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.
133
datasets available to search
ShareScore release 0.9.0
Dataset results
133 results for “springtail”
FIGURE 2 in Catalogue of Vietnamese springtails (Hexapoda, Collembola)
FIGURE 2. Percentage of Collembola recorded in Vietnam: a, orders of Collembola; b, families within the order Poduromorpha; c, families within the order Entomobryomorpha; d, families within the orders Neelipleona and Symphypleona.
FIGURE 4 in Catalogue of Vietnamese springtails (Hexapoda, Collembola)
FIGURE 4. Number of species described from each Vietnamese region showing each main type of distribution. NW, Northwest; NE, Northeast; RRD, Red River Delta; NCC, North Central Coast; SCC, South Central Coast; CH, Central Highlands; SE, Southeast; MRD, Mekong River Delta. Dubious records, as defined in the text, are not included.
FIGURE 3 in Catalogue of Vietnamese springtails (Hexapoda, Collembola)
FIGURE 3. Number of species of Vietnamese Collembola: bars indicate total number of species recorded in each family (values in blue); line indicates the species with known distribution restricted to Vietnam (values in black).
FIGURE 3 in Redescription and neotype designation of the Antarctic springtail Folsomotoma octooculata (Collembola: Isotomidae)
FIGURE 3. Folsomotoma octooculata; scanning electron microscopy. A, Mouth region shoWing labrum (Lbr), labium (Lbm) and maXillary outer lobe (Mol); scale bar, 20 µm; B, Labial palp With labial papilla (A, B, C, D and E); C, Ocular plate and PAO; D, Antennal organ III; E, Retinacle; F, Ventral tube. Scale bars: 20 µm (A, C, E), 10 µm (B, F), 5 µm (D).
FIGURE 2 in Redescription and neotype designation of the Antarctic springtail Folsomotoma octooculata (Collembola: Isotomidae)
FIGURE 2. Folsomotoma octooculata; A, Number and distribution of dorsal sensilla (accp–s, al–s and as) and microsensilla (ms); B, C, E, F, Number and distribution of dorsal aXial setae along Th. II (E), Th. III (F), Abd. I (B) and Abd. II (C); asterisks indicate setae alWays present in all the specimens obserVed; D, ChaetotaXy of Abd. V–VI; G, Abd. IV p roW shoWing the position of the accp–s. Scale bar: 50 µm (D, G).
FIGURE 1 in Redescription and neotype designation of the Antarctic springtail Folsomotoma octooculata (Collembola: Isotomidae)
FIGURE 1. Folsomotoma octooculata: A, Dorsal chaetotaXy;, Ventral chaetotaXy of the head; C, Labium; Lp–Labial palp; Bmf–Basomedian field (submentum); Blf–Basolateral field (mentum); D, Ventral tube; E, Manubrium anterior VieW shoWing 3+3 spine–like setae, F, Ant. I lateral sensilla; G, Ant. Organ III; H, ChaetotaXy of tibiotarsus III; I, ChaetotaXy of the furca; K, Female genital opening; L, Male genital opening. Scale bars: 200 µm (A), 100 µm (B, I), 50 µm (D, K, L), 25 µm (C, E–H).
FIGURE 4 in Redescription and neotype designation of the Antarctic springtail Folsomotoma octooculata (Collembola: Isotomidae)
FIGURE 4. Folsomotoma octooculata; scanning electron microscopy. A, Mucro; B, ClaW and empodial appendage; C, Ant. IV shoWing seVeral seta–like sensilla; D, Macrochaeta on the last abdominal tergites; E, EXample of long accp–s of the p–roW on Abd. III–IV; F, Lateral microsensilla (ms) and al–s of Th. II; G, EXample of long tubular accp–s of the p–roW on Abd. V; H, Ant. I lateral microsensilla (ms). Scale bars: 10 µm (A–E), 5 µm (F).
Fig. 1 in An annotated checklist of the springtails (Hexapoda: Collembola) recorded from the foothill and mountain parts of the Republic of North Ossetia-Alania, North Caucasus, Russia
Fig. 1. Collecting localities:1 — Alagir; 2 — the Shubi-Nykhasskaya Cave; 3 — Zintsar; 4 — Mt. Karyuhokh; 5 — Verkhny Fiagdon; 6 — Karaugom Gorge in the Alaniya National Park; 7 — Tsey Glacier; 8 — Skazsky Glacier; 9 — Verkhny Tsey; 10 — Kassar Gorge; 11 — Mt. Tepli in the Kurtat Gorge; 12 — Nar; 13 — Fazikau; 14 — Mt. Stolovaya. Рис. 1. Места сбора материала: 1 — Алагир; 2 — Шуби- НыхасскаЯ пеЩера; 3 — Зинцар; 4 — г. Кариухох; 5 — Верхний Фиагдон; 6 — уЩ. Караугом в Национальном парке "АланиЯ"; 7 — Цейский ледник; 8 — СкаЗский ледник; 9 — Верхний Цей; 10 — уЩ. Кассар; 11 — г. Тепли в уЩ. Куртат; 12 — Нар; 13 — ФаЗикау; 14 — г. СтоловаЯ.
Figs 3–6 in An annotated checklist of the springtails (Hexapoda: Collembola) recorded from the foothill and mountain parts of the Republic of North Ossetia-Alania, North Caucasus, Russia
Figs 3–6. The main successional stages of the Tsey foreland: 3 — edge of Tsey Glacier; 4 — meadow overgrowing stage (2300 m s.a.l.); 5 — shrub successional stage (2295 m a.s.l.); 6 — young mixed forest (2250 m a.s.l.). Рис. 3–6. Основные стадии сукцессии при отступании Цейского ледника: 3 — край Цейского ледника; 4 — луговаЯ стадиЯ (2300 м н.у.м.); 5 — кустарниковаЯ стадиЯ (2295 м н.у.м.); 6 — стадиЯ молодого леса (2250 м н.у.м.).
FIGURES 16–21. Misturasotoma brucealla. 16 in Misturasotoma, a new nearctic springtail genus (Collembola: Isotomidae)
FIGURES 16–21. Misturasotoma brucealla. 16. Manubrium, ventral view, paralectotype. 17. Dens, dorsal view, lectotype. 18. Mucrones, lectotype. 19, Mucrones, paralectotype. 20. Chaetotaxy of Abd. IV and Abd. V tergites, right side, lectotype; typical setae not near sensilliform setae omitted. 21. Chaetotaxy of Abd. V and Abd. VI tergites, left side, paralectotype, only macrochaetae and sensilliform setae drawn.
FIGURES 1–15. Misturasotoma brucealla. 1. Habitus, lectotype. 2. Maxillary palpus, paralectotype. 3. Labial palpus, paralectotype. 4. Hypostomal lobe, paralectotype. 5 in Misturasotoma, a new nearctic springtail genus (Collembola: Isotomidae)
FIGURES 1–15. Misturasotoma brucealla. 1. Habitus, lectotype. 2. Maxillary palpus, paralectotype. 3. Labial palpus, paralectotype. 4. Hypostomal lobe, paralectotype. 5. Apex of labrum, paralectotype. 6. Postantennal organ, lectotype. 7. Apex of fourth antennal segment, lectotype. 8. Sense organ of third antennal segment, lectotype. 9. Forefoot complex, lectotype. 10. Hind foot complex, paralectotype. 11. Hind foot, ventral view, paralectotype. 12. Hind foot complex, Washington specimen. 13. Ventral tube, ventral view, paralectotype. 14. Tenaculum, lectotype. 15. Tenaculum, paralectotype.
Data from: Intraspecific phenotypic variation and morphological divergence of strains of Folsomia candida (Willem) (Collembola: Isotomidae), the "standard" test springtail
Open the record for dataset details and reuse information.
Data from: Comparing rates of springtail predation by web-building spiders using Bayesian inference
Open the record for dataset details and reuse information.
Figure 5 in Micro-terraforming by Antarctic springtails (Hexapoda: Entognatha)
Figure 5. Disintegration of microstructures artificially created from component units of naturally occurring particle aggregations in response to turn-over test. Black triangles represent maxima; white triangles represent minima; white circles represent means. The symbols t1–t4 represent the sequential separation of stones from the artificial microstructure, where t1 represents the first particle to lose cohesion and t4 represents the separation of the final fourth and fifth particles.
Figure 2 in Micro-terraforming by Antarctic springtails (Hexapoda: Entognatha)
Figure 2. Microstructure unit from field survey rock #11: (A) with springtail in foreground ('sp.') for scale (body size c.1 mm); (B) further magnification reveals that the 'cement' is composed of only a single exuvial strand. (White arrows indicate site of 'microstructure' binding.)
Figure 1 in Micro-terraforming by Antarctic springtails (Hexapoda: Entognatha)
Figure 1. Dismantling of representative field macrostructure to reveal it is composed of microstructure building blocks: (A) undersurface of entire rock with paintbrush for scale (brush whisker
Figure 4 in Micro-terraforming by Antarctic springtails (Hexapoda: Entognatha)
Figure 4. Microstructural unit 'cemented' together by exuviae and teased apart to reveal it is composed of six small stones (size c.1–2 mm). Images: (A) single 'cemented' unit; (B–D) first stone separated, with (D) close-up of separation; (E) a second stone is separated; (F–H) a third stone is separated, with (G) closeup of exuviae; (I–K) separation of fourth stone, with (I) close-up of exuviae; (K–M) fifth and sixth stones separated, with (M) close-up of exuviae; (N) all six stones separated; (O) all six stones beside the 1-cm mark of a ruler for scale. (White arrows highlight exuvial attachment on separating stones.)
Figure 3 in Micro-terraforming by Antarctic springtails (Hexapoda: Entognatha)
Figure 3. Extreme exuvial density of field survey rock #13 shows how the stone particles may become scaffolding for an exuvial 'web' composed of many exuviae joined together. Note the associated high density of springtails (body size c.1 mm) using it as a refuge.
FIGURE 2 in Checklist of the springtails (Hexapoda: Collembola) of the Edough massif northeastern Algeria
FIGURE 2. The forest of the National Park of Edough, west of Seraidi (Photo S. Hamra-Kroua)
FIGURE 1 in Checklist of the springtails (Hexapoda: Collembola) of the Edough massif northeastern Algeria
FIGURE 1. Location of the Edough massif, with sampled sites (violet dots)
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.