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Figs 12–16 in Morphology of two Mastogloia species (Bacillariophyta) from Lac de Guiers (Senegal) and comparison with the type material of M. braunii

Figs 12–16. Mastogloia braunii Grunow. Scanning electron micrographs (SEM) of valves from the type population (Grunow 23583 – capsule 0645, Vienna, Austria). 12. SEM internal view of an entire valve with the partectal ring and series of partectal pores. 13. SEM internal detail of the partecta with the flange connecting the partecta with the valve margins. 14. SEM internal detail of the partecta showing the partectal walls with 2–4 series of small, rounded pores. 15–16. SEM internal details of the partectal ring near the valve apices showing the cleft with the lacunae. Scale bars: 12 = 1 µm; 13–16 = 10 µm.

opencc-by-3.0Dec 2017View details →
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Figs 60–65 in Morphology of two Mastogloia species (Bacillariophyta) from Lac de Guiers (Senegal) and comparison with the type material of M. braunii

Figs 60–65. Mastogloia senegalensis Van de Vijver, Fofana, Sow & Ector sp. nov. Scanning electron micrographs (SEM) of valves from the Lac de Guiers type population (Van de Vijver sample SEN-42). 60. SEM internal view of an entire valve with the partectal ring. 61–62. SEM internal details of the partectal ring near the valve apices showing the cleft on each apex. 63. SEM internal detail of the central area and part of the partectal ring. 64. SEM internal detail of the partecta showing the partectal walls with 2–4 series of small, rounded pores loosely aggregated in distinct plaques. 65. SEM internal view of a valve apex without the partectal ring (note the small pseudoseptum). Scale bars: 60–63, 65 = 10 µm; 64 = 1 µm.

opencc-by-3.0Dec 2017View details →
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Figs 33–38. Mastogloia belaensis M in Morphology of two Mastogloia species (Bacillariophyta) from Lac de Guiers (Senegal) and comparison with the type material of M. braunii

Figs 33–38. Mastogloia belaensis M.Voigt. Scanning electron micrographs (SEM) of valves from the Lac de Guiers population (Van de Vijver sample SEN-42). 33. SEM girdle view of an entire frustule showing the partectal pores and the mantle areolae. 34. SEM external view of an entire valve with typical undulating raphe branches. 35. SEM external detail of the central area. 36. SEM external detail of the valve apex. 37. SEM external detail of the apices and girdle bands of an entire frustule. 38. SEM external detail of the valve mantle with the transapically elongated mantle areolae and the row of rounded pseudoloculi on the valve face/mantle junction. Scale bars: 10 µm.

opencc-by-3.0Dec 2017View details →
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Fig. 1. — A–M. Orphnus giganteus Paulian, 1948. A–B. Habitus. C–D in Revision of the subgenus Orphnus (Phornus) (Coleoptera, Scarabaeidae, Orphninae)

Fig. 1. — A–M. Orphnus giganteus Paulian, 1948. A–B. Habitus. C–D. Head in dorsal and apical view. E–G. Antennae. H. Aedeagus in lateral view. I. Parameres in dorsal view. J. Abdomen in dorsal view. K–L. Stridulatory field. M. Habitus. — N. O. renaudi sp. nov., holotype, habitus. — O. O. ferrierei sp. nov., holotype, habitus. — P. O. valeriae sp. nov., holotype, habitus. — Q. O. parastrangulatus sp. nov., holotype, habitus. — R. O. strangulatus Paulian, 1948, habitus. M–R = not to scale.

opencc-by-3.0Nov 2016View details →
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FIG. 5. — Dendrobium veillonii M in Une espèce nouvelle du genre Dendrobium Sw. (Orchidaceae) de Nouvelle-Calédonie et une clé pour la section Kinetochilus Schltr.

FIG. 5. — Dendrobium veillonii M. Pignal, sp. nov.: A, B, fleur; A, face, 29.VII.2018; B, profil, 25.VIII.2018; C, gaine fendue laissant passer l'inflorescence, tige, 25.VIII.2018; D, fruit; E, plantule adventive (keiki), 25.VIII.2018; F, tige et feuilles faces adaxiales, 25.VIII.2018; G, inflorescence, 21.VIII.2018; H, tige et feuilles faces abaxiales, 25.VIII.2018; I, feuille face abaxiale, 10.XI.2018; J, fruit détail, 25.VIII.2018. Toutes les photos sont issues d'une culture à Nouméa, provenant de la concession Cornwall à Tiébaghi. Échelles: A, B, longueur du pétale: 5 mm; C, E, F, largeur de la tige: 5 mm; G, H, I, longueur de la feuille: 22 mm; D, J, longueur du fruit: 13 mm.

opencc-by-4.0Jun 2020View details →
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Wind observations in a 22 m tower at El Palmar state reserve, Yucatan, Mexico

<p>This database contains wind&nbsp;measurements, at the ecohydrological monitoring site of &ldquo;El Palmar&rdquo; state reserve (21.0293 &deg; N, 90.0637 &deg; W; 1.86 mamsl), Yucatan, Mexico. The acquisition of these data was performed from December 7th 2016 to August 21st 2019, in a 22&nbsp;m Eddy-Covariance tower, using a 3D sonic anemometer&nbsp;(WindMaster Pro, Gill Instruments, UK) connected to a LI-7550 Interface Unit. Data was processed&nbsp;using the EddyPro 6.2.2 software, and&nbsp;are presented in averages&nbsp; of every half hour.&nbsp;A quality control was performed on the data.</p> <p>For more information visit:&nbsp;http://ocse.mx/en/experimento/torre-de-flujos-palmar</p>

opencc-by-nc-4.0Jun 2020View details →
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Abb. 2-5 in Eine seltsame Schalenbildung bei Eobania vermiculata (O. F. M , 1774) (Helicidae)

Abb. 2-5: Eobania vermiculata (O. F. MÜLLER, 1774) mit pergamentartiger Neubildung im Mündungsbereich der Schale. Fotos: F. Siegle (Wien).

opencc-by-4.0Jul 2018View details →
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Dataset for the paper "Ripa M, Di Felice LJ, Giampietro M (2021). The energy metabolism of post-industrial economies. A framework to account for externalization across scales. Energy, 214." https://doi.org/10.1016/j.energy.2020.118943

<p>This repository contains the data&nbsp;needed to reproduce the results&nbsp;in:&nbsp;</p> <p>Ripa M, Di Felice LJ, Giampietro M (2021). The energy metabolism of post-industrial economies. A framework to account for externalization across scales. Energy, 214.&quot; https://doi.org/10.1016/j.energy.2020.118943</p> <p>The dataset was also used for a case study in &quot;Di Felice L., Dunlop T., Giampietro M., Kovacic Z., Renner A., Ripa M., Velasco-Fern&aacute;ndez R. &ndash; Report on the Quality Check of the Robustness of the Narrative behind Energy Directives. MAGIC (H2020&ndash;GA 689669) Project Deliverable 5.4,&nbsp;30 November 2018&quot;. (link:&nbsp;https://magic-nexus.eu/documents/d54-report-narratives-behind-energy-directives).</p> <p>Sources of&nbsp;data are specified in the dataset (under tab &quot;References&quot;)</p>

opencc-by-4.0Sep 2020View details →
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Fig. 2 in A new species of Chaetopterus (Annelida: Chaetopteridae) from eastern Canada, with a redescription of Chaetopterus norvegicus M. Sars, 1835

Fig. 2. Chaetopterus bruneli sp. nov. A. Latero-dorsal view of holotype CMNA 2015-0016. B. The same in ventral view. C. A4 notopodium of paratype CMNA 2015-0010; white arrow: simple terminal notochaetae, grey arrow: lanceolate simple chaetae, black arrow: stout specialised cutting chaetae. D. In situ tube of Chaetopterus bruneli sp. nov. in the St. Lawrence Estuary at a depth of 350 m, specimen not collected. E–J. Uncini sampled from paratype specimen CMNA 2015-0018. E. Uncinus of B1 anterior neuropodial lobe. F. Uncinus of B1 posterior lobe. G. Uncinus of B3 piston torus. H. Uncinus of B3 ventral lobe. I. Uncinus of C1 lateral lobe. J. Uncinus of C1 ventral lobe. Scale bars: A–B = 5 mm; C = 200 µm; D = 1 cm approx.; E–J = 20 µm.

opencc-by-4.0Oct 2020View details →
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Figs 14–17. Maechidiini Burmeister, 1855 features. 14. Maechidius corrosus Waterhouse, 1875, antennal pockets. 15. M. major Blackburn, 1888, same. 16. M. spurius Macleay, 1819 in A revision of the Maechidiini Burmeister, 1855 (Coleoptera: Scarabaeidae: Melolonthinae) from the Indo-Australian transition zone, and the first record of the tribe west of Wallace's Line

Figs 14–17. Maechidiini Burmeister, 1855 features. 14. Maechidius corrosus Waterhouse, 1875, antennal pockets. 15. M. major Blackburn, 1888, same. 16. M. spurius Macleay, 1819, holotype, prosternum and pronotal hypomera, ventral view (BMNH). 17. Same, mesoventrite. Not to scale.

opencc-by-4.0Oct 2020View details →
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Dataset - A lung-on-chip model reveals an essential role for alveolar epithelial cells in controlling bacterial growth during early M. tuberculosis infection

<p>Description of the sub-folders<br> Name, type of data, corresponding Figure in the manuscript<br> 3D view of the LoC model - .tiff image stack, Figure 1.</p> <p>Bacterial Growth Rate Data&nbsp; - .tiff image stacks, .csv files and MATLAB code to extract the fluorescence intensity over time, Figure 2, Figure 2 - figure supplement 2, Figure 2 - figure supplement 4, Figure 3, Figure 3 - figure supplement 2, Figure 4.</p> <p>AT Characterization - .tiff image stacks and MATLAB code to extract the number and volume of lamellar bodies from the stack of confocal images, Figure 1, Figure 1 - figure supplement 1, Figue 1 - figure supplement 2.</p> <p>AT Infection in LoC model - .tiff image stacks, Figure 2 - figure supplement 1.</p> <p>AT Infection in vivo - .tiff image stacks, Figure 1 - figure supplement 3.</p> <p>Simulations of in vivo infections - .dat files of growth rates in macrophages for the WT and ESX-1 deficient populations and MATLAB code to simulate an infection from this data, Figure 4.</p> <p>&nbsp;</p>

opencc-by-4.0Nov 2020View details →
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FUI Water Color product of inland waters in China at 30-m in 2015

<p>The first 30-meters FUI water color product of China. The product was developed using time-series Landsat 8 imagery and FUI water color retrieval method. Taking into account the huge amount of computational and storage space required for the national-scale water color mapping, the high-performance Google Earth Engine (GEE) cloud-based platform was introduced to support the computation. First, a cloud-free composite in China for the summer of 2015 was generated using time-series Landsat-8 imagery and the Best-Available-Pixel (BAP) compositing algorithm. Then, the first 30-merters FUI water color product of China was developed using the generated BAP composite and the Google Earth Engine computing platform. The first 30-meters FUI water color product can promote the understanding of the water color of water bodies in China, and provide very important information for preserving and restoring inland water quality.</p>

opencc-by-4.0Nov 2020View details →
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Figure 2 in Morphological and molecular separation between Macrocamptoptera grangeri Soyka and M. metotarsa (Girault) (Hymenoptera: Mymaridae)

Figure 2. Macrocamptoptera grangeri, female (Mt. Kudigora, Lagodekhi Nature Reserve, Georgia): (a) habitus (in ethanol); (b) antenna; (c) body; (d) fore wing.

opencc-by-4.0Sep 2020View details →
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Figure 1 in Morphological and molecular separation between Macrocamptoptera grangeri Soyka and M. metotarsa (Girault) (Hymenoptera: Mymaridae)

Figure 1. Macrocamptoptera grangeri, female: (a) habitus (holotype of Herulia sundholmi); (b) labels (same as (a)); (c) antenna (Banská Štiavnica, Banská Bystrica Region, Slovakia).

opencc-by-4.0Sep 2020View details →
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Figure 4 in Morphological and molecular separation between Macrocamptoptera grangeri Soyka and M. metotarsa (Girault) (Hymenoptera: Mymaridae)

Figure 4. Macrocamptoptera metotarsa, female: (a) habitus, in ethanol (Columbus, Franklin Co., Ohio, USA); (b) antenna (Camp Maxey Texas Army National Guard training facility area, Lamar Co., Texas, USA); (c) fore and hind wings (same as (b)).

opencc-by-4.0Sep 2020View details →
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dataset for paper Vanhaebost J, Faouzi M, Mangin P, Michaud K: New reference tables and user-friendly Internet application for predicted heart weights. Int J Legal Med 2014, 128(4):615-620.

<p>The heart weight is the most important parameter in the determination of cardiac hypertrophy. The obtained heart weight value should be compared against tables of normal weights by age, gender and body weight and height</p> <p>In the study by Vanhaebost<em> et al</em>. &nbsp;has been shown in the Swiss population that the heart weight increases along with the increase of the body weight, body height, BMI and body surface area (BSA). The mean heart weight is greater in men than in women at a similar body weight. The reference tables for predicted heart weights obtained from this study are presented as an user-friendly internet application (<a href="http://calc.chuv.ch/Heartweight">http://calc.chuv.ch/Heartweight</a>)&nbsp; enabling the comparison of heart weights observed at autopsy with the reference values.</p>

opencc-by-4.0Nov 2020View details →
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MFS-M-00001 Air temperature at +2 m, raised bog-ridge, Thermochron (DS1921G-F5)

<p>Air temperature at 2m measured in a raised bog ecosystem (ridge) by Thermochron logger, 2009-present (with several breaks) as part of meteorological monitoring in Mukhrino Field Station (https://mukhrinostation.com/).</p>

opencc-by-4.0Dec 2020View details →
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MFS-M-00002 Air temperature at 2m measured in a raised bog-ridge, DS18B20 (APIK)

<p>Air temperature at 2m measured in a raised bog ecosystem by DS18B20 (temperature logger), 2018-2019, 30 min frequency, N60.89494 E68.66999, as part of meteorological monitoring in Mukhrino Field Station (https://mukhrinostation.com/).</p>

opencc-by-4.0Dec 2020View details →
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Dataset from Pardini, E. A., Parsons, L. S., Ştefan, V., & Knight, T. M. (2018). GLMM BACI environmental impact analysis shows coastal dune restoration reduces seed predation on an endangered plant. Restoration Ecology, 26(6), 1190-1194.

<p>Data and its metadata used in the analysis from the publication:&nbsp;Pardini, E. A., Parsons, L. S., Ştefan, V., &amp; Knight, T. M. (2018). GLMM BACI environmental impact analysis shows coastal dune restoration reduces seed predation on an endangered plant. Restoration Ecology, 26(6), 1190-1194.&nbsp;<a href="https://onlinelibrary.wiley.com/doi/full/10.1111/rec.12678">https://onlinelibrary.wiley.com/doi/full/10.1111/rec.12678</a>&nbsp;</p>

opencc-by-4.0Dec 2020View details →
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aquila (Whalen & Carter in Carter, Whalen & Guex, 1998), Orbuk-32; R, Pseudoeucyrtis busuangaensis (Yeh & Cheng, 1998), Orbuk-32; S, Farcus graylockensis Pessagno, Whalen & Yeh, 1986, Orbuk-32; T-U, Farcus sp. A, Orbuk-26; V, Farcus sp. B, Orbuk-27; W-X, Anaticapitula anatiformis (De Wever, 1982); W, Orbuk-32; X, Orbuk-38; Y, Saitoum sp. aff. S. triumphense Whalen & Carter in Carter, Whalen & Guex, 1998, Orbuk-32. Scale bar: A-C, K-L, T-U, W-Y, 100 µm; D-J, M-O, 120 µm; P-S, V, 150 µm. in Late Triassic to Early Jurassic radiolarian, conodont and ammonite assemblages from the Tavuscayiri block, Mersin Mélange, southern Turkey: Time constraints for the T/J boundary and sedimentary evolution of the southern margin of the northern Neotethys

aquila (Whalen &amp; Carter in Carter, Whalen &amp; Guex, 1998), Orbuk-32; R, Pseudoeucyrtis busuangaensis (Yeh &amp; Cheng, 1998), Orbuk-32; S, Farcus graylockensis Pessagno, Whalen &amp; Yeh, 1986, Orbuk-32; T-U, Farcus sp. A, Orbuk-26; V, Farcus sp. B, Orbuk-27; W-X, Anaticapitula anatiformis (De Wever, 1982); W, Orbuk-32; X, Orbuk-38; Y, Saitoum sp. aff. S. triumphense Whalen &amp; Carter in Carter, Whalen &amp; Guex, 1998, Orbuk-32. Scale bar: A-C, K-L, T-U, W-Y, 100 µm; D-J, M-O, 120 µm; P-S, V, 150 µm.

opencc-zeroNov 2020View 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