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2,477 results for “type species”

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Figure 17 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 17. Claws of Itaquascon spp. (PCM, paratypes): A, claws IV of Itaquascon mongolicus Kaczmarek et al., 2002 (note serrated margin of the anterior claw basis); B, claws II of Itaquascon placophorum Maucci, 1973 (black arrowhead indicates internal bar). Scale bars: 10 μm.

opennotspecifiedNov 2023View details →
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Figure 21 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 21. Detailed morphology of Platicrista borneensis sp. nov. (PCM): A, holotype in ventral view (white arrowheads indicate median and posterior bars); B, buccopharyngeal apparatus in toto (paratype); C, claws II (paratype). Scale bars are in micrometres.

opennotspecifiedNov 2023View details →
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Figure 11 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 11. Claws of Adropion scoticum: A, claws II (PCM); B, claws IV (neotype, PCM); C, claws II (SEM); D, claws IV (SEM); claws of Adropion ommatophorum (Thulin, 1911) comb. nov. (holotype, NCM): E, F, claws II; G, claws III; H, claws IV. Incised white arrowheads indicate internal bars; white arrowheads indicate median and posterior bars; white asterisk indicates internal pulvinus; and white empty arrowhead indicates a pseudolunule. Scale bars are in micrometres.

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Figure 24 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 24. General morphology of Platicrista carpathica sp. nov. (holotype in ventral view, PCM). Scale bar is in micrometres.

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Figure 10 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 10. Adropion scoticum (Murray, 1905) in Murray (1905a): A, neotype habitus in ventral view (PCM); B, buccopharyngeal apparatus in toto (PCM); C, furca (SEM); D, pharynx (SEM). Scale bars are in micrometres.

opennotspecifiedNov 2023View details →
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Figure 9 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 9. Adropion belgicae (Richters, 1911) (topotypes): A, specimen in toto (PCM, ventral view); B, buccopharyngeal apparatus in toto (PCM); C, pharynx in dorsal view (SEM; note irregular margins of placoids); D, pharynx in lateral view (SEM); E, claws II (PCM; white arrowhead indicates the external pulvinus); F, claws II seen at a different angle (PCM); G, claws IV (PCM). Scale bars are in micrometres.

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Figure 8 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 8. Claws of Diphascon greveni (SEM, topotypes): A, claws I; B, claws III; C, D, claws IV. Black arrowheads indicate internal bars; white asterisks indicate internal pulvini. Scale bars: 10 μm.

opennotspecifiedNov 2023View details →
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Figure 7 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 7. Claws of Diphascon greveni (PCM, topotypes): A, claws I; B, claws II; C, claws III; D, E, claws IV; F, claws III of a juvenile. Black arrowheads indicate internal bars. Scale bars: 10 μm.

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Figure 36 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 36. Detailed morphology of buccopharyngeal apparatus of Pilatobius oculatus (all but A, SEM): A, buccopharyngeal apparatus in toto (PCM); B, idem; C, DABT and the transition zone between the buccal and pharyngeal tube; D, vanishing of annulation in the posterior part of the pharyngeal tube; E, pharynx. Scale bars are in micrometres.

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Figure 32 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 32. Raribius pawlowskii (Węglarska, 1973) (PCM): A, claws II (an individual from Rugalo, Italy); B, claws III (an individual from Rugalo, Italy); C, claws IV (paratype). Scale bars: 10 μm.

opennotspecifiedNov 2023View details →
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Figure 6 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 6. Detailed morphology of buccopharyngeal apparatus of Diphascon greveni (SEM, topotypes): A, in toto; B, OCA; C, AISM in lateral view; D, annulation of pharyngeal tube; E, annuli in close-up; F, furca; G, pharynx. Scale bars are in micrometres.

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Figure 33 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 33. General morphology of Pilatobius bullatus (Murray, 1905) in Murray (1905a) (PCM, topotypes): A, dorsal view; B, ventral view; C, close up of dorsal gibbosities and sculpturing. Scale bars are in micrometres.

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Figure 35 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 35. General morphology of Pilatobius oculatus (Murray, 1906) in Murray (1906b) (PCM): A, neotype in ventral view; B, cuticular wrinkling at the level of third pair of legs (III), with muscle attachments visible as large white ovals, note marginal sculpturing; C, caudal sculpturing, note smaller muscle attachments. Scale bars are in micrometres.

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Figure 42 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 42. Various Pilatobiinae, morphological details (PCM): A, P. opisthoglyptus (Maucci, 1987), paratype, buccopharyngeal apparatus in toto (empty white arrowhead indicates septulum); B, P. opisthoglyptus, paratype, claws I; C, P. nodulosus (Ramazzotti, 1957), claws I; D, P. nodulosus, claws IV; E, P. secchii (Bertolani & Rebecchi, 1996) nom. inq., claws II; F, P. ramazzottii (Robotti, 1970), caudal sculpturing; G, P. granifer (Greven, 1972), paratype, cephalic sculpturing (scale unknown). Filled incised white arrowheads indicate bars at the limb bases. Scale bars: 10 μm.

opennotspecifiedNov 2023View details →
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Figure 37 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 37. Claws of Pilatobius oculatus (PCM): A, claws I; B, claws IV (neotype). Scale bars: 10 μm.

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Figure 41 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 41. Claws of Pilatobius sexbullatus (PCM): A, claws II (black arrowhead indicates internal bars); B, claws IV (empty arrowhead indicates pseudolunule). Scale bars: 10 μm.

opennotspecifiedNov 2023View details →
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Figure 44. Evolution scheme for a in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 44. Evolution scheme for a tardigrade clade, where the blue triangle and red rectrangle signify newly erected genera ('apical taxa' in the paper by Tumanov and Tsvetkova 2023) with 'strong apomorphies', i.e. the set of well-defined, advanced morphological characters, distinguished from the previous broadly defined genus, whose members (marked with black circles) are still classified as the original genus, which became artificial but cannot be divided further because the lineages group species with mainly (or solely) plesiomorphic characters.

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Figure 26 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 26. Detailed morphology of Platicrista carpathica sp. nov. (paratypes, PCM): A, buccopharyngeal apparatus in toto; B, claws I; C, claws II; D, claws III. Empty white arrowheads indicate pseudolunulae; white asterisk indicates internal pulvinus; and black asterisk indicates external pulvinus. Scale bars are in micrometres.

opennotspecifiedNov 2023View details →
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Figure 40 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 40. General morphology of Pilatobius sexbullatus (Ito, 1995) (PCM): A, specimen in toto (dorsal view); B, cuticular sculpturing of the centromedial region with three gibbosities; C, buccopharyngeal apparatus in toto. Scale bars are in micrometres.

opennotspecifiedNov 2023View details →
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Figure 43 in What is a 'strong' synapomorphy? Redescriptions of Murray's type species and descriptions of new taxa challenge the systematics of Hypsibiidae (Eutardigrada: Parachela)

Figure 43. Various Pilatobiinae, morphology of pharyngeal structures (SEM): A, P. oculatus; B, P. bullatus; C, P. ramazzottii; D, P. recamieri (Richters, 1911); E, P. patanei (Binda & Pilato, 1971), lateral view; F, P. patanei, dorsal view. Scale bars: 5 μm.

opennotspecifiedNov 2023View 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.

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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.

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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