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FIG. 6 in A new species, Lochriea monocarinata n. sp., and its position in the morphospace of the genus Lochriea Scott, 1942 (Conodonta, Mississippian)
FIG. 6. — Morphological schemes of sinistral (A-D) and dextral (E-G) P1 elements of Lochriea monocarinata n. sp. and scheme of probable occlusion of sinistral (red) and dextral (green) elements (H). The line drawings are based on the SEM microphotographs (see Fig. 5). D, holotype, specimen 445/12. Abbreviations: d, dextral; s, sinistral.
FIG. 1 in A new species, Lochriea monocarinata n. sp., and its position in the morphospace of the genus Lochriea Scott, 1942 (Conodonta, Mississippian)
FIG. 1. — Location of the studied sections (*): A, general geographical position of the studied area; B, location of the sections: 1, Kamenka section; 2, Izyayu section; 3, Kozhim section; 4, Bolshaya Nadota section.
FIG. 2 in A new species, Lochriea monocarinata n. sp., and its position in the morphospace of the genus Lochriea Scott, 1942 (Conodonta, Mississippian)
FIG. 2. — Correlation of the key sections of the uppermost Viséan-Serpukhovian interval in the North Urals and Cis-Urals (Vevel et al. 2018; Zhuravlev et al. 2023). Abbreviations: m, mudstone; w, wackestones; p, packstone; g, grainstone; f, floatstone; FOD, first occurrence datum; G., Gnathodus Pander, 1856; L., Lochriea Scott, 1942. The stars mark occurrences of Lochriea monocarinata n. sp.
FIG. 5 in A new species, Lochriea monocarinata n. sp., and its position in the morphospace of the genus Lochriea Scott, 1942 (Conodonta, Mississippian)
FIG. 5. — Some advanced Lochriea from the Serpukhovian (Lochriea ziegleri Zone) of North of Urals and Cis-Urals region: A, Lochriea ziegleri Nemirovskaya, Perret-Mirouse, Meischner, 1994, specimen 145/24, sample Iz4-51/98, Izyayu section; B, Lochriea ziegleri Nemirovskaya, Perret & Meischner, 1994, specimen 145/19, sample K99-21/22, Kamenka section; C, Lochriea senckenbergica Nemirovskaya, Perret & Meischner, 1994, specimen 145/22, sample 125-19/22, Kamenka section; D, Lochriea ziegleri Nemirovskaya, Perret & Meischner, 1994, specimen 145/20, sample K99-21/22, Kamenka section; E, Lochriea senckenbergica Nemirovskaya, Perret & Meischner, 1994-Lochriea cruciformis (Clarke, 1960) transition, specimen 145/23, sample Iz4-52/98, Izyayu section; F, Lochriea senckenbergica Nemirovskaya, Perret & Meischner, 1994 – Lochriea cruciformis (Clarke, 1960) transition, specimen 145/27, sample Iz4-53/98, Izyayu section; G, Lochriea mononodosa (Rhodes, Austin & Druce, 1969), specimen 145/15, sample N2-1-11/99, Bolshaya Nadota section; H, Lochriea sp., specimen 145/12,
FIG. 5 in A new species, Lochriea monocarinata n. sp., and its position in the morphospace of the genus Lochriea Scott, 1942 (Conodonta, Mississippian)
FIG. 5. — Some advanced Lochriea from the Serpukhovian (Lochriea ziegleri Zone) of North of Urals and Cis-Urals region: A, Lochriea ziegleri Nemirovskaya, Perret-Mirouse, Meischner, 1994, specimen 145/24, sample Iz4-51/98, Izyayu section; B, Lochriea ziegleri Nemirovskaya, Perret & Meischner, 1994, specimen 145/19, sample K99-21/22, Kamenka section; C, Lochriea senckenbergica Nemirovskaya, Perret & Meischner, 1994, specimen 145/22, sample 125-19/22, Kamenka section; D, Lochriea ziegleri Nemirovskaya, Perret & Meischner, 1994, specimen 145/20, sample K99-21/22, Kamenka section; E, Lochriea senckenbergica Nemirovskaya, Perret & Meischner, 1994-Lochriea cruciformis (Clarke, 1960) transition, specimen 145/23, sample Iz4-52/98, Izyayu section; F, Lochriea senckenbergica Nemirovskaya, Perret & Meischner, 1994 – Lochriea cruciformis (Clarke, 1960) transition, specimen 145/27, sample Iz4-53/98, Izyayu section; G, Lochriea mononodosa (Rhodes, Austin & Druce, 1969), specimen 145/15, sample N2-1-11/99, Bolshaya Nadota section; H, Lochriea sp., specimen 145/12 sample N2-1-7/99, Bolshaya Nadota section; I, Lochriea ziegleri Nemirovskaya, Perret & Meischner, 1994, specimen 145/18, sample K99-21/22, Kamenka section; J, Lochriea monocarinata n. sp.-Lochriea ziegleri Nemirovskaya, Perret & Meischner, 1994 transition, specimen 145/14, sample N2-1-10/99, Bolshaya Nadota section; K, Lochriea monocostata (Pazukhin & Nemirovskaya in Kulagina et al., 1992), specimen 145/4, sample Iz4-53/98, Izyayu section; L, Lochriea mononodosa (Rhodes, Austin & Druce, 1969), specimen 145/8, sample Iz4-52/98, Izyayu section; M, Lochriea ziegleri Nemirovskaya, Perret & Meischner, 1994, specimen 145/21, sample K99-21/22, Kamenka section; N, Lochriea monocarinata n. sp., specimen 145/16, sample N2-1-11/99, Bolshaya Nadota section; O, Lochriea commutata (Branson & Mehl, 1941)-Lochriea mononodosa (Rhodes, Austin & Druce, 1969) transition, specimen 145/11, sample N2-1-5/99, Bolshaya Nadota section; P, Lochriea monocarinata n. sp., specimen 145/17, sample N2-1-11/99, Bolshaya Nadota section; Q, Lochriea mononodosa (Rhodes, Austin & Druce, 1969)-Lochriea monocarinata n. sp. transition, specimen 145/3, sample Iz4-53/98, Izyayu section; R, Lochriea monocarinata n. sp., specimen 145/7, sample Iz4- 52/98, Izyayu section; S, Lochriea monocarinata n. sp., specimen 145/6, sample Iz4-52/98, Izyayu section; T, Lochriea mononodosa (Rhodes, Austin & Druce, 1969)-Lochriea monocarinata n. sp. transition, specimen145/9, sample Iz4-60/98, Izyayu section; U, Lochriea monocarinata n. sp., specimen 145/10, sample N2-1-5/99, Bolshaya Nadota section; V, Lochriea monocarinata n. sp., specimen 145/2, sample Iz4-53/98, Izyayu section; W, Lochriea monocarinata n. sp., specimen 145/1, sample K99-21/22, Kamenka section; X, Lochriea mononodosa (Rhodes, Austin & Druce, 1969), specimen 145/25, sample Iz4-45/98, Izyayu section; Y, Lochriea monocostata (Pazukhin & Nemirovskaya in Kulagina et al., 1992)-Lochriea monocarinata n. sp. transition, specimen 145/13, sample N2-1- 8/99, Bolshaya Nadota section; Z, Lochriea monocarinata n. sp., holotype, specimen 445/12, sample Iz4-52/98, Izyayu section; AA, Lochriea sp., P2 element, specimen 145/26, sample Iz4-51/98, Izyayu section. Scale bar: 0.1 mm.
nal; E', F', internal, G'-J', Pal. 1341 (peripheral 8); G', H', external; I', J', internal; K'-N', Pal. 1343 (peripheral 9); K', L', external; M', N', internal; O'-R', Pal. 1345 (peripheral 10); O', P', external; Q', R', internal; S'-V', Pal. 1348 (peripheral 11); S', T', external; U', V', internal views; W', reconstruction of carapace Thick lines correspond to scute sulci, dotted lines denote plate sutures, and oblique lines indicate missing plate portions. Abbreviations: Ce, cervical; co, costal; Ma, marginal; ne, neural; nu, nuchal; per, peripheral; Pl, pleural; py, pygal; sp, suprapygal; Spr, supracaudal; Ve, vertebral. Scale bars: A-V', 1 cm; W', 2.5 cm. in Fossil turtles from the early Miocene localities of Mokrá-Quarry (Burdigalian, MN4), South Moravian Region, Czech Republic
nal; E', F', internal, G'-J', Pal. 1341 (peripheral 8); G', H', external; I', J', internal; K'-N', Pal. 1343 (peripheral 9); K', L', external; M', N', internal; O'-R', Pal. 1345 (peripheral 10); O', P', external; Q', R', internal; S'-V', Pal. 1348 (peripheral 11); S', T', external; U', V', internal views; W', reconstruction of carapace Thick lines correspond to scute sulci, dotted lines denote plate sutures, and oblique lines indicate missing plate portions. Abbreviations: Ce, cervical; co, costal; Ma, marginal; ne, neural; nu, nuchal; per, peripheral; Pl, pleural; py, pygal; sp, suprapygal; Spr, supracaudal; Ve, vertebral. Scale bars: A-V', 1 cm; W', 2.5 cm.
sal; W, visceral; X-Z, Pal. 1308 (costal 5); X, Y, dorsal; Z, visceral; A'-C', Pal. 1309 (costal 6); A', B', dorsal; C', visceral; D'-F', Pal. 1310 (costal 8); D', E', dorsal; F', visceral; G'-J', Pal. 1312 (peripheral 1); G', H', dorsal; I', J', visceral; K'-N', Pal. 1313 (peripheral 7); K', L', dorsal; M', N', visceral; O'-R', Pal. 1314 (peripheral 8); O', P', dorsal; Q', R', visceral views; S', reconstruction of carapace. Thick lines indicate to scute sulci, dotted lines sutures and oblique lines denote missing plate portions. Abbreviations: Ce, cervical; co, costal; Ma, marginal; ne, neural; nu, nuchal; per, peripheral; Pl, pleural; py, pygal; sp, suprapygal; Ve, vertebral. Scale bars: 1 cm. in Fossil turtles from the early Miocene localities of Mokrá-Quarry (Burdigalian, MN4), South Moravian Region, Czech Republic
sal; W, visceral; X-Z, Pal. 1308 (costal 5); X, Y, dorsal; Z, visceral; A'-C', Pal. 1309 (costal 6); A', B', dorsal; C', visceral; D'-F', Pal. 1310 (costal 8); D', E', dorsal; F', visceral; G'-J', Pal. 1312 (peripheral 1); G', H', dorsal; I', J', visceral; K'-N', Pal. 1313 (peripheral 7); K', L', dorsal; M', N', visceral; O'-R', Pal. 1314 (peripheral 8); O', P', dorsal; Q', R', visceral views; S', reconstruction of carapace. Thick lines indicate to scute sulci, dotted lines sutures and oblique lines denote missing plate portions. Abbreviations: Ce, cervical; co, costal; Ma, marginal; ne, neural; nu, nuchal; per, peripheral; Pl, pleural; py, pygal; sp, suprapygal; Ve, vertebral. Scale bars: 1 cm.
Figs 1–13 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 1–13. Compsobraconoides ruber (BRULLÉ), comb. n. – 1–10: female holotype, 11–13: male: 1 = scape and pedicel in outer-lateral view, 2 = head in dorsal view, 3 = head in latetral view, 4 = hind femur, 5 = claw, 6 = distal part of right fore wing, 7 = first discal cell of right fore wing, 8 = tergites 1–3, 9 = first tergite in lateral view, 10 = hypopygium and ovipositor apparatus, 11 = temple in dorsal view, 12 = vein 1–SR–M of first discal cell of fore wing, 13 = first tergite
Figs 30–37 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 30–37. Amyosoma chinense (SZÉPLIGETI), female holotype: 30 = head in dorsal view, 31 = head in lateral view, 32 = hind femur with indication of its hairs, 33 = claw, 34 = distal part of right fore wing, 35 = first discal cell of right fore wing, 36 = 1r–m of hind wing, 37 = tergites 1–3
Figs 21–29 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 21–29. Amyosoma cavei sp. n.: 21 = scape, pedicel and flagellomeres 1–5, 22 = head in dorsal view, 23 = head in lateral view, 24 = hind femur with indication of its hairs, 25 = claw, 26 = distal part of right fore wing, 27 = first discal cell of right fore wing, 28 = vein 1r–m of hind wing, 29 = tergites 1–3
Figs 94–97 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 94–97. Myosomatoides fasciatus (BRULLÉ), comb. n., female holotype: 94 = hind femur and tibia with hairs, 95 = distal part of right fore wing, 96 = first discal cell of right fore wing, 97 = tergites 1–3
Figs 14–20 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 14–20. Compsobraconoides melanocheirus (SZÉPLIGETI) comb. n. – female holotype: 14 = head in dorsal view, 15 = tergites 1–3, 16 = hind femur. 17–20. Compsobraconoides surinamensis (SZÉP- LIGETI) comb. n., female lectotype: 17 = head in dorsal view, 18 = first tergite in lateral view, 19 = ter- gites 1–3, 20 = hind femur
Figs 48–56 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 48–56. Myosoma errans (SZÉPLIGETI), female holotype: 48 = scape, pedicel and first flagellomere in outer-lateral view, 49 = head in dorsal view, 50 = head in lateral view, 51 = hind femur with indication of its hairs, 52 = claw, 53 = distal part of right fore wing, 54 = first discal cell of right fore wing, 55 = vein 1r–m of hind wing, 56 = tergites 1–3
Figs 38–47 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 38–47. Myosoma brullei SZÉPLIGETI, female holotype: 38–39 = head in dorsal view, 40 = hind femur with indication of its hairs, 41 = claw, 42 = distal part of right fore wing, 43 = first discal cell right fore wing, 44–45 = vein 1r–m of hind wing, 46 = tergites 1–3, 47 = hind end of metasoma with ovipositor apparatus
Figs 74–83 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 74–83. Myosoma lagopus (KRIECHBAUMER), comb. n., female holotype: 74–81, female holotype of M. errotus SZÉPL.: 82–83: 74 = scape, pedicel and first flagellomere in outer-lateral view, 75 = head in dorsal view, 76 = head in lateral view, 77 = hind femur with indication of its hairs, 78 = claw, 79 = distal part of right fore wing, 80 = first discal cell of right fore wing, 81 = tergites 1–3, 82 = head in dorsal view, 83 = hind femur
Figs 66–73 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 66–73. Myosoma hirtipes BRULLÉ, female holotype: 66 = scape and pedicel in outer-lateral view, 67 = head in dorsal view, 68 = head in lateral view, 69 = hind femur and tibia with hairs, 70 = claw, 71 = distal part of left fore wing, 72 = first discal cell of left fore wing, 73 = vein 1r–m of hind wing
Figs 84–93 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 84–93. Myosoma rubriventre BRULLÉ, female holotype: 84–92 and male: 93–94: 84 = scape and pedicel in outer-lateral view, 85 = head in dorsal view, 86 = head in lateral view, 87 = hind femur and tibia with hairs, 88 = claw, 89 = distal part of right fore wing, 90 = first discal cell of right fore wing, 91 = tergites 1–3, 92 = first discal cell of male, 93 = first tergite of male
Figs 10–14 in Redefinition Of Pelopsis (Acari: Oribatida: Mycobatidae), With Description Of Pelopsis Baloghi Sp. N. From Costa Rica
Figs 10–14. Pelopsis baloghi, scanning electron microscope images of adult female: 10 = dorsal aspect of prodorsum and anterior of notogaster; 11 = ventral aspect of gnathosoma and epimere I; 12 = frontal aspect of gnathosoma and rostrum; 13 = ventral aspect of ventral plate and genital plates, circumpedal carina indicated by arrowhead; 14 = lateral aspect of notogaster and ventral plate, ante-
Figs 2–5 in Redefinition Of Pelopsis (Acari: Oribatida: Mycobatidae), With Description Of Pelopsis Baloghi Sp. N. From Costa Rica
Figs 2–5. Pelopsis baloghi, adult female: 2 = ventral aspect; 3 = lateral aspect, with semicircular carina indicated by arrowhead; 4 = leg I abaxial aspect, trochanter removed; 5 = leg II abaxial aspect, trochanter removed. Scale bar represents 50 µm
Figs 6–9 in Redefinition Of Pelopsis (Acari: Oribatida: Mycobatidae), With Description Of Pelopsis Baloghi Sp. N. From Costa Rica
Figs 6–9. Pelopsis baloghi, scanning electron microscope images of adult female: 6 = lateral aspect, with detail of striate integument of notogaster indicated by arrow; 7 = dorsal aspect; 8 = dorsolateral aspect of anterior third, with lamellar seta indicated by arrowhead; 9 = dorsolateral aspect of anterior of notogaster and posterior of prodorsum
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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.