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Fig. 9 in The Paepalanthoideae (Eriocaulaceae) of the Chapada dos Veadeiros National Park, Brazil: taxonomic novelties, identification key, and illustrated list of species

Fig. 9. Species of Paepalanthoideae (Eriocaulaceae) from the Chapada dos Veadeiros National Park. A. Paepalanthus subtilis Miq. B. P. trichophyllus (Bong.) Körn.. C. P. urbanianus Ruhland. D. Syngonanthus cabralensis Silveira. E. S. caulescens (Poir.) Ruhland. F. S. cuyabensis (Bong.) Giul., Hensold & L.R.Parra. G. S. davidsei Huft. H. S. decorus Moldenke.

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Fig. 8 in The Paepalanthoideae (Eriocaulaceae) of the Chapada dos Veadeiros National Park, Brazil: taxonomic novelties, identification key, and illustrated list of species

Fig. 8. Species of Paepalanthoideae (Eriocaulaceae) from the Chapada dos Veadeiros National Park. A. Paepalanthus macer Trovó. B. P. modestus Trovó. C. P. niger (Moldenke) Trovó. D. P. politus Trovó stat. et nom. nov. E. P. polytrichoides Kunth. F. P. scandens Ruhland. G. P. sphaerocephalus Ruhland. H. P. stellatus Trovó.

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Fig. 4 in The Paepalanthoideae (Eriocaulaceae) of the Chapada dos Veadeiros National Park, Brazil: taxonomic novelties, identification key, and illustrated list of species

Fig. 4. Paepalanthus irwinii Trovó & Echtern. sp. nov. A. Habit. B. Inflorescence and reproductive apex detail. C. Capitulum detail. D. Involucral bract, abaxial surface. E. Floral bract, abaxial surface. F. Staminate flower. G. Staminate flower with sepals removed and corolla opened. H. Pistillate flower. I. Petal of the pistillate flower, abaxial surface. J. Gynoecium. (M.L.O. Trovó et al. 706 – RB).

opencc-by-4.0Aug 2022View details →
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Fig. 6 in The Paepalanthoideae (Eriocaulaceae) of the Chapada dos Veadeiros National Park, Brazil: taxonomic novelties, identification key, and illustrated list of species

Fig. 6. Species of Paepalanthoideae (Eriocaulaceae) from the Chapada dos Veadeiros National Park. A. Actinocephalus brevifolius Trovó & Echtern. sp. nov. B. A. phaeocephalus (Ruhland) F.N.Costa. C. Comanthera dimera Echtern.. D. Paepalanthus acanthophyllus Ruhland. E. P. amphibius Trovó. F. P. atratus (Moldenke) L.E.F.Silva & Trovó. G. P. bifidus (Schrad.) Kunth. H. P. campanulatus Trovó.

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Fig. 5 in The Paepalanthoideae (Eriocaulaceae) of the Chapada dos Veadeiros National Park, Brazil: taxonomic novelties, identification key, and illustrated list of species

Fig. 5. Paepalanthus irwinii Trovó & Echtern. sp. nov. A. Habitat. B. Habitat detail. C. Habit. D. Reproductive axis detail. E. Sprouting rosettes. F. Rosette detail.

opencc-by-4.0Aug 2022View details →
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Fig. 2 in The Paepalanthoideae (Eriocaulaceae) of the Chapada dos Veadeiros National Park, Brazil: taxonomic novelties, identification key, and illustrated list of species

Fig. 2. Actinocephalus brevifolius Trovó & Echtern. sp. nov.. A. Habit. B. Rosette detail. C. Paraclade apex detail. D. Capitulum detail. E. Involucral bract, abaxial surface. F. Floral bract, abaxial surface. G. Staminate flower. H. Staminate flower with sepals removed and corolla opened. I. Pistillate flower. J. Petal of the pistillate flower, abaxial surface. K. Gynoecium. (M.L.O. Trovó et al. 774 – RB).

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Fig. 1 in The Paepalanthoideae (Eriocaulaceae) of the Chapada dos Veadeiros National Park, Brazil: taxonomic novelties, identification key, and illustrated list of species

Fig. 1. The Chapada dos Veadeiros National Park: boundaries, topography, and relevant locations according to delimitation provided by Brazilian Ministry of the Environment (2017). The small blue areas enclosed in the Chapada dos Veadeiros National Park boundaries are two conservation units prior to the recent park expansion and one area designated to host a transmission antenna.

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Fig. 3 in The Paepalanthoideae (Eriocaulaceae) of the Chapada dos Veadeiros National Park, Brazil: taxonomic novelties, identification key, and illustrated list of species

Fig. 3. Actinocephalus brevifolius Trovó & Echtern. sp. nov. A. Habitat. B. Habitat detail. C. Habit. D. Habit detail. E. Rosette and paraclade detail. F. Spathe detail. G. Capitulum detail, view from above. H. Capitulum detail, view from below.

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Figure 2 in Integrated taxonomy supports the identification of some species of Phytoseiidae (Acari: Mesostigmata) from Georgia

Figure 2 Neighbour joining phylogenetic trees includingTranseius wainsteini from Georgia, Amblyseius swirskii, Amblyseius andersoniand Euseius stipulatus (as an outgroup) obtained with a – COI mtDNA, b – CytB mtDNA and c – 12S rRNA markers.

opencc-by-4.0Oct 2021View details →
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Text-fig. 6. Correlation of the Cheringoma and Mazamba formations on the basis of benthic foraminiferans and mammals respectively. Identifications of foraminiferans are from Newton (1924) and Abrard (1928), and the ranges of foraminiferans are from Sella-Kiel et al. (1998). The time scale is from Gradstein et al. (2020). The distribution of Nummulites atacicus is included, but it is not known whether it is reworked from older deposits. If the identification is valid, it would support the thesis that there was a period of Ypresian deposition in the vicinity during which remains of the species were fossilised. in Stratigraphy, Chronology And Palaeontology Of The Tertiary Rocks Of The Cheringoma Plateau, Mozambique

Text-fig. 6. Correlation of the Cheringoma and Mazamba formations on the basis of benthic foraminiferans and mammals respectively. Identifications of foraminiferans are from Newton (1924) and Abrard (1928), and the ranges of foraminiferans are from Sella-Kiel et al. (1998). The time scale is from Gradstein et al. (2020). The distribution of Nummulites atacicus is included, but it is not known whether it is reworked from older deposits. If the identification is valid, it would support the thesis that there was a period of Ypresian deposition in the vicinity during which remains of the species were fossilised.

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Fig. 1 in Identification of the Commercially Important Oreosomatid Fish (Zeiformes: Teleostei) of the Emperor Seamounts, with Comments on Diagnostic Characters of the Species

Fig. 1. Lateral view of oreosomatids. A, Allocyttus folletti from the Emperor Seamounts, SNFR 22402, 289.8 mm SL; B, Allocyttus verrucosus from New Zealand, NSMT-P 41168, 187.2 mm SL; caudal peduncle of A. folletti; C, SNFR 10560, 293.4 mm SL, Emperor Seamounts, and that of A. verrucosus; D, NSMT-P 41168, 187.2 mm SL, New Zealand; nasal of oreosomatids; E, A. folletti, SNFR 10561, 347 mm SL, Emperor Seamounts; F, A. verrucosus, NSMT-P 113107, 238.4 mm SL, west coast of Australia. Abbreviations: NA, nasal; PN, posterior nostril.

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Fig. 3 in Identification of the Commercially Important Oreosomatid Fish (Zeiformes: Teleostei) of the Emperor Seamounts, with Comments on Diagnostic Characters of the Species

Fig. 3. Lateral aspect (above) and abdomen (below) of Allocyttus folletti. A, SNFR 10560, 293.4 mm SL, Emperor Seamounts; B, CAS-SU 15377, holotype of Allocyttus folletti, off California, traced from Myers (1960: fig. 1). Arrows indicate the rows of scutes.

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Fig. 2 in Identification of the Commercially Important Oreosomatid Fish (Zeiformes: Teleostei) of the Emperor Seamounts, with Comments on Diagnostic Characters of the Species

Fig. 2. Scales on mid-side of body in, (A) Allocyttus folletti, FAKU 72575, 397 mm SL, Emperor Seamounts, and (B) Allocyttus verrucosus, NSMT-P 113107, 238.4 mm SL, Australia; enlarged scales of dorsal-fin base (S-DFB) in (C) A. folletti, SNFR 22403, 289.3 mm SL, Emperor Seamounts, and (D) A. verrucosus, BSKU 48476, 136.5 mm SL, off South Africa.

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Figure 3 in Species identification and seasonal prevalence of house dust mites in Assiut City, Egypt: A descriptive study in an urban area

Figure 3. Dermatophagoides farinae adult female (SEM photo) – a. Dorsal view shows sce (external scapular seta) is much longer than sci (internal scapular seta); b. Ventral view shows the genital system of the female; c. Lateral views shows the finely striated body and prodorsal shield; d. Hysterostoma region and anal opening; e. Epigynium and genital opening; f. Ventral view of the gnathostoma.

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Figure 2 in Species identification and seasonal prevalence of house dust mites in Assiut City, Egypt: A descriptive study in an urban area

Figure 2. Dermatophagoides farinae (adult male) – a. Habitus (100×) before being cleared in Hoyer's medium and the enlarged 1st and 3rd pairs of legs are noted; b. Fused apodemes I (arrow) while apodemes II (arrow head) and apodemes III (curved arrow) are not fused (200×); c. Anal plate (arrow), post anal seta 2 (ps2) (curved arrow) (400×).

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Figure 1 in Species identification and seasonal prevalence of house dust mites in Assiut City, Egypt: A descriptive study in an urban area

Figure 1. Dermatophagoides farinae (adult female) – a. Habitus (before being cleared) (10×); b. Habitus (after being cleared in Hoyer's medium) (x100); c. Distal solenidion on tarsus I (arrow head), terminal spinous process (curved arrow) and tarsus II with the two distal solenidia (arrow) (200×); d. Magnified tarsus II with distal solenidia (arrow head) and two small spinous tubercles (long arrow) (400×); e. The low-arched epigynium (arrow) and the faint transverse striations above it (arrow head); f. Bursa copulatrix (arrow), its external opening and sclerotized part (arrow head).

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Figure 4 in Species identification and seasonal prevalence of house dust mites in Assiut City, Egypt: A descriptive study in an urban area

Figure 4. Dermatophagoides farinae adult male (SEM photo) – a. Ventral view showing the enlarged first pair of legs. B. The aedeagus; c. The anal plate containing the anal suckers.

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FIGURE 6. A in Distinguishing between three modern Ellobius species (Rodentia, Mammalia) and identification of fossil Ellobius from Kaldar Cave (Iran) using geometric morphometric analyses of the first lower molar

FIGURE 6. A) First two PCs from the Principal component analysis performed on the size and shape including the reference collection and Kaldar Cave material. B) Boxplot of the total length of Ellobius from the extant reference collections and Kaldar Cave.

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FIGURE 4. Ellobius right lower m1. A in Distinguishing between three modern Ellobius species (Rodentia, Mammalia) and identification of fossil Ellobius from Kaldar Cave (Iran) using geometric morphometric analyses of the first lower molar

FIGURE 4. Ellobius right lower m1. A) 14 landmarks: Landmarks on the outermost turning point of buccal (2, 4, 6) and lingual (8, 10, 12, 14) salient angles, and on the innermost turning point of buccal (3, 5) and lingual (9, 11, 13) reentrant angle. B) 60 semi-landmarks on the anterior cap.

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FIGURE 2. Ellobius lower m1s in Distinguishing between three modern Ellobius species (Rodentia, Mammalia) and identification of fossil Ellobius from Kaldar Cave (Iran) using geometric morphometric analyses of the first lower molar

FIGURE 2. Ellobius lower m1s (all figured as right ones) from the extant reference collections and Kaldar Cave. A) Ellobius fuscocapillus: A.1-Kaldar Cave, 2014/4/SL5II/E6/125-130, right lower m1, number 157. A.2-Kaldar Cave, 2014/4/SL5/E5/109-111, right lower m1, number 520. A.3-Kaldar Cave, 2014/5/SL7II/E7/170-180, right lower m1, number 104. A.4- Kaldar Cave, 2014/5/SL7II/F6/135-145, right lower m1, number 547.A.5-modern, NHM86101513, Afghanistan, right lower m1. A.6-modern, FM111846, Iran, right lower m1. A.7-modern, NHM86101512, Afghanistan, right lower m1; B) Ellobius lutescens: B.1-Kaldar Cave, 2014/5/SL7II/F6/130-140, right lower m1, number 319. B.2- Kaldar Cave, 2014/4/SL5II/F7/115-118, right lower m1, number 90. B.3- Kaldar Cave, 2014/4/SL5II/F7/115-118, right lower m1, number 91. B.4- Kaldar Cave, 2014/5/SL7II/E7/145-150, right lower m1, number 436. B.5-modern, NMH916416, Turkey, right lower m1. B.6-modern, NMH916414, Turkey, right lower m1. B.7-modern, NMH916412, Turkey, right lower m1; C) Ellobius talpinus: C.1-modern, NHM3421126, Russia, right lower m1. C.2-modern, FM103163, Afghanistan, right lower m1. C.3-modern, AMNH59797, Mongolia, right lower m1. Scale 1 mm.

opencc-by-4.0Jan 2021View 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.

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

Annotated Behaviour and Observability Dataset (ABODe)

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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