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Fig. 13 in Six new and four known species of the genus Axonchium Cobb, 1920 (Nematoda: Dorylaimida: Belondiroidea) from the Western Ghats of India
Fig. 13. Axonchium tropicum sp. nov. A, D–H, L. Holotype, ♀ (AMU/ZD/Axonchium tropicum sp. nov. /1). B, I–K. Paratype 1, ♂ (slide 2). C. Paratype 2, ♀ (slide 2). A. Entire female. B. Entire male. C. Anterior region. D. Anterior end showing amphid. E. Junction between anterior slender and posterior expanded part of pharynx. F. Cardia. G. Vulva. H. Female genital system. I. Male posterior region. J. Spicule. K. Lateral guiding pieces. L. Female posterior end.
Fig. 5 in Six new and four known species of the genus Axonchium Cobb, 1920 (Nematoda: Dorylaimida: Belondiroidea) from the Western Ghats of India
Fig. 5. Axonchium indicum sp. nov. A –C. Paratype 2, ♀ (slide 2). D–H. Paratype 6, ♀ (slide 4). A. Entire body. B. Anterior region. C. Anterior end showing amphid. D. Junction between anterior slender and posterior expanded part of pharynx. E. Cardia. F. Female genital system. G. Vulva. H. Female posterior region.
Fig. 12 in Six new and four known species of the genus Axonchium Cobb, 1920 (Nematoda: Dorylaimida: Belondiroidea) from the Western Ghats of India
Fig. 12. Axonchium paracingulatum sp. nov. (LM photographs). A–G, K. Paratype 3, ♀ (slide 3). H– J. Paratype 2, ♂ (slide 2). A. Anterior region. B. Anterior end showing amphid. C. Junction between two parts of the pharynx. D. Cardia. E. Vulva and vagina. F–G. Female genital branches. H. Ventromedian supplements. I. Male posterior end. J. Arrow indicating lateral guiding piece and distal end of spicule. K. Female posterior end. Scale bars: A–E, I–K = 10 µm; F–G = 20 µm; H = 50 µm.
Fig. 4 in Six new and four known species of the genus Axonchium Cobb, 1920 (Nematoda: Dorylaimida: Belondiroidea) from the Western Ghats of India
Fig. 4. Axonchium vallum Ahmad & Jairajpuri, 1982 (LM photographs). A. Anterior region. B. Anterior region showing amphid. C. Junction between two parts of pharynx. D. Cardia. E. Vulva and vagina. F–G. Female genital branches. H. Ventromedian supplements. I. Lateral glandular bodies. J. Male posterior end. K. Lateral guiding piece. L. Female posterior end. Scale bars: A–E, I–L = 10 µm; F–G = 50 µm; H = 20 µm.
Fig. 16 in Six new and four known species of the genus Axonchium Cobb, 1920 (Nematoda: Dorylaimida: Belondiroidea) from the Western Ghats of India
Fig. 16. Axonchium uniqum sp. nov. (LM photographs). A–B, E, L. Holotype, ♀ (AMU/ZD/Axonchium uniqum sp. nov. /1). C–D, F–G. Paratype 2, ♀ (slide 3). H–K. Paratype 3, ♂ (slide 3). A. Anterior region. B. Anterior end showing amphid. C. Junction between anterior and posterior expanded part of the pharynx. D. Cardia. E. Vulva and vagina. F–G. Female genital branches. H. Ventromedian supplements. I. Arrows indicating ventromedian supplements beginning. J. Male posterior end. K. Spicule and lateral guiding piece. L. Female posterior end. Scale bars: A–E, I–L = 10 µm; F–H = 20 µm.
Fig. 8 in Six new and four known species of the genus Axonchium Cobb, 1920 (Nematoda: Dorylaimida: Belondiroidea) from the Western Ghats of India
Fig. 8. Axonchium microspiculum sp. nov. (LM photographs). A–G, L. Holotype, ♀ (slide 1). H– K. Paratype 4, ♂ (slide 2). A. Anterior region. B. Anterior end showing amphid. C. Junction between two parts of the pharynx. D. Cardia. E. Vulva and vagina. F –G. Female genital branches. H. Male testes. I. Ventromedian supplements. J. Male posterior end. K. Arrows showing lateral guiding piece and first ventromedian supplement. L. Female posterior end. Scale bars: A–G, I–L = 10 µm; H = 20 µm.
Fig. 11 in Six new and four known species of the genus Axonchium Cobb, 1920 (Nematoda: Dorylaimida: Belondiroidea) from the Western Ghats of India
Fig. 11. Axonchium paracingulatum sp. nov. A, H. Holotype ♀ (AMU/ZD/Axonchium paracingulatum sp. nov. /1). B, I–K. Paratype 1, ♂ (slide 2). C–G, L. Paratype 3, ♀ (slide 2). A. Entire female. B. Entire male. C. Anterior region. D. Anterior end showing amphid. E. Junction between anterior slender and posterior expanded part of pharynx. F. Cardia. G. Vulva. H. Female genital system. I. Male posterior region. J. Spicule. K. Lateral guiding piece. L. Female posterior end.
Fig. 15 in Six new and four known species of the genus Axonchium Cobb, 1920 (Nematoda: Dorylaimida: Belondiroidea) from the Western Ghats of India
Fig. 15. Axonchium uniqum sp. nov. A, C–D, G, L. Holotype, ♀ (AMU/ZD/Axonchium uniqum sp. nov. /1). B, I–K. Paratype 3, ♂ (slide 3). E–F, H. Paratype 2, ♀ (slide 3). A. Entire female. B. Entire male. C. Anterior region.D. Anterior end showing amphid.E. Junction between anterior and posterior expanded part of pharynx. F. Cardia. G. Vulva. H. Female genital system. I. Male posterior end. J. Spicule. K. Lateral guiding piece. L. Female posterior end.
Fig. 4 in Icosiella Neglecta (Nematoda, Onchocercidae) In Ukraine: Occurrence, Hosts, Morphological And Molecular Characterisation
Fig. 4. Anterior end (A, B) and transverse sections (C–F) of Icosiella neglecta: A — anterior end in lateral view; B — anterior end in dorso-ventral view; C — transverse section through mid-region of muscular oesophagus; D — transverse section through glandular oesophagus (goe) and vagina (v) of female; E — transverse section through glandular oesophagus (goe) and anterior part of testis (t) of male; F — transverse section through midbody of male showing testis (t) and intestine (i).
Fig. 7 in Icosiella Neglecta (Nematoda, Onchocercidae) In Ukraine: Occurrence, Hosts, Morphological And Molecular Characterisation
Fig. 7. UPGMA analysis based on 90 COI sequences of Icosiella neglecta from different localities. One sequence obtained in the present study, two sequences retrieved from Genbank (accession numbers KP760138 and KP760189) and 87 retrieved from the supplementary file to Mikulíček et al. (2021) following the original numbers.
Fig. 3 in Icosiella Neglecta (Nematoda, Onchocercidae) In Ukraine: Occurrence, Hosts, Morphological And Molecular Characterisation
Fig. 3. Apical morphology of Icosiella neglecta: A — scanning electron microscopy of apical extremity; B — en face view of apical extremity; C — oral opening (arrow); D — cuticularised ring between oral opening and oesophagus (arrow); E — entrance to oesophageal lumen (arrow); F — amphidial opening (arrow); s — apical spikes, p — papillae, a — amphid.
Fig. 6 in Icosiella Neglecta (Nematoda, Onchocercidae) In Ukraine: Occurrence, Hosts, Morphological And Molecular Characterisation
Fig. 6. Males of Icosiella neglecta: A — general view; B — anterior part of body, left lateral view; C — posterior part of body, right lateral view; D — posterior part of body, ventral view; E — posterior end with shorter spicule on the right side of body, right lateral view; F — posterior end with shorter spicule on the left side of body, left lateral view; oe-ij — oesophago-intestinal junction, ed — ejaculatory duct.
Fig. 5 in Icosiella Neglecta (Nematoda, Onchocercidae) In Ukraine: Occurrence, Hosts, Morphological And Molecular Characterisation
Fig. 5. Females (A–E) and microfilariae (F) of Icosiella neglecta: A — anterior part of body, right lateral view; B — posterior part of body, left lateral view; C — proximal end of ovary (ov) in posterior part of body; D — region of vulva, right lateral view; E — posterior end of body, left lateral view; F — microfilariae from ovejector; moe — muscular oesophagus, nr — nerve-ring, goe — glandular oesophagus, v — vulva, oj — ovejector, sr — seminal receptacle, vv — vagina vera, vu — vagina uterina, r — rectum, a — anus.
Figure 5 in A new species of Maldivea Gerlach, 1962 (Nematoda, Oxystominidae) from Felidhoo atoll (Maldives, Indian Ocean) and an emended diagnosis of the sub-family and genus
Figure 5. World distribution of the species belonging to the subfamily Paroxystomininae De Coninck, 1965.
Figure 4 in A new species of Maldivea Gerlach, 1962 (Nematoda, Oxystominidae) from Felidhoo atoll (Maldives, Indian Ocean) and an emended diagnosis of the sub-family and genus
Figure 4. Light micrographs of the male of Maldivea complexa n. sp. A,B) Detail of the buccal cavity, C) Detail of amphideal fovea, D) Copulatory apparatus, E) Precloacal sub-ventral pairs of short and stout setae close to the cloacal opening, F) Detail of the precloacal sub-ventral pairs of short and stout setae in the elevation of the cuticle, G) Details of the post-cloacal setae and tail tip. Scale bars: A-B: 5 µm, C,E: 10 µm; D, F,G: 20 µm.
Figure 3 in A new species of Maldivea Gerlach, 1962 (Nematoda, Oxystominidae) from Felidhoo atoll (Maldives, Indian Ocean) and an emended diagnosis of the sub-family and genus
Figure 3. Drawings of the male of Maldivea complexa n. sp. A) Detail of the anterior end of the male. B) Detail of the amphideal fovea of the male. C) Detail of the copulatory apparatus and caudal region. Scale bar: A: 10 µm, B: 50 µm.
Fig. 1 in Catch of Coho Salmon (Oncorhynchus kisutch) Infected with the Freshwater Parasite Salvelinema walkeri (Nematoda: Cystidicolidae) in the Gulf of Alaska in the Early Winter
Fig. 1. Locations of salmonid collection along a south-north transect (from 44°32′N to 52°06′N along ca. 145°W) in the Gulf of Alaska in mid-December 1992 and those of salmonids infected with Salvelinema walkeri in marine and estuarine waters based in this and past papers. Open circles, catch locations of infected salmonids; closed circles, locations with salmonid catch; and crosses, locations without salmonid catch. Location 1, 52°06′N, 145°56′W (this paper); location 2, the Columbia River estuary (Claxton et al. 2013); location 3, off Newport, Oregon (Olson 1978); locations 4 and 5, the Strait of Georgia near Nanoose (Margolis 1967a) and Nanaimo (Ekbaum 1935, 1936; Margolis 1967a), respectively; and locations 6–10, Cowichan Bay, Satellite Channel, the Strait of Juan de Fuca, Sechelt Inlet, and Howe Sound, respectively (Godfrey 1968).
Fig. 2. Enchodelus macrodorns. A in Description of Xiphinema karachiense sp. n. and morphometric data on Enchodelus macrodorus (de Man, 1880), Thorne, 1939 (Nematoda : Dorylaimida) from Pakistan
Fig. 2. Enchodelus macrodorns. A: Female, entire; B: Anterior body region; C Head end showing amphid; D: Female sexual system; E: Female tail; F: Expanded region of oesophagus.
Fig. 1. Xiphinema karachiense n in Description of Xiphinema karachiense sp. n. and morphometric data on Enchodelus macrodorus (de Man, 1880), Thorne, 1939 (Nematoda : Dorylaimida) from Pakistan
Fig. 1. Xiphinema karachiense n. sp. A: Oesophageal region; B: Anteriorbodyregion; C: Male, entire; D: Female, emire; E: Posterior branch of female reproductive system; F, G: Four spherical inclusionsofpseudo-Z-differemiation; H: Maletail; l: Posterior body region of male;].- M.: Tails of juveniles; N: Female tail.
Fig. 1 in Enchodelus repis sp. n. and comments on E. laevis Thorne, 1939 and E. microdoroides Baqri & Jairajpuri, 1974 (Nematoda : Dorylaimoidea) from Korea
Fig. 1. Enchodelus repis sp. n. female. - A: Entire body; B: Head; C: Head showing amphid; D: Oesophageal region; E: VulvaJ region; F: Tai!. (Smal /esl unit of scale bar = JO pm.)
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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.