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”
FIG. 4 in New insights into the evolutionary relationships of Opisthodorylaimus sylphoides (Williams, 1959), with proposal of Sylphodorylaimus n. gen. (Nematoda, Dorylaimida, Thornenematidae)
FIG. 4. — Phylogenetic relationships of Sylphodorylaimus sylphoides (Williams, 1959) n. comb. Bayesian 50% majority rule consensus tree as inferred from D2-D3 expansion segments of 28S rDNA sequence alignments under the GTR + G + I model. Posterior probabilities are given for appropriate clades. Newly obtained sequence is indicated by bold letter.
FIG. 2 in New insights into the evolutionary relationships of Opisthodorylaimus sylphoides (Williams, 1959), with proposal of Sylphodorylaimus n. gen. (Nematoda, Dorylaimida, Thornenematidae)
FIG. 2. — Sylphodorylaimus syphoides (Williams, 1958) n. comb. (Zirab population): A, female, entire; B, male, entire; C-E, anterior region, lateral median view; F, pharyngo-intestinal junction; G, oviduct-uterus junction; H, anterior region, lateral surface view; I, female, caudal region; J, male, caudal region; K, vulva, ventral view; L, P, vagina region; M, lateral guiding piece; N, male, posterior body region in part; O, spicule. Scale bars: A, B, 500 µm; C, D, N, O, 10 µm; E, H, K, L, M, P, 5 µm; F, G, 20 µm; I, J, 50 µm.
FIG. 1 in New insights into the evolutionary relationships of Opisthodorylaimus sylphoides (Williams, 1959), with proposal of Sylphodorylaimus n. gen. (Nematoda, Dorylaimida, Thornenematidae)
FIG. 1. — Sylphodorylaimus syphoides (Williams, 1958) n. comb. (Zirab population, male): A, caudal region; B, entire; C, D, anterior region, lateral median view; E, anterior region, lateral surface view; F, lateral guiding piece; G, H, posterior body region, in part; I, spicule. Scale bars: A, H, 50 µm; B, 500 µm; C, I, 10 µm; D-F, 5 µm; G, 20 µm.
FIG. 3 in New insights into the evolutionary relationships of Opisthodorylaimus sylphoides (Williams, 1959), with proposal of Sylphodorylaimus n. gen. (Nematoda, Dorylaimida, Thornenematidae)
FIG. 3. — Sylphodorylaimus sylphoides (Williams, 1959) n. comb. (Sufiyan population): A, female, anterior region in lateral median view; B, male, anterior region in median ventral view; C, female, entire; D, male, entire; E, anterior region, lateral surface view; F, pharyngo-intestinal junction; G, vagina region; H, female, caudal region; I, male, caudal region; J, sperm cells; K, spicule; L, ventromedian supplements. Scale bars: A, B, E-G, J-L, 10 μm; C, D, 100 μm; H, I, 50 μm.
Figure 7 in Incidence of Oscheius onirici (Nematoda: Rhabditidae), a potentially entomopathogenic nematode from the marshlands of Wisconsin, USA
Figure 7: The mortality rates for different insect types treated with either an Oscheius onirici population, or a control treatment of two milliliters of distilled water. (B) The average number of days that it took for a larva to die after exposure to the treatment. Insects were treated with either an Oscheius onirici population, or a control treatment of two milliliters of distilled water.
Fig. 7 in Two New Species Of Aporcelaimellus Heyns, 1965 (Nematoda: Dorylaimida) From The Tropics
Fig. 7. Aporcelaimellus insularis sp. n. A–C: posterior ends of three females (B: holotype). (Scale bar 20 µm)
Fig. 6 in Two New Species Of Aporcelaimellus Heyns, 1965 (Nematoda: Dorylaimida) From The Tropics
Fig. 6. Aporcelaimellus insularis sp. n. A–B: anterior ends; C–D: vulval regions (note the heartshaped vulval lips). (Scale bars 20 µm each)
Fig. 5 in Two New Species Of Aporcelaimellus Heyns, 1965 (Nematoda: Dorylaimida) From The Tropics
Fig. 5. Schematic drawings of tails of nine Aporcelaimellus species each showing concave contour on dorsal side (tails subdigitate, digitate or mammillate). A: A. heynsi BAQRI et JAIRAJPURI, 1968; B: A. duhouxi (ALTHERR, 1963); C: A. glandus BOTHA et HEYNS, 1991; D: A. samarcandicus (TULAGANOV, 1949); E: A. medius ANDRÁSSY, 2002; F: A. seinhorsti (MEYL, 1957); G: A. krygeri
Fig. 2. Aporcelaimellus amazonicus. A–C in Two New Species Of Aporcelaimellus Heyns, 1965 (Nematoda: Dorylaimida) From The Tropics
Fig. 2. Aporcelaimellus amazonicus. A–C: Posterior ends of three females (C: holotype.) (Scale bar 20 µm)
Fig. 3 in Two New Species Of Aporcelaimellus Heyns, 1965 (Nematoda: Dorylaimida) From The Tropics
Fig. 3. Maps of oesophageal gland nuclei in the two new Aporcelaimellus species. A–B: A. amazonicus sp. n., two females; C–D: A. insularis sp. n., two females
Fig. 4 in Two New Species Of Aporcelaimellus Heyns, 1965 (Nematoda: Dorylaimida) From The Tropics
Fig. 4. Schematic drawings of tails of nine Aporcelaimellus species each showing concave contour on dorsal side (tails subdigitate, digitate or mammillate). A: A. estonicus (KRALL, 1957); B: A. cocophilus (LOOS, 1949); C: A. chauhani BAQRI et KHERA, 1975; D: A. gerlachi (MEYL, 1956); E: A. maitai YEATES, 1967; F: A. kikereensis BAQRI et COOMANS, 1973; G: A. paracentrocercus (DE CONINCK, 1935); H: A. pycnus (THORNE, 1939); I: A. alius ANDRÁSSY, 2002
Fig. 1 in Two New Species Of Aporcelaimellus Heyns, 1965 (Nematoda: Dorylaimida) From The Tropics
Fig. 1. Aporcelaimellus amazonicus sp. n. A–B: anterior ends; C–D: vulval regions (note the long and narrow vulval lips). (Scale bars 20 µm each)
Fig. 5 in Two New Species Of Dorylaimida (Nematoda) From The Mediterranean Region
Fig. 5. Metaxonchium nobile sp. n.: A = posterior region of male, B = male posterior end. (Scale bars 20 µm each)
Fig. 4 in Two New Species Of Dorylaimida (Nematoda) From The Mediterranean Region
Fig. 4. Metaxonchium nobile sp. n.: A = anterior end, B = cervical region, with large lacunae, C = junction between the two sections of the oesophagus, D = cardial region, E = vulval region, with the
Fig. 1 in Two New Species Of Dorylaimida (Nematoda) From The Mediterranean Region
Fig. 1. Laevides ingens sp. n.: A = anterior end, B = cardial region, C = vulval region (intestine with compact contents), D = uterine egg. (Scale bars 20 µm each)
Fig. 6 in Two New Species Of Dorylaimida (Nematoda) From The Mediterranean Region
Fig. 6. Metaxonchium nobile sp. n. microphotos: A = anterior end, B = oesophago-intestinal junction, C = vulval region, D = female posterior end, E–F = male spicular region
Fig. 1. Rondonia rondoni. Hembra. A in Nuevo registro geográfico de Rondonia rondoni Travassos, 1919 (Nematoda, Atractidae) en Argentina
Fig. 1. Rondonia rondoni. Hembra. A. Extremo anterior, vista lateral. Escala = 200 µm. B. Extremo posterior, vista lateral. Escala = 200 µm. C. Detalle de la cloaca. Escala = 50 µm.
Figure 1 in Delatylus andersoni n. gen., n. sp. (Nematoda: Neotylenchidae) Isolated from White Pine (Pinus monticola) Lumber from USA and Intercepted in Ningbo, China
Figure 1: Line drawings of female Delatylus andersoni n. gen., n. sp: (A) head and pharynx, (B) lip region and stylet, (C) deirids, (D) vulva and the anus viewed ventrally, (E) vulva and the tail viewed laterally, (F) oviduct and quadricolumella, (G) oocytes.
Figure 6. Genus Rodentanema Smales, 2016. A–D in Revision of the genera of Heligmonellidae (Nematoda, Heligmosomoidea), parasitic in Muridae from New Guinea
Figure 6. Genus Rodentanema Smales, 2016. A–D'. Rodentanema aenigma Smales, 2016. A–B' head. A lateral or median view showing buccal capsule. B, B' apical view. C, D sections at midbody. C male, D, D' female. Abbreviations: bc buccal capsule. Source: A–D redrawn from [38]. B', D' modified figures: B' six lips instead five. D' rotated 90° counterclockwise with respect to the original.
Figure 3a in Revision of the genera of Heligmonellidae (Nematoda, Heligmosomoidea), parasitic in Muridae from New Guinea
Figure 3a. Montistrongylus Smales & Heinrich, 2010. Body sections. A–D' Montistrongylus ingati Smales & Heinrich, 2010. A–B' within proximal body. A male, B, B' female. C–D' at midbody. C male, D, D' female. E–H' Montistrongylus giluwensis Smales, 2011. E, F within proximal body. E male, F female. G–H' at midbody. G, G' male, H, H' female. Sources: A, D redrawn from [45]; E–H redrawn from [33]. B', D', G', H' modified figures: B' rotated ca. 75° counterclockwise with respect of the original. D'–H' reinterpreted orientation of the axis (subfrontal). G' reversed on its frontal axis then rotated 30° clockwise with respect to the original. H' rotated ca. 10–20° counterclockwise with respect to the original.
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.