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Figure 13a. from: The Pteridaceae family diversity in Togo - Biodiversity Data Journal 3: e5078 (15 July 2015) https://doi.org/10.3897/BDJ.3.e5078
Figure 13a. - Pityrogrammacalomelanosvar.calomelanosFigure 13a.Upper face of the frondFigure 13b.Lower face of the frond <br> Upper face of the frond
Figure 12d. from: The Pteridaceae family diversity in Togo - Biodiversity Data Journal 3: e5078 (15 July 2015) https://doi.org/10.3897/BDJ.3.e5078
Figure 12d. - PellaeaduraFigure 12a.General aspect of the fern (upper face)Figure 12b.Lower face of a fertile frondFigure 12c.Insertion of a fertile pinnae of the rachis: overview of the false indusiumFigure 12d.Sori <br> Sori
Figure 15b. from: The Pteridaceae family diversity in Togo - Biodiversity Data Journal 3: e5078 (15 July 2015) https://doi.org/10.3897/BDJ.3.e5078
Figure 15b. - PterisburtoniiFigure 15a.General aspect of the frond (upper face)Figure 15b.Lower face of the lamina, showing sori <br> Lower face of the lamina, showing sori
Figure 12a. from: The Pteridaceae family diversity in Togo - Biodiversity Data Journal 3: e5078 (15 July 2015) https://doi.org/10.3897/BDJ.3.e5078
Figure 12a. - PellaeaduraFigure 12a.General aspect of the fern (upper face)Figure 12b.Lower face of a fertile frondFigure 12c.Insertion of a fertile pinnae of the rachis: overview of the false indusiumFigure 12d.Sori <br> General aspect of the fern (upper face)
Figure 15a. from: The Pteridaceae family diversity in Togo - Biodiversity Data Journal 3: e5078 (15 July 2015) https://doi.org/10.3897/BDJ.3.e5078
Figure 15a. - PterisburtoniiFigure 15a.General aspect of the frond (upper face)Figure 15b.Lower face of the lamina, showing sori <br> General aspect of the frond (upper face)
Figure 11d. from: The Pteridaceae family diversity in Togo - Biodiversity Data Journal 3: e5078 (15 July 2015) https://doi.org/10.3897/BDJ.3.e5078
Figure 11d. - DoryopteriskirkiiFigure 11a.General aspect of the fernFigure 11b.Shape of the laminaFigure 11c.Underside of a fertile frondFigure 11d.Details of sori <br> Details of sori
Figure 3. from: The Pteridaceae family diversity in Togo - Biodiversity Data Journal 3: e5078 (15 July 2015) https://doi.org/10.3897/BDJ.3.e5078
Figure 3. - Distribution of Pteridaceae in Togo. Zones 1 to 5 indicated on the map correspond to the ecological zones of Togo as defined by Ern (1979).
Figure 11a. from: The Pteridaceae family diversity in Togo - Biodiversity Data Journal 3: e5078 (15 July 2015) https://doi.org/10.3897/BDJ.3.e5078
Figure 11a. - DoryopteriskirkiiFigure 11a.General aspect of the fernFigure 11b.Shape of the laminaFigure 11c.Underside of a fertile frondFigure 11d.Details of sori <br> General aspect of the fern
Figure 11b. from: The Pteridaceae family diversity in Togo - Biodiversity Data Journal 3: e5078 (15 July 2015) https://doi.org/10.3897/BDJ.3.e5078
Figure 11b. - DoryopteriskirkiiFigure 11a.General aspect of the fernFigure 11b.Shape of the laminaFigure 11c.Underside of a fertile frondFigure 11d.Details of sori <br> Shape of the lamina
Supplementary material 15: Species dashboard: Tenuiphantes tenuis from: Integrating and visualizing primary data from prospective and legacy taxonomic literature - Biodiversity Data Journal 3: e5063 (12 May 2015) https://doi.org/10.3897/BDJ.3.e5063
Dashboard charts showing only specimens of the linyphiid spider Tenuiphantes tenuis. When viewed using a browser (such as Google Chrome) with an internet connection, this page sends a series of queries to Plazi and integrates the results with the Google Charts API to produce 37 interactive dashboard charts.
Figures 12–15. from The genus Hygrocrates Deeleman-Reinhold, 1988 (Aranei, Dysderidae) in Turkey - ZooKeys 85: 1-16 (11 March 2011) https://doi.org/10.3897/zookeys.85.927
Figures 12–15. - Tarsal and metatarsal scopulae of Hygrocrates deelemanus sp. n. (♂), 12 leg I, 13 leg II, 14 leg III, 15 leg IV. Scale lines: 0.25 mm
Figure 15. from: Studies in Hawaiian Diptera III: New Distributional Records for Canacidae and a New Endemic Species of Procanace - Biodiversity Data Journal 4: e5611 (08 April 2016) https://doi.org/10.3897/BDJ.4.e5611
Figure 15. - Wing of Canaceoides hawaiiensis, showing a single break at the terminus of the subcostal vein. The specimen imaged was from collection 205542.
Fig. 15 in Revision of the genus Ommatoiulus Latzel, 1884 (Julida, Diplopoda) in Portugal, with description of six new species
Fig. 15. Ommatoiulus lusitanus (Verhoeff, 1895). A, C, E. 'Archiulus cingulatus' syntype (NHMW 3162). B, D, F. Schizophyllum (Eleutheroiulus) lusitanum, syntypes, slide preparation (ZMB 130856). A–B. Promerites, posterior view. C–D. Posterior gonopods, posterior view. E–F. Mesomerites, posterior view.
Macrophage phagocytosis assay of Acinetobacter baumannii AB074, passaged 15 days in antibiotics or transferrin.
<p>Macrophage phagocytosis assay of Acinetobacter baumannii AB074, passaged 15 days in antibiotics or transferrin. Experiment #1, replica #1-2, from March 7th, 2017 and Experiment #2, replica #1-2 from March 16th, 2017</p> <p>MICs for AB074: transferrin = 4 mcg/ml; ciprofloxacin = 1 mcg/ml; meropenem = 0,5 mcg/ml</p> <p>6 groups of treatment:</p> <p>1. No drug</p> <p>2. Transferrin only, last passage dose = 16 mcg/ml </p> <p>3. Ciprofloxacin only, last passage dose = 5 mcg/ml </p> <p>4. Ciprofloxacin + transferrin, last passage dose = 0,5 mcg/ml of cipro + 16 mcg/ml of transferrin</p> <p>5. Meropenem only, last passage dose = 2,5 mcg/ml </p> <p>6. Meropenem + transferrin, last passage dose = 2,5 mcg/ml + 16 mcg/ml of transferrin</p> <p>The file name structure: group_picture#_strain_timeOfPassage_ experiment#_replica#</p>
Dataset supplementing "Marx, S., & Einhäuser, W. (2015). Reward modulates perception in binocular rivalry. Journal of Vision, 15(1):11, 1–13, http://www.journalofvision.org/content/15/1/11, doi:10.1167/15.1.11."
<p>These data supplement the publication</p> <p>Marx, S., & Einhäuser, W. (2015). Reward modulates perception in binocular rivalry. Journal of Vision, 15(1):11, 1–13, http://www.journalofvision.org/content/15/1/11, doi:10.1167/15.1.11.</p> <p>and be used freely for scientific purposes provided the aforementioned paper is appropriately cited.</p> <p>exp1_data.mat contains data of experiment 1</p> <p>exp2_data.mat contains data of experiment 2</p> <p>figure2_3.m and figure4_5.m exemplify usage of the data and reproduce the figures 2-5 of the aforementioned article.</p>
Figs 12–15 in The Philippine hair wax spiders and their relatives: revision of the Pholcus bicornutus species group (Araneae, Pholcidae)
Figs 12–15. Pholcus olangapo Huber, sp. nov., ZFMK Ar 15497–98. 12. Male prosoma, frontal view. 13, 15. Male ocular horns with modified and 'glued' or 'waxed' hairs, frontal and lateral views. 14. Female prosoma, frontal view. Scale lines: 12, 14 = 400 µm; 13 = 50 µm; 15 = 60 µm.
WWV 15 MHz reception test -- 60 minutes starting at 1937 UTC, July 25, 2017.
<p>Steven Reyer, WA9VNJ. Approx.Lat/Long: 43.218, -87.951. This 60-minute 15 MHz WWV recording was started at 1937 UTC on July 25, 2017, in preparation for the Solar Eclipse experiment in late August.</p> <p>The radio is a Yaesu FT-857D locked to a Trimble Thunderbolt GPSDO using an XRef-FT oscillator interface. Antenna is an RF-PRO-1B shielded magnetic loop, aimed N-S. Calibration of the radio and sample rate correction is determined using a second Trimble Thunderbolt GPS and Rigol DG1022Z GPS-locked signal generator.</p> <p>Spectrum Lab software is used to record the WAV file and to analyze incoming audio with sample rate of 11025 Hz. FFTs are 512k-point, 75% overlapping, yielding a new measurement every 12 seconds. Radio is tuned to 14999.00 kHz USB yielding audio around 1kHz (labeled "PeakFreq" in the txt file). Thus, the measured radio frequencies are near 15000 kHz. Calibration tests show that the audio frequency measurements are approximately 0.0384 Hz high, due the approximations in both the radio's DDS and the sample rate. This 0.0384 Hz number can be subtracted from the PeakFreq values to get corrected audio frequencies, which can then be added to the 14999 kHz number.</p>
I/Q Recording for 15 Meters During August 21, 2017 Solar Eclipse at W3OA
<p>I/Q Recording for 15 Meters Amateur Band During August 21, 2017 Solar Eclipse<br> Recorded by Richard Williams, W3OA<br> Location was 35 degrees, 34 minutes, 43.55 seconds North; 80 degrees, 56 minutes, 50.80 secondes West<br> Antenna was an 80 meter dipole 50 feet high<br> Receiver was a QS1R</p>
FIG. 15 in Apport des collections du Muséum national d'Histoire naturelle et de Didier Morin à la connaissance des Batrachideinae et Lophotettiginae (Orthoptera, Tetrigidae) de Guyane
FIG. 15. — Distribution en Guyane des 14 espèces de Batrachideinae Bolívar, 1887 et Lophotettiginae Hancock, 1909 identifiées dans les deux collections étudiées. Sources: Wikimedia Maps © les contributeurs d'OpenStreetMap sous licence ODbL. Réalisé avec Qgis.
Fig. 15. Guaranita yaculica Huber, 2000 in Revision of the South American Ninetinae genus Guaranita (Araneae, Pholcidae)
Fig. 15. Guaranita yaculica Huber, 2000; male from Calilegua National Park (ZFMK Ar 24124). A–C. Chelicerae, frontal, lateral, and ventral views. D–F. Left procursus, prolateral, dorsal, and retrolateral views. G–I. Left genital bulb, prolateral, dorsal, and retrolateral views. Scale bars = 0.1 mm.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.
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.
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.
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.
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.