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Fig. 3 in Three new and five known species of Diplopeltoides Gerlach, 1962 (Nematoda, Diplopeltoididae) from Sweden, and a revision of the genus
Fig. 3. Diplopeltoides suecicus sp. nov. SEM micrographs. A. Male cloacal region, lateral view. B. Male cloacal region, ventrosubventral view. C. Male tail, lateral view. D–E. Female tail, ventrosublateral view. Scale bars: A–E = 5 µm.
Fig. 1 in Three new and five known species of Diplopeltoides Gerlach, 1962 (Nematoda, Diplopeltoididae) from Sweden, and a revision of the genus
Fig. 1. Diplopeltoides suecicus sp. nov. A. Anterior part of the female reproductive system. B. Female anterior end, surface view. C. Male anterior end, surface view. D. Female pharyngeal region, optical median section. E. Female tail. F. Male tail. Scale bar = 20 µm.
Fig. 2 in Three new and five known species of Diplopeltoides Gerlach, 1962 (Nematoda, Diplopeltoididae) from Sweden, and a revision of the genus
Fig. 2. Diplopeltoides suecicus sp. nov. SEM micrographs. A, C–D. Male. B, E. Female. A. Anterior end, apical view (arrows point at outer labial sensilla). B–D. Anterior end, left sublateral view. E. Vulval region. Scale bars: A–E = 5 µm.
Fig. 1 in Belgopeltula belgica (Vincx & Gourbault, 1992) gen. et comb. nov. and Mudwigglus micramphidium sp. nov. from the west coast of Sweden, and reappraisal of the genus Pseudaraeolaimus Chitwood, 1951 (Nematoda: Araeolaimida: Diplopeltidae)
Fig. 1. Belgopeltula belgica (Vincx & Gourbault, 1992) gen. et comb. nov., female entire view. Scale bar = 20 µm.
Fig. 9 in Halanonchus scintillatulus sp. nov. from New Zealand and a review of the suborder Trefusiina (Nematoda: Enoplida)
Fig. 9. Anterior and posterior body regions of Trefusiina genera (members of the families Simpliconematidae, Xennellidae, Trischistomatidae and Lauratonematidae) (continued on next page). A. Simpliconema aenigmatoides Blome & Schrage, 1985. B. Xennella suecica Allgén, 1935. C. Porocoma striata Cobb, 1920. D. Tripylina arenicola (de Man, 1880) Brzeski, 1963. E. Trischistoma gracile Andrássy, 1985. F. Lauratonema juncta Fadeeva, 1989. G. Lauratonemella spiculifer (Gerlach, 1959) Tchesunov, 1984. H. Lauratonemoides minutus (Platonova, 1971) Tchesunov, 1984. Drawings modified from De Coninck (1937), Gerlach (1959, 1962), Blome & Schrage (1985), Fadeeva (1989) and Andrassy (2007).
Figure 9. Acrobeles bushmanicus Heyns, 1969 in Some rare species of cephalobs (Nematoda: Rhabditida: Cephalobidae) from Southern Iberian Peninsula
Figure 9. Acrobeles bushmanicus Heyns, 1969 (LM): (A) neck (arrow points at excretory pore); (B, C) lip region in dorsal and lateral views, respectively (I: primary axil, II: secondary axil; arrow points at amphid); (D) lateral field at deirid level (arrow); (E) male genital system; (F, G) female posterior end (arrow points at phasmid); (H) male posterior end (ph = phasmid, p1–p5 = genital papillae).
Figure 2 in Some rare species of cephalobs (Nematoda: Rhabditida: Cephalobidae) from Southern Iberian Peninsula
Figure 2. Heterocephalobellus magnificus (Andrássy, 1987) De Ley et al. 1993a (LM, juvenile): (A) neck region (arrow points at excretory pore); (B) stoma; (C) lip region; (D) genital primordium; (E) posterior end. Stegelleta ophioglossa Andrássy, 1967b (LM, female): (F) neck region (arrow points at excretory pore); (G) lip region (arrow points at amphid); (H) vagina region; (I, J) posterior end at rectum and lateral field levels, respectively (arrow points at phasmid); (K) cuticle.
Figure 5 in Some rare species of cephalobs (Nematoda: Rhabditida: Cephalobidae) from Southern Iberian Peninsula
Figure 5. Paracrobeles psammophilus Navarro and Lluch, 1999: (A) neck region; (B) lip region; (C) entire female; (D) female posterior end; (E) lateral field; (F) female reproductive system; (G) entire male; (H) male posterior end.
Fig. 13 in Revision of the genus Cobbionema Filipjev, 1922 (Nematoda, Chromadorida, Selachinematidae)
Fig. 13. Bayesian phylogenetic tree of Selachinematidae Cobb, 1915 inferred from 28S rRNA data, using alignments based on secondary structure models using REV GAMMA for unpaired sites and RNA16A for paired sites.
Fig. 11 in Revision of the genus Cobbionema Filipjev, 1922 (Nematoda, Chromadorida, Selachinematidae)
Fig. 11. Bayesian phylogenetic tree of Selachinematidae Cobb, 1915 inferred from 18S rRNA data, using alignments based on secondary structure models using REV GAMMA for unpaired sites and RNA16A for paired sites.
Fig. 9 in Revision of the genus Cobbionema Filipjev, 1922 (Nematoda, Chromadorida, Selachinematidae)
Fig. 9. Cobbionema acuminata sp. nov. Light micrographs. A. Stoma of male holotype (SMNH Type-9221) showing stoma armament, arrow pointing to the right ventrosublateral tine. B. Anterior part of a male showing sphincter muscle surrounding the anterior stoma chamber (arrow). C. Stoma of male holotype (SMNH Type-9221) showing the arrangement of the pointed projections and the left ventrosublateral tine. D–E. Caudal region of male paratype (SMNH Type-9222) showing the crura (arrow) and spicule. F. Male tail, holotype (SMNH Type-9221).
Fig. 5. Cobbionema cylindrolaimoides Schuurmans Stekhoven, 1950. Light micrographs. A in Revision of the genus Cobbionema Filipjev, 1922 (Nematoda, Chromadorida, Selachinematidae)
Fig. 5. Cobbionema cylindrolaimoides Schuurmans Stekhoven, 1950. Light micrographs. A. Female stoma showing stoma armament, arrow pointing to the right ventrosublateral tine (SMNH-179211). B. Anterior part of a female showing sphincter muscle surrounding the anterior stoma chamber (arrow) (SMNH-179212). C. Anterior part of a female with arrow showing the ampulla of the secretory-excretory system (SMNH-179211). D. Male stoma showing buccal armament (SMNH-179213). E. Cuticle showing lateral ala (SMNH-179211). F. Caudal region of a male showing spicule and crura (SMNH-179214). G. Male tail (SMNH-179214). H. Female tail (SMNH-179212).
Figure 2 in Two new species of Lauratonema (Nematoda: Lauratonematidae) from the intertidal zone of the East China Sea
Figure 2. Lauratonema macrostoma sp. nov. (A) lateral view of male head end, showing amphids and bacteria; (B) lateral view of male body part, showing spicule; (C) lateral view of female body part, showing eggs; (D) lateral view of female head end, showing buccal cavity; (E) lateral view of female tail. Scale bar: A–D = 10 µm; E = 25 µm.
Figure 3 in Two new species of Lauratonema (Nematoda: Lauratonematidae) from the intertidal zone of the East China Sea
Figure 3. Lauratonema dongshanense sp. nov. (A) lateral view of male head end, showing amphid and cephalic setae; (B) lateral view of female head end, showing buccal cavity; (C) lateral view of female head end, showing amphid and bacteria; (D) lateral view of female body part, showing eggs; (E, F) lateral view of male body part, showing spicules; (G) lateral view of male tail. Scale bar: A–F = 10 µm; G = 25 µm.
Figure 1 in Two new species of Lauratonema (Nematoda: Lauratonematidae) from the intertidal zone of the East China Sea
Figure 1. Lauratonema macrostoma sp. nov. (A) lateral view of male anterior part; (B) lateral view of female tail; (C) lateral view of male tail; (D) lateral view of female posterior part, showing reproductive system; (E) lateral view of female anterior part. Scale bar: A, B, C, E = 20 µm; D = 50 µm.
Figure 10 in Taxonomy of the genus Oriverutus Siddiqi, 1971 (Nematoda: Dorylaimida: Nordiidae)
Figure 10. Parapalus arboricola Loof and Zullini, 2000 (light microscopy). (A–C) Neck region of female, male and J4, respectively; (D) J4, anterior region in median, lateral view; (E) Male, anterior region in median, lateral view; (F) Male, lip region and amphid fovea in submedian, lateral view; (H) Vagina; (I) Male, spicules and caudal region. Scale bars: A–C = 100 µm; D–F, H = 5 µm; G = 10 µm; I = 20 µm.
Figure 9 in Descriptions of Pelodera scrofulata sp. nov. and Pelodera aligarhensis sp. nov. (Nematoda: Rhabditidae) with supplementary information on Pelodera teres (Schneider, 1866).
Figure 9. Pelodera teres (Schneider, 1866). (A–E) Anterior end (A and B, scanning electron micrographs); (F) anterior pharyngeal region (lateral); (G) posterior pharyngeal region (lateral); (H) posterior intestinal region; (I) anterior genital branch; (J, K) uterine region with embryonating eggs; (L) vulval region (lateral); (M) vulval region (Ventral); (N) female posterior region (lateral); (O–Q) male posterior region (lateral) (Q is scanning electron micrograph); (R) male posterior region (ventral) (R is scanning electron micrograph). Scale bars: 10 μm.
Figure 7 in Descriptions of Pelodera scrofulata sp. nov. and Pelodera aligarhensis sp. nov. (Nematoda: Rhabditidae) with supplementary information on Pelodera teres (Schneider, 1866).
Figure 7. Pelodera aligarhensis sp. nov. male. (A–C) Anterior end (A is scanning electron micrograph); (D) anterior pharyngeal region (lateral); (E) posterior pharyngeal region (lateral); (F) male genital tract at level of ejaculatory gland (ventral); (G) posterior region (lateral); (H–J) tail end showing bursa and genital papillae (lateral) (J is scanning electron micrograph); (K–N) Tail end showing bursa and genital papillae (ventral) (K is scanning electron micrograph). Scale bars: 10 μm.
Figure 8 in Descriptions of Pelodera scrofulata sp. nov. and Pelodera aligarhensis sp. nov. (Nematoda: Rhabditidae) with supplementary information on Pelodera teres (Schneider, 1866).
Figure 8. Cluster analysis (complete linkage) showing relationship between species of Pelodera (coarctata-group) based on morphological data.
Figure 4 in Descriptions of Pelodera scrofulata sp. nov. and Pelodera aligarhensis sp. nov. (Nematoda: Rhabditidae) with supplementary information on Pelodera teres (Schneider, 1866).
Figure 4. Cluster analysis (complete linkage) showing relationship between species of Pelodera (strongyloides-group) based on morphological data.
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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.