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.
58
datasets available to search
ShareScore release 0.9.0
Dataset results
58 results for “Triplonchida”
Fig. 4 in Two new nematode species of the genus Paratrilobus Micoletzky, 1922 (Nematoda, Triplonchida) from the water area of Lake Baikal (Russia)
Fig. 4. Paratrilobus aquaticus sp. nov., light micrographs. A. Entire male. B. Entire female. C. Female pharyngeal region. D. Male anterior end. E. Female anterior end. F. Female vulva region. G. Male cloacal region. H. Male posterior body end. I. Female posterior body end. A, D, G–H: holotype (HM RAS 102/64 768-2); B–C, I: paratype (HM RAS 102/64 768-4); E–F: paratype (LIN-SB 765-3). Scale bars: A–B = 200 µm; C, H = 50 µm; D–E = 10 µm; F–G, I = 20 µm.
Fig. 3 in Two new nematode species of the genus Paratrilobus Micoletzky, 1922 (Nematoda, Triplonchida) from the water area of Lake Baikal (Russia)
Fig. 3. Paratrilobus aquaticus sp. nov. A. Male anterior end. B. Female vulva region. C. Female posterior body end. D. Male precloacal supplement. E. Male posterior body end. A, D–E: holotype (HM RAS 102/64 768-2); B–C: paratype (HM RAS 102/64 768-4). Scale bars: A = 30 µm; B = 70 µm; C = 60 µm; D = 20 µm; E = 50 µm.
FIGURE 3 in Tobrilus methanus sp. n. and Tripyla posolskii sp. n. (Nematoda, Triplonchida) from Lake Baikal, Russia
FIGURE 3. Tripyla posolskii sp. n. Holotype male and paratype female. A: male, entire body; B: male head; C: vulva region; D: female tail; E: male tail. Scale bars: A— 200 µm; C – E— 60 µm; B— 25 µm.
Рис. 1. Рисуночный кΛюч ΑΛя опреΑеΛения самцов виΑов роΑа Asperotobrilus Shoshin 1991. А, Г, Ж, И, Н — гоΛова самца; Б, О — суппΛемент; В, Е, З, Λ — заΑний конец теΛа самца; Á, К — спикуΛы и руΛек; М — самец цеΛиком Fig. 1. Picture key for identifying male species of the genus Asperotobrilus Shoshin 1991. А, Г, Ж, И, Н — head of male; Б, О — supplement; В, Е, З, Λ — posterior body end of male; Á, К — spicules and gubernaculum; М — male, entire body in Review of the Asperotobrilus Shoshin 1991 (Nematoda, Triplonchida, Tobrilidae) genus
Рис. 1. Рисуночный кΛюч ΑΛя опреΑеΛения самцов виΑов роΑа Asperotobrilus Shoshin 1991. А, Г, Ж, И, Н — гоΛова самца; Б, О — суппΛемент; В, Е, З, Λ — заΑний конец теΛа самца; Á, К — спикуΛы и руΛек; М — самец цеΛиком Fig. 1. Picture key for identifying male species of the genus Asperotobrilus Shoshin 1991. А, Г, Ж, И, Н — head of male; Б, О — supplement; В, Е, З, Λ — posterior body end of male; Á, К — spicules and gubernaculum; М — male, entire body
Fig. 3 in Two new nematode species of the genus Tobrilus Andrássy, 1959 (Nematoda, Triplonchida) from Lake Baikal, Russia
Fig. 3. Tobrilus juliae sp. nov. A. Male anterior end. B. Female vulva region. C. Male pharyngeal region. D. Female posterior body end. E. Male posterior body end. Scale bars: A = 15 µm; B = 50 µm; C = 100 µm; D = 40 µm; E = 30 µm.
Fig. 1 in Two new nematode species of the genus Tobrilus Andrássy, 1959 (Nematoda, Triplonchida) from Lake Baikal, Russia
Fig. 1. Tobrilus elginus sp. nov. A. Male anterior end. B. Male pharyngeal region. C. Female posterior body end. D. Male posterior body end. E. Female vulva region. Scale bars: A = 20 µm; B, E = 100 µm; C–D = 50 µm.
Fig. 2 in Two new nematode species of the genus Tobrilus Andrássy, 1959 (Nematoda, Triplonchida) from Lake Baikal, Russia
Fig. 2. Tobrilus elginus sp. nov., light micrographs. A. Entire male. B. Entire female. C. Male pharyngeal region. D. Male anterior end. E. Female anterior end. F. Female vulva region. G, I. Male posterior body end. H. Male supplement region. J. Female posterior body end. Scale bars: A–B = 500 µm; C, F = 100 µm; D–E, H = 10 µm; G = 20 µm; I–J = 50 µm.
FIGURE 2 in Tobrilus methanus sp. n. and Tripyla posolskii sp. n. (Nematoda, Triplonchida) from Lake Baikal, Russia
FIGURE 2. Tobrilus methanus sp. n. Paratype male and female. A: male, entire body; B: female, entire body; C: male, anterior body end; D: female head; E: male head; F: vulva region; G: cloaca region; H: male tail; I: female tail. Scale bars: A, B—100 µm; C, H—50 µm; F, I—20 µm; D, E, G—10 µm.
FIGURE 1 in Tobrilus methanus sp. n. and Tripyla posolskii sp. n. (Nematoda, Triplonchida) from Lake Baikal, Russia
FIGURE 1. Tobrilus methanus sp. n. Holotype male and paratype female. A: male, entire body; B: male head; C: vulva region; D: male tail; E: female tail. Scale bars: A—100 µm; C–E—40 µm; B—15 µm.
FIGURE 4 in Tobrilus methanus sp. n. and Tripyla posolskii sp. n. (Nematoda, Triplonchida) from Lake Baikal, Russia
FIGURE 4. Tripyla posolskii sp. n. Paratype male and female. A: male, entire body; B: female, entire body; C: male, anterior body end; D: male head; E: female head; F: vulva region; G: cloaca region; H: male tail; I: female tail. Scale bars: A, B—200 µm; C, H—100 µm; F, I—50 µm; D, G—20 µm; E—10 µm.
FIGURE 6 in A review of the genus Tripylina Brzeski, 1963 (Nematoda: Triplonchida), with descriptions of five new species from New Zealand
FIGURE 6. Tripylina yeatesi sp. nov. female. A: Entire body. B: Pharyngeal region, lateral. C: Genital region, lateral. D: Spinneret. Scale bars: A, B, C = 50 μm; D = 25 μm.
FIGURE 5 in A review of the genus Tripylina Brzeski, 1963 (Nematoda: Triplonchida), with descriptions of five new species from New Zealand
FIGURE 5. Tripylina tamaki sp. nov. female. A: Entire body. B: Pharyngeal region, lateral, showing a single cervical seta. C: Pharyngeal region, ventral, showing two pairs cervical setae. D: Genital region, lateral. E: Tail. F: Spinneret. Scale bars: A, B, C, D, E = 50 μm; F = 25 μm.
FIGURE 1. Bayesian tree inferred from SSU gene DNA sequences. Posterior probabilities exceeding 50 in A review of the genus Tripylina Brzeski, 1963 (Nematoda: Triplonchida), with descriptions of five new species from New Zealand
FIGURE 1. Bayesian tree inferred from SSU gene DNA sequences. Posterior probabilities exceeding 50% are given on appropriate clades. Nematode species, GenBank numbers, locations are listed for each taxon if known.
FIGURE 7 in A review of the genus Tripylina Brzeski, 1963 (Nematoda: Triplonchida), with descriptions of five new species from New Zealand
FIGURE 7. Tripylina kaikoura sp. nov. female. A: Entire body. B: Pharyngeal region, lateral. C: Genital region, lateral. D: Tail. E: Spinneret. Scale bars: A, B, C, D = 50 μm; E = 25 μm.
FIGURE 2. Bayesian tree inferred from LSU gene DNA sequences. Posterior probabilities exceeding 50 in A review of the genus Tripylina Brzeski, 1963 (Nematoda: Triplonchida), with descriptions of five new species from New Zealand
FIGURE 2. Bayesian tree inferred from LSU gene DNA sequences. Posterior probabilities exceeding 50% are given on appropriate clades. Nematode species, GenBank numbers, locations are listed for each taxon if known.
FIGURE 3 in A review of the genus Tripylina Brzeski, 1963 (Nematoda: Triplonchida), with descriptions of five new species from New Zealand
FIGURE 3.Tripylina tearoha sp. nov. female. A: Entire body. B: Pharyngeal region, lateral, showing the single cervical seta. C: Pharyngeal region, ventral, showing two pairs cervical setae. D: Genital region, lateral. E: Tail. F: Spinneret. Scale bars: A, B, C, D, E = 50 μm; F = 25 μm.
FIGURE 4 in A review of the genus Tripylina Brzeski, 1963 (Nematoda: Triplonchida), with descriptions of five new species from New Zealand
FIGURE 4. Tripylina manurewa sp. nov. female. A: Entire body. B: Pharyngeal region, lateral, showing the single cervical seta. C: Pharyngeal region, ventral, showing two pairs cervical setae. D: Genital region, lateral. E: Tail. F: En face view. G: Spinneret. Scale bars: A, B, C, D, E = 50 μm; F, G = 25 μm.
FIGURE 5 Bayesian phylogenetic tree inferred from SSU gene DNA sequences. Posterior probabilities great than 50 in New Zealand species of the genus Tripyla Bastian, 1865 (Nematoda: Triplonchida: Tripylidae). I: A new species, a new record and key to long-tailed species
FIGURE 5 Bayesian phylogenetic tree inferred from SSU gene DNA sequences. Posterior probabilities great than 50% are given on appropriate clades. Nematode species, GenBank numbers, locations are listed for each taxon if known.
FIGURE 6 Bayesian phylogenetic tree inferred from LSU gene DNA sequences. Posterior probabilities greater than 50 in New Zealand species of the genus Tripyla Bastian, 1865 (Nematoda: Triplonchida: Tripylidae). I: A new species, a new record and key to long-tailed species
FIGURE 6 Bayesian phylogenetic tree inferred from LSU gene DNA sequences. Posterior probabilities greater than 50% are given on appropriate clades. Nematode species, GenBank numbers, locations are listed for each taxon if known.
FIGURE 4 Tripyla filicaudata. Photomicrographs. A & B in New Zealand species of the genus Tripyla Bastian, 1865 (Nematoda: Triplonchida: Tripylidae). I: A new species, a new record and key to long-tailed species
FIGURE 4 Tripyla filicaudata. Photomicrographs. A & B: Female pharyngeal region. C: Amphid. D: Cardia region (arrowed). E: Male genital region. F: Male, sperm. G: Anus & caudal glands (arrows indicate glands). H: Genital region, vulva, lateral. I: Egg (arrowed) & Reproductive system. J: Spinneret. Scale bars = 10 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.