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7,959 results for “sp. n.”
Figure 5 in Tokorhabditis tauri n. sp. and T. atripennis n. sp. (Rhabditida: Rhabditidae), isolated from Onthophagus dung beetles (Coleoptera: Scarabaeidae) from the Eastern USA and Japan
Figure 5: Differential interference contrast micrographs of the adult male of TOKOrhabditiS taUri n. sp. All images are in right lateral view. (A) Lip to anterior pharynx region in five focal planes. (B) Posterior pharynx region in three focal planes. (C) Entire gonad in two focal planes. (D) Tail region in six focal planes. Genital papillae are labeled with the prefix "P"; suffix "d" indicates papillae that open dorsally or laterally. am, amphid; bb, basal bulb; cs, cephalic sensilla; d, dorsal denticles; dr, deirid; ep, excretory pore; ls, labial sensilla; nr, nerve ring; tr, testis reflection; vd, VaS deferenS; vh, ventral precloacal hook.
Figure 3 in Tokorhabditis tauri n. sp. and T. atripennis n. sp. (Rhabditida: Rhabditidae), isolated from Onthophagus dung beetles (Coleoptera: Scarabaeidae) from the Eastern USA and Japan
Figure 3: Dauer juvenile of TOKOrhabditiS taUri n. sp. All drawings are in left lateral view. (A) Anterior region. (B) Surface of lip region. (C) Genital anlagen. (D) Tail region.
Figure 8 in Tokorhabditis tauri n. sp. and T. atripennis n. sp. (Rhabditida: Rhabditidae), isolated from Onthophagus dung beetles (Coleoptera: Scarabaeidae) from the Eastern USA and Japan
Figure 8: Scanning electron micrograph of the male tail of TOKOrhabditiS taUri n. sp. Genital papillae are labeled with the prefix "P"; suffix "d" indicates papillae that open dorsally or laterally.
Figure 10 in Tokorhabditis tauri n. sp. and T. atripennis n. sp. (Rhabditida: Rhabditidae), isolated from Onthophagus dung beetles (Coleoptera: Scarabaeidae) from the Eastern USA and Japan
Figure 10: Hermaphrodite, male and dauer juvenile of TOKOrhabditiSatripenniS n. sp. (A) Anterior part of hermaphrodite in left lateral view. (B) Surface of lip region of hermaphrodite. (C) Stomatal region of hermaphrodite in left lateral view. (D) Anterior part of dauer juvenile in left lateral view. (E) Surface of lip region of dauer juvenile. (F) Anterior gonad of mature hermaphrodite in right lateral view. (G) Anterior gonad of young hermaphrodite in right lateral view. (H) Tail region of hermaphrodite in left lateral view. (I) Male tail region in ventral view. (J) Male tail region in right lateral view. (K) Spicule and gubernaculum in right lateral view.
Figure 2 in Tokorhabditis tauri n. sp. and T. atripennis n. sp. (Rhabditida: Rhabditidae), isolated from Onthophagus dung beetles (Coleoptera: Scarabaeidae) from the Eastern USA and Japan
Figure 2: Hermaphrodite and male of TOKOrhabditiS taUri n. sp. All drawings are in right lateral view. (A) Surface of lip region of hermaphrodite. (B) Stomatal region of hermaphrodite. (C) Anterior part of hermaphrodite. (D) Anterior gonad of mature hermaphrodite. (E) Vulval region of young hermaphrodite. (F) Tail region of hermaphrodite. (G) Male tail region. (H) Spicule and gubernaculum.
Figure 13 in Tokorhabditis tauri n. sp. and T. atripennis n. sp. (Rhabditida: Rhabditidae), isolated from Onthophagus dung beetles (Coleoptera: Scarabaeidae) from the Eastern USA and Japan
Figure 13: Differential interference contrast micrographs of the dauer juvenile of TOKOrhabditiS atripenniS n. sp. All images in left lateral view. (A) Entire body. (B) Lip and anterior pharynx region in two focal planes. (C) Posterior pharynx region in two focal planes. (D) Mid-body region in two focal planes. (E) Anal region. am, amphid; bb, basal bulb; ep, excretory pore; ga, genital anlage; mb, median bulb; nr, nerve ring.
Figure 1 in Tokorhabditis tauri n. sp. and T. atripennis n. sp. (Rhabditida: Rhabditidae), isolated from Onthophagus dung beetles (Coleoptera: Scarabaeidae) from the Eastern USA and Japan
Figure 1: Mature male, hermaphrodite, and dauer juvenile of TOKOrhabditiS taUri n. sp. (A) Male. (B) Mature hermaphrodite. (C) Dauer juvenile.
Figure 4 in Paratylenchus ilicis n. sp. (Nematoda: Paratylenchinae) Associated with Holly from the Netherlands and New Taxonomical and Phylogenetic Support for the Synonymization of Cacopaurus with Paratylenchus
Figure 4: Phylogenetic tree generated using BI based on alignment of D2–D3 of 28S rRNA gene sequences of PaRatyleNChUS species using the GTR + G + I nucleotide substitution model. Bayesian posterior probabilities (in percentage) are given next to each node and sequences of PaRatyleNChUS iliCiS n. sp. are highlighted. BI: Bayesian inference.
Figure 6 in Paratylenchus ilicis n. sp. (Nematoda: Paratylenchinae) Associated with Holly from the Netherlands and New Taxonomical and Phylogenetic Support for the Synonymization of Cacopaurus with Paratylenchus
Figure 6: Phylogenetic tree generated using BI based on alignment of COX1 gene sequences of PaRatyleNChUS species using the GTR + G + I nucleotide substitution model. Bayesian posterior probabilities (in percentage) are given next to each node and sequences of PaRatyleNChUS iliCiS n. sp. are highlighted. BI: Bayesian inference.
Figure 3 in Paratylenchus ilicis n. sp. (Nematoda: Paratylenchinae) Associated with Holly from the Netherlands and New Taxonomical and Phylogenetic Support for the Synonymization of Cacopaurus with Paratylenchus
Figure 3: Line illustrations of PaRatyleNChUS iliCiS n. sp. paratypes. A, B, D: Total bodies showing developmental stages from juvenile (J2) to slightly obese to fully obese females; C: Anterior region of female showing stylet, pharynx, and SE pore position; E–G: Tail regions showing vulva, lateral field differentiation, tail shape, and tips of females; H: Tails of J2; I: Anterior region of J2; J: Anterior region of male; K: Posterior region of male. SE pore: secretory-excretory pore.
Figure 5 in Paratylenchus ilicis n. sp. (Nematoda: Paratylenchinae) Associated with Holly from the Netherlands and New Taxonomical and Phylogenetic Support for the Synonymization of Cacopaurus with Paratylenchus
Figure 5: Phylogenetic tree generated using BI based on alignment of ITS rRNA gene sequences of PaRatyleNChUS species using the GTR + G + I nucleotide substitution model. Bayesian posterior probabilities (in percentage) are given next to each node and sequences of PaRatyleNChUS iliCiS n. sp. are highlighted. BI: Bayesian inference.
Fig. 2 in Acanthoatractis xinguensis n. gen., n. sp. (Nematoda: Cosmocercoidea: Atractidae) parasite of yellow-spotted Amazon river turtle, Podocnemis unifilis Troschel (Testudines: Podocnemididae) in Brazilian Amazon
Fig. 2. Line drawings of Acanthoatractis xinguensis n. gen., n. sp. (Female) (A) Posterior extremity of body, region of vulva and anus, lateral view. (B) Reproductive tract showing monodelphic uterus, lateral view.
Fig. 1 in Acanthoatractis xinguensis n. gen., n. sp. (Nematoda: Cosmocercoidea: Atractidae) parasite of yellow-spotted Amazon river turtle, Podocnemis unifilis Troschel (Testudines: Podocnemididae) in Brazilian Amazon
Fig. 1. Line drawings of Acanthoatractis xinguensis n. gen., n. sp. (Male) (A) Cephalic extremity, apical view. (B) Cephalic extremity, apical view, highlighting the oral opening surrounded by sclerotized pieces and the distribution of open end wrench-shaped sclerotized structures. (C) Anterior extremity of body, ventral view. (D) Whole body, lateral view. (E) Details of spicules. (F) Posterior extremity of body, ventral view.
Fig. 3 in Acanthoatractis xinguensis n. gen., n. sp. (Nematoda: Cosmocercoidea: Atractidae) parasite of yellow-spotted Amazon river turtle, Podocnemis unifilis Troschel (Testudines: Podocnemididae) in Brazilian Amazon
Fig. 3. Scanning electron micrographs of Acanthoatractis xinguensis n. gen., n. sp. (A) Male, cephalic extremity, subapical view. (B) Anterior extremity of body, ventrolateral view. Inset: Detail of deirid, lateral view (Scale-bar: 10 μm); Detail of excretory pore, ventral view (Scale-bar: 10 μm). (C) Posterior extremity of male, ventrolateral, distribution of caudal papillae (arrowheads). Detail of phasmid, ventrolateral view (Scale-bar: 5 μm); Postcloacal papillae, ventrolateral view (Scalebar: 10 μm). (D) Posterior extremity of female, ventrolateral view, lines indicate vulva and anus. Abbreviations: Amphid, Am; anus, An; deirid, De; excretory pore, Ep; single median papilla, Sm; vulva, Vu.
Fig. 2 in Eimeria erythrorhynchosi n. sp. (Apicomplexa: Eimeriidae) from the American white pelican Pelecanus erythrorhynchos Gmelin, 1789 (Pelecaniformes: Pelecanidae) in Toluca, Mexico
Fig. 2. Line drawing of a sporulated oocyst of Eimeria erythrorhynchosi n. sp. from Pelecanus erythrorhynchos. Scale-bar: 10 μm.
Fig. 1 in Eimeria erythrorhynchosi n. sp. (Apicomplexa: Eimeriidae) from the American white pelican Pelecanus erythrorhynchos Gmelin, 1789 (Pelecaniformes: Pelecanidae) in Toluca, Mexico
Fig. 1. Photomicrographs of sporulated oocysts and sporocysts of Eimeria erythrorhynchosi n. sp. A, Ovoidal oocyst with clearly visible ovoidal sporocysts with a polar granule (PG) beneath the c. B, A sporocysts with clearly flattened Stieda body (SB) and rounded sub-Stieda body (SSB); C, Ovoidal oocyst with clearly visible ovoidal sporocysts with a polar granule (PG) beneath the micropyle in outer layer (MOL); D, One oocyst showing micropyle in outer layer (MOL) and sporocyst residuum (SR), consisting of many spherules. Scale-bars: 10 μm.
Fig. 1. Dermopristis pterophilus n in A new microbothriid monogenean Dermopristis pterophilus n. sp. from the skin of the Critically Endangered green sawfish Pristis zijsron Bleeker, 1851 (Batoidea: Pristidae) in Western Australia
Fig. 1. Dermopristis pterophilus n. sp. attached to the skin adjacent to the base of left pectoral fin of juvenile green sawfish Pristis zijsron Bleeker, 1851 (photograph DLM, 2011).
Fig. 4. Dermopristis pterophilus n in A new microbothriid monogenean Dermopristis pterophilus n. sp. from the skin of the Critically Endangered green sawfish Pristis zijsron Bleeker, 1851 (Batoidea: Pristidae) in Western Australia
Fig. 4. Dermopristis pterophilus n. sp. various soft parts, ventral perspective. (A) Reproductive system (excluding testes). (B) Spermatophores. (C & D) Pharynx with papillae retracted vs extended. Abbreviations: dr, distal region of tubular male reproductive tract; gm, germarium; gt1–3, first through third major gut sub-trees; mf, muscle fibres; mp, male pore; o, o¨otype; p, digitiform papillae; pr, proximal region of tubular male reproductive tract; sr, seminal receptacle; sv, seminal vesicle; v, vagina; vd, vas deferens; vid, vitelline duct; vr, vitelline reservoir. Scale bars: (A) 250 μm; (B) 300 μm; (C & D) 100 μm.
Fig. 3. Dermopristis pterophilus n in A new microbothriid monogenean Dermopristis pterophilus n. sp. from the skin of the Critically Endangered green sawfish Pristis zijsron Bleeker, 1851 (Batoidea: Pristidae) in Western Australia
Fig. 3. Dermopristis pterophilus n. sp. holotype, ventral perspective. Abbreviations: b, bladder; bc, buccal cavity; dr, distal region of tubular male reproductive tract; g, gut; gm, germarium; h, haptor; m, mouth; mf, muscle fibres; mp, male pore; o, o¨otype; ph, pharynx; pr, proximal region of tubular male reproductive tract; sr, seminal receptacle; t, testis; vd, vas deferens; ve, vasa efferentia; vf, vitelline follicle; vr, vitelline reservoir. Scale bar: 500 μm.
Fig. 2. Dermopristis pterophilus n in A new microbothriid monogenean Dermopristis pterophilus n. sp. from the skin of the Critically Endangered green sawfish Pristis zijsron Bleeker, 1851 (Batoidea: Pristidae) in Western Australia
Fig. 2. Dermopristis pterophilus n. sp. holotype, ventral perspective. Abbreviations: dr, distal region of tubular male reproductive tract; gm, germarium; h, haptor; mf, muscle fibres; mp, male pore; ph, pharynx; pr, proximal region of tubular male reproductive tract; t, testis; vd, vas deferens; vf, vitelline follicles; vr, vitelline reservoir. Scale bar: 500 μm.
ScienceDex guides
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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.