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393 results for “Kinorhyncha”
Fig. 39 in Echinoderes (Kinorhyncha: Cyclorhagida) from the Hikurangi Margin, New Zealand
Fig. 39. Scanning electron micrographs showing overviews and details of Echinoderes juliae Sørensen et al., 2018. A. Lateral overview. B. Segments 1 to 4, laterodorsal view. C. Segments 1 to 4, lateral view. D. Segments 4 to 6, lateral view. E. Segments 7 to 8, lateral view. F. Segments 10 to 11 of female, dorsal view. G. Segments 10 to 11 of male, ventral view. Abbreviations: see Material and methods.
Fig. 21 in Echinoderes (Kinorhyncha: Cyclorhagida) from the Hikurangi Margin, New Zealand
Fig. 21. Light micrographs showing overview and details of Echinoderes samwisei sp. nov. A, D. ♀, paratype (NHMD-917299).B, E, H. ♀, paratype (NHMD-917302). C, F, I. ♂, holotype (NIWA-159418). G. ♂, paratype (NHMD-917300). A. Lateral overview. B. Segments 3 to 11, dorsal view. C. Segments 1 to 5, ventral view. D. Segments 7 to 11, lateral view. E. Segments 2 to 11, ventral view. F. Segments 5 to 8, ventral view. G. Segments 10 to 11 of male, dorsal view. H. Segments 9 to 11 of female, ventral view. I. Segments 9 to 11 of male, ventral view. Abbreviations: see Material and methods.
Fig. 10 in Echinoderes (Kinorhyncha: Cyclorhagida) from the Hikurangi Margin, New Zealand
Fig. 10. Scanning electron micrographs showing overviews and details of Echinoderes dalzottoi sp. nov. A. Dorsolateral overview. B. Segments 1 to 2 of specimen with (broken) sublateral tube on segment 2, dorsolateral view. C. Segments 1 to 3 of specimen without sublateral tube on segment 2, dorsolateral view. D. Ventral overview. E. Segments 1 to 3, ventral view. F. Segments 4 to 7, dorsolateral view with inset showing close-up of cuticular hairs that are reduced to minute scales. G. Segments 5 to 8, ventral view. H. Segments 5 to 9, lateroventral view. I. Segments 6 to 9, dorsolateral view. J. Segments 10 to 11 of female, dorsal view with inset showing close-up of midlateral fringe-like structure on segment 10. K. Segments 10 to 11 of male, dorsal view. Abbreviations: see Material and methods.
Fig. 8 in Echinoderes (Kinorhyncha: Cyclorhagida) from the Hikurangi Margin, New Zealand
Fig. 8. Line art illustrations of Echinoderes dalzottoi sp. nov. A. ♀, dorsal view. B. ♀, ventral view. C. ♂, segments 10–11, dorsal view. D. ♂, segments 10–11, ventral view. Abbreviations: see Material and methods.
Fig. 9 in Echinoderes (Kinorhyncha: Cyclorhagida) from the Hikurangi Margin, New Zealand
Fig. 9. Light micrographs showing overview and details of Echinoderes dalzottoi sp. nov. A, C–D, F–G, J–K. ♀, holotype (NIWA-159403). B, E, H–I. ♂, paratype (NHMD-917147). A. Ventral overview. B. Lateral overview. C. Segments 1 to 6, dorsolateral view. D. Segments 1 to 6, lateroventral view. E. Segments 8 to 11, lateral view. F. Segments 6 to 8, dorsolateral view. G. Segments 6 to 8, lateroventral view. H. Segments 10 to 11 of male, dorsal view. I. Segments 10 to 11 of female, dorsal view. J. Segments 8 to 10, dorsal view. K. Segments 8 to 11, ventral view. Abbreviations: see Material and methods.
Fig. 7 in Echinoderes (Kinorhyncha: Cyclorhagida) from the Hikurangi Margin, New Zealand
Fig. 7. Scanning electron micrographs showing overviews and details of Echinoderes landersi sp. nov. A. Dorsal overview. B. Lateral overview. C. Segments 1 to 3, lateral view. D. Segments 2 to 6, ventral view. E. Segments 4 to 7, dorsolateral view. F. Segments 1 to 3 of female with inconsistent tube pattern, dorsal view. G. Segments 8 to 10, lateral view. H. Segments 8 to 11, dorsal view, with inset showing close-up of midlateral tube on segment 10. I. Segments 8 to 9 of female with inconsistent tube pattern, dorsal view. Abbreviations: see Material and methods.
Fig. 6 in Echinoderes (Kinorhyncha: Cyclorhagida) from the Hikurangi Margin, New Zealand
Fig. 6. Light micrographs showing overview and details of Echinoderes landersi sp. nov. A. ♀, paratype (NHMD-916627). B–D. ♀, holotype (NIWA-159402). A. Lateral overview. B. Segments 1 to 3, lateral view. C. Segments 7 to 11, lateral view. D. Segments 4 to 7, lateral view. Abbreviations: see Material and methods.
Fig. 4 in Echinoderes (Kinorhyncha: Cyclorhagida) from the Hikurangi Margin, New Zealand
Fig. 4. Scanning electron micrographs showing overviews and details of Echinoderes blazeji sp. nov. A. Dorsolateral overview of female. B. Segments 1 to 4, dorsolateral view. C. Segments 1 to 3, ventral view. D. Lateral overview of male. E. Segments 4 to 6, dorsal view. F. Segments 5 to 7, ventral view. G. Segments 8 to 11 of female, laterodorsal view. H. Segments 7 to 8, lateral view. I. Segments 10 to 11 of male, dorsal view. J. Segments 10 to 11 of male, dorsolateral view. K. Segments 10 to 11 of female, lateral view, with close-up of segment 11 ventral side showing ventrolateral tubules. Abbreviations: see Material and methods.
Fig. 1 in Echinoderes (Kinorhyncha: Cyclorhagida) from the Hikurangi Margin, New Zealand
Fig. 1. Map showing the sampling stations. Colour codes indicate slopes (red), canyons (green), and seamounts (yellow). Inset shows New Zealand with a frame marking the sampling area.
Fig. 5 in Echinoderes (Kinorhyncha: Cyclorhagida) from the Hikurangi Margin, New Zealand
Fig. 5. Line art illustrations of Echinoderes landersi sp. nov. A. ♀, dorsal view. B. ♀, ventral view. Abbreviations: see Material and methods.
Fig. 3 in Echinoderes (Kinorhyncha: Cyclorhagida) from the Hikurangi Margin, New Zealand
Fig. 3. Light micrographs showing overviews and details of Echinoderes blazeji sp. nov. A, G–H. ♂, paratype (NIWA-159401). B–C, E–F. ♂, holotype (NIWA-159400). D, I. ♀, paratype (NHMD-917223). A. Lateral overview of male. B. Segments 1 to 5, dorsal view. C. Segments 1 to 5, ventral view. D. Lateral overview of female. E. Segments 6 to 9, dorsal view. F. Segments 7 to 11, ventral view. G. Segments 8 to 9, lateroventral view. H. Segments 9 to 11 of male, lateral view. I. Segments 9 to 11 of female, lateral view. Abbreviations: see Material and methods.
Fig. 3 in Redescription of Echinoderes levanderi Karling, 1954 (Kinorhyncha: Cyclorhagida) - a kinorhynch tolerant to very low salinities
Fig. 3. Light electron micrographs of Echinoderes levanderi Karling, 1954. A–G, J. Neotype, ♂ (SMNH 157575). H. ♀ (SMNH 157577d). I. ♀ (SMNH 157577a). A. Ventral overview. B. Segments 1–3, dorsal view. C. Segments 1–3, ventral view. D. Segments 6–8, dorsal view. E. Segments 3–5, ventral view. F. Segments 8–9, dorsal view. G. Segments 8–9, ventral view. H–I. Segments 10–11, ventral view. J. Segment 10–11, ventral view. Abbreviations: ldtu, laterodorsal tube; ltas, lateral terminal accessory spine; lts, lateral terminal spine; lvac, lateroventral acicular spine; lvtu, lateroventral tube; mdac, middorsal acicular spine; pdgco1, paradorsal glandular cell outlet type 1; pe, penile spines; pmvf, partial midventral fissure; sdtu, subdorsal tube; sltu, sublateral tube; si, sieve plate; te, tergal extension; vltu, ventrolateral tube; vmgco1, ventromedial glandular cell outlet type 1.
Fig. 4 in Redescription of Echinoderes levanderi Karling, 1954 (Kinorhyncha: Cyclorhagida) - a kinorhynch tolerant to very low salinities
Fig. 4. Scanning electron micrographs of Echinoderes levanderi Karling, 1954. A. ♀, laterodorsal overview. B. ♀, segments 1–3, dorsal view, note the absence of subdorsal tubes. C. ♂, segment 1, ventrolateral view. D. ♂, segments 1–3, laterodorsal view, note the presence of subdorsal tubes. E. ♂, segments 2–3, ventral view. F. ♂, segments 4–5, sublateral view. G. ♂, details of segments 9, showing sublateral sieve plates and middorsal cuticular scar (arrow, inset). H. ♀, segment 11, lateral view. I. ♂, segments 10–11, subdorsal view. (* marks additional ldtu found in this specimen only). J. ♂, segment 11, ventrolateral view. Note that lateral terminal spines are broken off in all specimens. Abbreviations: ldss, laterodorsal sensory spot; ldtu, laterodorsal tube (* marks additional, ldtu found in this specimen only); lvtu, lateroventral tube; mdss, middorsal sensory spot; mlss, midlateral sensory spot; pe, penile spines; pmvf, partial midventral fissure; pt, papillar tuft; sdss, subdorsal sensory spot; sdtu, subdorsal tube; slss, sublateral sensory spot; sltu, sublateral tube; vlss, ventrolateral sensory spot; vltu, ventrolateral tube; vmss, ventromedial sensory spot
Fig. 1 in Redescription of Echinoderes levanderi Karling, 1954 (Kinorhyncha: Cyclorhagida) - a kinorhynch tolerant to very low salinities
Fig. 1. Map of the Baltic Sea and Gulf of Bothnia, with collecting localities indicated as black rings. Approximate bottom water salinity gradients are indicated with dashed lines (source: Axe & Sahlsten 2001).
Fig. 2 in Redescription of Echinoderes levanderi Karling, 1954 (Kinorhyncha: Cyclorhagida) - a kinorhynch tolerant to very low salinities
Fig. 2. Line art illustration of Echinoderes levanderi Karling, 1954. A. ♂, dorsal overview. B. ♂, ventral overview. C. ♂, segments 10–11 with lateral terminal spines drawn to full length, dorsal view. D. ♀, segments 9–11, dorsal view. E. ♀, segments 9–11, ventral view. Abbreviations: ldss, laterodorsal sensory spot; ldtu, laterodorsal tube; ltas, lateral terminal accessory spine; lts, lateral terminal spine; lvac, lateroventral acicular spine; lvtu, lateroventral tube; mdac, middorsal acicular spine; mlss, midlateral sensory spot; pdgco1, paradorsal glandular cell outlet type 1; pe, penile spines; sdtu, subdorsal tube; sltu, sublateral tube; si, sieve plate; vlgco1, ventrolateral glandular cell outlet type 1; vltu, ventrolateral tube
Figure 5 in Expanding the taxonomic catalog of Brazilian meiofauna: diversity and distribution of the neglected phyla Tardigrada, Gastrotricha, and Kinorhyncha
Figure 5. Species richness estimation within (A) Tardigrada and (B) Gastrotricha families in Brazil. Dark dots represent the actual number of described species and gray dots the extrapolated number of species for families with a number of described species that allows extrapolation.
Figure 4 in Expanding the taxonomic catalog of Brazilian meiofauna: diversity and distribution of the neglected phyla Tardigrada, Gastrotricha, and Kinorhyncha
Figure 4. Temporal accumulation curve of species of (A) Tardigrada and (B) Gastrotricha and the number of endemic and not endemic species in Brazil. Solid lines depict the interpolated curves, representing the rate of species description over time, while dashed lines extend these curves to show extrapolated rates. The gray areas surrounding the curves signify the 95% upper and lower bound confidence intervals for the estimated species description rates. Actual counts of described species are denoted by dots.
Figure 1 in Expanding the taxonomic catalog of Brazilian meiofauna: diversity and distribution of the neglected phyla Tardigrada, Gastrotricha, and Kinorhyncha
Figure 1. Number of Tardigrada, Kinorhyncha and Gastrotricha species described or reported to Brazil by year (from 1936 to July 2023).
Linked collectors and determiners for: Setaphyes elenae sp. nov., a new species of mud dragon (Kinorhyncha: Allomalorhagida) from Skagerrak (north-eastern Atlantic Ocean).
Natural history specimen data linked to collectors and determiners held within, "Setaphyes elenae sp. nov., a new species of mud dragon (Kinorhyncha: Allomalorhagida) from Skagerrak (north-eastern Atlantic Ocean)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/daf51a6a-153a-4906-a478-da4df86eee11">https://bionomia.net/dataset/daf51a6a-153a-4906-a478-da4df86eee11</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/daf51a6a-153a-4906-a478-da4df86eee11">https://gbif.org/dataset/daf51a6a-153a-4906-a478-da4df86eee11</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Kinorhyncha.
Natural history specimen data linked to collectors and determiners held within, "Kinorhyncha". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/b4fc23e2-df21-4756-8029-e8ace96e6589">https://bionomia.net/dataset/b4fc23e2-df21-4756-8029-e8ace96e6589</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/b4fc23e2-df21-4756-8029-e8ace96e6589">https://gbif.org/dataset/b4fc23e2-df21-4756-8029-e8ace96e6589</a>. Formatted as a Frictionless Data package.
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