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2,206 results for “Communications”
Fig. 14 Parapyrrhicia globulata n in Review of the East African species of the phaneropterine genus Parapyrrhicia Brunner von Wattenwyl, 1891 (Insecta: Orthoptera): secret communication of a forest-bound taxon
Fig. 14 Parapyrrhicia globulata n. sp. from the Uluguru Mountains. a Male. b Lateral view on apex of alive male
Fig. 9 in Review of the East African species of the phaneropterine genus Parapyrrhicia Brunner von Wattenwyl, 1891 (Insecta: Orthoptera): secret communication of a forest-bound taxon
Fig. 9 Morphological details of male Parapyrrhicia abdita n. sp. Ventral (a) and semilateral (b) view of abdominal apex with slender lobes of subgenital plate. c Left tegmen with stridulatory area. d Right tegmen with mirror. e Stridulatory file
Fig. 5 in Review of the East African species of the phaneropterine genus Parapyrrhicia Brunner von Wattenwyl, 1891 (Insecta: Orthoptera): secret communication of a forest-bound taxon
Fig. 5 Morphological details of male Parapyrrhicia acutilobata. a Lateral view of abdominal apex. b Subgenital plate. c Left tegmen with stridulatory area. d Right tegmen with mirror. e Stridulatory file
Fig. 3 in Review of the East African species of the phaneropterine genus Parapyrrhicia Brunner von Wattenwyl, 1891 (Insecta: Orthoptera): secret communication of a forest-bound taxon
Fig. 3 Morphological details of male P. zanzibarica. a Lateral view on abdominal apex. b Rear view on abdominal apex with deeply split subgenital plate. c Left tegmen with stridulatory file. d Right tegmen with mirror. e Stridulatory file
Fig. 24 in Review of the East African species of the phaneropterine genus Parapyrrhicia Brunner von Wattenwyl, 1891 (Insecta: Orthoptera): secret communication of a forest-bound taxon
Fig. 24 Distribution of Parapyrrhicia species. Black squares: P. acutilobata. Black circle: P. diamantina n. sp. Black pentagon: P. zanzibarica. Rounded black square: P. abdita n. sp. White square: P. niloensis n. sp. White circle: P. globulata n. sp. White pentagon: P. litipo n. sp.
Fig. 11 in Hyperdiverse songs, duetting, and the roles of intra- and intersexual selection in the acoustic communication of the genus Eurycorypha (Orthoptera: Tettigonioidea, Phaneropterinae)
Fig. 11 Oscillograms of song interactions in Eurycorypha pseudovaria. a–e Male-female duets, details. f Male-male interaction (1.5 s sections). See text and discussion for details
Fig. 7 Eurycorypha conclusa. a in Hyperdiverse songs, duetting, and the roles of intra- and intersexual selection in the acoustic communication of the genus Eurycorypha (Orthoptera: Tettigonioidea, Phaneropterinae)
Fig. 7 Eurycorypha conclusa. a Overview of a series of long echemes in male song (40 s section). b, f Male-female duets, details
Fig. 3 in Hyperdiverse songs, duetting, and the roles of intra- and intersexual selection in the acoustic communication of the genus Eurycorypha (Orthoptera: Tettigonioidea, Phaneropterinae)
Fig. 3 Power spectra of male calling song of Eurycorypha species. In species with restricted frequency range, short black lines mark its end. Blue lines indicate power spectra of female responses
Fig. 10 in Hyperdiverse songs, duetting, and the roles of intra- and intersexual selection in the acoustic communication of the genus Eurycorypha (Orthoptera: Tettigonioidea, Phaneropterinae)
Fig. 10 Oscillograms of song interactions in Eurycorypha pianofortis. a Male song demonstrating the transition between two echeme types. b Male-female duet
Fig. 2 in Hyperdiverse songs, duetting, and the roles of intra- and intersexual selection in the acoustic communication of the genus Eurycorypha (Orthoptera: Tettigonioidea, Phaneropterinae)
Fig. 2 Tegmina and structures used for sound production in Eurycorypha curviflava. a Male and b female tegmina. Base of left and right tegmen (dorsal field) in c male (left tegmen shown from lower side, stridulatory file visible, mirror image) and d female. e Male stridulatory file on lower side of left tegmen. f Female stridulatory files on upper side of right tegmen. Scale, a, b 10 mm and c, d, e, f 1 mm
Fig. 9 in Hyperdiverse songs, duetting, and the roles of intra- and intersexual selection in the acoustic communication of the genus Eurycorypha (Orthoptera: Tettigonioidea, Phaneropterinae)
Fig. 9 Oscillograms of song interactions in Eurycorypha curviflava and E. ligata. a Male-female duet in E. curviflava, b, c Male-male interactions in E. ligata (6 s sections)
Fig. 8 in Hyperdiverse songs, duetting, and the roles of intra- and intersexual selection in the acoustic communication of the genus Eurycorypha (Orthoptera: Tettigonioidea, Phaneropterinae)
Fig. 8 Oscillograms of long acoustical (1 min sections) interactions of a males in Eurycorypha curviflava and duets of males and females in b E. ligata, c E. pianofortis, and d E. pseudovaria
Fig. 12 in Hyperdiverse songs, duetting, and the roles of intra- and intersexual selection in the acoustic communication of the genus Eurycorypha (Orthoptera: Tettigonioidea, Phaneropterinae)
Fig. 12 Rivalry song and female responses of Eurycorypha varia. In the sonogram, the echemes of the leading male are marked with blue arrows (too weak to be seen in the oscillogram)
FIGURE 1 in Bird names as critical communication infrastructure in the contexts of history, language, and culture
FIGURE 1. An example of the greater stability of English bird names relative to scientific names for a single species, which also shows the gateway effects of an eponymous English name to the literature (i.e., the area under the blue curve indicates the importance in communication and access of that name relative to all the others). This is an historic overview of the use of Wilson's Plover (blue) as an English bird name relative to the five scientific names the species has had from the early 1800s through 2019, Aegialitis wilsonius Ord (red), Aegialitis wilsonia (dark green), Ochthodromus wilsonius (golden), Pagolla wilsonia (bright green), and Charadrius wilsonia (purple), using Google Books Ngram Viewer.
Data for replication of figures in "In situ imaging of a kleptoplastidic ciliate thin layer indicates traditional sampling underestimates oceanic mixotroph biomass", Barua et al. Communications Earth & Environment (2024).
<p>This dataset contains the relevant information needed to reproduce data plots in Figures 1-5 and Supplementary Figures 2-3 of the following manuscript.</p> <p><em><strong>In situ imaging of a kleptoplastidic ciliate thin layer indicates traditional sampling underestimates oceanic mixotroph biomass</strong></em></p> <p>Ranjoy Barua, Lisa Nyman, Buyu Guo, Matthew D. Johnson, Anvita U. Kerkar, Jiarong Hong, Adam T. Greer, John Lehrter, Malcolm McFarland, Bradley Penta, Aditya R. Nayak</p> <p>Communications Earth & Environment (2024).</p>
Flow Cytometry Data files for Settle et al. Nature Communications, B2 integrins impose a mechanical checkpoint on macrophage phagocytosis
<p>FCS Data files for all flow cytometry results for Settle et al, B2 integrins impose a mechanical checkpoint on macrophage phagocytosis, to be published in Nature Communications. </p>
Structural Model of OSM-OSMRβ-gp130 Ternary Complex Reveals the Pathways of Allosteric Communication in OSM Signaling
Open the record for dataset details and reuse information.
Implementation of a Multi-Channel DASH7 IoT Communication System for Packet Investigation and Validation
<p>This repository contains three cabled <a href="https://www.dash7-alliance.org/" target="_blank" rel="noopener">DASH7</a> data sets. All data sets are formatted as sigmf-data and sigmf-meta pairs, which can be investigated using <a href="https://iqengine.org/" target="_blank" rel="noopener">IQEngine</a>, <a href="https://www.gnuradio.org/" target="_blank" rel="noopener">GNU Radio</a>, or <a href="https://www.mathworks.com/products/matlab.html" target="_blank" rel="noopener">MATLAB</a>. Below you can find a more extended description of the data sets.</p> <p><strong>CH0.zip, CH93.zip, CH186.zip:</strong></p> <ul> <li>Cabled data sets of 3 channels</li> <li>10 recordings per channel</li> <li>1 DASH7 packet per file pair (SigMF)</li> <li>Fc: 866.5 MHz</li> <li>Sample rate: 7.68 MHz</li> <li>Data type: ci16_le</li> <li>Length: 1 second</li> <li>Channel class: Lo-Rate</li> <li>Sync word: 0x0B67</li> <li>3 Lo-Rate channel recordings <ul> <li>channel 0 (Fc: 863.0125 MHz), </li> <li>channel 93 (Fc: 865.3375 MHz), </li> <li>channel 186 (Fc: 867.6625 MHz)</li> </ul> </li> <li>Payload: 3 bytes [counter_byte 0xAB 0xCD] <ul> <li>counter byte is always [0x00]</li> </ul> </li> </ul> <p><strong>logs.zip:</strong></p> <ul> <li>Contains all the DASH7 gateway logs per measured channel.</li> </ul>
Nice to Meet You: The Role of Communicative Signaling in GitHub Profile Biographies
<p>This repository serves as the online appendix for the paper "Nice to Meet You: The Role of Communicative Signaling in GitHub Profile Biographies".</p>
Nice to Meet You: The Role of Communicative Signaling in GitHub Profile Biographies
<p>This repository serves as the online appendix for the paper "Nice to Meet You: The Role of Communicative Signaling in GitHub Profile Biographies".</p>
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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.