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Fig. 4 in Direction and timing of dispersal of Scirtothrips dorsalis (Thysanoptera: Thripidae) on select ornamental host plant species in south Florida
Fig. 4. Flight behavior of Scirtothrips dorsalis during the day. Mean hourly captures of adults at (A) greenhouse and (B) field sites of TREC and MREC by the time sampled and cumulative degree-hours. Symbols represent means ± SD. An asterisk (*) indicates a significant difference between test locations at a given time based on a t-test at P ≤ 0.05.
Fig. 2 in Direction and timing of dispersal of Scirtothrips dorsalis (Thysanoptera: Thripidae) on select ornamental host plant species in south Florida
Fig. 2. Population estimates and dispersal of Scirtothrips dorsalis to 2 hosts at TREC, 19 Jul to 27 Sep 2007. (A) Mean weekly numbers of nymphs and pupae found on buttonwood foliage. (B) Mean weekly numbers of adults washed from plant terminals with data from buttonwood and schefflera pooled. (C) Mean weekly captures of adults on yellow sticky-card traps behind buttonwood and schefflera plants. Symbols represent means ± SD. An asterisk (*) indicates a significant difference from the other weeks according to 1-way ANOVAs and t-test comparisons at P ≤ 0.05. Mean weekly temperatures (T °C) and relative humidity (RH %) for the 3 mo period are shown parallel to the X-axis (FAWN 2007).
Fig. 1 in Direction and timing of dispersal of Scirtothrips dorsalis (Thysanoptera: Thripidae) on select ornamental host plant species in south Florida
Fig. 1. Experimental setups. (A) Population estimates and dispersal from rose to buttonwood and schefflera. Darkest grey represents rose, whereas the 2 lighter grey shades represent buttonwood or schefflera with the same shade of grey representing the same plant species. (B) Flight behavior during the day. Circles represent potted rose plants in 11 L containers. Small black rectangles denote locations of yellow sticky-card traps relative to each plot.
Fig. 3 in Direction and timing of dispersal of Scirtothrips dorsalis (Thysanoptera: Thripidae) on select ornamental host plant species in south Florida
Fig. 3. Population estimates and dispersal of Scirtothrips dorsalis to 2 hosts: cumulative data for the 11 wk test period. (A) Mean damage ratings on a scale of 0 to 5. (B) On-plant densities of S. dorsalis. (C) Weekly captures of adults on yellow sticky-card traps. (D) Weekly captures of adults on yellow sticky-card traps by cardinal direction of traps from plants. Symbols represent means ± SD. An asterisk (*) indicates a significant difference at P ≤ 0.05 (A–C) between host plant species according to t-tests or (D) from the other host plant pairs at other cardinal orientations based on a 1-way ANOVA followed by a Tukey–Kramer HSD test.
FLEPXART backward dispersion simulations
<p>The dataset contains results of the Lagrangian Particle Dispersion Model FLEXPART as used in Schoenenberger et al. (2017).</p> <p>FLEXPART was run in backward, receptor-oriented mode for 4 sites: Jungfraujoch, Monte Cimone, Mace Head, Finokalia.<br> FLEXPART was driven by ECMWF IFS windfields with a global resolution of 1° x 1° and 0.2° x 0.2° for the Alpine area. 50,000 particles are released every 3 hours and followed backward in time for 10 days.</p> <p><strong>Data format</strong></p> <p>Each sub-folder for each site contains individual footprint files for the main and nested output domain of FLEXPART. Individual files are provided for every 3 hour interval and follow a custom binary format.<br> Binary representation of total surface footprint.<br> The binary files are written with R on linux and contain no stop bytes. For reading them with FORTRAN you will need to use form='unformatted' and access='direct'.<br> The files have the following structure:<br> Longitude range of grid (2 element 4 byte real)<br> Latitude range of grid (2 element 4 byte real)<br> Number of grid in longitude direction, nx (1 element 4 byte integer)<br> Number of grid in latitude direction, ny (1 element 4 byte integer)<br> Year, Month, Day, Hour, Minute of latest realease (5 element 4 byte integer)<br> Level top of surface layer in metres (1 element 4 byte real)<br> Residence times (nx x ny element 4 byte real; elements are written along longitudes first, from the largest to the smallest latitude)</p> <p> </p> <p>Schoenenberger, F., S. Henne, M. Hill, M. K. Vollmer, G. Kouvarakis, N. Mihalopoulos, S. O'Doherty, M. Maione, L. Emmenegger, T. Peter, and S. Reimann (2017), Abundance and Sources of Atmospheric Halocarbons in the Eastern Mediterranean, Atmos. Chem. Phys. Discuss., 2017, 1-46, doi: 10.5194/acp-2017-451.</p>
Multiwavelength anomalous dispersion (MAD) diffraction images of Burkholderia pseudomallei BipD.
<p>Selenomethionine MAD diffraction images from beamline BM16 at the European Synchrotron Radiation Facility (ESRF, Grenoble, France) that were used for structure analysis of BipD from <em>Burkholderia pseudomallei</em>. Details of the data collection are given in the included scanned notes. </p>
Microsat Data for 'Simulated Disperser Analysis: determining the number of loci required to genetically identify dispersers'
<p>Microsattelite data from 94 samples (<em>Stunus vulgaris</em>) from 3 populations and including 29 loci. Used in the paper 'Simulated Disperser Analysis: determining the number of loci required to genetically identify dispersers'. </p>
Simulating the dispersal of Monochamus galloprovinciallis : R script of the dispersal model and video of the simulation
<p>This folder contains the R script to simulate the dispersal of Monochamus galloprovincialis from an individual-based model and the resulting video. This study was conducted in the frame of the FP7 project called "REPHRAME" and a working group of ANSES (French Agency for Food, Environmental and Occupational Health & Safety).</p> <p>This material complements the following publication:</p> <p>Robinet C, David G, Jactel H (2019) Modeling the distances traveled by flying insects based on the combination of flight mill and mark-release-recapture experiments. Ecological Modelling, 402: 85-92.<br> https://doi.org/10.1016/j.ecolmodel.2019.04.006</p>
Data and code for article "Mid-infrared frequency comb via coherent dispersive wave generation in silicon nitride nano-photonic waveguides"
<p>This dataset contains the data presented in the figures of the article "Mid-infrared frequency comb via coherent dispersive wave generation in silicon nitride nano-photonic waveguides" (doi:10.1038/s41566-018-0144-1).</p> <p>The raw data in figures (curved plots) is packaged as an independent OriginLab project file (.opj). </p> <p>The layout of the design of the silicon nitride nano-photonic waveguide is presented. Fabrication process card (shown as a diagram) is provided as well.</p> <p>The source code for simulations presented in the article is also presented.</p>
Data used in Quantifying the impact of uncertainty in the dispersion coefficient on water quality modelling in rivers
<p>Hydraulic and tracer data used in the Chillan case study presented in "Data used in Quantifying the impact of uncertainty in the dispersion coefficient on water quality modelling in rivers"</p>
Data from: Defensive fruit metabolites obstruct seed dispersal by altering bat behavior and physiology at multiple temporal scales.
<p>These data support the publication "Defensive fruit metabolites obstruct seed dispersal by altering bat behavior and physiology at multiple temporal scales".</p>
lexibank/powerma: Evolutionary Dynamics in the Dispersal of Sign Languages
<p>CLDF dataset accompanying the study "Evolutionary Dynamics in the Dispersal of Sign Languages"</p>
FIG. 2. A in Zoochorous dispersal of freshwater peaclams (Bivalvia: Sphaeriidae): potential role of aquatic insects
FIG. 2. A. Dorsal and ventral views of the Aeshna juncea (Linnaeus, 1758) dragonfly nymph (Omolon River basin, Magadan Oblast, Russia). B. Euglesa globularis attached to the leg of the Common Hawker dragonfly nymph. C. Dorsal, ventral, and lateral views of the Callicorixa sp. nymph (a small unnamed lakelet near Orotukan settlement, Magadan Oblast, Russia). D. Euglesa parvula attached to the leg of the water boatmen nymph. Scale bars: (A, C) – 1 mm; (B, D) – 0.5 mm. Photos by Aksenova O.V.
РИС. 1. Карта района исследований в бассейне реки Колыма (МагаданскаЯ область, РоссиЯ) (1) оЗеро рЯдом с поселком Оротукан; (2) ОЗеро Лебединое рЯдом с селом Омолон. Фотографии Аксёновой О.В. (1) и Соколовой С.Е. (2). in Zoochorous dispersal of freshwater peaclams (Bivalvia: Sphaeriidae): potential role of aquatic insects
РИС. 1. Карта района исследований в бассейне реки Колыма (МагаданскаЯ область, РоссиЯ) (1) оЗеро рЯдом с поселком Оротукан; (2) ОЗеро Лебединое рЯдом с селом Омолон. Фотографии Аксёновой О.В. (1) и Соколовой С.Е. (2).
Fig. 2 in Chemical control of leaf-cutting ants: how do workers disperse toxic bait fragments onto fungus garden?
Fig. 2. Pellet fragment distribution onto the fungus garden, with and without active ingredients. A2, B2, C2: fragment distribution with ultraviolet light. A1 and A2: pellets without active ingredient. B1 and B2: pellets with sulfluramid. C1 and C2: pellets with with different action modes. A1, B1, C1: fragment distribution without ultraviolet light indoxacarb. Treatment followed the same letter is not significantly different.
Figure 2 in Dispersion of nematodes (Rhabditida) in the guts of slugs and snails
Figure 2. Percentage of 38 gastropods of 7 species that excreted viable nematodes in their faeces over five days after infection, declining from 64 % in the beginning to 3 % on day five and then to zero.
Figure 3 in Dispersion of nematodes (Rhabditida) in the guts of slugs and snails
Figure 3. Egestion of different rhabditids by five gastropod species in the days after experimental infection.
Fig. 15. Energy-dispersive X in On the Nature of Tintinnid Loricae (Ciliophora: Spirotricha: Tintinnina): a Histochemical, Enzymatic, EDX, and High-resolution TEM Study
Fig. 15. Energy-dispersive X-ray spectrometric (EDX) analysis in the scanning electron microscope, using uncoated material. The analysed area of the Eutintinnus angustatus lorica is marked by a white frame (~ 11 × 9 µm in size). Since this part of the lorica was freely suspended in the vacuum, elemental detection occurred without influence of the carbon substrate.
Text-fig. 7. Cercidiphyllaceae 1–3. Trochodendroides genetrix (NEWBERRY) comb. nov. and associated reproductive structures (4, 5) from Killpecker Cr., Rock Springs, Wyoming (UF loc. 18126). 1. Twig with three attached leaves, showing variation in leaf shape and serration; composite figure assembled from images of both counterparts, UF 35427. 2. Complete leaf including petiole, UF 13243. 3. Same as 2, detail of venation. 4. Nyssidium arcticum (HEER) ILJINSKAYA fruits on an incomplete axis, UF 35454. 5. Dispersed winged seed, UF 35479. Scale = 3 cm in 1, 2; 1 cm in 3, 4; 0.5 cm in 5. in Revisions To Roland Brown'S North American Paleocene Flora
Text-fig. 7. Cercidiphyllaceae 1–3. Trochodendroides genetrix (NEWBERRY) comb. nov. and associated reproductive structures (4, 5) from Killpecker Cr., Rock Springs, Wyoming (UF loc. 18126). 1. Twig with three attached leaves, showing variation in leaf shape and serration; composite figure assembled from images of both counterparts, UF 35427. 2. Complete leaf including petiole, UF 13243. 3. Same as 2, detail of venation. 4. Nyssidium arcticum (HEER) ILJINSKAYA fruits on an incomplete axis, UF 35454. 5. Dispersed winged seed, UF 35479. Scale = 3 cm in 1, 2; 1 cm in 3, 4; 0.5 cm in 5.
Figure 4 in Going up: new altitudinal records of orchid bees (Hymenoptera: Apidae) in the inter-Andean valleys of southern Ecuador and their potential dispersal route
Figure 4. Potential dispersal route from the west lowlands of the Andes in Azuay province to the inter-Andean valleys of southern Ecuador. / Posible ruta de dispersión desde las tierras bajas occidentales de los Andes en la provincia de Azuay hasta los valles interandinos del sur de Ecuador.
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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.
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.
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.