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.
3,427
datasets available to search
ShareScore release 0.7.1
Dataset results
3,427 results for “Nematoda”
FIGURE 10. Onchium robustum Gerlach, 1965 in Swedish Plectida (Nematoda). Part 8. The genus Onchium Cobb, 1920
FIGURE 10. Onchium robustum Gerlach, 1965, female (A, D) and male (B–C, E–F). A–C: Anterior end showing variability in the shape of ocelli; D–E: Anterior end showing excretory pore (arrows); F: Anterior end showing two anteriormost alveolar supplements (arrows). Scale bars: A–F = 20 µm.
FIGURE 9. Onchium robustum Gerlach, 1965 in Swedish Plectida (Nematoda). Part 8. The genus Onchium Cobb, 1920
FIGURE 9. Onchium robustum Gerlach, 1965, female (A–D, G, I) and male (E–F, H). A–B: Pharyngeal region (anterior and posterior part); C, E: Anterior end, median section; D, F: Anterior end, surface view; G: Female reproductive system (anterior part); H: Male posterior region; I: Female tail. Scale bars: A–B, G–I = 50 µm, C–F = 20 µm.
FIGURE 8 in Swedish Plectida (Nematoda). Part 8. The genus Onchium Cobb, 1920
FIGURE 8. Onchium parocellatum (Allgén, 1940) Gerlach, 1962 female. A: Anterior end showing ocelli; B: Anterior end showing onchiostyle and excretory pore (arrow); C: Coelomocytes; D: Entire specimen (arrows point at coelomocytes). Scale bars: A–B = 20 µm, C = 100 µm, D = 200 µm.
FIGURE 7 in Swedish Plectida (Nematoda). Part 8. The genus Onchium Cobb, 1920
FIGURE 7. Onchium parocellatum (Allgén, 1940) Gerlach, 1962, female lectotype. A: Anterior end showing ocelli (arrow); B: Anterior end showing onchiostyle (arrow); C: Anterior end showing excretory pore (arrow); D: Entire specimen. Scale bars: A–C = 20 µm, D = 200 µm.
FIGURE 5. Onchium metocellatum Wieser, 1956, female. A in Swedish Plectida (Nematoda). Part 8. The genus Onchium Cobb, 1920
FIGURE 5. Onchium metocellatum Wieser, 1956, female. A: Pharyngeal region showing onchiostyle and excretory channel (arrow); B–C: Anterior end showing ocelli (arrows); D: Female, male and eggs inside the possible host. Scale bars: A–C = 20 µm, D = 200 µm.
FIGURE 4. Onchium metocellatum Wieser, 1956 in Swedish Plectida (Nematoda). Part 8. The genus Onchium Cobb, 1920
FIGURE 4. Onchium metocellatum Wieser, 1956, male (A–B, G) and female (C–F, H). A, C: Anterior end, median section; B, D: Anterior end, surface view; E: Female tail; F: Female reproductive system (anterior part); G: Male posterior region; H: Pharyngeal region, median section. Scale bars: A–D, G = 20 µm, E–F, H = 50 µm.
FIGURE 6 in Swedish Plectida (Nematoda). Part 8. The genus Onchium Cobb, 1920
FIGURE 6. Onchium parocellatum (Allgén, 1940) Gerlach, 1962, female. A: Anterior end, median section; B: Anterior end, surface view; C–D: Pharyngeal region (anterior and posterior part); E: Tail; F: Reproductive system (anterior part). Scale bars: A–B = 20 µm, C–F = 50 µm.
FIGURE 3 in Swedish Plectida (Nematoda). Part 8. The genus Onchium Cobb, 1920
FIGURE 3. Variability of the shape of ocelli in females (A–D) and males (E–F) of Onchium ocellatum Cobb, 1920. Scale bars: A–F = 20 µm.
FIGURE 2. Onchium ocellatum Cobb, 1920 in Swedish Plectida (Nematoda). Part 8. The genus Onchium Cobb, 1920
FIGURE 2. Onchium ocellatum Cobb, 1920, female (A, C–D) and male (B). A: Anterior end showing onchiostyle; B: Anterior end (left ventrosublateral view) showing the anteriormost alveole (arrow); C: Excretory ampulla and pore (arrow); D: Female and eggs inside the possible host. Scale bars: A–C = 20 µm, D = 200 µm.
FIGURE 1. Onchium ocellatum Cobb, 1920 in Swedish Plectida (Nematoda). Part 8. The genus Onchium Cobb, 1920
FIGURE 1. Onchium ocellatum Cobb, 1920, female (A, E–H) and male (B–D). A: Pharyngeal region; B, E: Anterior end, median section; C, F: Anterior end, surface view; D: Male posterior region; G: Female reproductive system (anterior part); H: Female tail. Scale bars: A, G–H = 50 µm, B–F = 20 µm.
FIGURE 1 in Morphological characterisation of a new and two known species of Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) from Iran
FIGURE 1. Ditylenchus sturhani sp. n. from Iran. Female (A, C–F, H–J) and male (B, G, K, L). A, B: Entire body; C, D: Anterior end; E: Reproductive system; F, G: Pharyngeal region; H–L: Posterior end. (Scale bars: A, B = 100 µm; C, D = 10 µm; E = 25 µm; F–L = 15 µm).
FIGURE 5 in Morphological characterisation of a new and two known species of Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) from Iran
FIGURE 5. Iranian population of Ditylenchus virtudesae, female (A, C–H) and male (B, I). A, B: Entire body; C: Reproductive system; D: Pharyngeal region; E–I: Tail. (Scale bars: A, B= 40 µm; C–I= 10 µm).
FIGURE 2 in Morphological characterisation of a new and two known species of Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) from Iran
FIGURE 2. Ditylenchus sturhani sp. n. Female (B, D–F, H, I, K, M) and male (C, G, J, L). A: Entire body; B–D: Anterior end; E–G: Posterior part of pharynx (arrow shows pharyngo-intestinal junction); H: Gonoduct; J: Cloacal region; K, L: Posterior end; M: Mid-body showing lateral lines. (Scale bars: A= 50 µm; B–M= 10 µm).
FIGURE 4 in Morphological characterisation of a new and two known species of Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) from Iran
FIGURE 4. Iranian population of Ditylenchus valveus, female (B, D, E, G, H, J, M) and male (C, F, I, K, L). A: Male and female entire body; B–D: Anterior end; E: Vulval region; F, G, J–M: Posterior end; H: Mid-body showing lateral lines; I: Cloacal region. (Scale bars: A= 100 µm; B–D, E, H–M= 10 µm; F, G: 20 µm).
FIGURE 3 in Morphological characterisation of a new and two known species of Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) from Iran
FIGURE 3. Iranian population of Ditylenchus valveus, female (A, C–F) and male (B,G, H). A, B: Entire body; C: Mid-body showing lateral lines; D: Pharyngeal region; E–H: Tail. (Scale bars: A, B= 80 µm; C, D= 20 µm; E–F= 10 µm).
FIGURE 6 in Morphological characterisation of a new and two known species of Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) from Iran
FIGURE 6. Iranian population of Ditylenchus virtudesae, female (A–J) and male (K). A: Pharyngeal region; B–D: Anterior end; E: Entire body; F: Mid-body showing lateral lines; H: Gonoduct; I–K: Posterior end. (Scale bars: A–D, F–K= 10 µm; E: 50 µm).
FIGURE 4 in Heth impalutiensis n. sp. (Nematoda: Ransomnematoidea: Hethidae) a millipede parasite from Central Mindanao, Philippines
FIGURE 4. Phylogenetic relationships of Heth impalutiensis n. sp. as inferred from Baysian analysis of partial sequences of SSU and LSU rDNA. a, the phylogram of relationships of new species with wide set of ascaridid-spirurid-oxyurid species, based on partial SSU rDNA sequences (scale = 0.1 expected changes per site); b, part of total SSU rDNA phylogram presented as cladogram with the level of support for separate nodes indicated (posterior probability). Only studied species of Ransomnematoidea are included. c, relationships with other Ransomnematoidea based on partial LSU rDNA sequences (D2- D3 segment).
FIGURE 1. Heth impalutiensis n in Heth impalutiensis n. sp. (Nematoda: Ransomnematoidea: Hethidae) a millipede parasite from Central Mindanao, Philippines
FIGURE 1. Heth impalutiensis n. sp., female. a, total view; b, anterior end, lateral view; c, anterior end, ventral view; d, pseudolabia, apical view; e, f, optical section through buccal cavity; g, optical section through anterior end; h, anterior part of excretory system; i, vulva and anal region; j, posterior section of uterus filled with numerous sperm content. (Scale bar for a = 250 µm, b, c, e, f = 40 µm, d = 60 µm, g = 85 µm, h= 30 µm, i = 100 µm, j = 75 µm).
FIGURE 3 in Heth impalutiensis n. sp. (Nematoda: Ransomnematoidea: Hethidae) a millipede parasite from Central Mindanao, Philippines
FIGURE 3. SEM micrographs of Heth impalutiensis n. sp. a, female anterior end, lateral view; b, female anterior end, ventral view; c, female pseudolabia, apical view; d, male anterior end, apical view; e, male posterior end, subventral view; f, distal spicule end, lateral view. (Scale bar for a–c, e = 30 µm, d, f = 10 µm).
FIGURE 2. Heth impalutiensis n in Heth impalutiensis n. sp. (Nematoda: Ransomnematoidea: Hethidae) a millipede parasite from Central Mindanao, Philippines
FIGURE 2. Heth impalutiensis n. sp., male. a, b, optical section through the buccal cavity; c, anterior end, lateral view; d, total view; e, optical section through ventral sucker, lateral view; f, posterior end, ventral view; g, h, posterior end, lateral view; i, j, spicule and gubernaculum. (Scale bars for a–c, e = 30 µm, d = 200 µm, f, g = 40 µm, h= 45 µm, i, j = 75 µm).
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.