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3,427 results for “Nematoda”
FIGURE 1. Panagrellus ceylonensis Hechler, 1971 in Redescription and molecular characterization of Panagrellus ceylonensis (Nematoda, Rhabditida, Panagrolaimidae) from India
FIGURE 1. Panagrellus ceylonensis Hechler, 1971 from India. (A) Neck. (B) Anterior end. (C) Entire male. (D) Entire female. (E) Vagina and post-vulval uterine sac. (F) Male posterior end (black arrow showing genital papillae (GP) and Mid-ventral papilla (MP) and grey arrow (Ph) showing phasmid). (G) Female posterior end. (H) Spicule.
FIGURE 2. Panagrellus ceylonensis Hechler, 1971 in Redescription and molecular characterization of Panagrellus ceylonensis (Nematoda, Rhabditida, Panagrolaimidae) from India
FIGURE 2. Panagrellus ceylonensis Hechler, 1971 from India (light microscopy). (A) Neck. (B) Anterior end. (C) Entire male. (D) Entire female. (E) Vagina and post-vulval uterine sac. (F) Male posterior end (black arrow showing genital papillae (GP) and Mid-ventral papilla (MP) and white arrow showing phasmid). (G) Female posterior end. (H) Spicule.
FIGURE 1. Desmicola ryukyuensis n in Morphological and molecular characterization of Desmicola ryukyuensis n. sp. (Nematoda: Oxyuridomorpha: Thelastomatidae) from the wood-feeding cockroach Panesthia angustipennis yayeyamensis Asahina, 1988 (Blattaria: Blaberidae) in the Ryukyu Archipelago, Japan
FIGURE 1. Desmicola ryukyuensis n. sp. Male. A. Oesophageal region, lateral view. B. Cephalic end, optical section. C. Cephalic end (reconstructed from SEM images). D. Tail, lateral view. E. Spicule. F. Habitus, lateral view.
FIGURE 4. Desmicola ryukyuensis n in Morphological and molecular characterization of Desmicola ryukyuensis n. sp. (Nematoda: Oxyuridomorpha: Thelastomatidae) from the wood-feeding cockroach Panesthia angustipennis yayeyamensis Asahina, 1988 (Blattaria: Blaberidae) in the Ryukyu Archipelago, Japan
FIGURE 4. Desmicola ryukyuensis n. sp., SEM images. Female. A. Cervical region, lateral view. B. Anus region and phasmid, ventro-lateral view. C. Vulva, lateral view. D, E. Cephalic end, ventro-lateral view. F. Cephalic end, en face view. G. Oral opening, en face view. H. Sub-ventral lip. I. Dorsal lip. J. Sensilla and fang-like structure at interlabial space. K. Excretory pore, ventral view. Scale bars: A. 50 µm. B, C, D, E. 10 µm. F, I, K. 5 µm. G, H. 2 µm. J. 1 µm.
FIGURE 3. Desmicola ryukyuensis n in Morphological and molecular characterization of Desmicola ryukyuensis n. sp. (Nematoda: Oxyuridomorpha: Thelastomatidae) from the wood-feeding cockroach Panesthia angustipennis yayeyamensis Asahina, 1988 (Blattaria: Blaberidae) in the Ryukyu Archipelago, Japan
FIGURE 3. Desmicola ryukyuensis n. sp. Female. A. Oesophageal region, lateral view. B. Cephalic end, optical section. C. Cephalic end (reconstructed from SEM images). D. Tail, lateral view. E. Vagina. F. Genital tract, lateral view. G. Egg. F. Habitus, lateral view.
FIGURE 2. Desmicola ryukyuensis n in Morphological and molecular characterization of Desmicola ryukyuensis n. sp. (Nematoda: Oxyuridomorpha: Thelastomatidae) from the wood-feeding cockroach Panesthia angustipennis yayeyamensis Asahina, 1988 (Blattaria: Blaberidae) in the Ryukyu Archipelago, Japan
FIGURE 2. Desmicola ryukyuensis n. sp., SEM images. Male. A. Cephalic end and beginning of the lateral ala, lateral view. B. Cephalic end. C. Cephalic end, en face view. D. Tail, lateral view. E. Modified ventrally projected cuticular annuli, ventro-lateral view (anterior end to the top). F. Detail of the modified ventrally projected cuticular annuli, ventral view (anterior end to the top). G. Cloacal region, lateral view. H. Cloacal region, ventral view. Scale bars: A, D. 20 µm. B, E. 10 µm. C. 2 µm. F, G, H. 5 µm.
FIGURE 5 in Morphological and molecular characterization of Desmicola ryukyuensis n. sp. (Nematoda: Oxyuridomorpha: Thelastomatidae) from the wood-feeding cockroach Panesthia angustipennis yayeyamensis Asahina, 1988 (Blattaria: Blaberidae) in the Ryukyu Archipelago, Japan
FIGURE 5. Bayesian Inference (BI) tree inferred from the D2-D3 28S rDNA for several species of the superfamily Thelastomatoidea (Nematoda: Oxyuridomorpha). Two species of Travassosinematidae and three of Pseudonymidae were used as outgroup taxa. Values at the nodes correspond to posterior probability (≥0.95)/bootstrap resampling (≥70). Newly obtained sequences in red.
FIGURE 11 in Two new species of Sabatieria de Rouville, 1903 (Nematoda: Araeolaimida: Comesomatidae) from the Southern Ocean
FIGURE 11. Bayesian tree of the family Comesomatidae and Axonolaimidae (outgroup) based on D2–D3 of 28S rDNA sequences. Bootstrap values (left) and posterior probability (right) are given on appropriate clades. The scale bar represents the number of substitutions per site.
FIGURE 9 in Two new species of Sabatieria de Rouville, 1903 (Nematoda: Araeolaimida: Comesomatidae) from the Southern Ocean
FIGURE 9. Sabatieria multipora sp. nov. Scanning electron micrographs. A. Female anterior part showing cephalic sensilla, amphidial fovea and somatic setae; B. Female anterior part showing amphidial fovea; C. Female anterior part showing somatic setae and cuticle structure; D. Female posterior body region. Scale bar: A, B, D = 20 μm; C = 50 μm.
FIGURE 10 in Two new species of Sabatieria de Rouville, 1903 (Nematoda: Araeolaimida: Comesomatidae) from the Southern Ocean
FIGURE 10. Bayesian tree of the family Comesomatidae and Axonolaimidae (outgroup) based on 18S rDNA sequences. Bootstrap values (left) and posterior probability (right) are given on appropriate clades. The scale bar represents the number of substitutions per site.
FIGURE 7 in Two new species of Sabatieria de Rouville, 1903 (Nematoda: Araeolaimida: Comesomatidae) from the Southern Ocean
FIGURE 7. Sabatieria multipora sp. nov. Paratypes. A. Male anterior body region; B. Female anterior body region; C: Male pharyngeal body region; D: Male posterior body region; E: Female posterior body region. Scale bar: A, B, C, D and E = 20 μm.
FIGURE 8 in Two new species of Sabatieria de Rouville, 1903 (Nematoda: Araeolaimida: Comesomatidae) from the Southern Ocean
FIGURE 8. Sabatieria multipora sp. nov. Paratypes. Light micrographs. A. Male anterior part showing buccal cavity; B. Surface view of male anterior body region showing amphidial fovea and cephalic sensilla; C. Lateral punctations of male anterior body region; D. Vulva region showing spermatheca; E. Vulva region showing vulva and vaginal glands (arrow); F. Lateral punctations of male middle body region; G. Male spicular apparatus; H. Lateral punctations of male posterior body region. Scale bar: A, B, C, E, F, G and H = 10 μm; D = 20 μm.
FIGURE 3 in Two new species of Sabatieria de Rouville, 1903 (Nematoda: Araeolaimida: Comesomatidae) from the Southern Ocean
FIGURE 3. Sabatieria brevicaudata sp. nov. Paratypes. A. Male anterior body region; B. Female anterior body region; C. Male pharyngeal body region; D. Male posterior body region; E. Female posterior body region. Scale bar: A, B, C, D and E = 20 μm.
FIGURE 4 in Two new species of Sabatieria de Rouville, 1903 (Nematoda: Araeolaimida: Comesomatidae) from the Southern Ocean
FIGURE 4. Sabatieria brevicaudata sp. nov. Light micrographs. A. Male paratype anterior body region showing the buccal cavity; B. Surface view of female paratype anterior body region showing cuticle punctations, amphidial fovea and cephalic sensilla; C. Lateral punctations of female paratype anterior body region; D. Vulva region showing vulva, vaginal glands (two arrows on the right) and spermatheca (left arrow); E. Male holotype spicular apparatus; F. Lateral punctations of female paratype posterior body region. A, B, C, E and F = 10 μm; D = 20 μm.
FIGURE 2 in Two new species of Sabatieria de Rouville, 1903 (Nematoda: Araeolaimida: Comesomatidae) from the Southern Ocean
FIGURE 2. Sabatieria brevicaudata sp. nov. Paratypes. A. Entire male, showing the precloacal supplements (arrow); B. Entire female. Scale bar: A, B = 50 μm.
FIGURE 5 in Two new species of Sabatieria de Rouville, 1903 (Nematoda: Araeolaimida: Comesomatidae) from the Southern Ocean
FIGURE 5. Sabatieria brevicaudata sp. nov. Scanning electron micrographs. A. Entire female; B. Female anterior body region showing cephalic sensilla; C. Female anterior body region showing amphidial fovea; D. Female posterior body region. Scale bar: A=100 μm; B, C and D = 10 μm.
Supplementary material 3 from: Zograf JK, Semenchenko AA, Mordukhovich VV (2024) New deep-sea species of Aborjinia (Nematoda, Leptosomatidae) from the North-Western Pacific: an integrative taxonomy and phylogeny. ZooKeys 1189: 231-256. https://doi.org/10.3897/zookeys.1189.111825
Bayesian 28S rDNA phylogeny of the family Leptosomatidae, using the SYM+I+G model of nucleotide substitution
Supplementary material 2 from: Zograf JK, Semenchenko AA, Mordukhovich VV (2024) New deep-sea species of Aborjinia (Nematoda, Leptosomatidae) from the North-Western Pacific: an integrative taxonomy and phylogeny. ZooKeys 1189: 231-256. https://doi.org/10.3897/zookeys.1189.111825
Bayesian 18S rDNA phylogeny of the family Leptosomatidae, using the SYM+I+G model of nucleotide substitution
Fig. 102 in FREE-LIVING NEMATODES OF HUNGARY (NEMATODA ERRANTIA)
Fig. 102. Enchodelus macrodorus (de Man, 1880). a. anterıor end: b: female posterior end; c: male posterior end
Fig. 101 in FREE-LIVING NEMATODES OF HUNGARY (NEMATODA ERRANTIA)
Fig. 101. Longidorella tredecima (Andrassy, 1964). a: anterior end; b: vulval region; c: female posterior end.
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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.