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edi36/100

Water Use and flooding in central Arizona-Phoenix: comparison of water and carbon dioxide uptake by selected plant species among residential patch transition types, from 1998 to 1999.

Compare the primary productivity (rate of of production of plant material) and uptake of water and carbon dioxide by selected plant species, at sites selected to represent the transition between desert or agriculture and new residential development.

openOpenJan 2020View details →
zenodo32/100

FIGURES 76–81. Pezothrips pelikani, n in Two new species of Pezothrips (Thysanoptera, Thripidae) in Japan and Europe, with designation of lectotype of type species

FIGURES 76–81. Pezothrips pelikani, n. sp., lectotype female. (76) Head and pronotum; (77) Antenna; (78) Meso- and metanota; (79) Tergite II; (80) Tergites VII–X; (81) Sternite VII (sculpture omitted).

opennotspecifiedFeb 2020View details →
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FIGURES 38–46 in Two new species of Pezothrips (Thysanoptera, Thripidae) in Japan and Europe, with designation of lectotype of type species

FIGURES 38–46. Pezothrips frontalis in SMF, female microptera, 38–43. (38) Head and pronotum; (39) Antenna; (40) Meso- and metanota; (41) Tergite II; (42) Tergites VII–X; (43) Sternite VII (sculpture omitted). (44) Metascutum, female macroptera, sculpture omitted. Male, 45–46. (45) Tergite IX; (46) Sternite VI (sculpture omitted).

opennotspecifiedFeb 2020View details →
zenodo32/100

FIGURES 1–17. Pezothrips species. P. bactrianus, 1–3 in Two new species of Pezothrips (Thysanoptera, Thripidae) in Japan and Europe, with designation of lectotype of type species

FIGURES 1–17. Pezothrips species. P. bactrianus, 1–3. (1) Paratype, female; (2) Allotype, male; (3) Male from Turkey. (4) P. cereus, paratype female. P. dianthi, 5–6. (5) Female; (6) Male. (7) P. frontalis, 7–9. (7) Lectotype female; (8) Female macroptera; (9) Male microptera. (10) P. kaszabi, holotype female. (11) P. moravicus, holotype female. P. nadeshiko, n. sp., 12–14. (12) Holotype female; (13) Paratype female; (14) Paratype male. (15) P. nigriventris, holotype female. P. pelikani, n. sp., 16–17. (16) Lectotype female; (17) Slide of lectotype, red arrow indicates lectotype.

opennotspecifiedFeb 2020View details →
zenodo32/100

Subspecies and Distribution. R.f. frantisi Soisook et al, 2015 - known only from a few localities in N, SW & S Borneo. R.f. thailandicus Soisook & Bates, 2015 — known only from type locality in SW Thailand. Genetic data suggest that the species may also occur in Vietnam, but this requires more research. in Rhinolophidae

Subspecies and Distribution. R.f. frantisi Soisook et al, 2015 - known only from a few localities in N, SW & S Borneo. R.f. thailandicus Soisook & Bates, 2015 — known only from type locality in SW Thailand. Genetic data suggest that the species may also occur in Vietnam, but this requires more research.

opennotspecifiedOct 2019View details →
zenodo32/100

FIGURE­4.­Map of selected records of Siphamia species recorded in Queensland and Papua New Guinea waters in 2003–2005, including the type locality of Siphamia guttulata. Some symbols represent more than one specimen. in Redescription and distributional range extension of the Speckled Siphonfish, Siphamia guttulata (Pisces: Apogonidae)

FIGURE­4.­Map of selected records of Siphamia species recorded in Queensland and Papua New Guinea waters in 2003–2005, including the type locality of Siphamia guttulata. Some symbols represent more than one specimen.

opennotspecifiedApr 2020View details →
zenodo32/100

FIGURES 9A–F. Anastatus motschulskyi, male. A in Redescription of Anastatus mantoidae Motschulsky, the type species of Anastatus Motschulsky 1859, and Anastatus echidna (Motschulsky), the type species of Cacotropia Motschulsky 1863, with respect to taxonomy of Anastatus (Hymenoptera: Eupelmidae: Eupelminae)

FIGURES 9A–F. Anastatus motschulskyi, male. A, lateral habitus (2019-70); B, dorsal habitus (allotype); C, head, frontal (2019-70); D, head, dorsal (2019-70); E, mesosoma, dorsal (allotype); F, mesosoma, lateral (2019-69). Abbreviations: ac = acropleuron, eps2 = mesepisternum, lep2= lower mesepimeron, pl3 = metapleuron, pre = prepectus, uep2 = upper mesepimeron.

opennotspecifiedMar 2020View details →
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FIGURES 7A–I. Anastatus motschulskyi, female. A–B in Redescription of Anastatus mantoidae Motschulsky, the type species of Anastatus Motschulsky 1859, and Anastatus echidna (Motschulsky), the type species of Cacotropia Motschulsky 1863, with respect to taxonomy of Anastatus (Hymenoptera: Eupelmidae: Eupelminae)

FIGURES 7A–I. Anastatus motschulskyi, female. A–B, holotype habitus: A, lateral; B, dorsal. C–H, 2019-68: C, head, frontal; D, head, dorsal; E, frontovertex; F, antenna, dorsal view; G, antenna, ventral view; H, mesosoma, dorsal. I, anterior half of mesoscutum (holotype). Abbreviation: dso = distance between scrobal depression and anterior ocellus.

opennotspecifiedMar 2020View details →
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FIGURES 8A–H. Anastatus motschulskyi. A–E in Redescription of Anastatus mantoidae Motschulsky, the type species of Anastatus Motschulsky 1859, and Anastatus echidna (Motschulsky), the type species of Cacotropia Motschulsky 1863, with respect to taxonomy of Anastatus (Hymenoptera: Eupelmidae: Eupelminae)

FIGURES 8A–H. Anastatus motschulskyi. A–E, female (2019-68): A, mesosoma, lateral; B, apex of gaster, dorsal; C, fore wing; D, central part of fore wing; E, mesotarsus. F–H, male (allotype): F, fore wing; G, basal half of fore wing; H, antenna. Abbreviations: bac = basal cell, cua = cubital area, cuf = cubital fold, mdf = medial fold, spc = speculum, stf = syntergal flange, stl = syntergal flange length, stw = syntergal flange width, vna = vanal area.

opennotspecifiedMar 2020View details →
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FIGURES 4A–H in Redescription of Anastatus mantoidae Motschulsky, the type species of Anastatus Motschulsky 1859, and Anastatus echidna (Motschulsky), the type species of Cacotropia Motschulsky 1863, with respect to taxonomy of Anastatus (Hymenoptera: Eupelmidae: Eupelminae)

FIGURES 4A–H. Anastatus mantoidae, female (2019-66). A, lateral habitus; B, dorsal habitus; C, head, frontal; D, head, dorsal; E, frontovertex; F, mesonotum; G, mesosoma, lateral; H, anterior half of mesoscutum. Abbreviation: dso = distance between scrobal depression and anterior ocellus.

opennotspecifiedMar 2020View details →
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FIGURES 2A–F. Anastatus mantoidae, female type material. A in Redescription of Anastatus mantoidae Motschulsky, the type species of Anastatus Motschulsky 1859, and Anastatus echidna (Motschulsky), the type species of Cacotropia Motschulsky 1863, with respect to taxonomy of Anastatus (Hymenoptera: Eupelmidae: Eupelminae)

FIGURES 2A–F. Anastatus mantoidae, female type material. A, antenna (LT); B, fore wing (LT); C, mesonotum (PLT); D, mesosoma, lateral (LT); E, apex of scutellum to base of gaster, dorsal (PLT); F, apex of gaster, dorsal (PLT). Abbreviations: LT = lectotype, PLT = paralectotype, stf = syntergal flange, stl = syntergal flange length, stw = syntergal flange width.

opennotspecifiedMar 2020View details →
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FIGURES 1A–F. Anastatus mantoidae, female type material. A in Redescription of Anastatus mantoidae Motschulsky, the type species of Anastatus Motschulsky 1859, and Anastatus echidna (Motschulsky), the type species of Cacotropia Motschulsky 1863, with respect to taxonomy of Anastatus (Hymenoptera: Eupelmidae: Eupelminae)

FIGURES 1A–F. Anastatus mantoidae, female type material. A, card with lectotype; B, lateral habitus (LT); C, card with paralectotypes. D–F, head (LT): D, frontal; E, lateral; F, dorsal. Abbreviation: LT = lectotype.

opennotspecifiedMar 2020View details →
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FIGURE 29 in Taxonomic assessments of some Cyprinotinae Bronstein, 1947 species (Crustacea: Ostracoda) from Japanese and Korean rice fields, including (re-) descriptions of six species and a review of the type species of the subfamily

FIGURE 29. Heterocypris savatenalintonae sp. nov. A, detail of antenna, female (LBM 1430009544). B, detail of antenna, male (LBM 1430009542). C, detail of abnormal terminal segment of antenna, female (LBM 1430009545). D, fifth limb, female (LBM 1430009545). E, abnormal fifth limb palp, female (LBM 1430009545). F, abnormal fifth limb palp, female (LBM 1430009544). G, sixth limb, female (LBM 1430009545). H, sixth limb, male (LBM 1430009543). All specimens from sample 38 (see Table 1).

opennotspecifiedJun 2020View details →
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FIGURE 17 in Taxonomic assessments of some Cyprinotinae Bronstein, 1947 species (Crustacea: Ostracoda) from Japanese and Korean rice fields, including (re-) descriptions of six species and a review of the type species of the subfamily

FIGURE 17. Distribution map of Hemicypris posterotruncata and Hemicypris ovata.? indicates uncertain records. Abbreviations and colours of points refer to Köppen climatic zones, following Peel et al. (2007). Data from: 1, Akindele 2013. 2, Schöning (1994) as Hemicypris sp., identified as H. ovata by Karanovic (2012). 3, Deb (1972a). 4, Deb (1972b). 5, Savatenalinton (2014), Savatenalinton & Suttajit (2014). 6, Sars (1903) (approximate as no specific locality given). 7, Victor & Fernando, 1981. 8, Bate (1970; 1972). 9, Rasouli & Aygen (2017). 10, this study. 11, Kume (2013). 12, Okubo (1990). 13, this study. 14, Tanaka et al. 2015.

opennotspecifiedJun 2020View details →
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FIGURE 20. Hemicypris kliei Lindroth, 1953. A in Taxonomic assessments of some Cyprinotinae Bronstein, 1947 species (Crustacea: Ostracoda) from Japanese and Korean rice fields, including (re-) descriptions of six species and a review of the type species of the subfamily

FIGURE 20. Hemicypris kliei Lindroth, 1953. A, left valve, external view. B, right valve, external view. C, left valve, external view, detail of antero-ventral area. D, left valve, external view, detail of antero-ventral area. E, left valve, external ventral view. F, right valve, external ventral view. G, left valve, external ventral view of antero-ventral margin. H, left valve, external ventral view of postero-ventral margin. I, left valve, external ventral view, detail of ventral margin. Scale bar = 500 µm for A, B, E & F, 298 µm for I, 125 µm for C, G, H, and 31 µm for D. (All figures female topotype specimen UUZM Typ 603x.)

opennotspecifiedJun 2020View details →
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FIGURE 14. A–F in Taxonomic assessments of some Cyprinotinae Bronstein, 1947 species (Crustacea: Ostracoda) from Japanese and Korean rice fields, including (re-) descriptions of six species and a review of the type species of the subfamily

FIGURE 14. A–F, Hemicypris posterotruncata Bate, 1970. A, left valve, external ventral view (LBM 1430009522, sample 14; see Table 1). B, right valve, external ventral view (LBM 1430009522, sample 14). C, left valve, external ventral view, detail of ventral margin (LBM 1430009522, sample 14). D, right valve, external ventral view, detail of ventral margin (LBM 1430009522, sample 14). E, left valve, external ventral view, detail of antero-ventral margin (LBM 1430009522, sample 14). F, left valve, external ventral view, detail of denticles (LBM 1430009522, sample 14). H & I, Hemicypris ovata Sars, 1903. H, whole carapace, left view (paralectotype NHMO F12264c). I, detail of pits on anterior of left valve (paralectotype NHMO F12264c). All specimens female. Scale bar = 500 µm for A, B & H, 141 µm for C–E, 23 µm for F, 84 µm for I.

opennotspecifiedJun 2020View details →
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FIGURE 5 in Taxonomic assessments of some Cyprinotinae Bronstein, 1947 species (Crustacea: Ostracoda) from Japanese and Korean rice fields, including (re-) descriptions of six species and a review of the type species of the subfamily

FIGURE 5. Cyprinotus cassidula sp. nov. A, antennule, male (LBM 1430009504). B, antenna, male (LBM 090524-01-014). C, mandibular palp, male (LBM 1430009502). D, alpha, beta and gamma setae of mandibular palp, male (LBM 1430009502). E, mandibular coxa, male (LBM 1430009502). F, maxillula palp and endites (setae on endites not drawn) (LBM 1430009502). G, left fifth limb palp, male (LBM 1430009502). H, right fifth limb palp, male (LBM 1430009502). All specimens from type locality (Table 1, sample 4).

opennotspecifiedJun 2020View details →
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FIGURE 2 in Taxonomic assessments of some Cyprinotinae Bronstein, 1947 species (Crustacea: Ostracoda) from Japanese and Korean rice fields, including (re-) descriptions of six species and a review of the type species of the subfamily

FIGURE 2. Cyprinotus cassidula sp. nov. A, left valve, internal view, female (LBM 1430009506). B, left valve, internal view, male (LBM 1430009496). C, right valve, internal view, female, detail of antero-ventral area (LBM 1430009506). D, right valve, internal view, female, detail of postero-ventral area (LBM 1430009506). E, left valve, internal view, female, detail of posteroventral area (LBM 1430009506). F, left valve, internal view, female, detail of antero-ventral area (LBM 1430009506). G, right valve, internal view, female, detail of central ventral area (LBM 1430009506). All specimens from type locality (Table 1, sample 4). Scale bar = 500 µm for A & B, 108 µm for C–G.

opennotspecifiedJun 2020View details →
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FIGURE 22. A–D in Taxonomic assessments of some Cyprinotinae Bronstein, 1947 species (Crustacea: Ostracoda) from Japanese and Korean rice fields, including (re-) descriptions of six species and a review of the type species of the subfamily

FIGURE 22. A–D, Hemicypris kliei Lindroth, 1953 (female topotype UUZM Typ 603t). A, left valve, internal view. B, left valve, external view. C, left valve, internal view, detail of antero-ventral margin. D, left valve, external view, detail of anteroventral margin. E & F, Hemicypris kliei Lindroth, 1953? (NHMUK PM Io 1451A-004). E, left valve, internal view. F, left valve, external view. Scale bar = 500 μm for A & B, E & F, 125 μm for C & D.

opennotspecifiedJun 2020View details →
dryad32/100

Data from: The functional trait space of tree species is influenced by the species richness of the canopy and the type of forest

Analysing how species modify their trait expression along a diversity gradient brings insight about the role that intraspecific variability plays over species interactions, e.g. competition versus complementarity. Here, we evaluated the functional trait space of nine tree species dominant in three types of European forests (a continental-Mediterranean, a mountainous mixed temperate and a boreal) growing in communities with different species richness in the canopy, including pure stands. We compiled whole-plant and leaf traits in 1719 individuals, and used them to quantify species trait hypervolumes in communities with different tree species richness. We investigated changes along the species richness gradient to disentangle species responses to the neighbouring environment, in terms of hypervolume size (trait variance), shape (trait relative importance) and centroid translation (shifts of mean trait values) using null models. Our main results showed differences in trait variance and shifts of mean values along the tree diversity gradient, with shorter trees but with larger crowns in mixed stands. We found constrained functional spaces (trait convergence) in pure stands, suggesting an important intraspecific competition, and expanded functional spaces (trait divergence) in two-species admixtures, suggesting competition release due to interspecific complementarity. Nevertheless, further responses to increasing species richness were different for each forest type, waning species complementarity in sites with limiting conditions for growth. Our results demonstrate that tree species phenotypes respond to the species richness in the canopy in European forests, boosting species complementarity at low level of canopy diversity and with a site-specific pattern at greater level of species richness. These outcomes evidence the limitation of functional diversity measures based only on traits from pure stands or general trait database values.

opencc-zeroMay 2020View details →

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Allen Brain Atlas

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allen-brain-atlas
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.

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