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796 results for “Eutardigrada”
Fig. 17 in Integrative description of Macrobiotus canaricus sp. nov. with notes on M. recens (Eutardigrada: Macrobiotidae)
Fig. 17. The Bayesian Inference (BI) phylogeny constructed from COI sequences of the species of the Macrobiotus hufelandi group. Numbers at nodes indicate the Bayesian posterior probability. Species of the hufelandi group with typical and atypical egg processes are indicated by blue and red fonts, respectively. See Table 2 for details on the species sequences used in the analysis. The outgroup is marked with grey. The scale bar represents substitutions per position.
Fig. 2 in Integrative description of Macrobiotus canaricus sp. nov. with notes on M. recens (Eutardigrada: Macrobiotidae)
Fig. 2. Macrobiotus canaricus sp. nov., paratypes, body cuticle. A–B. Pores on the dorsal and ventral cuticle, respectively (PCM). C–D. Pores on the dorsal and ventral cuticle, respectively (SEM). E. Pores and fine granulation on the dorso-posterior cuticle (SEM). F. Close-up of a pore and granulation on the dorso-posterior cuticle (SEM). Scale bars in μm.
Fig. 9 in Integrative description of Macrobiotus canaricus sp. nov. with notes on M. recens (Eutardigrada: Macrobiotidae)
Fig. 9. Macrobiotus cf. recens Cuénot, 1932, Gran Canaria, structures on forelegs seen under PCM and under SEM. A–C. The patch of granulation on the external surface of leg II, with the cuticular pore at the centre of the patch and the cuticular fold above the claws. D–F. The patch of granulation and the cuticular bulge (pulvinus) on the internal surface of leg III. G–I. Granulation on leg IV. Filled flat arrowheads indicate the large pore at the centre of the external granulation patch, empty flat arrowheads indicate the cuticular fold above the claws on the external leg surface, filled indented arrowheads indicate the cuticular fold (pulvinus) on the internal leg surface, and empty indented arrowheads indicate granulation on the internal leg surface. Scale bars in μm.
Fig. 10 in Integrative description of Macrobiotus canaricus sp. nov. with notes on M. recens (Eutardigrada: Macrobiotidae)
Fig. 10. Macrobiotus cf. recens Cuénot, 1932, Gran Canaria, buccal apparatus and the oral cavity armature seen under PCM. A. Dorsal projection of the entire buccal apparatus. B–C. Dorsal and ventral view of the oral cavity armature, respectively. D–E. Placoid morphology. Scale bars in μm.
Fig. 12 in Integrative description of Macrobiotus canaricus sp. nov. with notes on M. recens (Eutardigrada: Macrobiotidae)
Fig. 12. Macrobiotus cf. recens Cuénot, 1932, Gran Canaria, claws. A–B. Claws III and IV seen under PCM, with smooth and weakly crenulated lunules, respectively. C–D. Claws II and IV seen under SEM, with smooth and weakly crenulated lunules, respectively. A and B assembled from several photos. Filled arrowheads indicate faint cuticular bars under claws whereas empty arrowhead indicates a horseshoeshaped structure. Scale bars in μm.
Fig. 8 in Integrative description of Macrobiotus canaricus sp. nov. with notes on M. recens (Eutardigrada: Macrobiotidae)
Fig. 8. Macrobiotus cf. recens Cuénot, 1932, Gran Canaria, habitus and cuticular pores. A. Dorsoventral projection (PCM). B–C. Pores on the dorsal and ventral cuticle, respectively (PCM). D. Pores on the dorsal cuticle (SEM). E. Granulation inside a single pore (SEM). Scale bars in μm.
Fig. 13 in Integrative description of Macrobiotus canaricus sp. nov. with notes on M. recens (Eutardigrada: Macrobiotidae)
Fig. 13. Macrobiotus cf. recens Cuénot, 1932, Gran Canaria, egg seen under PCM. A. Midsection under 400 × magnification. B. Surface under 400 × magnification. C–D. Surface under 1000 × magnification. E–F. Midsection under 1000 × magnification. Filled arrowheads indicate short thickenings radiating from the processes bases. Scale bars in μm.
Fig. 16 in Integrative description of Macrobiotus canaricus sp. nov. with notes on M. recens (Eutardigrada: Macrobiotidae)
Fig. 16. The Bayesian Inference (BI) phylogeny constructed from concatenated sequences (18S rRNA + 28S rRNA + ITS-2 + COI) of the family Macrobiotidae. Numbers at nodes indicate the Bayesian posterior probability. Species of the hufelandi group with typical and atypical egg processes are indicated by blue and red fonts, respectively. See Table 2 and the Phylogenetic analysis subsection in Material and methods for details on the species sequences used in the analysis. The remaining macrobiotids are marked with black and the outgroup is marked with grey. The scale bar represents substitutions per position.
Fig. 15 in Integrative description of Macrobiotus canaricus sp. nov. with notes on M. recens (Eutardigrada: Macrobiotidae)
Fig. 15. The Bayesian Inference (BI) phylogeny constructed from 18S rRNA sequences of the family Macrobiotidae. Numbers at nodes indicate the Bayesian posterior probability. Species of the hufelandi group with typical and atypical egg processes are indicated by blue and red fonts, respectively. The X. pseudohufelandi + M. polonicus clade, which is in a sister relationship to all other species of the hufelandi group, is indicated by green branches. See Table 2 and the Phylogenetic analysis subsection in Material and methods for details on species sequences used in the analysis. The remaining macrobiotids are marked with black and the outgroup is marked with grey. Scale bar represents substitutions per position.
Fig. 4 in Integrative redescription of Hypsibius pallidoides Pilato et al., 2011 (Eutardigrada: Hypsibioidea) with the erection of a new genus and discussion on the phylogeny of Hypsibiidae
Fig. 4. Hypsibius pallidoides Pilato, Kiosya, Lisi, Inshina & Biserov, 2011. A. Lateral view of the head region, white arrowhead indicates the anterior porous area, black arrowhead indicates the elliptical sensory organ, SEM. B. Enlarged view of the lateral surface of the head, white arrowhead indicates the anterior porous area, white arrow indicates the muscle attachment zone, SEM. C. Mouth opening with peribuccal lobes, SEM. D. Mouth opening with anterior ring of teeth, SEM. E. Dorsal sculpture of the juvenile, SEM. F. Bucco-pharyngeal apparatus (SPbU 251(82)), PhC. G. Dorsal view of the buccal cavity, black arrowhead indicates the circumoral elliptical structures (SPbU 251(82)), PhC. H. Ventral view of the buccal cavity, black arrowhead indicates the circumoral elliptical structures (SPbU 251(82)), PhC. Scale bars: A, F–H = 5 µm; B–C = 2 µm; D = 1 µm; E = 10 µm.
Fig. 7. A–G in Integrative redescription of Hypsibius pallidoides Pilato et al., 2011 (Eutardigrada: Hypsibioidea) with the erection of a new genus and discussion on the phylogeny of Hypsibiidae
Fig. 7. A–G. Hypsibius pallidoides Pilato, Kiosya, Lisi, Inshina & Biserov, 2011 eggs. A–D, specimen KNU Чер-9 II. A. Type series specimen mounted during the egg laying process, PhC. B. Type series egg shell, PhC. C. Type series egg shell, DIC. D. Type series egg shell structure with numerous internal pillars visible, DIC. E. Austrian population egg shell (SPbU 251(3)), PhC. F. Karelian population egg shell (SPbU 113(2)), PhC. G. Pushkin population egg shell (SPbU 235(28)), PhC. – H. Pilatobius recamieri (Richters, 1911), egg shell (SPbU 203(7)), PhC. Scale bars: A = 50 µm; B–H = 5 µm.
FIGURE 65 b in A description of the new tardigrade Macrobiotus reinhardti (Eutardigrada: Macrobiotidae, harmsworthi group) with some remarks on the oral cavity armature within the genus Macrobiotus Schultze
FIGURE 65 b. The same SEM as 65 a but not coloured. Arrows indicate three bands of teeth (I – III) and the oral cavity fold (f). The star (*) indicates the most dorsal lamella.
FIGURE 65 a in A description of the new tardigrade Macrobiotus reinhardti (Eutardigrada: Macrobiotidae, harmsworthi group) with some remarks on the oral cavity armature within the genus Macrobiotus Schultze
FIGURE 65 a. Oral cavity armature of the hufelandi type (photomicrograph of the same specimen of Macrobiotus sp. as is shown on figs 55 a – 60 b). Colour codes for individual bands of teeth: I band = red; II band = yellow; III band = blue. Oral cavity ring fold = green. The star (*) indicates the most dorsal lamella. (SEM)
FIGURES 59 a – 64 a in A description of the new tardigrade Macrobiotus reinhardti (Eutardigrada: Macrobiotidae, harmsworthi group) with some remarks on the oral cavity armature within the genus Macrobiotus Schultze
FIGURES 59 a – 64 a. Oral cavity armature of the hufelandi type (series of photomicrographs of one specimen of Macrobiotus sp.). Colour codes for individual bands of teeth: I band = red; II band = yellow; III band = blue. Oral cavity ring fold = green. The star (*) indicates the most dorsal lamella. (SEM)
FIGURES 41 – 44 in A description of the new tardigrade Macrobiotus reinhardti (Eutardigrada: Macrobiotidae, harmsworthi group) with some remarks on the oral cavity armature within the genus Macrobiotus Schultze
FIGURES 41 – 44. Macrobiotus reinhardti sp. nov. – processes and surfaces of eggs; note arrow on fig. 42 indicates a pore in the basal portion of process, arrow on fig. 43 indicates wrinkled surface between processes and arrow on fig. 44 indicates smaller pore in the surface between processes. (SEM)
FIGURES 45 – 50 in A description of the new tardigrade Macrobiotus reinhardti (Eutardigrada: Macrobiotidae, harmsworthi group) with some remarks on the oral cavity armature within the genus Macrobiotus Schultze
FIGURES 45 – 50. Macrobiotus reinhardti sp. nov. – intentionally damaged egg; 45 – general view, 46 48 – the sequence of closer views of the internal structure of processes; 49 – single process; 50 – torn wall of process; arrows on figs 48 – 49 indicate pores in the internal wall of processes, arrows on fig. 50 indicate external and internal walls of process. (SEM)
FIGURES 18 – 19 in A description of the new tardigrade Macrobiotus reinhardti (Eutardigrada: Macrobiotidae, harmsworthi group) with some remarks on the oral cavity armature within the genus Macrobiotus Schultze
FIGURES 18 – 19. Macrobiotus reinhardti sp. nov. – hind legs; 18 – dorsal view, note fine granulation on the legs; 19 – ventral view, note larger lunules on the internal claws (paratypes). (SEM)
FIGURES 30 – 31 in A description of the new tardigrade Macrobiotus reinhardti (Eutardigrada: Macrobiotidae, harmsworthi group) with some remarks on the oral cavity armature within the genus Macrobiotus Schultze
FIGURES 30 – 31. Macrobiotus reinhardti sp. nov. – process on the circumference of egg; 30 – surface, 31 – middle section (DIC).
FIGURES 25 – 29 in A description of the new tardigrade Macrobiotus reinhardti (Eutardigrada: Macrobiotidae, harmsworthi group) with some remarks on the oral cavity armature within the genus Macrobiotus Schultze
FIGURES 25 – 29. Macrobiotus reinhardti sp. nov. 25 – 27 – surfaces of eggs; 28 – middle section of egg (note the embryo inside); 29 – the first instar hatching. (DIC)
FIGURES 8 – 16 in A description of the new tardigrade Macrobiotus reinhardti (Eutardigrada: Macrobiotidae, harmsworthi group) with some remarks on the oral cavity armature within the genus Macrobiotus Schultze
FIGURES 8 – 16. Macrobiotus reinhardti sp. nov. 8 11 – sequential sections of buccal apparatus (from ventral to dorsal view); 12 16 – sequential sections of the oral cavity (from ventral to dorsal view), arrows indicate bands of teeth (paratype). (DIC)
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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.