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312 results for “marine nematode”
Fig. 7 in Novel information on the morphology, phylogeny and distribution of camallanid nematodes from marine and freshwater hosts in South Africa, including the description of Camallanus sodwanaensis n. sp.
Fig. 7. Phylogenetic tree of Camallanidae nematodes based on 867 nucleotides long alignments of 28 rDNA gene. Nodal support presented for Bayesian Inference and Maximum Likelihood analyses (BI/ML).
Fig. 5. Spirocamallanus daleneae, photomicrographs. A in Novel information on the morphology, phylogeny and distribution of camallanid nematodes from marine and freshwater hosts in South Africa, including the description of Camallanus sodwanaensis n. sp.
Fig. 5. Spirocamallanus daleneae, photomicrographs. A – male, general view; B – anterior part of body, male, apical view; C – female, genetal view; D – optical section at buccal capsule mid-length, male, apical view; E – optical sections at buccal capsule mid-width level, male, lateral view; F – optical section at buccal capsule 2/3 width level, male, lateral view; G – posterior end of body, male, ventral view; H – posterior end of body, female, lateral view; I – part of body at vulva region, lateral view. Scale bars: A, C – 1 mm; B, D–I – 100.
Fig. 4. Procamallanus pseudolaeviconchus, photomicrographs. A in Novel information on the morphology, phylogeny and distribution of camallanid nematodes from marine and freshwater hosts in South Africa, including the description of Camallanus sodwanaensis n. sp.
Fig. 4. Procamallanus pseudolaeviconchus, photomicrographs. A – male, general view; B – anterior part of body, male, lateral view; C – anterior part of body, male, apical view; D – buccal capsule, female, lateral view; E – female, general view; F – posterior part of body, female, lateral view; G – part of body at vulva region, lateral view; H – posterior end of body, male, lateral view. Scale bars: A, E – 1 mm, B, D, F–H – 100; C – 25.
Fig. 9 in Pathobiology and first report of larval nematodes (Ascaridomorpha sp.) infecting freshwater mussels (Villosa nebulosa, Unionidae), including an inventory of nematode infections in freshwater and marine bivalves
Fig. 9. Second-stage larva of Ascaridomorpha sp. (Nematoda) infecting Villosa nebulosa, in lateral view. Body showing tripartite esophagus ([es], 1st part representing pharynx [p], 2nd part representing muscular anterior portion [amp], 3rd part representing muscular posterior portion [pme]), nerve ring (nr), genital primordium (gp), and anus (a).
Fig. 8 in Pathobiology and first report of larval nematodes (Ascaridomorpha sp.) infecting freshwater mussels (Villosa nebulosa, Unionidae), including an inventory of nematode infections in freshwater and marine bivalves
Fig. 8. Infected intestine of Villosa nebulosa showing ciliated columnar epithelium (ce), connective tissue (ct), and a nematode (ne).
Fig. 3 in Pathobiology and first report of larval nematodes (Ascaridomorpha sp.) infecting freshwater mussels (Villosa nebulosa, Unionidae), including an inventory of nematode infections in freshwater and marine bivalves
Fig. 3. Ventro-lateral aspect of an uninfected foot of Villosa nebulosa showing overlapping bundles of myofibers (mf), basophilic granulocytes (bg), and ciliated pedal epithelium (pe).
Fig. 11 in Pathobiology and first report of larval nematodes (Ascaridomorpha sp.) infecting freshwater mussels (Villosa nebulosa, Unionidae), including an inventory of nematode infections in freshwater and marine bivalves
Fig. 11. Second-stage larva of Ascaridomorpha sp. (Nematoda) infecting Villosa nebulosa, in lateral view. Anterior end of body showing vestibule (v).
Figure 9 in New distributional records of free-living marine Nematodes from Indian waters IV. Linhomids and Axanolaimids
Figure 9. Odontophora setosa (Allgen, 1929) a) entire male b) male head, c) entire female, d) female head, e) male tail, f) female tail.
Figure 8. Odontophora rectangula Lorenzen, 1971 a in New distributional records of free-living marine Nematodes from Indian waters IV. Linhomids and Axanolaimids
Figure 8. Odontophora rectangula Lorenzen, 1971 a) entire male b) female head, c) entire female, d) male head, e) male tail, f) female tail.
Figure 7 in New distributional records of free-living marine Nematodes from Indian waters IV. Linhomids and Axanolaimids
Figure 7. Odontophora longisetosa (Allgen, 1928) a) entire female b) female head, c) male head, d) entire female, e) male tail, f) female tail.
Figure 2 in New distributional records of free-living marine Nematodes from Indian waters IV. Linhomids and Axanolaimids
Figure 2. Metalinhomoeus filiformis de Man, 1907 a) entire female b) female head, c) female tail, d) male head, e) female tail, f) male tail.
Figure 6 in New distributional records of free-living marine Nematodes from Indian waters IV. Linhomids and Axanolaimids
Figure 6. Odontophora exharena Warwick and Platt, 1973 a) entire male b) male head, c) male tail, d) female head, e) female tail, f) entire female.
FIGURE 3 in Biodiversity of free-living marine nematodes on the coast of Brazil: a review
FIGURE 3. Cluster analysis of the studies. "]" represents the studies from estuaries.
FIGURE 5 in Biodiversity of free-living marine nematodes on the coast of Brazil: a review
FIGURE 5. Number of genera recorded for the Brazilian coast since 1920.
Figure 3 from: Pastor de Ward C, Lo Russo V, Villares G, Milano V, Miyashiro L, Mazzanti R (2015) Free-living marine nematodes from San Julián Bay (Santa Cruz, Argentina). ZooKeys 489: 133-144. https://doi.org/10.3897/zookeys.489.7311
Figure 3 - San Julián Bay, Argentina. Views from the sampling sites. A, B "La pingüinera" (M) C "La Rural"(C) D "El Rincón" (D).
Figure 2 from: Pastor de Ward C, Lo Russo V, Villares G, Milano V, Miyashiro L, Mazzanti R (2015) Free-living marine nematodes from San Julián Bay (Santa Cruz, Argentina). ZooKeys 489: 133-144. https://doi.org/10.3897/zookeys.489.7311
Figure 2 - Spatial coverage. San Julián Bay, Argentina. Sites: M = "La pingüinera", C = "La Rural", E = "El Rincón". Levels = u, m, i.
Figure 3 from: Villares G, Lo Russo V, Pastor de Ward C, Milano V, Miyashiro L, Mazzanti R (2016) Free-living marine nematodes from San Antonio Bay (Río Negro, Argentina). ZooKeys 574: 43-55. https://doi.org/10.3897/zookeys.574.7222
Figure 3 - San Antonio Bay, Argentina. Views from the sampling sites. A "Ciudad" B, C "Baliza Camino" D "Banco Perdices".
Figure 2 from: Villares G, Lo Russo V, Pastor de Ward C, Milano V, Miyashiro L, Mazzanti R (2016) Free-living marine nematodes from San Antonio Bay (Río Negro, Argentina). ZooKeys 574: 43-55. https://doi.org/10.3897/zookeys.574.7222
Figure 2 - Spatial coverage. San Antonio Bay, Argentina. Sites: A "Ciudad" B "Baliza Camino" C "Banco Perdices". Levels = u, m, l..
Transcriptomics of an ectosymbiotic marine nematode
GEO Series GSE188619. Laxus oneistus. 16 samples. Type: Expression profiling by high throughput sequencing.
Figure 4. Paralinhomoeus uniovarium Warwick, 1970 a in New distributional records of free-living marine Nematodes from Indian waters IV. Linhomids and Axanolaimids
Figure 4. Paralinhomoeus uniovarium Warwick, 1970 a) entire male, b) male head, c) male tail.
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.