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Figures 12–16. Haroldiellus woodruffi, male holotype. 12 in A third species of Haroldiellus Gordon and Skelley, 2007 from Mexico and Central America (Coleoptera: Scarabaeidae: Aphodiinae: Aphodiini)

Figures 12–16. Haroldiellus woodruffi, male holotype. 12) Lateral habitus. 13) Ventral habitus. 14) Epipharynx. 15–16) Genitalia dorsal and lateral. Scale line = 0.5 mm (figure 12 same scale bar as 13, figure 16 same scale bar as 15).

opencc-by-4.0Feb 2022View details →
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Fig. 5 in Two New Species Of The Genus Neoseiulus (Parasitiformes, Phytoseiidae) With Redescriptions Of N. Bicaudus And N. Micmac Based On Holotypes

Fig. 5. Neoseiulus akimovi Kolodochka, sp. n. Female: A — dorsal shield; B — setae J5; C — fragment of ventral body surface; D —chelicera; E — metapodal plates; F1, F2 — spermatheca; G — caudal part of peritremal shield; H — fragment of leg IV; I — genu II (setal abbreviation the same on fig. 1). N. cucumeris (Oudemans, 1930). Female, spermatheca: K — from Karg (1993); L — sample from commercial mite culture.

opencc-by-4.0Jul 2018View details →
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Fig. 4 in Two New Species Of The Genus Neoseiulus (Parasitiformes, Phytoseiidae) With Redescriptions Of N. Bicaudus And N. Micmac Based On Holotypes

Fig. 4. Neoseiulus brachychaetus Kolodochka, sp. n. Female: A — dorsal shield; B — fragment of ventral body surface; C — chelicera; D — metapodal plates; E1, E2— spermatheca; F — caudal part of peritremal shield; G — fragment of leg IV; H — genu II (setal abbreviation the same on fig. 1). Male: I — chelicera.

opencc-by-4.0Jul 2018View details →
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Fig. 1 in Two New Species Of The Genus Neoseiulus (Parasitiformes, Phytoseiidae) With Redescriptions Of N. Bicaudus And N. Micmac Based On Holotypes

Fig. 1. Neoseiulus bicaudus (Wainstein). Female: A — dorsal shield; B — setae J5; C — fragment of ventral body surface; D —chelicera; E — metapodal plates; F — spermatheca; G — caudal part of peritremal shield; H — fragment of leg IV; I, genu II (setal abbreviation: ad — antero-dorsal, pd — post-dorsal; al — antero-lateral, pl — post-lateral; av — antero-ventral).

opencc-by-4.0Jul 2018View details →
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Fig. 3 in Two New Species Of The Genus Neoseiulus (Parasitiformes, Phytoseiidae) With Redescriptions Of N. Bicaudus And N. Micmac Based On Holotypes

Fig. 3. Neoseiulus micmac (Chant et Hansell). Female: A— dorsal shield; B — setae J5; C — fragment of ventral body surface; D 13–14, chelicerae (D — moveable digit; D — fixed digit); E — metapodal plates; F — spermatheca; G — caudal part of peritremal shield; H — fragment of leg IV.

opencc-by-4.0Jul 2018View details →
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Fig.ç3.D isasterina akajimaensis sp. nov., holotype (NSMT E-6758). A, Anal pore and a patch; B, madreporite; C, proximal part of arm, abactinal view; D, oral plate pair and interradial uncalci ed area, some oral spines have been lost (see also Fig. 6 for oral plate pair and interradial uncalci ed area at another interradius); E, proximal part of ambulacral furrow (oral plates seen at the lower-le corner are drawn in Fig. 6); F, inferomarginal spinelets, abactinal view. Abbreviations: als, actinolateral spine; apo, anal pore; fs, furrow spine; imp, inferomarginal plate; ims, inferomarginal spine; ir, interradial; iua, interradial uncalci ed area; md, madreporite; op, oral plate; os, oral spine; r, radial; rp, rigid patch; sas, subambulacral spine. in A New Asterinid Sea Star, Disasterina akajimaensis (Echinodermata: Asteroidea) from the Ryukyu Islands, Japan, with Notes on the Genus Disasterina

Fig.ç3.D isasterina akajimaensis sp. nov., holotype (NSMT E-6758). A, Anal pore and a patch; B, madreporite; C, proximal part of arm, abactinal view; D, oral plate pair and interradial uncalci ed area, some oral spines have been lost (see also Fig. 6 for oral plate pair and interradial uncalci ed area at another interradius); E, proximal part of ambulacral furrow (oral plates seen at the lower-le corner are drawn in Fig. 6); F, inferomarginal spinelets, abactinal view. Abbreviations: als, actinolateral spine; apo, anal pore; fs, furrow spine; imp, inferomarginal plate; ims, inferomarginal spine; ir, interradial; iua, interradial uncalci ed area; md, madreporite; op, oral plate; os, oral spine; r, radial; rp, rigid patch; sas, subambulacral spine.

opencc-by-4.0May 2012View details →
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(11) N. brendelli nov.sp. holotype; (12) N. oxoniensis nov.sp.; (13) N. calcicola nov.sp. holotype; (14) N. argentifer nov.sp.; (15) N. sarahae nov.sp. holotype. in The genus Naddia in Borneo (Coleoptera: Staphylinidae: Staphylininae)

(11) N. brendelli nov.sp. holotype; (12) N. oxoniensis nov.sp.; (13) N. calcicola nov.sp. holotype; (14) N. argentifer nov.sp.; (15) N. sarahae nov.sp. holotype.

opencc-by-4.0Dec 2014View details →
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Supplementary material S2. Leiestes tomaszewskae sp. nov., holotype, Nr. 6723 [MAIG], X-ray micro-CT volume rendering of the habitus (without legs).

<p>X-ray micro-CT volume rendering of the habitus (without legs) of <em>Leiestes</em> <em>tomaszewskae</em> sp. nov., holotype, Nr. 6723 [MAIG].</p>

opencc-by-4.0Aug 2022View details →
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Supplementary material S1. Leiestes tomaszewskae sp. nov., holotype, Nr. 6723 [MAIG], X-ray micro-CT volume rendering of the habitus.

<p>X-ray micro-CT volume rendering of the habitus of <em>Leiestes</em> <em>tomaszewskae</em> sp. nov., holotype, Nr. 6723 [MAIG].</p>

opencc-by-4.0Aug 2022View details →
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Supplementary material S3. Leiestes tomaszewskae sp. nov., holotype, Nr. 6723 [MAIG], X-ray micro-CT volume rendering of the right antenna.

<p>X-ray micro-CT volume rendering of the right antenna of <em>Leiestes</em> <em>tomaszewskae</em> sp. nov., holotype, Nr. 6723 [MAIG].</p>

opencc-by-4.0Aug 2022View details →
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Figures 500–511. Teruelius intertidalis, female holotype. Figures 500–508 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)

Figures 500–511. Teruelius intertidalis, female holotype. Figures 500–508. Pedipalp chela, dorsal (500), external (501) and ventrointernal (502) views; pedipalp patella, dorsal (503), external (504) and ventral (505) views; pedipalp femur and trochanter, internal (506) and dorsal (507) views; pedipalp chela, movable finger dentate margin (508). Figure 509. Carapace and tergites I–III. Figure 510. Sternopectinal region. Figure 511. Telson lateral view.

opencc-by-4.0Dec 2019View details →
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Figures 495–499. Teruelius intertidalis, female holotype. Figures 495–496 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)

Figures 495–499. Teruelius intertidalis, female holotype. Figures 495–496. Habitus in dorsal (495) and ventral (496) views, and original labels. Figures 497–499. Metasoma in lateral (497), ventral (498) and dorsal (499) views. Scale bars: 10 mm.

opencc-by-4.0Dec 2019View details →
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Figures 460–472. Teruelius feti. Holotype male. Metasoma and pedipalp. Figures 460–462 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)

Figures 460–472. Teruelius feti. Holotype male. Metasoma and pedipalp. Figures 460–462. Metasoma in dorsal (460), lateral (461) and ventral (462) views. Figures 463–472. Pedipalp. Chela in dorsal (463), external (464) and ventral (465) views. Patella in dorsal (466), external (467) and ventral (468) views. Femur and trochanter in internal (469), dorsal (470), ventral (471) and external (472) views. Right femur shows developmental anomaly (Figs. 469, 472). Scale bars: 2 mm (460–462, 463–472).

opencc-by-4.0Dec 2019View details →
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Text-fig. 1. Araucaria fricii VELEN. ex E.BAYER. a: Holotype, Březno, early/middle Coniacian, No. NM-F 1898; b: Radovesice, in A New Specimen Of Araucaria Fricii From The Early Coniacian Of The Bohemian Massif, Central Europe

Text-fig. 1. Araucaria fricii VELEN. ex E.BAYER. a: Holotype, Březno, early/middle Coniacian, No. NM-F 1898; b: Radovesice,

opencc-by-4.0Dec 2021View details →
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Text-fig. 3. Fossil fruits of Fraxinus: photos and drawings. a–e: F. zlatkoi MENG-XIOA WU et J.HUANG sp. nov., a–c – the holotype image and its line drawing (XTBG-PC-LH3-0341), d, e – paratype image and its line drawing (XTBGPC-LH3-1138); f–k: Fraxinus cf. honshuensis TANAI et ONOE, f–h – XTBG-PC-LH2-0111, i–k – XTBG-PC-LH1-0578; l, m: enlargement of (b) and its line drawing; n, o: enlargement of (g) and its line drawing. Arrows in (i) and (n) refer to the calyxes. Scale bars = 5 mm for a–k, scale bars = 1 mm for i–o. in Fraxinus L. (Oleaceae) Fruits From The Early Oligocene Of Southwest China And Their Biogeographic Implications

Text-fig. 3. Fossil fruits of Fraxinus: photos and drawings. a–e: F. zlatkoi MENG-XIOA WU et J.HUANG sp. nov., a–c – the holotype image and its line drawing (XTBG-PC-LH3-0341), d, e – paratype image and its line drawing (XTBGPC-LH3-1138); f–k: Fraxinus cf. honshuensis TANAI et ONOE, f–h – XTBG-PC-LH2-0111, i–k – XTBG-PC-LH1-0578; l, m: enlargement of (b) and its line drawing; n, o: enlargement of (g) and its line drawing. Arrows in (i) and (n) refer to the calyxes. Scale bars = 5 mm for a–k, scale bars = 1 mm for i–o.

opencc-by-4.0Feb 2022View details →
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Text-fig. 5. SRXTM images of Miranthus elegans gen. et sp. nov.; Mira locality, Portugal. a, b: Transverse sections of flower (a, orthoslice xy0665 close to the apex of placenta; b, orthoslice xy0800 in middle part of placenta) showing remains of calyx with distinct bundles (arrows), ovary wall (ow) and numerous ovules (ov) on the central mushroom-shaped globose placenta (pl) with central column (cc). c: Transverse section of flower (orthoslice xy0620) through perianth and ovary (ow) at a level above the placenta showing ovules (ov) and cellular preservation of the sepal bundles (arrows shown for one sepal); note abaxial surface of sepals with thick-walled epidermal cells, thick cuticle, and fine pointed verrucae. d: Longitudinal section of flower (orthoslice xz0500) showing perigynous position of calyx and semi-inferior ovary (ow, ovary wall) with a central placenta (pl), central column (cc) and numerous ovules (ov); note spiny verrucae on abaxial surface of calyx lobes. Specimens, Mira 100-S153145 (a, b), Mira 100-S170155 (c, d, holotype). Scale bars = 600 µm (a–d). in Early Flowers Of Primuloid Ericales From The Late Cretaceous Of Portugal And Their Ecological And Phytogeographic Implications

Text-fig. 5. SRXTM images of Miranthus elegans gen. et sp. nov.; Mira locality, Portugal. a, b: Transverse sections of flower (a, orthoslice xy0665 close to the apex of placenta; b, orthoslice xy0800 in middle part of placenta) showing remains of calyx with distinct bundles (arrows), ovary wall (ow) and numerous ovules (ov) on the central mushroom-shaped globose placenta (pl) with central column (cc). c: Transverse section of flower (orthoslice xy0620) through perianth and ovary (ow) at a level above the placenta showing ovules (ov) and cellular preservation of the sepal bundles (arrows shown for one sepal); note abaxial surface of sepals with thick-walled epidermal cells, thick cuticle, and fine pointed verrucae. d: Longitudinal section of flower (orthoslice xz0500) showing perigynous position of calyx and semi-inferior ovary (ow, ovary wall) with a central placenta (pl), central column (cc) and numerous ovules (ov); note spiny verrucae on abaxial surface of calyx lobes. Specimens, Mira 100-S153145 (a, b), Mira 100-S170155 (c, d, holotype). Scale bars = 600 µm (a–d).

opencc-by-4.0Dec 2021View details →
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Text-fig. 7. SEM (a) and SRXTM (b–e) images of Miranthus kvacekii sp. nov.; Mira locality, Portugal. a: Lateral view of flower bud showing corolla lobes extending beyond calyx; note surface of pedicel, calyx and corolla with small equiaxial epidermal cells and indumentum of densely spaced, short stiff trichomes. b, c: Longitudinal sections through floral bud in two directions perpendicular to each other (a, orthoslice yz1024; b, orthoslice xz0950) showing corolla (co), calyx (ca), stamens (st) and semi-inferior ovary with thin ovary wall (ow) and central mushroom-shaped globose placenta (pl) bearing numerous ovules (ov). d, e: Transverse sections through floral bud above placenta (d, orthoslice xy0915; e, orthoslice xy1095) showing calyx (ca), corolla (co), ovary wall (ow) and ovules (ov); yellow outlines indicate the positions of anthers (d) and filaments (e); orange outlines indicate the position of three of the possible staminodes. Specimen, Mira 100-S170157 (a–e, holotype). Scale bars = 600 µm (a–c), 300 µm (d, e). in Early Flowers Of Primuloid Ericales From The Late Cretaceous Of Portugal And Their Ecological And Phytogeographic Implications

Text-fig. 7. SEM (a) and SRXTM (b–e) images of Miranthus kvacekii sp. nov.; Mira locality, Portugal. a: Lateral view of flower bud showing corolla lobes extending beyond calyx; note surface of pedicel, calyx and corolla with small equiaxial epidermal cells and indumentum of densely spaced, short stiff trichomes. b, c: Longitudinal sections through floral bud in two directions perpendicular to each other (a, orthoslice yz1024; b, orthoslice xz0950) showing corolla (co), calyx (ca), stamens (st) and semi-inferior ovary with thin ovary wall (ow) and central mushroom-shaped globose placenta (pl) bearing numerous ovules (ov). d, e: Transverse sections through floral bud above placenta (d, orthoslice xy0915; e, orthoslice xy1095) showing calyx (ca), corolla (co), ovary wall (ow) and ovules (ov); yellow outlines indicate the positions of anthers (d) and filaments (e); orange outlines indicate the position of three of the possible staminodes. Specimen, Mira 100-S170157 (a–e, holotype). Scale bars = 600 µm (a–c), 300 µm (d, e).

opencc-by-4.0Dec 2021View details →
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Text-fig. 1. Baragwanathia brevifolioides P.KRAFT et KVAČEK nom. nov. Holotype (KR 1). Scale bar equals 10 mm. in Baragwanathia Brevifolioides, A Nomen Novum For B. Brevifolia P.Kraft Et Kvaček, 2017

Text-fig. 1. Baragwanathia brevifolioides P.KRAFT et KVAČEK nom. nov. Holotype (KR 1). Scale bar equals 10 mm.

opencc-by-4.0Dec 2021View details →
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Text-fig. 6. Ternstroemites klettwitzensis sp. nov. a: Holotype, Inv.-No. 19076-2, scale bar 10 mm; b: Holotype, Inv.-No. 19076-2, detail, scale bar 1 mm; c: Inv.-No. 18091-1, scale bar 5 mm; d: Inv.-No. 18091-1, detail, scale bar 1 mm; e: Ternstroemites klettwitzensis sp. nov., Inv.-No. 18092-1, scale bar 10 mm; f: Inv.-No. 11024-1, scale bar 5 mm; g: Inv.-No. 18093, scale bar 10 mm; h: Inv.-No. 18093, detail, scale bar 1 mm. in New Leaf Species From The Upper Miocene Flora Of The Leaf-Bearing Wischgrund Clay (Lower Lusatia, Brandenburg, Germany)

Text-fig. 6. Ternstroemites klettwitzensis sp. nov. a: Holotype, Inv.-No. 19076-2, scale bar 10 mm; b: Holotype, Inv.-No. 19076-2, detail, scale bar 1 mm; c: Inv.-No. 18091-1, scale bar 5 mm; d: Inv.-No. 18091-1, detail, scale bar 1 mm; e: Ternstroemites klettwitzensis sp. nov., Inv.-No. 18092-1, scale bar 10 mm; f: Inv.-No. 11024-1, scale bar 5 mm; g: Inv.-No. 18093, scale bar 10 mm; h: Inv.-No. 18093, detail, scale bar 1 mm.

opencc-by-4.0Dec 2021View details →
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Text-fig. 1. SEM images of flowers of Miranthus elegans gen. et sp. nov.; Mira locality, Portugal. a, b: Flowers in lateral view showing elongated pedicel, narrowly triangular sepals and elongated protruding style (a); note the large openings in the floral tissue and pedicel (asterisks) interpreted as schizogenous secretory cavities. c: Flower in lateral view with portion of the calyx missing exposing the ovary wall and slightly raised nectariferous ring with probable stomata-like secretory structures (arrow). d: Flower in lateral view showing long pedicel and three of the five tepals; note the elongated narrowly triangular form of the sepals. e: Flower in oblique lateral view with portion of the calyx missing exposing the ovary and elongated style. f, g: Flowers in apical view showing the bases of five sepals (f) and apex of the five-parted ovary; note larger openings in the floral tissue (asterisk) interpreted as schizogenous secretory cavities. Specimens, Mira 100-S170155 (a, holotype), Mira 100-S153145 (b, c, g), Mira 100- S101267 (d), Mira 105-S100732 (e), Mira 100-S101268 (f). Scale bars = 600 µm (a–g). in Early Flowers Of Primuloid Ericales From The Late Cretaceous Of Portugal And Their Ecological And Phytogeographic Implications

Text-fig. 1. SEM images of flowers of Miranthus elegans gen. et sp. nov.; Mira locality, Portugal. a, b: Flowers in lateral view showing elongated pedicel, narrowly triangular sepals and elongated protruding style (a); note the large openings in the floral tissue and pedicel (asterisks) interpreted as schizogenous secretory cavities. c: Flower in lateral view with portion of the calyx missing exposing the ovary wall and slightly raised nectariferous ring with probable stomata-like secretory structures (arrow). d: Flower in lateral view showing long pedicel and three of the five tepals; note the elongated narrowly triangular form of the sepals. e: Flower in oblique lateral view with portion of the calyx missing exposing the ovary and elongated style. f, g: Flowers in apical view showing the bases of five sepals (f) and apex of the five-parted ovary; note larger openings in the floral tissue (asterisk) interpreted as schizogenous secretory cavities. Specimens, Mira 100-S170155 (a, holotype), Mira 100-S153145 (b, c, g), Mira 100- S101267 (d), Mira 105-S100732 (e), Mira 100-S101268 (f). Scale bars = 600 µm (a–g).

opencc-by-4.0Dec 2021View details →

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Allen Brain Atlas

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Last verified 2026-04-30Open record

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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

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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