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796 results for “Eutardigrada”
Fig. 5 in Fig. 14 in An Integrative Description of Two New Species (Tardigrada: Eutardigrada: Macrobiotidae) with Updated Genus Phylogeny.
Fig. 5. Platynereis jihueiensis sp. nov.; holotype (NMNS 8390-3): A, left parapodium, anterior view, chaetiger 3 (notopodial postchaetal lobe hindered by notopodial ventral ligule); B, left parapodium, posterior view, chaetiger 3; C, left parapodium, anterior view, chaetiger 10; D, left parapodium, anterior view, chaetiger 30; E, left parapodium, anterior view, chaetiger 50; F, left parapodium, anterior view, chaetiger 68. Abbreviations: DCLa, dorsal cirrus lamellae; NePL, neuropodial postchaetal lobe; NePLa, neuropodial postchaetal lamellae; NoPL, notopodial prechaetal lobe; VC, ventral cirrus; VCLo, ventral cirrus lobe. Scale bars: A–F = 0.1 mm.
Fig. 2 in Fig. 14 in An Integrative Description of Two New Species (Tardigrada: Eutardigrada: Macrobiotidae) with Updated Genus Phylogeny.
Fig. 2. Platynereis hemeiensis sp. nov.; holotype (NMNS 8390-1): A, left parapodium, anterior view, chaetiger 4; B, left parapodium, posterior view, chaetiger 4; C, left parapodium, anterior view, chaetiger 10; D, left parapodium, anterior view, chaetiger 29; E, left parapodium, anterior view, chaetiger 50; F, left parapodium, anterior view, chaetiger 70. Abbreviations: DC, dorsal cirrus; NeAL, neuropodial acicular lobe; NePL, neuropodial postchaetal lobe; NeVL, neuropodial ventral ligule; NoDL, notopodial dorsal ligule; NoPL, notopodial prechaetal lobe; NoVL, notopodial ventral ligule; VC, ventral cirrus. Scale bars: A–F = 0.1 mm.
Fig. 1 in Fig. 14 in An Integrative Description of Two New Species (Tardigrada: Eutardigrada: Macrobiotidae) with Updated Genus Phylogeny.
Fig. 1. Platynereis hemeiensis sp. nov.; holotype (NMNS 8390-1): A, anterior region, dorsal view; B, dorsal view of the pharynx; C, frontal view of the pharynx. Roman numerals indicate Area number of the pharynx. Scale bars: A = 1.0 mm; B–C = 0.5 mm.
Fig. 8 in Fig. 14 in An Integrative Description of Two New Species (Tardigrada: Eutardigrada: Macrobiotidae) with Updated Genus Phylogeny.
Fig. 8. Platynereis shihmenensis sp. nov.; holotype (NMNS 8390-4): A, right parapodium, anterior view, chaetiger 4; B, right parapodium, posterior view, chaetiger 4; C, right parapodium, anterior view, chaetiger 8; D, right parapodium, anterior view, chaetiger 11; E, right parapodium, anterior view, chaetiger 35; F, right parapodium, anterior view, chaetiger 50. Abbreviation: NeAL, neuropodial acicular lobe; NePL, neuropodial postchaetal lobe; NoPL, notopodial prechaetal lobe. Scale bars: A–F = 0.1 mm.
Fig. 3 in Fig. 14 in An Integrative Description of Two New Species (Tardigrada: Eutardigrada: Macrobiotidae) with Updated Genus Phylogeny.
Fig. 3. Platynereis hemeiensis sp. nov.; A–C, E, paratype (NMNS 8390-2); D, holotype (NMNS 8390-1): A, notochaeta, homogomph spiniger, chaetiger 38; B, neurochaeta of dorsal fascicle, homogomph spiniger, chaetiger 38; C, neurochaeta of dorsal fascicle, short-bladed heterogomph falciger, chaetiger 38; D, neurochaeta of ventral fascicle, heterogomph spiniger, chaetiger 70; E, neurochaeta of ventral fascicle, short-bladed heterogomph falciger, chaetiger 38. Scale bars: A–E = 0.01 mm.
Fig. 7 in Fig. 14 in An Integrative Description of Two New Species (Tardigrada: Eutardigrada: Macrobiotidae) with Updated Genus Phylogeny.
Fig. 7. Platynereis shihmenensis sp. nov.; holotype (NMNS 8390-4): A, whole animal; B, anterior body; C, close-up of Area IV, right side; C, closeup of Area VI. Scale bars: A = 2.0 mm; B = 1.0 mm; C–D = 0.1 mm.
Fig. 3 in Fig. 13 in An Integrative Description of Two New Species (Tardigrada: Eutardigrada: Macrobiotidae) with Updated Genus Phylogeny.
Fig. 3. Relationship between the monthly total size of wounds (overall bark-stripping intensity) and the product of sambar abundance and necessity index. Pearson's correlation coefficient was 0.925 (p <0.001).
Fig. 4 in Fig. 13 in An Integrative Description of Two New Species (Tardigrada: Eutardigrada: Macrobiotidae) with Updated Genus Phylogeny.
Fig. 4. Predicted probability of bark-stripping by sambar for seven tree species along the diameter at breast height (DBH) at Tataka, Yushan National Park in Taiwan. Month was set to September and slope was set to zero. Range of the DBH for each species was based on the observed values.
Fig. 2 in Fig. 13 in An Integrative Description of Two New Species (Tardigrada: Eutardigrada: Macrobiotidae) with Updated Genus Phylogeny.
Fig. 2. Averages of indexes of (a) the bark-stripping frequency (b) bark-stripping intensity and necessity index (average size per wound) and (c) sambar abundance from November 2018 to January 2021 at Tataka, Yushan National Park in Taiwan.
Linked collectors and determiners for: A description of Macrobiotus horningi sp. nov. and redescriptions of M. maculatus comb. nov. Iharos, 1973 and M. rawsoni Horning et al., 1978 (Tardigrada: Eutardigrada: Macrobiotidae: hufelandi group).
Natural history specimen data linked to collectors and determiners held within, "A description of Macrobiotus horningi sp. nov. and redescriptions of M. maculatus comb. nov. Iharos, 1973 and M. rawsoni Horning et al., 1978 (Tardigrada: Eutardigrada: Macrobiotidae: hufelandi group)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="http://bionomia.net/dataset/000e5e3d-ee09-4d51-b106-d4ad23a37513">https://bionomia.net/dataset/000e5e3d-ee09-4d51-b106-d4ad23a37513</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/000e5e3d-ee09-4d51-b106-d4ad23a37513">https://gbif.org/dataset/000e5e3d-ee09-4d51-b106-d4ad23a37513</a>. Formatted as a Frictionless Data package.
Fig. 14 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus
Fig. 14. Phylogeny of Mesobiotus Vecchi, Cesari, Bertolani, Jönsson, Rebecchi & Guidetti, 2016 based on concatenated 18S + 28S + ITS-2 + COI sequences. Numbers at nodes indicate Bayesian posterior probability values (BI, first values) and bootstrap values (ML, second values). Black dots indicate the nodes supported by values of 1.0/100% with both methods. Low support values (below 0.9 in BI and below 70% in ML) not shown. Scale bar and branch lengths refer to the Bayesian analysis.
Fig. 13 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus
Fig. 13. Mesobiotus vulpinus sp. nov., paratype (SPbU Tar_65), egg. A–B. Details of the egg processes, whire arrowheads indicate large pores, black arrowheads indicate small pores, SEM. Scale bars = 5 µm.
Fig. 12 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus
Fig. 12. Mesobiotus vulpinus sp. nov., egg. A–D. Paratypes (SPbU Tar_65). A, C. Total view of the eggs, SEM. B, D. Details of the egg surface, SEM. Note the difference in the degree of development of small tubercles and numerous small pores on the egg surface. Scale bars: A–B = 20 µm; C–D = 5 µm.
Fig. 11 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus
Fig. 11. Mesobiotus vulpinus sp. nov., paratype (SPbU 320(6)), egg. A. Total view of the egg, PhC. B. Egg processes with small bulbous process between them, black arrowhead, DIC. C–D. Details of the egg surface, black arrowheads indicate small bulbous processes, PhC (C), DIC (D). E. Bifurcated egg process, PhC. F. Egg process with "bubble", black arrowhead, PhC. G–H. Optical sections of the egg process basal part, white arrowheads indicate a pore, DIC. Scale bars: A = 20 µm; B–H = 10 µm.
Fig. 9 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus
Fig. 9. Mesobiotus vulpinus sp. nov., bucco-pharyngeal apparatus. A–G. Holotype (SPbU 320(10)). H. Paratype (SPbU 320(1)). A. Total dorso-ventral view of the bucco-pharyngeal apparatus, PhC. B–C. Placoids, black arrowheads indicate the preterminal constriction of the third macroplacoid, PhC (B), DIC (C). D–G. Oral cavity armature (D–E = dorsal view, F–G = ventral view), PhC (D, F), DIC (E, G). H. Oral cavity armature with fragmented medio-ventral ridge, PhC. Scale bars: A = 20 µm; B–H = 10 µm.
Fig. 10 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus
Fig. 10. Mesobiotus vulpinus sp. nov., claws. A, C, F–G. Paratype (SPbU Tar_33). B. Paratype (SPbU 320(1)). D, H. Holotype (SPbU 320(10)). E. Paratype (SPbU 320(5)). A. Inner surface of leg III, white arrowhead indicates indistinctly marked pulvinus, SEM. B. Claws of leg II, black arrowhead indicates bar-like cuticular thickening, PhC. C. Claws of leg III, SEM. D. Claws of leg I, focused on bar-like cuticular thickening, black arrowhead, white arrowhead indicates the zone of dot-like sculpture, PhC. E. Claws of leg IV, black arrowheads indicate cuticular sculpture around the claw bases, PhC. F. Claws of leg IV, SEM. G. Lunules of claws of leg IV, SEM. H. Leg IV, focused on horseshoe-like structure, white arrowhead, black arrowhead indicates cuticular sculpture around the claw base, PhC. Scale bars: A–B, D–E, H = 10 µm; C, F–G = 5 µm.
Fig. 8 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus
Fig. 8. Mesobiotus vulpinus sp. nov., cuticular sculpture and oral cavity armature (OCA). A–B, E–F. Paratype (SPbU Tar_33). C–D. Holotype (SPbU 320(10)). A. High magnification of the sculpture of the dorsal body surface, SEM. B. Dot-like sculpture on the external surface of leg III, SEM. C. Dotlike sculpture on the external surface of leg III, PhC, black arrowhead inticates the zone of sculpture. D. Dot-like sculpture on the dorsal side of hind leg, PhC. E. Dot-like sculpture on the dorsal side of hind leg, SEM, white arrowhead indicates the zone of sculpture. F. Mouth opening with dorsal OCA visible, SEM, white arrow indicates the first band of teeth, white arrowhead indicates the dorsal crests of the third band of teeth. Scale bars A–B, F = 2 µm; C–E = 5 µm.
Fig. 7 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus
Fig. 7. Mesobiotus vulpinus sp. nov., total view. A. Paratype, ♀ (SPbU 420(1)). Dorso-ventral view, PhC. B. Paratype (SPbU Tar_65). Ventro-lateral view in SEM. Scale bars = 50 µm.
Fig. 4 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus
Fig. 4. Mesobiotus efa sp. nov., claws. A–B, E. Holotype (SPbU 275(72)). C. Paratype (SPbU 275(197)). D. Paratype (SPbU Tar_33). A. Claws of leg I, black arrowhead indicates bar-like cuticular thickening, PhC. B. Claws of leg II, black arrowhead indicates bar-like cuticular thickening, PhC. C. Claws of leg IV, white arrowhead indicates cuticular sculpture around the claw base, PhC. D. Claws of leg IV, white arrowhead indicates cuticular sculpture around the claw base, SEM. E. Claws of leg IV, black arrowhead indicates horseshoe-like structure, PhC. Scale bars: A–C, E = 10 µm; D = 5 µm.
Fig. 3 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus
Fig. 3. Mesobiotus efa sp. nov., bucco-pharyngeal apparatus.A. Holotype (SPbU 275(72)).B–G. Paratype (SPbU 275(197)). A. Total dorso-ventral view of the bucco-pharyngeal apparatus, black arrowheads indicate eyes, PhC. B–C. Placoids, PhC (B) and DIC (C). D–G. Oral cavity armature (D–E = dorsal view, F–G = ventral view), PhC (D, F), DIC (E, G). Scale bars: A = 10 µm; B–G = 5 µm.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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