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FIGURE 14 in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 14. Claws and bucco-pharygeal apparatus of the Ramajendas variant (variant of the Isohypsibius type). A, claws; B, bucco-pharyngeal apparatus on dorsal view; C, bucco-pharyngeal apparatus on lateral view. (From Pilato & Binda, 1990).

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FIGURE 13 in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 13. Va ria nts of bucco-pharyngeal apparatuses of the Hypsibiinae model, Isohypsibius type. A, Thulinius variant; B, Pseudobiotus variant. (B, from Pilato, 1971)

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FIGURE 15. A–C in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 15. A–C: Variants of bucco-pharyngeal apparatuses of the Hypsibiinae model, Hypsibius type. A, Halobiotus variant; B, Acutuncus variant; C, Ramazzottius variant; D, bucco-pharyngeal apparatus of the Hypsibiinae model, Mixibius type. da = dorsal apophysis; dlt = dorsal longitudinal thickening; va = ventral apophysis; vlt = ventral longitudinal thickening. (A, from Pilato & Binda, 1996b; B, from Pilato & Binda 1997; C, from Binda & Pilato, 1986; D, from Pilato, 1992).

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FIGURE 12 in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 12. Bucco-pharyngeal apparatuses of the Hypsibiinae model. A, B, Doryphoribius type (A, in ventral view; B, in lateral view); C, Isohypsibius type; D, Hypsibius type. vl = ventral lamina. (C, from Pilato & Catanzaro, 1989.

opennotspecifiedDec 2010View details →
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FIGURE 11 in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 11. Claws of Hypsibiidae. A, claws of the fourth pair of legs of Eremobiotus (modified Isohypsibius type): the branches of each claw are joined to one another for a long portion of their length forming a large common tract by which the two distal tracts diverge forming an angle of almost 180°; B, Claws of Mixibius (the external claw is of the Isohypsbius type; the internal claw of modified Isohypsibius type: the secondary branch and the basal portion of the internal claws form an angle slightly larger than 90° and therefore, in some positions, this claw may seem to be of the Hypsibius type); C, claws of Acutuncus (the external claw is of the Isohypsibius type; the internal claw of the Hypsibius type). (A, from Binda 1969; B, from Pilato & Binda, 1996a; C, from Pilato & Binda, 1997).

opennotspecifiedDec 2010View details →
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FIGURE 10 in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 10. Claws of Hypsibiidae. A, Isohypsibius type; B, Hypsibius type; C, Ramazzottius type. (A, from Binda & Pilato, 1971; B, from Binda & Pilato, 1985; C, from Pilato & Rebecchi, 1992).

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FIGURE 9 in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 9. Claws and bucco-pharyngeal apparatuses of Eohypsibiidae. A, claws; B, bucco-pharyngeal apparatus of the Bertolanius type; C, bucco-pharyngeal apparatus of the Eohypsibius model. ap = accessory points; bs = basal section; lu = lunula; pb = primary branch; sb = secondary branch; stf = stylet furcae. (C, from Pilato & Binda, 1996b).

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FIGURE 8 in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 8. Bucco-pharyngeal apparatuses of: A, Hexapodibius type; B–D, Calohypsibius type: B, in lateral view; C, in dorsal view; D, in ventral view. cp = caudal processes; da = dorsal apophysis; dlt = dorsal longitudinal thickening; va = ventral apophysis; vl = ventral lamina.

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FIGURE 1 in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 1. Some types of claws of the Eutardigrada. A, Milnesiidae; B, Hexapodibius (Calohypsibiidae); C, Microhypsibiidae; D, Eohypsibiidae; E, Hypsibius (Hypsibiidae); F, Macrobiotus (Macrobiotidae). ap = accessory points; bs = basal section; bth = basal thickening; ds = distal section; lu = lunula; pb = primary brach; s = stem; sb = secondary branch; sp = spur. (B, from Binda & Pilato, 1969; C, from Pilato, 1998).

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FIGURE 5 in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 5. Claws and bucco-pharyngeal apparatuses of Milnesiidae. A, claws; B, bucco-pharyngeal apparatus of Milnesium; C, Milnesioides; D,E, Limmenius.(B, from Binda & Pilato, 1990). ap = accessory points; bsp = basal spur; bth = basal thickening; ce pa = cephalic papilla; pb = primary branch; pl = peribuccal lamella; sb = secondary branch; sp = spur. Definitions of families, subfamilies, genera and subgenera

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FIGURE 7 in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 7. Claws of Calohypsibiidae. A, claws normally developed; B, claws reduced of Hexapodibius; C, claws with reduced secondary branch; D, simple claws (the secondary branch is lacking). ap =accessory points; bs = basal section; pb = primary branch; sb =secondary branch. (A, from Binda & Pilato, 1969; B, from Pilato, 1969a; C, from Pilato, 1973a).

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FIGURE 4. Stylet furcae shapes. A in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 4. Stylet furcae shapes. A, typically-shaped furcae (the basal portion is enlarged and has two caudal branches with thickened, swollen, rounded apices); B, Richtersius type (the branches, very robust, have thickened but neither swollen nor rounded apices); C, Insuetifurca type (the branches are arched and converging backwards); D, Eohypsibius type (the branches are arched, without particularly swollen apices); E, Mesocrista type (the basal portion is not very enlarged and the branches have thickened, swollen, rounded apices); F, Platicrista type (the branches are pointing backwards instead of backwards and sideways, and on lateral view they are spoon like and tapering at their apices); G, Astatumen type (the branches are very short and taper at their apices); H, Itaquascon type (the branches are very short and without swollen apices); I, Milnesium type (triangular in shape without long branches pointing backwards and sideways). (A, E, F, G from Pilato, 1987. C, from Guidetti & Pilato, 2003).

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FIGURE 6 in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 6. Paired elliptical organ present in some Calohypsibiidae, in some Hypsibiidae and some Microhypsibiidae. eo = elliptical organ.

opennotspecifiedDec 2010View details →
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FIGURE 3 in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 3. Scheme of bucco-pharyngeal apparatuses of Hypsibiidae. A–C, of Hypsibiinae model: A, Doryphoribus type in ventral view; B, the same type in lateral view; C, Hypsibius type; D,E bucco-pharyngeal apparatuses of Itaquasconinae model Diphascon type: D, of the subgenus Diphascon (Adropion); E, of the subgenus Diphascon (Diphascon). bt = buccal tube; cp = caudal processes; da = dorsal apophysis; pht = pharyngeal tube; pp = peribuccal papulae; sp = sagittal plane; st = stylet; stf = stylet furcae; stsh = stylet sheaths; tth = buccal tube thickening; va = ventral apophysis; vl = ventral lamina. (D, from Pilato & Binda, 1983b. E, from Pilato, 1987).

opennotspecifiedDec 2010View details →
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FIGURE 2 in Definition of families, subfamilies, genera and subgenera of the Eutardigrada, and keys to their identification

FIGURE 2. Scheme of bucco-pharyngeal apparatus of Macrobiotus (Macrobiotidae). cp = caudal processes; pha = pharyngal apophyses; pl = peribuccal lamellae; pla = placoids; sp = sagittal plane; st = stylet; stf = stylet furcae; sts = stylet support; stsh = stylet sheaths; vl = ventral lamina.

opennotspecifiedDec 2010View details →
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FIGURES 10–13 in A new genus and species of Old World Opsiini (Hemiptera: Cicadellidae: Deltocephalinae), with a key to genera and species checklist for the tribe

FIGURES 10–13. Meiotic chromosomes of males of Introrsa yaoquensis. 10. Prophase; 11. Meiosis metaphase I, n=6, XO; 12. Meiosis anaphase I, sex chromosome lag behind autosomes; 13. Meiosis metaphase II,show two types of cells with five and six chromosomes.

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FIGURES 4–9 in A new genus and species of Old World Opsiini (Hemiptera: Cicadellidae: Deltocephalinae), with a key to genera and species checklist for the tribe

FIGURES 4–9. Introrsa yaoquensis sp. nov. 4. Pygophore, lateral view; 5. Genital valve and subgenital plate, ventral view; 6. Connective and style; 7. Apical half of style, lateral view; 8. Aedeagus, lateral view; 9. Aedeagus, ventral view.

opennotspecifiedDec 2010View details →
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FIGURES 16–20 in Insects found in birds' nests from Argentina. Cyanoliseus patagonus (Vieillot, 1818) [Aves: Psittacidae], with the description of Cyanolicimex patagonicus, gen. n., sp. n., and a key to the genera of Haematosiphoninae (Hemiptera: Cimicidae)

FIGURES 16–20. Psitticimex uritui: 16, antennae, head, and pronotum (female); 17, pronotal margin; 18, male genitalia; 19, female spermalege; 20, tibia III.

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FIGURE 8 in Insects found in birds' nests from Argentina. Cyanoliseus patagonus (Vieillot, 1818) [Aves: Psittacidae], with the description of Cyanolicimex patagonicus, gen. n., sp. n., and a key to the genera of Haematosiphoninae (Hemiptera: Cimicidae)

FIGURE 8. Phylogeny of the Haematosiphoninae, with the incorporation of Cyanolicimex as the sister genus of Psitticimex.

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FIGURES 13–15 in Insects found in birds' nests from Argentina. Cyanoliseus patagonus (Vieillot, 1818) [Aves: Psittacidae], with the description of Cyanolicimex patagonicus, gen. n., sp. n., and a key to the genera of Haematosiphoninae (Hemiptera: Cimicidae)

FIGURES 13–15. Acanthocrios furnarii: 13, antennae, head, and pronotum (female); 14, pronotal margin; 15, male genitalia (laboratory culture, coll. Usinger).

opennotspecifiedDec 2010View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record