Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
276
datasets available to search
ShareScore release 0.9.0
Dataset results
276 results for “Chaetonotidae”
Fig. 26 in A huge undescribed diversity of the subgenus Hystricochaetonotus (Gastrotricha, Chaetonotidae, Chaetonotus) in Central Europe
Fig. 26. Chaetonotus (Hystricochaetonotus) avarus sp. nov., paratype (CU-FNS-26-02-20/PA-2), differential interference contrast. A. Anterior body region. B. Anteriorly merged ventral ciliary bands. C. Detail of the mouth region. Hypostomium bears a pentagonal cuticular plate with two central protuberances. Scale bars = 10 µm.
Fig. 16 in A huge undescribed diversity of the subgenus Hystricochaetonotus (Gastrotricha, Chaetonotidae, Chaetonotus) in Central Europe
Fig. 16. Chaetonotus (Hystricochaetonotus) superbus sp. nov., differential interference contrast. A. Holotype (CU-FNS-15-06-20/HO), lateral overview showing the scale and spine pattern. B. Paratype (CU-FNS-22-06-20/PA), optical section showing the internal morphology in lateral view. Black stars in (A) mark the epipleurae and hypopleurae. White star in (B) marks the cerebral ganglion. Arrows mark the lateral denticle of spines. Scale bars = 30 µm.
Fig. 13 in A huge undescribed diversity of the subgenus Hystricochaetonotus (Gastrotricha, Chaetonotidae, Chaetonotus) in Central Europe
Fig. 13. Chaetonotus (Hystricochaetonotus) mirabilis sp. nov., differential interference contrast. A, C, E, G. Paratype (CU-FNS-25-10-19/PA-1). B, D, F. Paratype (CU-FNS-02-10-19/PA-2). A. Internal morphology. Opposed arrowheads denote posterior pharyngeal dilatations. B. Lateral view of the anterior body region. White star marks the cerebral ganglion. C. Anterior pharyngeal dilatations (opposed arrowheads). D. A pair of cuticular teeth is situated in the center of the mouth ring. E. Ventral view of the head region. Asterisks mark the beginning of the ventral ciliary bands. F. The intestine contains highly refractive and regularly arranged structures (white double arrowheads). G. Furca with a U-shaped indentation and adhesive glands. Scale bars: A = 15 µm; B, E–G = 10 µm; C–D = 5 µm.
Fig. 25 in A huge undescribed diversity of the subgenus Hystricochaetonotus (Gastrotricha, Chaetonotidae, Chaetonotus) in Central Europe
Fig. 25. Chaetonotus (Hystricochaetonotus) avarus sp. nov., paratype (CU-FNS-26-02-20/PA-2), differential interference contrast. A–B. Optical section showing the internal morphology. C. Ventral overview. Scale bars = 30 µm.
Fig. 36 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 36. Lepidodermella aff. squamata (Dujardin, 1841). Adult specimen. A. Habitus, phase contrast microphotograph. B–G. Bright field microphotographs. B. Head, dorsal view. C. Head, ventral view. D. Trunk, dorsal view. E. Trunk, ventral view. F. Posterior trunk region, furca base and furcal appendages, dorsal view. G. Posterior trunk region, furca base and furcal appendages, ventral view.
Fig. 35. Heterolepidoderma aff. majus Remane, 1927. Adult specimen. Bright field microphotographs. A. Habitus. B. Dorsal view. C in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 35. Heterolepidoderma aff. majus Remane, 1927. Adult specimen. Bright field microphotographs. A. Habitus. B. Dorsal view. C. Ventral view.
Fig. 32 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 32. Chaetonotus (Hystricochaetonotus) inaequabilis sp. nov. Adult specimen. Bright field microphotographs. A. Detail of pharynx. B. X-organ and sperm pockets.
Fig. 23 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 23. Chaetonotus (Hystricochaetonotus) horridus sp. nov. Adult specimen. A. Spines lateral view, bright field microphotograph. B. Spines with lamellae, phase contrast microphotograph.
Fig. 22 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 22. Chaetonotus (Hystricochaetonotus) horridus sp. nov. Adult specimen. Bright field microphotographs. A. Posterior trunk, furca base and furcal appendage, scales lateral view. B. Posterior trunk, furca base and furcal appendage scales, dorsal view. C. Central and posterior trunk scales, dorsal view. D. Posterior trunk, furca base and furcal appendage scales, ventral view.
Fig. 21 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 21. Chaetonotus (Hystricochaetonotus) horridus sp. nov. Adult specimen. Bright field microphotographs. A. Trunk spines, dorsal view. B. Trunk spines, dorsolateral view. C–D. Trunk spines, lateral view.
Fig. 31 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 31. Chaetonotus (Hystricochaetonotus) inaequabilis sp. nov. Adult specimen. A. Head, neck, anterior and central trunk spines, dorsal view, bright field microphotograph. B. Head, neck, anterior and central trunk spines, ventral view, bright field microphotograph. C. Ventrolateral spines with lamellae, phase contrast microphotograph.
Fig. 19 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 19. Chaetonotus (Hystricochaetonotus) horridus sp. nov. Adult specimen. Bright field microphotographs. A. Dorsal body view. B. View of internal morphology. C. Ventral body view.
Fig. 18 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 18. Chaetonotus (Hystricochaetonotus) horridus sp. nov. Schematic drawings of the spine types. A. First type of spines. B. Second type of spines. C. Third type of spines. D. Fourth type of spines. E. Fifth type of spines.
Fig. 17 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 17. Chaetonotus (Hystricochaetonotus) horridus sp. nov. Schematic drawings of the scales. A. Head anteriormost scale (scale 1). B. Head dorsal scale (scale 2). C. Head dorsolateral, lateral and ventrolateral scale (scale 3). D. Head ventral scale (scale 4). E. Neck dorsal scale (scale 5). F. Neck dorsolateral, lateral and ventrolateral scale (scale 6). G. Neck ventral scale (scale 7). H. Trunk dorsal scale (scale 8). I. Trunk dorsolateral, lateral and ventrolateral scale (scale 9). J. Trunk ventral scale (scale 10). K. Scale 11. L. Scale 12. M. Scale 13. N. Scale 14. O. Scale 15. P. Scale 16. Q. Scale 17. R. Scale 18. S. Scale 19. T. Scale 20. U. Scale 21. V. Scale 22. W. Scale 23. X. Scale 24. Y. Scale 25. Z. Scale 26.
Fig. 15 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 15. Chaetonotus (Hystricochaetonotus) hystrix Mečnikow, 1865. Adult specimen. Bright field microphotographs. A. Head dorsal spines. B. Head ventral spines. C. Neck and trunk dorsal spines. D. Neck and trunk ventral spines. E. Trunk dorsal spines. F. Trunk ventral spines.
Fig. 16 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 16. Chaetonotus (Hystricochaetonotus) horridus sp. nov. Schematic drawings. A. Dorsal view. B. View of internal morphology. C. Ventral view. Light grey areas indicate the areas of insertion of ciliary bands.
Fig. 28 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 28. Chaetonotus (Hystricochaetonotus) inaequabilis sp. nov. Schematic drawings of the spine types. A. First type of spines. B. Second type of spines. C–D. Third type of spines. E–F. Fourth type of spines. G. Fifth type of spines.
Fig. 14 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 14. Chaetonotus (Hystricochaetonotus) hystrix Mečnikow, 1865. Adult specimen. A. Habitus, phase contrast microphotograph. B. Dorsal scales, bright field microphotograph. C. Ventral scales, bright field microphotograph.
Fig. 11 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 11. Chaetonotus (Chaetonotus) invitatus sp. nov. Adult specimen. Bright field microphotography. Living euglenids inside intestine.
Fig. 10 in Gastrotricha - not only in sediments: new epiphytic species of Chaetonotida from the Jubilee Greenhouse of the Botanical Garden in Kraków
Fig. 10. Chaetonotus (Chaetonotus) invitatus sp. nov. Detail of internal morphology. Bright field microphotography. X-organ.
ScienceDex guides
Understand access before you commit
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.