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131 results for “Vespa”
Vespa velutina interactions - additional records
<p>Biotic interaction data of the Asian yellow-legged hornet <em>Vespa velutina</em> derived from literature for the upload in GLOBI (Global Biotic Interactions, <a href="http://globalbioticinteractions.org/">http://globalbioticinteractions.org/</a>).</p> <p>Data prepared in the Alien-CSI Hackathon of the Cost Action CA17122.</p>
VESPA ASL: VElocity and SPAtially Selective Arterial Spin Labeling
<p>This repository contains the simulation code, in vivo data, preprocessing code, and analysis code used in the Magnetic Resonance in Medicine article titled "VESPA ASL: VElocity and SPAtially Selective Arterial Spin Labeling" (<a href="https://doi.org/10.1002/mrm.29159">https://doi.org/10.1002/mrm.29159</a>). Please cite this article and this repository (<a href="https://doi.org/10.5281/zenodo.6870683">https://doi.org/10.5281/zenodo.6870683</a>) if you use any of this code or data in your work.</p> <p>Software requirements: BASH, FSL6, and MATLAB (tested with MATLAB versions 2021a and 2021b; requires the Optimization Toolbox and the Statistics and Machine Learning Toolbox). Preprocessing steps tested on macOS 12.4 (Monterey) and 10.14 (Mojave).</p> <p>This updated version (V2.0) simplifies and streamlines the setup of command line and MATLAB paths, making it easier to re-run the preprocessing and analysis steps.</p>
Fig. 1 in Registro vespa ( de uma possível interação entre Certhiaxis cinnamomeus (Passeriformes, Furnariidae) e a social Polybia scutellaris (White, 1841) Hymenoptera, Polistinae) no Brasil
Fig. 1. Ninho de Certhiaxis cinnamomeus nidificado a aproximadamente 50 cm de uma colônia de Polybia scutellaris em um arbusto de Mimosa sp. (Fabaceae) (A); Detalhe da colônia de P. scutellaris (B); C. cinnamomeus em detalhe (C).
Figura 2 in Primer reporte del género Vespa Linnaeus (Hymenoptera: Vespidae: Vespinae) en Chile
Figura 2. Distribución espacial de Vespa orientalis Linnaeus en la Región Metropolitana de Santiago.
Fig. 1. Localidades amostradas para a in Inventário de vespas (Hymenoptera, Vespidae) no Mato Grosso do Sul, Brasil
Fig. 1. Localidades amostradas para a fauna de Vespidae no Mato Grosso do Sul, Brasil entre 2006 e 2011.
Moped - Vespa Piaggio Bravo
This is a model based on the Vespa Piaggio Bravo The Piaggio Bravo is a moped that was a part of the Ciao series produced by Piaggio from 1967 trough 2006. Free to download and use as u wish :) Source: Objaverse 1.0 / Sketchfab
VESPA mercury_mag_boundaries sample
<p>This dataset is based on the original MESSENGER mission magnetometer and coordinate data as made available at PDS PPI. It introduces a number of improvements upon the original [1 sec temporal resolution]:</p> <ol> <li>Magnetometer calibration signals have been removed.</li> <li>Coordinates and magnetic field measurements have been merged together.</li> <li>Additional fields, such as model dipole magnetic field and planetary position in a heliocentric coordinate system have been added.</li> <li>The dataset has been split up into files by orbit numbers, with each file centered on the periapsis.</li> <li>Data for a number of partially recorded orbits has been removed.</li> </ol>
Dataset for Identification of giant hornet, Vespa mandarinia, queen sex pheromone components
<p>The Vespidae are a diverse family of wasps and hornets that contain invasive species and are formidable predators of insects, including social bees. Recently, the world’s largest hornet, <em>Vespa mandarinia</em> Smith(Hymenoptera: Vespidae), which occurs naturally in the Indomalayan region, has been found in Canada and United States. Some simulations indicate it could rapidly spread throughout Washington, Oregon, and parts of the eastern USA, threaten native bees and honey bees, and harm bee-pollinated crop production worth nearly $12 million annually. There is consequently an urgent need to learn more about <em>V. mandarinia</em>’s reproductive biology and to develop trapping methods to locate its nests and control its reproduction. We identified <em>V. mandarinia</em> queen-produced sex pheromone from the 5<sup>th</sup> and 6<sup>th</sup> intersegmental sternal glands of virgin queens. The major active compounds were hexanoic acid (HA), octanoic acid (OA) and decanoic acid (DA). When placed in field traps, the synthetic compounds and a queen-equivalent mixture rapidly attracted hundreds of males. This dataset provides the data used in this paper.</p>
Figure 21 in Maratus pinniger, a new peacock spider in the vespa group from southwestern Australia (Araneae: Salticidae: Euophryini)
Figure 21. Habitat of Maratus pinniger. Females (5) and males (6) were found on low vegetation in an open swale, near Jarrah/Marri forest. Photographs © Paul Winthrop, used with permission.
Figure 18 in Maratus pinniger, a new peacock spider in the vespa group from southwestern Australia (Araneae: Salticidae: Euophryini)
Figure 18. Sequence (1-16) of photographs showing a male Maratus pinniger engaged in the final phase of courtship display, showing alternation between display of the left (3, 9) and right (7, 11) flaps. Here the male extended the flaps but did not raise the fan in the centered position. Elevation of the fan appears to represent a useful form of advertisement that may not be needed when the female is actively engaged with the male.
Figure 20 in Maratus pinniger, a new peacock spider in the vespa group from southwestern Australia (Araneae: Salticidae: Euophryini)
Figure 20. Photographs and sequences (1-2, 3, 4-6, 7-9) of two male Maratus pinniger engaged in courtship display. 1-2, Legs extended in a V-shaped configuration as the fan was rotated from side to side in a central position. 3, Female (in foreground) looking directly at the "feathered" left flap of the male. 4-6, Typical positions of the final phase of courtship, with the fan held in a lower position, even when centered. Note extension of legs IV to the rear. 7-9, Here the fan was elevated in the center position, apparently as an advertisement to obtain the attention of the female.
Figure 16 in Maratus pinniger, a new peacock spider in the vespa group from southwestern Australia (Araneae: Salticidae: Euophryini)
Figure 16 (continued from previous page). Serial frames from a 120fps video of courtship display by a male Maratus pinniger. 12-43, 16 left-right cycles of fan rotation as the fan was raised to an elevated position, at 6.9Hz. 32-42, 4.5 cycles of right fan retraction and extension, with the fan in a median position, at 6.1Hz. 44-50, 3 cycles of fan extension and retraction at 2.0Hz. Continuous movement was accompanied by low-amplitude bobbing or vibration of the opisthosoma at ~50Hz.
Figure 15 in Maratus pinniger, a new peacock spider in the vespa group from southwestern Australia (Araneae: Salticidae: Euophryini)
Figure 15 (continued from previous page). Serial frames from a 120fps video of courtship display by a male Maratus pinniger. 29-63, 17 left-right cycles of the fan as it was elevated at 7.7Hz. 65-71, 3 cycles of flap extension and retraction at 2.2Hz. All movement was fairly continuous, accompanied by low amplitude bobbing or rolling of the opisthosoma at ~50Hz.
Figure 14 in Maratus pinniger, a new peacock spider in the vespa group from southwestern Australia (Araneae: Salticidae: Euophryini)
Figure 14. Two series (1-8, 9-10) showing the female Maratus pinniger (at right) following the side to side movement of the fan by a male engaged in the final stage of courtship. As each male turned the fan to display the "feathered" flap on either side, alternating from left to right, the female, at a distance of 4-5 mm, turned to follow this movement.
Figure 13. Serial frames from a 120 in Maratus pinniger, a new peacock spider in the vespa group from southwestern Australia (Araneae: Salticidae: Euophryini)
Figure 13. Serial frames from a 120fps video of courtship display by a male Maratus pinniger. Lateral movement of the elevated fan relative to the preceding frame is indicated with an arrow. Movement was fairly constant, at a rate of ~4.3Hz (12.5 left-right cycles in 2.9s). There was little movement of the extended legs III, or the pedipalps, during this display. For each numbered frame (1-25) in this series (and in other series shown below), the sequential frame number (f), time elapsed since the previous frame (+), and the total elapsed time is shown.
Figure 12. Sequential photographs showing advertisement with a in Maratus pinniger, a new peacock spider in the vespa group from southwestern Australia (Araneae: Salticidae: Euophryini)
Figure 12. Sequential photographs showing advertisement with a single raised and extended leg III by a male Maratus pinniger. Note the long setae on this leg, and the thick white fringe of the dorsal femur in particular.
Figure 11. Female paratype, Maratus pinniger. 1-5 in Maratus pinniger, a new peacock spider in the vespa group from southwestern Australia (Araneae: Salticidae: Euophryini)
Figure 11. Female paratype, Maratus pinniger. 1-5, Submerged in alcohol. 6, Ventral view of epigynum (anterior toward top of page). 7, Ventral view of living spider.
Figure 17 in Maratus pinniger, a new peacock spider in the vespa group from southwestern Australia (Araneae: Salticidae: Euophryini)
Figure 17. Three series (1-3, 4-9, 10) of photographs showing a male Maratus pinniger engaged in the final phase of courtship display. 3, When a flap is displayed at one side, it may be moved up and down, or the flap itself may be extended and then retracted. 4-9, Flaps may be retracted as the fan is rotated from the center position to one side or the other.
Figure 3 in Maratus pinniger, a new peacock spider in the vespa group from southwestern Australia (Araneae: Salticidae: Euophryini)
Figure 3 (continued from previous page). Living type males for Maratus pinniger. 13, Advertisement with a single leg III held in a vertical position.
Figure 19 in Maratus pinniger, a new peacock spider in the vespa group from southwestern Australia (Araneae: Salticidae: Euophryini)
Figure 19. Photographs and sequences (1-2, 3, 4-5, 6, 7-8, 9) of a male Maratus pinniger engaged in the final phase of courtship display.
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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)
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.