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FIGURES 23–24 in A catalogue of the types of rove beetles (Coleoptera: Staphylinidae) deposited in the collection of Johan Heinrich Hochhuth in the National Museum of Natural History of the National Academy of Sciences of Ukraine

FIGURES 23–24. Heterothops distinguendus (Figs 23a–i), Deleaster erichsoni (Figs 24a–b): 23a, 23d, 23fa, 23h, 24a—habitus, 23b—edeagus, ventral view, 23c, 23e, 23g, 23i, 24b—labels. Scale bars: 1.0 mm (Figs 23a, 23d, 23f, 23h, 24a), 0.2 mm (Figs 23b).

opennotspecifiedJul 2022View details →
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FIGURES 9–14. Stauroneis lacuspowaiensis Wadmare & B in Revisiting two Stauroneis Ehrenberg (Bacillariophyta) from H. P. Gandhi's Diatom collection: Notes on Ultrastructure, Types and Nomenclature

FIGURES 9–14. Stauroneis lacuspowaiensis Wadmare & B.Karthick nom. nov., stat. nov., SEM, external valve views. 9, 10. External views of an entire valve. 11, 13. Terminal raphe fissures continuing on mantle. 12. Stauros with straight central raphe ends. 14. Irregularly placed areolae (double arrowheads). Scale bars = 4 µm (Figs 9, 10, 12); 1 µm (Figs 11, 13, 14).

opennotspecifiedJul 2022View details →
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FIGURES 32–36. Stauroneis dharwarensis Wadmare & B in Revisiting two Stauroneis Ehrenberg (Bacillariophyta) from H. P. Gandhi's Diatom collection: Notes on Ultrastructure, Types and Nomenclature

FIGURES 32–36. Stauroneis dharwarensis Wadmare & B.Karthick nom. nov., stat. nov., SEM, external valve views. 32, 36. External views of an entire valve. 33. Stauros with tear-drop central raphe ends. 34, 35. Deflected terminal raphe fissures. Scale bars = 4 µm (Figs 32–36).

opennotspecifiedJul 2022View details →
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FIGURES 1–8. Stauroneis lacuspowaiensis Wadmare & B in Revisiting two Stauroneis Ehrenberg (Bacillariophyta) from H. P. Gandhi's Diatom collection: Notes on Ultrastructure, Types and Nomenclature

FIGURES 1–8. Stauroneis lacuspowaiensis Wadmare & B.Karthick nom. nov., stat. nov., 1. Original illustration of Gonzalves & Gandhi (1953: 256, fig. 92). 2–8. Light micrographs (DIC) from the type material (AHMA Sr 5), Fig. 4. represent the lectotype. 4. Irregularly punctate areolae (double arrowheads). 5. Valve with slight undulate sides (arrow). 7. Terminal raphe fissures with bifurcation (arrowhead). Scale bar = 10 µm.

opennotspecifiedJul 2022View details →
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FIGURES 19–31. Stauroneis dharwarensis Wadmare & B in Revisiting two Stauroneis Ehrenberg (Bacillariophyta) from H. P. Gandhi's Diatom collection: Notes on Ultrastructure, Types and Nomenclature

FIGURES 19–31. Stauroneis dharwarensis Wadmare & B.Karthick nom. nov., stat. nov., 19. Original illustration of Gandhi (1959a: 104, 105, Fig. 25). 20–31. Light micrographs (DIC) from the type material (AHMA Sr 48), Fig. 24 represents the lectotype. Scale bar = 10 µm.

opennotspecifiedJul 2022View details →
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FIGURES 15–18. Stauroneis lacuspowaiensis Wadmare & B in Revisiting two Stauroneis Ehrenberg (Bacillariophyta) from H. P. Gandhi's Diatom collection: Notes on Ultrastructure, Types and Nomenclature

FIGURES 15–18. Stauroneis lacuspowaiensis Wadmare & B.Karthick nom. nov., stat. nov., SEM, internal valve views. 15. Internal view of an entire valve. 15, 17. Elevated stauros possessing tunnel gap (arrowheads). 17. Areolae irregular covered with hymen structures (double arrowheads). 16, 18. Terminal raphe fissures with helictoglossae. Scale bars = 4 µm (Figs 15–18).

opennotspecifiedJul 2022View details →
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Lophuromys stanley: is member of the L. flavopunctatus species complex and was named during partial revision of the L. aguilus species complex. It is characterized by craniometric and genetic character-istics; its skull proportions are similar to L. laticeps, and molecularly, it is similar to L. margarettae and L. zena (cytochrome-b). Lophuromys stanleyi is one of four endemic species in the Rwenzori Mountains diversity hotspot. Monotypic. Distribution. Rwenzori Mts, E DR Congo and SW Uganda. Descriptive notes. Head-body 113-126 mm, tail 40-80 mm, ear 16-19 mm, hindfoot 22-24 mm; weight 36-55 g. The Rwenzori Brush-furred Rat has a speckled pelage similar to other speciesin the L. flavopunctatus species complex. Tail is short, 50-60% of head-body length. Habitat. Poorly known, but type specimen was collected at an elevation of 3700 m. Food and Feeding. No information. Breeding. No information. Activity patterns. No information. in Muridae

Lophuromys stanley: is member of the L. flavopunctatus species complex and was named during partial revision of the L. aguilus species complex. It is characterized by craniometric and genetic character-istics; its skull proportions are similar to L. laticeps, and molecularly, it is similar to L. margarettae and L. zena (cytochrome-b). Lophuromys stanleyi is one of four endemic species in the Rwenzori Mountains diversity hotspot. Monotypic. Distribution. Rwenzori Mts, E DR Congo and SW Uganda. Descriptive notes. Head-body 113-126 mm, tail 40-80 mm, ear 16-19 mm, hindfoot 22-24 mm; weight 36-55 g. The Rwenzori Brush-furred Rat has a speckled pelage similar to other speciesin the L. flavopunctatus species complex. Tail is short, 50-60% of head-body length. Habitat. Poorly known, but type specimen was collected at an elevation of 3700 m. Food and Feeding. No information. Breeding. No information. Activity patterns. No information.

opennotspecifiedNov 2017View details →
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Type Collection of the National Herbarium of Uzbekistan (TASH)

The National Herbarium of Uzbekistan (TASH), housed in the Institute of Botany of the Academy of Sciences of Uzbekistan in Tashkent, is the largest botanical collection in Central Asia included in the top-100 greatest herbaria of the world. It contains over 1.5 million specimens collected since the 1831–1834 from all regions of Central Asia and some other regions of the world, including a rich set of type specimens. The type material is stored separately from the general collection, which is divided into Central Asian section stored in the greater herbarium hall and relatively small foreign section placed in the smaller hall; each section is organized in taxonomic order. The Central Asian section of TASH contains the largest number of Central Asian specimens in the world and includes historical (memorial) collections of G.S. Karelin and I.P. Kirilov, E. Regel, A.G. Schrenk, O.A. and B.A. Fedtschenko, M.G. Popov, A.I. Vvedensky and other first explorers of flora of this region. The following collections became the basis of the national herbarium of Uzbekistan: • Herbarium of the Bureau of Soil and Botanical Research of the Migration Department of Russian government in Tashkent founded in 1909. Besides local collections made within the framework of investigation of flora and vegetation of Central Asia, this herbarium contained duplicates of classical materials received from LE and MW. • Herbarium of the Turkestan State University founded in 1920 on the basis of above-mentioned collection of the Bureau of Soil and Botanical Research. Originally this herbarium was called Herbarium Horti Botanici Universitatis Asiae Mediae, later – Herbarium Universitatis Taschkenticae, acronym TAK. The Turkestan State University was established in 1918, it was given a name of Central Asian State University from 1923 to 1960, Tashkent State University in 1960–2000, and National University of Uzbekistan since 2000. • Herbarium of the Sector of plant resources under the Committee of Sciences of the Uzbek SSR (the precursor of the Academy of Sciences of Uzbekistan) founded in 1937. In 1940, the Sector of plant resources was reorganized into the Institute of Botany of the Academy of Sciences of the Uzbek SSR. Originally this herbarium was called Herbarium Instituti Botanici Sectionis Uzbekistanicae Academiae Scientiarum URSS, later – Herbarium Instituti Botanici Academiae Scientiarum Uzbekistanicae, acronym TASH. • Herbarium of the Nature Museum of Uzbekistan founded in 1923 (Herbarium Musei Naturae Uzbekistaniae, acronym RNMUT). • Herbarium of the Institute of chemistry of natural compounds of the Academy of Sciences of the Uzbek SSR established in 1956. In 1987–1988, on the initiative of Acad. Prof. K.Z. Zakirov and Prof. U.P. Pratov, above-mentioned herbaria and some collections from the Samarkand State University were integrated into the Central Herbarium of Uzbekistan housed in the Institute of Botany of the Academy of Sciences; the united collection retained the international acronym TASH. In 2018, it was renamed the National Herbarium of Uzbekistan. TASH was one of the most important sources of information in the compilation of numerous fundamental taxonomical treatments, such as "Flora of the USSR" (in 30 vol., 1934–1964), "Flora of Kazakhstan" (in 9 vol., 1956–1966), "Flora of Kyrgyzstan" (in 11 vol., 1952–1962), "Flora of Tajikistan" (in 10 vol., 1957–1991), the first edition of "Flora of Uzbekistan" (in 6 vol., 1941–1962) and the first four vol. of the new edition of "Flora of Uzbekistan" (2016, 2017, 2019, 2022), "Conspectus Florae Asiae Mediae" (1963–2015), and others. The digitizing and creation of the database of the TASH collection began within the framework of state project "Botanical-geographical zoning of Uzbekistan and creation of a unified database of plant diversity. Part I – Mountain Central Asian province" (2012–2014) and Part II – Turan province (2015–2017). Herbarium scanners and other equipment for digitizing were obtained within the framework of several projects, including the "Digitization of type specimens of the Central Herbarium of Uzbekistan" (2013–2014) with the financial support of the Andrew Mellon Foundation (USA), "Creation of a central database of plant diversity in Uzbekistan" (2012–2014) funded by Small Grants Program of Global Environment Facility's (SGP GEF). In addition, some equipment for herbarium digitizing has been donated by the Kunming Institute of Botany of the Chinese Academy of Sciences and "Central Asian Green Road" project supported by Korea Forest Service and Korea National Arboretum. The online version of digital herbarium TASH and the Virtual Guide to the Flora of Uzbekistan (https://floragridmap.uz/) have been created within the framework of joint project of the Institute of Botany of the Academy of Sciences of Uzbekistan and Succow Foundation "Virtual Flora of Central Asia – CAViF" (2018-2021). The project was implemented as part of the funding program "Pilot measures for partnerships in science, research and education with the Central Asian and South Caucasus countries", financed by the German Federal Ministry of Education and Research (BMBF).

opencc-by-4.0Aug 2022View details →
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FIGURE. Multilocus phylogenetic tree inferred from Bayesian analysis based on the combined TEF1-α and ACT sequences. Bayesian posterior probabilities are indicated next to the nodes. The tree was rooted with Cladosporium herbarum CBS 121621. The species in this study are indicated in bold. Types of species are indicated after the culture collection number (T = ex-type, ex-epitype, ex-neotype, or reference strain). in Six new species of Cladosporium associated with decayed leaves of native bamboo (Bambusoideae) in a fragment of Brazilian Atlantic Forest

FIGURE. Multilocus phylogenetic tree inferred from Bayesian analysis based on the combined TEF1-α and ACT sequences. Bayesian posterior probabilities are indicated next to the nodes. The tree was rooted with Cladosporium herbarum CBS 121621. The species in this study are indicated in bold. Types of species are indicated after the culture collection number (T = ex-type, ex-epitype, ex-neotype, or reference strain).

opennotspecifiedAug 2022View details →
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FIGURE. (Continued) Multilocus phylogenetic tree inferred from Bayesian analysis based on the combined TEF1-α and ACT sequences. Bayesian posterior probabilities are indicated next to the nodes. The tree was rooted with Cladosporium herbarum CBS 121621. The species in this study are indicated in bold. Types of species are indicated after the culture collection number (T = ex-type, ex-epitype, exneotype, or reference strain). in Six new species of Cladosporium associated with decayed leaves of native bamboo (Bambusoideae) in a fragment of Brazilian Atlantic Forest

FIGURE. (Continued) Multilocus phylogenetic tree inferred from Bayesian analysis based on the combined TEF1-α and ACT sequences. Bayesian posterior probabilities are indicated next to the nodes. The tree was rooted with Cladosporium herbarum CBS 121621. The species in this study are indicated in bold. Types of species are indicated after the culture collection number (T = ex-type, ex-epitype, exneotype, or reference strain).

opennotspecifiedAug 2022View details →
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FIGURE. The colour of the florets in solitary or corymbose synflorescences of Callilepis species. A. Solitary capitulum of the shrubby C. caerulea with white ray and disc florets collected at Blouberg by Kremer-Köhne (Photographer M. Koekemoer). B. Solitary capitulum of the perennial herb C. leptophylla with white ray and purplish disc florets growing at Nylsvlei (Photographer M. Koekemoer). C. Solitary capitulum of the perennial herb C. leptophylla with white ray and disc florets growing in Pretoria (Photographer S.P. Bester). D. Corymbose synflorescence of the perennial herb C. normae with white ray and disc florets from the type locality (Photographer M. Koekemoer). in A taxonomic revision of the genus Callilepis (Asteraceae) in South Africa

FIGURE. The colour of the florets in solitary or corymbose synflorescences of Callilepis species. A. Solitary capitulum of the shrubby C. caerulea with white ray and disc florets collected at Blouberg by Kremer-Köhne (Photographer M. Koekemoer). B. Solitary capitulum of the perennial herb C. leptophylla with white ray and purplish disc florets growing at Nylsvlei (Photographer M. Koekemoer). C. Solitary capitulum of the perennial herb C. leptophylla with white ray and disc florets growing in Pretoria (Photographer S.P. Bester). D. Corymbose synflorescence of the perennial herb C. normae with white ray and disc florets from the type locality (Photographer M. Koekemoer).

opennotspecifiedSep 2022View details →
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FIGURE 16. Hedychrum rufipes lepidum Linsenmaier, 1959, female. A in The Palaearctic types of Chrysididae (Insecta, Hymenoptera) deposited in the Linsenmaier collection. Part 3. Elampini: genus Hedychrum Latreille

FIGURE 16. Hedychrum rufipes lepidum Linsenmaier, 1959, female. A) Habitus, lateral view. B) Head, frontal view. C) Habitus,dorsal view. D) Metasoma, postero-lateral view. E) Third sternum, ventral view. Scale bars 1 mm.

opennotspecifiedOct 2022View details →
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FIGURE 17. Hedychrum scutellare Linsenmaier, 1969 in The Palaearctic types of Chrysididae (Insecta, Hymenoptera) deposited in the Linsenmaier collection. Part 3. Elampini: genus Hedychrum Latreille

FIGURE 17. Hedychrum scutellare Linsenmaier, 1969, holotype, female. A) Habitus, lateral view. B) Head, frontal view. C) Mesosoma, dorsal view. D) Metasoma, dorsal view. E) Metasoma, postero-lateral view. F) Third sternum, ventral view. Scale bars 1 mm.

opennotspecifiedOct 2022View details →
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FIGURE 14. Hedychrum parvicavitale Linsenmaier, 1994 in The Palaearctic types of Chrysididae (Insecta, Hymenoptera) deposited in the Linsenmaier collection. Part 3. Elampini: genus Hedychrum Latreille

FIGURE 14. Hedychrum parvicavitale Linsenmaier, 1994, paratype, female. A) Habitus, lateral view. B) Head, frontal view. C) Mesosoma, dorsal view. D) Habitus, dorsal view. E) Scale bars A–B, D: 1 mm, C, E: 0.5 mm.

opennotspecifiedOct 2022View details →
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FIGURE 13. Hedychrum micans europaeum Linsenmaier, 1959 in The Palaearctic types of Chrysididae (Insecta, Hymenoptera) deposited in the Linsenmaier collection. Part 3. Elampini: genus Hedychrum Latreille

FIGURE 13. Hedychrum micans europaeum Linsenmaier, 1959, allotype, male. A) Habitus, lateral view. B) Head, frontal view. C) Mesosoma, dorsal view. D) Habitus, dorsal view. E) Genital capsule. F) Metasoma, postero-lateral view. G) Meso- and metaleg. G) Scale bars 1 mm.

opennotspecifiedOct 2022View details →
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FIGURE 11. Hedychrum luculentum bytinskii Linsenmaier, 1959 in The Palaearctic types of Chrysididae (Insecta, Hymenoptera) deposited in the Linsenmaier collection. Part 3. Elampini: genus Hedychrum Latreille

FIGURE 11. Hedychrum luculentum bytinskii Linsenmaier, 1959, allotype, male. A) Habitus, lateral view. B) Genital capsule. C) Head, frontal view. D) Head and mesosoma, dorsal view. E) Mesoleg. F) Metasoma, dorsal view. G) Metasoma, posterolateral view. Scale bars 1 mm.

opennotspecifiedOct 2022View details →
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FIGURE 10. Hedychrum luculentum bytinskii Linsenmaier, 1959 in The Palaearctic types of Chrysididae (Insecta, Hymenoptera) deposited in the Linsenmaier collection. Part 3. Elampini: genus Hedychrum Latreille

FIGURE 10. Hedychrum luculentum bytinskii Linsenmaier, 1959, holotype, female. A) Habitus, lateral view. B) Head, frontal view. C) Habitus, dorsal view. D) Metasoma, posterior view. E) Third sternum, ventral view. Scale bars 1 mm.

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FIGURE 9. Hedychrum latitudum Linsenmaier, 1959 in The Palaearctic types of Chrysididae (Insecta, Hymenoptera) deposited in the Linsenmaier collection. Part 3. Elampini: genus Hedychrum Latreille

FIGURE 9. Hedychrum latitudum Linsenmaier, 1959, holotype, male. A) Habitus, dorsal view. B) Head, frontal view. C) Genital capsule. D) Metasoma, postero-lateral view. E) Habitus, lateral view. F) Metasoma, ventral view. Scale bars 1 mm.

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FIGURE 6. Hedychrum gracilipes Linsenmaier, 1999 in The Palaearctic types of Chrysididae (Insecta, Hymenoptera) deposited in the Linsenmaier collection. Part 3. Elampini: genus Hedychrum Latreille

FIGURE 6. Hedychrum gracilipes Linsenmaier, 1999, holotype, male. A) Habitus, dorsal view. B) Head, frontal view. C) Mesosoma, dorsal view. D) Mesosoma, lateral view. E) Metasoma, dorsal view. Scale bars 1 mm.

opennotspecifiedOct 2022View details →
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FIGURE 7. Hedychrum intermedium subparvulum Linsenmaier, 1968 in The Palaearctic types of Chrysididae (Insecta, Hymenoptera) deposited in the Linsenmaier collection. Part 3. Elampini: genus Hedychrum Latreille

FIGURE 7. Hedychrum intermedium subparvulum Linsenmaier, 1968, holotype, female. A) Habitus, dorsal view. B) Head, frontal view. C) Metasoma, postero-lateral view. D) Habitus, lateral view. E) Third sternum, ventral view. Scale bars 1 mm.

opennotspecifiedOct 2022View 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

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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