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Fig. 30 in Diversity Of Chelipoda Macquart, 1823 (Diptera: Empididae: Hemerodromiinae) In Northern Thailand With Discussion Of A Biodiversity 'Hot Spot' At Doi Inthanon

Fig. 30. Altitudinal zonation of Chelipoda species on Doi Inthanon. The abundance at each elevation and date is proportional to the area of the circles; C. hubeiensis Yang & Yang (open circles); C. flavida Brunetti (shaded circles).

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Fig. 29 in Diversity Of Chelipoda Macquart, 1823 (Diptera: Empididae: Hemerodromiinae) In Northern Thailand With Discussion Of A Biodiversity 'Hot Spot' At Doi Inthanon

Fig. 29. Altitudinal zonation of Chelipoda nakropa new species on Doi Inthanon. The abundance at each elevation and date is proportional to the area of the circles; high elevation morph (open circles); mid elevation morph (shaded circles).

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Fig. 18 in Diversity Of Chelipoda Macquart, 1823 (Diptera: Empididae: Hemerodromiinae) In Northern Thailand With Discussion Of A Biodiversity 'Hot Spot' At Doi Inthanon

Fig. 18. Chelipoda thaosuranaria new species, male genitalia. Abbreviations: Epan+Hypan, fused epandrium and hypandrium; lcer, lower lobe of cercus; mem, median membrane separating left and right lobes of fused epandrium + hypandrium; ph, phallus; pgt, postgonite; subep, subepandrial process; ucer, upper lobe of cercus.

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Figs. 14–17 in Diversity Of Chelipoda Macquart, 1823 (Diptera: Empididae: Hemerodromiinae) In Northern Thailand With Discussion Of A Biodiversity 'Hot Spot' At Doi Inthanon

Figs. 14–17. Chelipoda nakropa new species: 14. male genitalia in lateral view: 15–17: variation in form of male cercus: 15–16 high elevation morph; 17. mid elevation morph.

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Figs. 1–6 in Diversity Of Chelipoda Macquart, 1823 (Diptera: Empididae: Hemerodromiinae) In Northern Thailand With Discussion Of A Biodiversity 'Hot Spot' At Doi Inthanon

Figs. 1–6. Male genitalia of Chelipoda species in lateral view: 1. C. chaiamnata new species; 2. C. flavida Brunetti; 3. C. guangxiensis Yang & Yang; 4. C. inthawichayanona new species: 5–6 C. hubeiensis Yang & Yang; 5. typical form; 6. variant (outline only).

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Fig. 31 in Diversity Of Chelipoda Macquart, 1823 (Diptera: Empididae: Hemerodromiinae) In Northern Thailand With Discussion Of A Biodiversity 'Hot Spot' At Doi Inthanon

Fig. 31. Influence of altitude on seasonal abundance of Chelipoda spp. on Doi Inthanon. Radial plot of species richness (number of species) throughout the year. Approximate limits of the major seasons are indicated.

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Figs. 25–28 in Diversity Of Chelipoda Macquart, 1823 (Diptera: Empididae: Hemerodromiinae) In Northern Thailand With Discussion Of A Biodiversity 'Hot Spot' At Doi Inthanon

Figs. 25–28. Chelipoda species: 25. C. manggawna new species, male; 26. C. macrosceles new species, female habitus; 27. C. nakropa new species, male, front femora showing chaetotaxy; 28. C. hubeiensis Yang & Yang, female, wing. Abbreviations: bm, cell bm; br, cell br; bs, basal spines; d, denticles; dm, cell dm; dm-cu, crossvein dm-cu; s, spines.

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Figs. 12–13 in Diversity Of Chelipoda Macquart, 1823 (Diptera: Empididae: Hemerodromiinae) In Northern Thailand With Discussion Of A Biodiversity 'Hot Spot' At Doi Inthanon

Figs. 12–13. Male genitalia of Chelipoda species in lateral view: 12. C. nakladam new species; 13. C. menglunana Grootaert, Yang & Saigusa. Abbreviations: lcer, lower lobe of cercus; subep, subepandrial process; ucer, upper lobe of cercus.

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Figs. 19–24 in Diversity Of Chelipoda Macquart, 1823 (Diptera: Empididae: Hemerodromiinae) In Northern Thailand With Discussion Of A Biodiversity 'Hot Spot' At Doi Inthanon

Figs. 19–24. Thoracic dorsum of Chelipoda spp. showing schematic pattern of ground colour. 19–20. C. macrosceles new species: 19. male; 20. female: 21. C. flavida Brunneti, male: 22–23. C. nakropa new species, male: 22. high elevation morph; 23. mid elevation morph: 24. C. chaiamnata new species, male.

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Text-fig. 2. A – First small excavation trench in the newly discovered fossiliferous outcrop area of the Ploužnice lake horizon, locality "Small Ravine" south of the village Ploužnice on the slope of road No. 286. Typical are the red, violet and varicoloured tuffaceous siltstones. Semily Formation, Late Stephanian, Krkonoše Piedmont Basin. B – Basal part of fossiliferous 12 cm to14 cm thick reddish to purple-red tuffaceous siltstone bed from the trench in Text-fig. 2A. Internal bedding is expressed as horizontal but with diffuse changes in grain size from fine silt to coarse, fine sandy silt. Intercalated in places are 3 to 5 mm thick layers (indicated by arrows) with patchy concentrations of isolated fish remains, especially in the first 3 centimetres of this siltstone layer. The large white spot at 2.5 cm is a coprolite fragment. in Fossil Fauna And Flora Of A Re-Discovered Locality In The Late Carboniferous Ploužnice Horizon Of The Krkonoše Piedmont Basin, Bohemian Massif

Text-fig. 2. A – First small excavation trench in the newly discovered fossiliferous outcrop area of the Ploužnice lake horizon, locality "Small Ravine" south of the village Ploužnice on the slope of road No. 286. Typical are the red, violet and varicoloured tuffaceous siltstones. Semily Formation, Late Stephanian, Krkonoše Piedmont Basin. B – Basal part of fossiliferous 12 cm to14 cm thick reddish to purple-red tuffaceous siltstone bed from the trench in Text-fig. 2A. Internal bedding is expressed as horizontal but with diffuse changes in grain size from fine silt to coarse, fine sandy silt. Intercalated in places are 3 to 5 mm thick layers (indicated by arrows) with patchy concentrations of isolated fish remains, especially in the first 3 centimetres of this siltstone layer. The large white spot at 2.5 cm is a coprolite fragment.

opencc-by-4.0Dec 2016View details →
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Fig. 2 in A new pale-spotted species of Hypostomus Lacépède (Siluriformes: Loricariidae) from the rio Tocantins and rio Xingu basins in central Brazil

Fig. 2. Hypostomus faveolus, (a) MZUSP 86790, 77.1 mm SL, rio Araguaia basin, (b) MZUSP 90721, 140.5 mm SL, rio Araguaia basin, (c) MZUSP 91971, 75.0 mm SL, Xingu basin, (d) MZUSP 91971, 158.0 mm SL, rio Xingu basin; (b-d) photographed alive, (a) preserved specimens.

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Fig. 1 in A new pale-spotted species of Hypostomus Lacépède (Siluriformes: Loricariidae) from the rio Tocantins and rio Xingu basins in central Brazil

Fig. 1. Hypostomus faveolus, holotype, Brazil, Mato Grosso, Cocalinho, Corixo da Saudade (Corixinho), 25 km NO of Cocalinho on road MT 326, rioAraguaia drainage. MZUSP 90722, 206.0 mm SL.

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Figure 8 in The Iberian Peninsula: ancient history of a hot spot of mite harvestmen (Arachnida: Opiliones: Cyphophthalmi: Sironidae) diversity

Figure 8. Paramiopsalis eduardoi sp. nov., confocal laser scanning micrograph of the spermatopositor of a male paratype, dorsal view. Total length is 180 Mm.

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Figure 5 in The Iberian Peninsula: ancient history of a hot spot of mite harvestmen (Arachnida: Opiliones: Cyphophthalmi: Sironidae) diversity

Figure 5. Paramiopsalis eduardoi sp. nov., scanning electron microgarphs of a male paratype. A, ventral view of whole body. B, ozophore. C, prosomal ventral complex. D, anal region. E, spiracle.

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Figure 4 in The Iberian Peninsula: ancient history of a hot spot of mite harvestmen (Arachnida: Opiliones: Cyphophthalmi: Sironidae) diversity

Figure 4. Paramiopsalis eduardoi sp. nov., paratype female. A, dorsal view. B, ventral view. C, lateral view. Scale bars: 0.5 mm.

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Figure 9 in The Iberian Peninsula: ancient history of a hot spot of mite harvestmen (Arachnida: Opiliones: Cyphophthalmi: Sironidae) diversity

Figure 9. Phylogeny of selected members of the family Sironidae, based on the combined analysis of 18S, 28S, cytochrome c oxidase subunit I (COI), and 16S under direct optimization and equal weighting. The support values on branches indicate the jackknife frequencies. Each weighting scheme is assigned a code corresponding to the ratio of indel/transversion, transversion/transition, and transition values. Tree lengths for the different parameter sets are as follows: 111, 2914; 121, 4585; 211, 3228; 3221, 6168. Black squares indicate monophyly; grey squares indicate that either the group is paraphyletic or the internal relationships are different.

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Figure 7 in The Iberian Peninsula: ancient history of a hot spot of mite harvestmen (Arachnida: Opiliones: Cyphophthalmi: Sironidae) diversity

Figure 7. Paramiopsalis eduardoi sp. nov., scanning electron microgarphs of the legs of a male paratype. A, metatarsus and tarsus I. B, tarsal claw I. C, metatarsus and tarsus II. D, tarsal claw II. E, metatarsus and tarsus III. F, tarsal claw III. G, metatarsus and tarsus IV. H, detail of the adenostyle. I, tarsal claw IV.

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Figure 2. Parasiro coiffaiti Juberthie, 1956, lectotype male. A, dorsal view. B, ventral view. C in The Iberian Peninsula: ancient history of a hot spot of mite harvestmen (Arachnida: Opiliones: Cyphophthalmi: Sironidae) diversity

Figure 2. Parasiro coiffaiti Juberthie, 1956, lectotype male. A, dorsal view. B, ventral view. C, lateral view. Scale bars: 0.5 mm.

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Figure 1 in Species delimitation based on multiple criteria: the Spotted Bush Warbler Bradypterus thoracicus complex (Aves: Megaluridae)

Figure 1. Distribution of the Bradypterus thoracicus complex compiled from previously published sources (grey; Dement'ev & Gladkov, 1968; Ali & Ripley, 1983; Flint et al., 1984; Meyer de Schauensee, 1984; Watson et al., 1986; Cheng, 1987; Round & Loskot, 1995; Rasmussen & Anderton, 2005) and the present study (numbers). Dark grey refers to breeding and pale grey to non-breeding. Field study sites are indicated by numbers (see Table 1 for details): (1) Manali, Himachal Pradesh; (2) Laoye Shan, Qinghai; (3) Huzu Bei Shan, Qinghai; (4) Mengda, Qinghai; (5) Wolong, Sichuan; (6) Emei Shan, Sichuan; (7) Jiuzhaigou, Gansu; (8) Taibai Shan, Shaanxi; (9) Listvyanka; (10) Panquengou, Shanxi; (11) Huzong, Heilongjiang; (12) Dailing, Heilongjiang. Localities where thoracicus and davidi and przevalskii and davidi, respectively, have been found sympatrically in the breeding season in the present study are indicated by white numbers. The winter distribution for kashmirensis has not been given in the literature, and the winter distribution for davidi has been considered uncertain.

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Figure 4 in Species delimitation based on multiple criteria: the Spotted Bush Warbler Bradypterus thoracicus complex (Aves: Megaluridae)

Figure 4. Tree for all haplotypes, estimated by Bayesian analysis of cytochrome b (1073 bp) under the GTR + G model. Posterior probabilities (Ź 50%; 50 000 trees) are indicated above the nodes and parsimony bootstrap values (Ź 50%; 1000 replicates) below the nodes.

opencc-by-4.0Oct 2008View 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