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FIGURE 90 in Planothidium incuriatum sp. nov. a widely distributed diatom species (Bacillariophyta) and type analysis of Planothidium biporomum

FIGURE 90. Distribution records of Planothidium incuriatum (black dots) according to the literature (see Table 1). Type localities of P. incuriatum (grey dot) as well as P. biporomum (grey star) are indicated as well.

opennotspecifiedOct 2013View details →
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FIGURES 62–79 in Planothidium incuriatum sp. nov. a widely distributed diatom species (Bacillariophyta) and type analysis of Planothidium biporomum

FIGURES 62–79. Planothidium incuriatum sp. nov. LM views. Pardinho River, Rio Grande do Sul, Brazil. BR-4316. Figs 62–70. Rapheless valves. Figs 71–79. Raphe valves. Scale bar represents 10 µm.

opennotspecifiedOct 2013View details →
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FIGURES 51–61 in Planothidium incuriatum sp. nov. a widely distributed diatom species (Bacillariophyta) and type analysis of Planothidium biporomum

FIGURES 51–61. Planothidium incuriatum sp. nov. SEM views. 'Croix au Buis' creek (Yvette River basin, Magny-les-Hameaux, France), BR-4315. Fig. 51. External view of rapheless valve. Fig. 52. Internal view of raphe valve. Fig. 53. External view of raphe valve. Fig. 54. Internal view of rapheless valve. Fig. 55. Internal detailed view of raphe valve central area. Fig. 56. External detail of a raphe valve. Two reduced striae at both sides forming an irregular rectangular central area. Drop-like proximal raphe ends. Striae usually formed by three rows of areolae. Fig. 57. Detail of cavum aperture. Open border attached to the neighbour striae. Fig. 58. Detail of raphe ends. Note the groups of two small areolae located in the valve mantle. Fig. 59. Open non-perforated and ligulated connective bands. Figs 60–61. Detail of striae usually triseriate from the rapheless valve, as well as the areolae located in the mantle. Scale bars: Figs 51–53 = 5 µm; Fig. 54 = 10 µm; Figs 55–56, 60 = 4 µm; Figs 57–59 = 3 µm; Fig. 61 = 2 µm.

opennotspecifiedOct 2013View details →
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FIGURES 1–36 in Planothidium incuriatum sp. nov. a widely distributed diatom species (Bacillariophyta) and type analysis of Planothidium biporomum

FIGURES 1–36. Planothidium biporomum and Planothidium incuriatum sp. nov. LM views. Figs 1–18. Planothidium biporomum. Valve views. Savannah River, Georgia, U.S.A., ANSP G.M.C. 3521(3). Figs 1–13. Rapheless valves. Figs 14–18. Raphe valves. Figs 19–36. Planothidium incuriatum sp. nov. Valve views. 'Croix au Buis' creek (Yvette River basin, Magny-les-Hameaux, France), BR- 4315. Figs 19–27. Rapheless valves. Figs 28–36. Raphe valves. Fig. 21. Holotype designated. '=' signal indicates the valves of the same frustule. Scale bar represents 10 µm.

opennotspecifiedOct 2013View details →
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FIGURES 37–50 in Planothidium incuriatum sp. nov. a widely distributed diatom species (Bacillariophyta) and type analysis of Planothidium biporomum

FIGURES 37–50. Planothidium biporomum. SEM views. Savannah River, Georgia, U.S.A. Material ANSP G.M.C. 3521(3). Fig. 37. External view of rapheless valve. Fig. 38. Internal view of raphe valve. Fig. 39. External view of raphe valve. Fig. 40. Internal view of rapheless valve with a prominent cavum. Fig. 41. External detail of the central area of a rapheless valve with uni- to biseriate striae in the middle part of the valve. Fig. 42. External detail of a raphe valve with reduced striae forming a rectangular area. Striae composed usually by three to four rows of areolae. Fig. 43. Internal detail of raphe valve showing the proximal raphe ends. Fig. 44. External detail of extremity of the rapheless valve. Striae becoming triseriate near the valve mantle junction. Groups of three areolae present on the mantle at the end of each striae. Fig. 45. Internal detail of a rapheless valve end. Fig. 46. Internal detail of the helictoglossae. Figs 47–48. External details of raphe valves. Figs 49–50. Detail of cavum aperture. Note the extremities of the border attached to the neighbour striae. Scale bars: Figs 37–41 = 5 µm; Figs 42–43 = 4 µm; Figs 44, 46–48, 50 = 3 µm; Figs 45, 49 = 2 µm.

opennotspecifiedOct 2013View details →
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FIGURES 80–89 in Planothidium incuriatum sp. nov. a widely distributed diatom species (Bacillariophyta) and type analysis of Planothidium biporomum

FIGURES 80–89. Planothidium incuriatum sp. nov. SEM views. Pardinho River, Rio Grande do Sul, Brazil. BR-4316. Fig. 80. External view of rapheless valve. Note the similar areolae arrangement with the France population. Fig. 81. Internal view of raphe valve. Fig. 82. Internal view of rapheless valve with wide cavum aperture. Fig. 83. External view of raphe valve showing two reduced striae at both sides forming a rectangular central area. Fig. 84. Internal view of raphe valve reduced helictoglossae. Fig. 85. Internal view of rapheless valve apice. Fig. 86. Detail of central area of rapheless valve showing the triseriate striae, irregular rounded depressions along the apical axis and the external unilateral expansion. Fig. 87. Detail of central area of raphe valve. Figs 88–89. Detail of striae in raphe valve usually composed by 3–4 rows of areolae from the rapheless valve. Note the groups of two small areolae located in the valve mantle located at each stria. Scale bars: Figs 80–83 = 5 µm; Figs 86–87 = 4 µm; Figs 84–85, 88–89 = 2 µm.

opennotspecifiedOct 2013View details →
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FIGURES 1–2. Lectotypes. 1. Ischioceras rugosa Provancher, 1882 in The genus-group names of Mutillidae (Hymenoptera) and their type species, with a new genus, new name, new synonymies, new combinations and lectotypifications

FIGURES 1–2. Lectotypes. 1. Ischioceras rugosa Provancher, 1882 (male, not female). 1a. Specimen and labels. 1b. Previous lectotype labels (not previously published). 2. Mutilla simplicifascia Sichel & Radoszkowski, 1869 (female). 2a. Dorsal view of head and mesosoma. 2b. Dorsal view of metasoma. 2c. Existing labels. (Scales differ.)

opennotspecifiedSep 2008View details →
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FIGURE 2 in The Neotropical genus Eudexia Brauer & Bergenstamm, 1889 (Tachinidae: Dexiinae: Dexiini): lectotype fixation for the type species, synonymy and a new species from Brazil

FIGURE 2. Eudexia colombiana (Townsend, 1929), holotype male (DEI). A. Head, frontal view. B. Dorsal habitus. C. Labels. D. Lateral habitus.

opennotspecifiedJul 2021View details →
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FIGURE 1 in The Neotropical genus Eudexia Brauer & Bergenstamm, 1889 (Tachinidae: Dexiinae: Dexiini): lectotype fixation for the type species, synonymy and a new species from Brazil

FIGURE 1. Eudexia formidabilis (Bigot, 1889), lectotype male (NHMUK). A. Dorsal habitus. B. Labels. C. Lateral habitus. D. Head, frontal view.

opennotspecifiedJul 2021View details →
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FIGURE 4 in The Neotropical genus Eudexia Brauer & Bergenstamm, 1889 (Tachinidae: Dexiinae: Dexiini): lectotype fixation for the type species, synonymy and a new species from Brazil

FIGURE 4. Eudexia orientalis (Townsend, 1927), holotype male (USNM). A. Dorsal habitus. B. Head, frontal view. C. Lateral habitus. D. Labels.

opennotspecifiedJul 2021View details →
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FIGURE 3 in The Neotropical genus Eudexia Brauer & Bergenstamm, 1889 (Tachinidae: Dexiinae: Dexiini): lectotype fixation for the type species, synonymy and a new species from Brazil

FIGURE 3. Eudexia grandis (Townsend, 1935), holotype male (USNM). A. Dorsal habitus. B. Head, frontal view. C. Lateral habitus. D. Labels.

opennotspecifiedJul 2021View details →
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FIGURE 5 in The Neotropical genus Eudexia Brauer & Bergenstamm, 1889 (Tachinidae: Dexiinae: Dexiini): lectotype fixation for the type species, synonymy and a new species from Brazil

FIGURE 5. Eudexia lopesi sp. nov., holotype male (MNRJ). A. Dorsal habitus. B. Head, frontal view. C. Lateral habitus. D–F. Terminalia. D. Hypandrium, phallapodeme, basiphallus, epiphallus, distiphallus, pregonite and postgonite, lateral view. E. Sternite 5, tergite 6 and syntergosternite 7+8, posterior view. F. Epandrium, cercus and surstylus, lateral view. G. Epandrium, cerci and surstyli, posterior view. Abbreviations: basph = basiphallus; cerc = cercus; distph = distiphallus; epand = epandrium; epiph = epiphallus; hypd = hypandrium; pgt = postgonite; phapod = phallapodeme; pregt = pregonite; st = sternite; sur = surstylus; syntgst = syntergosternite; tg = tergite.

opennotspecifiedJul 2021View details →
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FIGURE 3 in A new species of Monanthotaxis from Gabon with a unique inflorescence type for Annonaceae

FIGURE 3. Schematic drawing of a part of the inflorescence of Monanthotaxis paniculata, p peduncle, r rachis, b bract, a axillary flower, t terminal flower, pi pedicel, ac flower or branch developed from accessory bud.

opennotspecifiedNov 2014View details →
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FIGURE 1. Monanthotaxis paniculata. A. Flowering branch. B. Flower bud. C. Flower bud with 3 petals removed. D. Petal from outside. E. Petal from inside. F. Stamen from inside. G. Stamen lateral view. H. Stamen from outside. I. Stamen from top. J. Staminode. K. Ovary. L. Leaf uppserside. A–K from McPherson 16123 in A new species of Monanthotaxis from Gabon with a unique inflorescence type for Annonaceae

FIGURE 1. Monanthotaxis paniculata. A. Flowering branch. B. Flower bud. C. Flower bud with 3 petals removed. D. Petal from outside. E. Petal from inside. F. Stamen from inside. G. Stamen lateral view. H. Stamen from outside. I. Stamen from top. J. Staminode. K. Ovary. L. Leaf uppserside. A–K from McPherson 16123; L from Reitsma 2870. Illustrator: Esmée Winkel.

opennotspecifiedNov 2014View details →
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Supplementary Table S1 for manuscript Two new species of Russula subsection Amoeninae described from dry dipterocarp forest in Thailand suggest niche speciali-zation to this habitat type

<p>Specimens and GenBank accession number of DNA sequences used in the phylogenetic analyses. The newly generated sequences in this study are presented in boldface. The A is indicated for angiocarpic specimens.</p>

opencc-by-4.0Aug 2021View details →
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Figure 1 in The type species of the bee genus Epicharis Klug, 1807 (Hymenoptera: Apidae)

Figure 1. Article on Epicharis by Desmarest (1845: 356), published in volume 5 of d'Orbigny's Dictionnaire Universel d'Histoire Naturelle [date of publication taken from Evenhuis (1990)]. This image was cropped from a digitalized version available at the Biodiversity Heritage Library.

opennotspecifiedApr 2014View details →
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Figure 23. Halosydna virgini Kinberg, 1856. Holotype SMNH-Type 410 in Revision of Halosydna Kinberg, 1856 (Annelida: Polychaeta: Polynoidae) from the Tropical Eastern Pacific and Grand Caribbean with descriptions of new species

Figure 23. Halosydna virgini Kinberg, 1856. Holotype SMNH-Type 410. (A) First elytron; (B) same, fringe; (C) microtubercles; (D) parapodium, posterior view; (E) bidentate neurochaetae; (F) notochaetae.

opennotspecifiedMar 2013View details →
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Figure 2 in Patterns of species participation across multiple mixed-species flock types in a tropical forest in northeastern India

Figure 2. Body mass distribution of participant species of three mixed-species flock types. "Large-bodied" flocks are composed of species that are significantly larger than species comprising "Understorey" flocks. Both these flocks are understorey–midstorey foraging flocks.

opennotspecifiedNov 2012View details →
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Figure 3 in Patterns of species participation across multiple mixed-species flock types in a tropical forest in northeastern India

Figure 3. Foraging method groups in (A) core and (B) regular attendant species. Core species in both understorey and canopy mixed-species flocks showed a relatively heterogeneous representation of different foraging method groups compared with attendant species.

opennotspecifiedNov 2012View details →
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Figure 1 in Patterns of species participation across multiple mixed-species flock types in a tropical forest in northeastern India

Figure 1. Cluster dendrogram of mixed-species bird flocks showing three distinct flock types, namely understorey flocks, canopy flocks and flocks composed of large-bodied bird species. Each "tip" represents a mixed-species flock.

opennotspecifiedNov 2012View details →

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Allen Brain Atlas

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Last verified 2026-04-30Open record

Annotated Behaviour and Observability Dataset (ABODe)

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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.

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electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
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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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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
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Last verified 2026-04-29Open record