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FIGURE 4 in Myrmeleon almohadarum sp. nov., from Spain and North Africa, with description of the larva (Neuroptera Myrmeleontidae)

FIGURE 4. Wings of M. inconspicuus species-group. A: Myrmeleon almohadarum sp. nov., male wings [Tunisia, Gammarth]. B: Myrmeleon inconspicuus Rambur, forewing [Italy, Po Valley]. C: Myrmeleon mariaemathildae Pantaleoni, Cesaroni & Nicoli Aldini, forewing [Italy, Sardinia].

opencc-zeroDec 2016View details →
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FIGURE 7 in Myrmeleon almohadarum sp. nov., from Spain and North Africa, with description of the larva (Neuroptera Myrmeleontidae)

FIGURE 7. Myrmeleon almohadarum sp. nov.: third instar larva, dorsal (above), ventral (middle) and lateral (below) view [Tunisia, Gammarth].

opencc-zeroDec 2016View details →
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FIGURE 6 in Myrmeleon almohadarum sp. nov., from Spain and North Africa, with description of the larva (Neuroptera Myrmeleontidae)

FIGURE 6. Myrmeleon almohadarum sp. nov.: male genitalia, complex of gonocoxites 9 + gonocoxites 11 sensu Aspöck and Aspöck, 2008 (= gonarcus-paramere complex), lateral (left) and ventral (right) view [Tunisia, Gammarth].

opencc-zeroDec 2016View details →
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FIGURE 5 in Myrmeleon almohadarum sp. nov., from Spain and North Africa, with description of the larva (Neuroptera Myrmeleontidae)

FIGURE 5. Myrmeleon almohadarum sp. nov.: male terminalia, A, lateral view, B, ventral view; female terminalia, C, lateral view, D, ventral view [Tunisia, Gammarth].

opencc-zeroDec 2016View details →
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Figs 83-90 in Fragilaria rinoi sp. nov. (Fragilariales, Fragilariophyceae) from periphytic river samples in Central Portugal

Figs 83-90. SEM micrographs of the type material of Fragilaria vaucheriae (Kütz.) J.B.Petersen. 83. Complete valve in external view. 84. Complete frustule in external view. 85–86. Frustule in girdle view. 87, 90. Detail of the apex in girdle view, with the girdle bands and fimbriae clearly visible (indicated by  the arrows). 88–89. Detail of the apex in external view (arrow indicates the rimoportula). Scale bars = 2 µm.

opencc-by-4.0Dec 2016View details →
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Fig. 1 in Fragilaria rinoi sp. nov. (Fragilariales, Fragilariophyceae) from periphytic river samples in Central Portugal

Fig. 1. Geographic locations of the sampling sites where Fragilaria rinoi Almeida & C.Delgado sp. nov. was found. The type locality is represented by a black circle in the Vouga river basin followed south by river Mondego and Lis basins.

opencc-by-4.0Dec 2016View details →
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Figs 78-82 in Fragilaria rinoi sp. nov. (Fragilariales, Fragilariophyceae) from periphytic river samples in Central Portugal

Figs 78-82. Scanning electron microscope images of Fragilaria rinoi Almeida & C.Delgado sp. nov. from Mogofores (river Cértima, Vouga river basin), 21 Mar. 2012 (Holotype BM 101 794). 78. Complete valve in external view. 79–80. Complete valves in internal view. 81. Detail of an apex in external view, with the  apical pore field  and rimoportula.  82. Detail of an apex in internal view, with the rimoportula clearly visible. Scale bars: 78–80, 82 = 2 µm; 81 = 1 µm.

opencc-by-4.0Dec 2016View details →
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Fig. 91 in Fragilaria rinoi sp. nov. (Fragilariales, Fragilariophyceae) from periphytic river samples in Central Portugal

Fig. 91. Comparison of the type population of Fragilaria rinoi Almeida & C.Delgado sp. nov. with the  type  material  of  related  taxa.  Data  fitted  to  95%  confidence  ellipses.  NMDS  plot  of  Booksteintransformed valve outline pseudolandmark coordinates. Black: F. rinoi sp. nov. Red: F. candidagilae Almeida, C.Delgado, Novais & S.Blanco. Blue: F. capucina Desm. Pink: F. intermedia Grunow in Van Heurck. Olive green: F. microvaucheriae C.E.Wetzel & Ector. Purple: F. neointermedia Tuji & D.M.Williams. Green: F. perminuta (Grunow) Lange-Bert. Dark blue: F. recapitellata Lange-Bert. & Metzeltin. Sky blue: F. vaucheriae (Kütz.) J.B.Petersen.

opencc-by-4.0Dec 2016View details →
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Figs 3–77 in Fragilaria rinoi sp. nov. (Fragilariales, Fragilariophyceae) from periphytic river samples in Central Portugal

Figs 3–77. Light microscope images of Fragilaria rinoi Almeida & C.Delgado sp. nov. 3–62. Mogofores (Cértima river, Vouga river basin, 21 Mar. 2012) type material (BM 101 794; Fig. 9 is from the holotype). 63–72. Estarreja (Antuã river, Vouga river basin, 22 Mar. 2012). 73–77. Foz do Ceira (river Ceira, Mondego river basin, 20 Mar. 2012). Scale bar = 10 µm.

opencc-by-4.0Dec 2016View details →
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Fig. 92 in Fragilaria rinoi sp. nov. (Fragilariales, Fragilariophyceae) from periphytic river samples in Central Portugal

Fig. 92. Boxplot of measurements of different Fragilaria species. Variation in valve length (a), width (b) and striae in 10 μm (c) measured in the type populations. The boxes represent the 25–75% quartiles, the  median is shown with a horizontal line inside the box, and minimum and maximum values are shown with short horizontal lines (whiskers). Outliers are plotted as individual points.

opencc-by-4.0Dec 2016View details →
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Fig. 2 in Fragilaria rinoi sp. nov. (Fragilariales, Fragilariophyceae) from periphytic river samples in Central Portugal

Fig. 2. Type material of Fragilaria vaucheriae deposited in the Natural History Museum of London (BM 78023, BM 78024).

opencc-by-4.0Dec 2016View details →
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Fig. 4. — A–B in Glaciambulata neumayeri gen. et sp. nov., a new Antarctic trachymedusa (Cnidaria: Hydrozoa), with a revision of the family Ptychogastriidae

Fig. 4. — A–B. Ptychogastria asteroides (Haeckel, 1879). A. Lateral view of a medusa. B. Portion of umbrella margin showing the arrangement of tentacles. — C–E. Ptychogastria polaris Allman, 1878. C. Medusa in lateral view. D. Oral view of half of the medusa, showing the arrangement of the marginal tentacles. E. Portion of the bell margin, greatly enlarged. — F–G. Tesserogastria musculosa Beyer, 1959. Medusa in lateral (F) and oral (G) aspects. [A, B redrawn after Gili et al. (1999); C, E redrawn after Panteleeva et al. (1999); D redrawn after Haeckel (1881b); F, G redrawn after Hesthagen (1971)]. Scale bars: A, B = 500 µm; C = 3 mm; E = 2 mm.

opencc-by-4.0Dec 2016View details →
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Fig. 5 in Glaciambulata neumayeri gen. et sp. nov., a new Antarctic trachymedusa (Cnidaria: Hydrozoa), with a revision of the family Ptychogastriidae

Fig. 5. — Pectis antarctica Haeckel, 1879. A–B. Medusa in lateral (A) and oral (B) views. C. Longitudinal section through the manubrium. D. Lateral view of the manubrium showing the outer, gastric pouches. E. Lateral view of Voragonema laciniata Bouillon et al., 2001. F–G. Manubrium of V. laciniata in oral (F) and lateral (G) views. [A–D redrawn after Haeckel (1881b); E–G redrawn after Bouillon et al. (2001)]. Scale bars: A, B, E = 1 cm; F, G = 5 mm.

opencc-by-4.0Dec 2016View details →
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Fig. 2 in Glaciambulata neumayeri gen. et sp. nov., a new Antarctic trachymedusa (Cnidaria: Hydrozoa), with a revision of the family Ptychogastriidae

Fig. 2. Glaciambulata neumayeri Galea, Roder, Walcher, Warmuth, Kohlberg & Fischer, gen. et sp. nov. A. Arrangement pattern of the large, Fliform tentacles around the bell margin. B. Aboral view of a medusa showing some radial and the ring canal. C. Distal part of an adhesive tentacle. D. Portion of a Fliform tentacle, showing the arrangement of the nematocysts. E–F. The mouth in frontal (E) and lateral (F) aspects. G–H. Arrangement and structure of the gonads. I–J. Position of the statocysts (arrowheads). K. Close-ups of three statocysts. L. Cnidome. Scale bars: G = 2 mm; A, B, H, I = 1 mm; E, F = 500 µm; C, J = 200 µm; K = 30 µm; L = 10 µm.

opencc-by-4.0Dec 2016View details →
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Fig. 1 in Glaciambulata neumayeri gen. et sp. nov., a new Antarctic trachymedusa (Cnidaria: Hydrozoa), with a revision of the family Ptychogastriidae

Fig. 1. Glaciambulata neumayeri Galea, Roder, Walcher, Warmuth, Kohlberg & Fischer, gen. et sp. nov. A–C. Living medusae. D–G. Preserved medusae in aboral (D, E) and oral (F, G) views. Scale bars: A, C = 5 mm; B, D–G = 2 mm.

opencc-by-4.0Dec 2016View details →
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Fig 3 in Begonia elachista Moonlight & Tebbitt sp. nov., an enigmatic new species and a new section of Begonia (Begoniaceae) from Peru

Fig 3. Begonia elachista Moonlight & Tebbitt sp. nov. A. Whole plant. B. Male and female Fower, front view. C. Female Fower, side view. D. Habit and associated vegetation. E– F. Habitat and wild population. Scale bars: A = 1 cm; B = 5 mm; C = 2 mm; D = 2 cm; E–F = 10 cm. Photographed by Peter Moonlight. All from P. Moonlight & A. Daza 318 (E).

opencc-by-3.0Dec 2017View details →
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Fig 1. 50 in Begonia elachista Moonlight & Tebbitt sp. nov., an enigmatic new species and a new section of Begonia (Begoniaceae) from Peru

Fig 1. 50% majority rule consensus tree of MrBayes analysis of Neotropical Clade 2 (NC2) of Begonia. Dotted lines indicate posterior clade probabilities <0.85. P, perenniation of species in NC2: blue, tuberous; green, rhizomatous; yellow, upright stems. G, geographic range of species in NC2: red, western South American; pink, eastern South America; light blue, Central America and Mexico.

opencc-by-3.0Dec 2017View details →
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Fig 2 in Begonia elachista Moonlight & Tebbitt sp. nov., an enigmatic new species and a new section of Begonia (Begoniaceae) from Peru

Fig 2. Begonia elachista Moonlight & Tebbitt sp. nov. A. Habit. B. Male Fower, front view. C. Branch of infructescence. D. Female Fower, side view. E. Stamens, front and side view. F. Style, front and back view. Scale bars: A–D = 1 cm; E–F = 1 mm. Drawn by Claire Banks. From P. Moonlight & A. Daza 318 (E).

opencc-by-3.0Dec 2017View details →
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Video S1–3, Model S1, 2 & Figure S1: Oxfordiana motturii gen. et sp. nov. supplemental information

<p><strong>Video S1.</strong> Animation of the isosurface-based false-coloured three-dimensional model for specimen BU 5265.1. Full 360-degree rotation on the x-axis followed by the y-axis. Scale bar = 0.5 cm [MOV format 13MB, AVI format 44MB; 1920x1080 px; 1:04 min]</p> <p><strong>Video S2.</strong> Animation of the isosurface-based false-coloured three-dimensional model for specimen BU 5265.2. Full 360-degree rotation on the x-axis followed by the y-axis. Scale bar = 0.5 cm. [MOV format 20MB, AVI format 44MB; 1920x1080 px; 1:04 min]</p> <p><strong>Video S3.</strong> Tomographic data set showing raw X-ray contrast data as produced by the I12 JEEP beamline at the Diamond Light Source for specimen BU 5265.1. Scale bar = 0.25 mm. [MOV format 42MB, AVI format 53MB; 1004x1002 px; 1:15 min]</p> <p><strong>Model S1.</strong> Zenodo hosted three-dimensional model file of BU 5265.1 isosurface-based false-coloured reconstruction. This model is saved as a ZIP compressed VAXML datasets. VAXML uses one or more STL files to define the geometry of objects that comprise the dataset, together with one VAXML file that provides metadata on the dataset as a whole, and specifies how the STL/PLY files are to be put together. Additionally, a native SPV file has been included for direct viewing in SPIERSview. We therefore recommend the free SPIERS software to view this model format (http://spiers-software.org/). Additional information on the VAXML format can be found here: http://spiers-software.org/VAXML.htm. [ZIP/VAXML format 198.4 MB; SPV format 4MB]</p> <p><strong>Model S2.</strong> Zenodo hosted three-dimensional model file of BU 5265.2 isosurface-based false-coloured reconstruction. This model is saved as a ZIP compressed VAXML datasets. VAXML uses one or more STL files to define the geometry of objects that comprise the dataset, together with one VAXML file that provides metadata on the dataset as a whole, and specifies how the STL/PLY files are to be put together. Additionally, a native SPV file has been included for direct viewing in SPIERSview. We therefore recommend the free SPIERS software to view this model format (http://spiers-software.org/). Additional information on the VAXML format can be found here: http://spiers-software.org/VAXML.htm. [ZIP/VAXML format 173.6 MB; SPV format 3MB]</p> <p><strong>Figure S1. </strong>High resolution volume rendered images from Drishti showing the anatomy of BU 5265 and BU 5266. A) 16 longitudinal virtual thin-sections through BU 5265.1 at 500 µm spacing; B) 40 transverse virtual thin-sections through BU 5265.1 at 500 µm spacing; C) 28 transverse virtual thin-sections through BU 5265.2 at 500 µm spacing; D) 38 transverse virtual thin-sections through BU 5265.3 at 500 µm spacing; E) Reconstruction of BU 5265.1 showing longitudinal view of whole specimen fragment; F) Reconstruction of thick section slide BU 52665.30<strong>, </strong>a: oblique view of slide looking from the outer surface toward the inside of the ovule near the apex, b: oblique view of the slide looking out from the inside of the ovule, c: top-down view of the slide looking towards the ovule base, d: 3D section virtually cut from the slide showing the orientation of integumentary layers. G) Reconstruction of thick section slide BU 52665.1, a: view of slide looking from the inner surface toward the outside of the ovule, b: view of the slide looking towards the inside of the ovule, c: longitudinal section through the virtual slide. H) Reconstruction of thick section slide BU 52665.38, a: outer anatomy seen looking to the ovule centre from the base, b: inner anatomy seen looking from the ovule centre towards the base, c: longitudinal section through the virtual slide. I) Reconstruction of thick section slide BU 52665.3, a: view of slide looking towards the ovule centre, b: view of slide looking from ovule centre towards the external surface, c: longitudinal section through the virtual slide. J) Reconstruction of thick section slide BU 52665.37, a: view of slide looking away from the ovule centre, b: view of slide looking towards the ovule centre, c: longitudinal section through the virtual slide. Notes: A–D) These images show the two phases of mineralization which have preserved the ovule anatomy, blue = carbonate (calcite), yellow = pyrite, each having differing x-ray attenuation characteristics; E–J) These images highlight just the pyrite within the ovule, in particular that which infills the cells. Scale bars sizes are indicated on the figure. [PNG format 76MB]</p>

opencc-by-4.0Mar 2017View details →
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Fig.ç4.C aligus longiramus sp. nov., holotype, female (KMNH IvR 500,511). A, leg 2, dorsal view; B, leg 3, dorsal view; C, leg 4, dorsal view; D, leg 5, ventral view. Scale bars: 0.1 mm. in Occurrence of Caligid Copepods (Crustacea) in Plankton Samples Collected from Japan and Ŋailand, with the Description of a New Species

Fig.ç4.C aligus longiramus sp. nov., holotype, female (KMNH IvR 500,511). A, leg 2, dorsal view; B, leg 3, dorsal view; C, leg 4, dorsal view; D, leg 5, ventral view. Scale bars: 0.1 mm.

opencc-by-4.0May 2012View details →

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Allen Brain Atlas

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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.

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