of the chambers in c. b Tangential section in the plane with only main partitions aligned between subsequent chambers (= zone 2 in Henson 1948; see Fig. 6a). e–f Oblique sections. Note initial planispiral part in the megalospheric specimen in e passing the proloculus (arrow). Note also the chambers undivided in the central part in e. Thin-sections: Rt 104 (a), NG 42-1 (b), NG 21 (c), Rt 85 (d), 2NG 49 (e), 2NG 112 (f). Scale bars 0.5 mm.
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.