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FIGURE 16. A–G Nanohystrix hammerae n in Nanohystricidae n. fam., an unusual, plesiomorphic enarthronote mite family endemic to New Zealand (Acari, Oribatida)

FIGURE 16. A–G Nanohystrix hammerae n. sp., adult legs, abaxial aspect. A, right leg I, tarsus partially shown; B, right tarsus I; C, enlargement of tarsus I famulus (e); D, tibia I solenidion φ1 with minute coupled seta d; E, right leg II, tarsus partially shown; F, right tarsus; G, two variations of tarsus II famulus (e). Labels all indicate setiform organs (see text). Scale bars: 50 Μm (A, B, D–F); 5 Μm (C, G).

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FIGURE 6. A–G Nanohystrix hammerae n in Nanohystricidae n. fam., an unusual, plesiomorphic enarthronote mite family endemic to New Zealand (Acari, Oribatida)

FIGURE 6. A–G Nanohystrix hammerae n. sp., scanning electron micrographs of adults (most with small surface debris artifacts). A, sejugal region of partly distended specimen, dorsolateral aspect (anterior to left)—arrow indicates minute surface granules (probably cerotegument); B, anterior third, ventral aspect, showing rostrum, gnathosoma and epimeres I–III; C, same, ventrolateral aspect, with chelicerae spread; D, bothridium and base of bothridial seta; E, portion of sejugal region of contracted specimen, anterodorsal view (cf. left side of Fig. 4B), showing reticulation (arrow) on notogaster; F, enlargement of C, right center; G, prodorsum, lateral aspect (slightly anterodorsal). Abbreviations: ca1, ca2 (prodorsal carinae), cpc (podocephalic canal), Ch (chelicera), dc (dorsal carina of chelicera), ep1–3 (plates of epimeres 1–3), fl (flange of bothridial wall), Ge (gena), Ls (labrum), nc (nuchal constriction), oc.l (lateral eye), rb (rostral bulge), rm (rostral margin), sub.t (subcapitular tubercle); other labels indicate setae (see text). Scale bars: 50 Μm (B, C, G); 25 Μm (A, F); 10 Μm (E); 5 Μm (D).

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FIGURE 5. A–G Nanohystrix hammerae n in Nanohystricidae n. fam., an unusual, plesiomorphic enarthronote mite family endemic to New Zealand (Acari, Oribatida)

FIGURE 5. A–G Nanohystrix hammerae n. sp., transmitted light compound microscope images of uncleared adult females, coarsely sectioned near sagittal plane (all lateral views, anterior to right). A, overview of fully distended specimen, with marked sections showing location of indicated close-ups; B, anterior third of fully contracted specimen, with close-up indicated; C, dorsal sejugal region, showing occipital wall and nuchal constriction of prodorsum, and extrinsic retractor muscles of chelicera; D, dorsal sejugal region and anterior region of notogaster, showing prodorsal retractor muscles (pr.mu; broken in C) inserted near border of nuchal constriction; E, posterior slope of hysterosoma in region of third scissure—at two focal planes, showing postanal suspensor muscle (po.mu) and deeper plane (right) with cuticular disk cd5 (with underlying fibers, fib) and seta h1 (with depressor muscle, h1.mu); F, section of middle scissure (more lateral than indicated in A) showing base of seta f1 and associated depressor muscle (f1.mu); G, ventrosejugal region, showing narrow ventral part of sejugal articulation and broad soft cuticle of epimere I. Other abbreviations: bng (anterior border of notogaster), cr.mu (cheliceral retractor muscles); cw (caecum wall), ep1–3 (plates of epimeres 1–3), nc (nuchal constriction), t.gr (transverse groove), sej (sejugal articulation), t.sul (transverse sulcus). All composites of 5–20 layers. Scale bars: 100 Μm (A, B); 25 Μm (C–G).

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FIGURE 4. Aethriamanta rezia Kirby, 1889 in A new libelluloid family from the Eocene Green River Formation (Colorado, USA) (Odonata, Anisoptera)

FIGURE 4. Aethriamanta rezia Kirby, 1889, specimen from Guinée Nimba, Marais Yafélé, alt. 500 m, 16 April 1991 (J. Legrand leg.)

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FIGURE 5 in A new libelluloid family from the Eocene Green River Formation (Colorado, USA) (Odonata, Anisoptera)

FIGURE 5. Urothemis assignata (Selys, 1872), Sénégal, Casamance, Djibelor, 5 June 1981 (J. Etienne leg.)

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FIGURE 3 in A new libelluloid family from the Eocene Green River Formation (Colorado, USA) (Odonata, Anisoptera)

FIGURE 3. Urolibellula eocenica sp. n., holotype specimen, drawing of hindwing (scale bar represents 4 mm).

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FIGURE 2 in A new libelluloid family from the Eocene Green River Formation (Colorado, USA) (Odonata, Anisoptera)

FIGURE 2. Urolibellula eocenica sp. n., holotype specimen, drawing of forewing (scale bar represents 4 mm).

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FIGURE 1 in A new libelluloid family from the Eocene Green River Formation (Colorado, USA) (Odonata, Anisoptera)

FIGURE 1. Urolibellula eocenica sp. n., holotype specimen, photograph of general habitus (scale bar represents 3 mm).

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FIGURE 37 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family

FIGURE 37. Lower part of the Maximum Likelihood inference phylogram, upper part of which is depicted on Fig. 36. HT: holotype.

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FIGURES 25 – 34 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family

FIGURES 25 – 34. Syncosmetus stheno sp. nov., male holotype from Jizu Shan (Figs. 25 – 27): (25) dorsal view; (26) lateral view; (27) ventral view. Pregenital segment and aedeagus of a paratype from Jizu Shan (Figs. 28 – 30): (28) sternite VIII; (29) tegmen; (30) penis. Male paratype from Gaoligong Shan (Figs. 31 – 34): (31) dorsal view; (32) sternite VIII; (33) tegmen (left) still joined with basal piece (= phallobase; right) through membranes; (34) penis. The apices of sclerites of male abdominal terminalia are oriented to the left. Scale bars: 0.5 mm (Figs. 25 – 27, 31); 0.1 mm (Figs. 28 – 30, 32 – 34).

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FIGURES 15 – 21 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family

FIGURES 15 – 21. Syncosmetus medusa sp. nov., male holotype from Emei Shan (Figs. 15 – 17): (15) dorsal view; (16) lateral view, with arrow showing first two elytral keels diverging close to elytral base; (17) ventral view. Pregenital segment and aedeagus of a paratype from the type locality (Figs. 18 – 21): (18) sternite VIII; (19) tegmen; (20) basal piece (= phallobase); (21) penis. The apices of sclerites of male abdominal terminalia are oriented to the left. Scale bars: 0.5 mm (Figs. 15 – 17); 0.1 mm (Figs. 18 – 21).

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FIGURES 7 – 14 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family

FIGURES 7 – 14. Syncosmetus euryale sp. nov., male holotype (Figs. 7 – 8) from Gaoligong Shan: (7) dorsal view; (8) lateral view, with large arrow showing the first longitudinal elytral keel extending to about the middle of elytral edge, and small numbered arrows referring to the counting system of elytral keels used in the present work; (9) ventral view; (10) female paratype from Haba Shan. Pregenital segment and aedeagus of a paratype from the type locality (Figs. 11 – 14): (11) sternite VIII; (12) tegmen; (13) basal piece (= phallobase); (14) penis. The apices of sclerites of male abdominal terminalia are oriented to the left. Scale bars: 0.5 mm (Figs. 7 – 10); 0.1 mm (Figs. 11 – 14).

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FIGURE 36 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family

FIGURE 36. Upper part of the Maximum Likelihood inference phylogram obtained by using the Maximum Likelihood method based on the General Time Reversible model and using 185 DNA barcodes. The tree with the highest log likelihood is shown. The percentage of trees in which the associated taxa clustered together (= bootstrap) is shown next to the branches.

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FIGURES 22 – 24 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family

FIGURES 22 – 24. Syncosmetus perseus sp. nov., female holotype from Gongga Shan: (22) dorsal view; (23) lateral view, with arrow showing united apices of second and third elytral keels; (24) ventral view. Scale bar: 0.5 mm (Figs. 22 – 24).

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FIGURES 1 – 6 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family

FIGURES 1 – 6. Scolytocis danae sp. nov., male holotype from Gaoligong Shan: (1) dorsal view; (2) lateral view; (3) ventral view. Aedeagus of the holotype (Figs. 4 – 6): (4) tegmen; (5) basal piece (= phallobase); (6) penis. The apices of sclerites of male abdominal terminalia are oriented to the left. Scale bars: 0.5 mm (Figs. 1 – 3); 0.1 mm (Figs. 4 – 6).

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FIGURE 35 in First record and five new species of Xylographellini (Coleoptera: Ciidae) from China, with online DNA barcode library of the family

FIGURE 35. Known distribution of Xylographellini beetles in the Palaearctic Region outside of Japan.

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FIGURE 6 in A new bathyal mysid of the family Petalophthalmidae (Crustacea: Mysida) from the Bismarck Sea (Western Tropical Pacific Ocean)

FIGURE 6. Petalophthalmus papuaensis sp. nov. (A) first pleopod, (B) second pleopod, (C) third pleopod, (D) fourth pleopod, (E) fifth pleopod, (F) right uropod in ventral view, (G) cuspidate setae on the distal outer margin of the basal article of the uropod endopod, (H) telson in dorsal view, (I) telson apex in dorsal view, (J) medial serrate setae and six ventral small teeth in telson apex.

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FIGURE 8 in A new bathyal mysid of the family Petalophthalmidae (Crustacea: Mysida) from the Bismarck Sea (Western Tropical Pacific Ocean)

FIGURE 8. Known geographical distribution of Petalophthalmus species. P. armiger (Willemoës-Suhm 1875; Sars 1885; Faxon 1893, 1895; Alcock and Anderson 1894; Ortmann 1905; Holt and Tattersall 1906; Tattersall 1925, 1939, 1951; Hansen 1927; Bartsch 1933; Tattersall and Tattersall 1951; Birstein and Tchindonova 1958; Pillai 1965; Kathman et al. 1986; Escobar Briones and Soto 1991; Casanova 1993; Ledoyer 1995; San Vicente 2010a). P. caribbeanus (W. Tattersall 1937; O.Tattersall 1968; Mauchline and Murano 1977). P. liui (Wang 1998). P. macrops (Tchindonova and Vereshchaka 1991; Vereshchaka 1995). P. oculatus (Illig 1906, 1930; W. Tattersall 1939; O. Tattersall 1955; Pillai 1968, 1973; Murano 1970; Vereshchaka 1995). P. papilloculatus (San Vicente et al. 2014).

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FIGURE 3 in A new bathyal mysid of the family Petalophthalmidae (Crustacea: Mysida) from the Bismarck Sea (Western Tropical Pacific Ocean)

FIGURE 3. Petalophthalmus papuaensis sp. nov. (A) left mandible, (B) incisor to molar process of left mandible, (C) right mandible, (D) incisor to molar process of right mandible, (E) maxillule, (F) cuspidate-serrate seta on maxillule basis, (G) maxilla.

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FIGURE 2 in A new bathyal mysid of the family Petalophthalmidae (Crustacea: Mysida) from the Bismarck Sea (Western Tropical Pacific Ocean)

FIGURE 2. Petalophthalmus papuaensis sp. nov. (A) habitus in lateral view, (B) anterior part of carapace with eyes and right antennule in dorsal view, (C) right eye in dorsal view, (D) antenna in ventral view, (E) labrum.

opennotspecifiedDec 2015View 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