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28,952 results for “Distributed”
Dasineura oxycoccana, the blueberry gall midge distribution, and cultivation areas of blueberry in South Korea
<p>Distribution data of Dasineura oxycoccana for species distribution modeling and cultivation areas of blueberry in South Korea</p> <p> </p>
OPTIMA - spray distribution data - bed-grown carrots boom sprayer
<p>Spray distribution data of 13 nozzle configurations, consisting of different nozzle types (standard flat fan, air-inclusion, off-center), nozzle size (ISO 02, 04), spray angle (80°, 110°), and number of nozzles (3 or 4 nozzles per bed), at different nozzle heights and distance, spraying at 300 kPa. </p> <p>Read 'Info' tab for more information.</p> <p>Data presented in Zwertvaegher et al. (2022). Boom sprayer optimizations for bed-grown carrots at different growth stages based on spray distribution and droplet characteristics. Pest Management Science. https://onlinelibrary.wiley.com/doi/10.1002/ps.6792 </p>
Fig. 12 in The mostly cavernicolous millipede genus Stygiiulus Verhoeff, 1929, stat. nov.: taxonomy, distribution and phylogenetic relationships (Diplopoda, Julida, Julidae)
Fig. 12. Bayesian inference tree based on concatenated 16S rRNA + 28S rRNA dataset from Enghoff et al. (2013) and Makarov et al. (2017). The single species with newly obtained sequences is shown in red.
Fig. 10 in The mostly cavernicolous millipede genus Stygiiulus Verhoeff, 1929, stat. nov.: taxonomy, distribution and phylogenetic relationships (Diplopoda, Julida, Julidae)
Fig. 10. Left gonopods of species of Stygiiulus stat. nov., mesal views. A. S. ausugi (Manfredi, 1953) comb. nov.,topotype ♂ (NHMD). B. S. illyricus (Verhoeff, 1929) comb. nov., redrawn from Verhoeff (1929). C. S. insularis (Strasser, 1938) comb. nov., redrawn from Antić et al. (2018). D. S. maximus (Verhoeff, 1929) comb. nov., redrawn from Verhoeff (1930). E. S. seewaldi (Strasser, 1967) comb. nov., redrawn and modified from Strasser (1967). F. S. tobias (Berlese, 1886) comb. nov., ♂ from Grotta [Cave] del Subiolo (NHMD). Abbreviations: do = distal outgrowth of velum. Drawn not to scale.
Fig. 9 in The mostly cavernicolous millipede genus Stygiiulus Verhoeff, 1929, stat. nov.: taxonomy, distribution and phylogenetic relationships (Diplopoda, Julida, Julidae)
Fig. 9. Stygiiulus rotundatus (Strasser, 1962) comb. et stat. nov., paralectotype ♂ (A) (MHNG), ♂ from Grotta [cave] di Collagù (B) (MHNG) and ♂ (C–D) and ♀ (E) from La Bora Cave (NHMD). A. Leg-pair 1, oral view. B. Penis, oral/caudal view. C. Right gonopods, mesal view (inverted). D. Left mesomere, oral view. E. Left vulva, caudal, somewhat mesal view. Abbreviations: ab = anterior branch of solenomere; la = lateral ampulla; lt = lateral tube; m = mesomere; ma = median ampulla; mt = median tube; op = operculum; p = promere; pb = posterior branch of solenomere; ph = posterior hump; v = velum. Scale bars: A = 0.4 mm; B = 0.2 mm; C–E = 0.3 mm.
Fig. 7 in The mostly cavernicolous millipede genus Stygiiulus Verhoeff, 1929, stat. nov.: taxonomy, distribution and phylogenetic relationships (Diplopoda, Julida, Julidae)
Fig. 7. Stygiiulus montellensis (Verhoeff, 1930) comb. nov., ♂ from Grotta [cave] Crede-a (NHMD). A. Right gonopods, mesal view. B. Right mesomere, oral view. C. Left vulva, caudal, slightly mesal view. Abbreviations: la = lateral ampulla; lt = lateral tube; m = mesomere; ma = median ampulla; mt = median tube; op = operculum. Scale bars: A–B = 0.2 mm; C = 0.3 mm.
Fig. 5 in The mostly cavernicolous millipede genus Stygiiulus Verhoeff, 1929, stat. nov.: taxonomy, distribution and phylogenetic relationships (Diplopoda, Julida, Julidae)
Fig. 5. Stygiiulus gentianae (Strasser, 1971) comb. et stat. nov., ♂ paralectotype (A–B) (MHNG), topotype ♂ (C) (NHMD) and topotype ♀ (D) (NHMD). A. Leg-pair 1, oral view. B. Penis, oral/caudal view. C. Left gonopods, mesal view. D. Left vulva, caudal, somewhat mesal view. Abbreviations: ab = anterior branch of solenomere; lt = lateral tube; m = mesomere; ma = median ampulla; mt = median tube; op = operculum; p = promere; pb = posterior branch of solenomere; ph = posterior hump; v = velum. Scale bars: A, C–D = 0.2 mm; B = 0.1 mm.
Fig. 6 in The mostly cavernicolous millipede genus Stygiiulus Verhoeff, 1929, stat. nov.: taxonomy, distribution and phylogenetic relationships (Diplopoda, Julida, Julidae)
Fig. 6. Stygiiulus gentianae (Strasser, 1971) comb. et stat. nov., ♂ from Grotta [cave] della Vecchia Diga (NHMD). A. Right promere, caudal view. B. Right mesomere, oral view. C. Distal part of left opisthomere, mesal view. Abbreviations: ab = anterior branch of solenomere; el = external lobe; il = internal lobe; pb = posterior branch of solenomere; ph = posterior hump; v = velum. Scale bars = 0.05 mm.
Fig. 2 in The mostly cavernicolous millipede genus Stygiiulus Verhoeff, 1929, stat. nov.: taxonomy, distribution and phylogenetic relationships (Diplopoda, Julida, Julidae)
Fig. 2. Stygiiulus fimbriatus (Strasser, 1971) comb. et stat. nov., ♂ from from Foran di Landri Cave (IBER). A. Gnathochilarium, ventral view. B. Gnathal lobe of left mandible, ventral view. C. Left promere, caudal view. D. Left mesomere, oral view. E. Distal part of left opisthomere, mesal view. Abbreviations: ab = anterior branch of solenomere; el = external lobe; et = external tooth; il = internal lobe; it = internal tooth; mp = mollar plate; pb = posterior branch of solenomere; ph = posterior hump; pl = pectinate lamellae; pm = promentum; sf = setiform filaments; v = velum. Scale bars: A = 0.2 mm; B = 0.1 mm; C–D = 0.05 mm; E = 0.02 mm.
Fig. 4 in The mostly cavernicolous millipede genus Stygiiulus Verhoeff, 1929, stat. nov.: taxonomy, distribution and phylogenetic relationships (Diplopoda, Julida, Julidae)
Fig. 4. Stygiiulus gentianae (Strasser, 1971) comb. et stat. nov., ♂ (A–C, E, G) from Grotta [cave] della Vecchia Diga, ♂ topotype (D, H) and ♀ topotype (F, I) (NHMD). A. Habitus, lateral view. B. Anterior part of body, lateral view. C. Labrum, frontal view. D. Labrum, dorsal view. E. Pleurotergum 7, lateral view. F. Mid-body rings, lateral view. G. Telson, lateral view. H. Posterior node of hypopharynx, frontoventral view. I. Lobe of body ring 3, lateral view. Scale bars: A = 1 mm; B–G, I = 0.5 mm; H = 0.1 mm.
Fig. 1 in The mostly cavernicolous millipede genus Stygiiulus Verhoeff, 1929, stat. nov.: taxonomy, distribution and phylogenetic relationships (Diplopoda, Julida, Julidae)
Fig. 1. Stygiiulus fimbriatus (Strasser, 1971) comb. et stat. nov., ♂♂ (A–H) and ♀ (I) from Foran di Landri Cave (IZB). A. Habitus, lateral view. B. Anterior part of body, lateral view. C. Labrum, frontodorsal view. D. Labrum, dorsal view. E. Pleurotergum 7, lateral view. F. Mid-body rings, lateral view. G. Telson, lateral view. H. Posterior node of hypopharynx, fronto-ventral view. I. Lobe of body ring 3, lateral view. Scale bars: A = 1 mm; B–G, I = 0.5 mm; H = 0.1 mm.
Fig. 11 in The mostly cavernicolous millipede genus Stygiiulus Verhoeff, 1929, stat. nov.: taxonomy, distribution and phylogenetic relationships (Diplopoda, Julida, Julidae)
Fig. 11. Left vulvae of species of Stygiiulus stat. nov. (A–D) and representatives of (other) Julini/ Leptoiulini (E) and Typhloiulini/blind Julini/Leptoiulini in caudal, somewhat mesal views. A. S. ausugi (Manfredi, 1953) comb. nov., ♀ from Grotta [Cave] del Calgeron (NHMD). B. S. illyricus (Verhoef, 1929) comb. nov., ♀ from Rabakova Cave (IZB). C. S. insularis (Strasser, 1938) comb. nov., topotype ♀ (CBSS). D. S. tobias (Berlese, 1886) comb. nov., ♀ from Grotta [Cave] del Subiolo (NHMD). E. Leptoiulus cf. trilineatus (C.L. Koch, 1847), ♀ from Belasitsa Mtn, Bulgaria. F. Serboiulus spelaeophilus Gulička, 1967, ♀ from Vodni Pech Cave (NMNHS). G. Typhloiulus (Inversotyphlus) lobifer Attems, 1951, ♀ from Minjera-Bauxite Mine (IBER). H. Typhloiulus (s. str.) strictus (Latzel, 1882), ♀ from Kunino (IBER). Abbreviations: at = anterior tube; la = lateral ampulla; lt = lateral tube; ma = median ampulla; mt = median tube; op = operculum; pa = posterior ampulla; pt = posterior tube. Scale bar = 0.2 mm.
Fig. 8 in The mostly cavernicolous millipede genus Stygiiulus Verhoeff, 1929, stat. nov.: taxonomy, distribution and phylogenetic relationships (Diplopoda, Julida, Julidae)
Fig. 8. Stygiiulus rotundatus (Strasser, 1962) comb. et stat. nov., ♀ (A) and ♂ (B–E) from La Bora Cave (NHMD). A. Habitus, lateral view. B. Anterior part of body, lateral, slightly ventral view. C. Pleurotergum 7, lateral view. D. Mid-body rings, lateral view. E. Telson, lateral view. Scale bars: A = 1 mm; B–E = 0.5 mm.
Fig. 3 in The mostly cavernicolous millipede genus Stygiiulus Verhoeff, 1929, stat. nov.: taxonomy, distribution and phylogenetic relationships (Diplopoda, Julida, Julidae)
Fig. 3. Stygiiulus fimbriatus (Strasser, 1971) comb. et stat. nov., holotype ♂ (A, B) (MHNG), ♂ (C) (IZB) and ♀ (D) (IBER) from Foran di Landri Cave. A. Leg-pair 1, caudal view. B. Penis, oral/caudal view. C. Left gonopods, mesal view. D. Left vulva, caudal, somewhat mesal view. Abbreviations: ab = anterior branch of solenomere; bs = basal spine; fc = flagellum channel; lt = lateral tube; m = mesomere; mt = median tube; op = operculum; p = promere; pb = posterior branch of solenomere; ph = posterior hump; v = velum. Scale bars = 0.2 mm.
Companion for "Understanding Distributed Deep Learning Performance by Correlating HPC and Machine Learning Measurements"
<p>This is the Companion Material for the paper “Understanding Distributed Deep Learning Performance by Correlating HPC and Machine Learning Measurements”, by Ana Luisa Veroneze Solórzano and Lucas Mello Schnorr. The manuscript was approved for publication in the <a href="https://www.isc-hpc.com/research-papers-2022.html">ISC High Performance 2022</a> for the Research Papers session. A public companion is also availabl in GitLab: <a href="https://gitlab.com/anaveroneze/isc2022-companion/">https://gitlab.com/anaveroneze/isc2022-companion</a>.</p> <p> </p>
Water-soluble iron in PM2.5 in winter over six Chinese megacities: distributions, sources, and environmental implications
<p>We collected winter PM2.5 samples simultaneously in six Chinese megacities for analyzing ws‐Fe contents and speciation.</p>
Scattering and absorption coefficients calculated from size distributions and absorption photometer data at Dome C, Antarctica
<p>The file contains the scattering and absorption coefficients presented in</p> <p>Virkkula et al.: Aerosol optical properties calculated from size distributions, filter samples and absorption photometer data at Dome C, Antarctica and their relationships between seasonal cycles of sources, ACP-2021-562.</p> <p> </p>
Group and individual social network metrics are robust to changes in resource distribution in experimental populations of forked fungus beetles
<p>Social interactions drive many important ecological and evolutionary processes. It is therefore essential to understand the intrinsic and extrinsic factors that underlie social patterns. A central tenet of the field of behavioral ecology is the expectation that the distribution of resources shapes patterns of social interactions.</p> <p>We combined experimental manipulations with social network analyses to ask how patterns of resource distribution influence complex social interactions.</p> <p>We experimentally manipulated the distribution of an essential food and reproductive resource in semi-natural populations of forked fungus beetles (Bolitotherus cornutus). We aggregated resources into discrete clumps in half of the populations and evenly dispersed resources in the other half. We then observed social interactions between individually marked beetles. Half-way through the experiment, we reversed the resource distribution in each population, allowing us to control any demographic or behavioral differences between our experimental populations. At the end of the experiment, we compared individual and group social network characteristics between the two resource distribution treatments.</p> <p>We found a statistically significant but quantitatively small effect of resource distribution on individual social network position and detected no effect on group social network structure. Individual connectivity (individual strength) and individual cliquishness (local clustering coefficient) increased in environments with clumped resources, but this difference explained very little of the variance in individual social network position. Individual centrality (individual betweenness) and measures of overall social structure (network density, average shortest path length, and global clustering coefficient) did not differ between environments with dramatically different distributions of resources.</p> <p>Our results illustrate that the resource environment, despite being fundamental to our understanding of social systems, does not always play a central role in shaping social interactions. Instead, our results suggests that sex differences and temporally fluctuating environmental conditions may be more important in determining patterns of social interactions.</p>
Fig. 3 in New Findings Of White Clawed Crayfish, Austropotamobius Pallipes (Decapoda, Astacidae), And Peculiarities Of Its Spatial Distribution In Neretvica (Bosnia And Herzegovina)
Fig. 3. Isobath map (depth, m) and isopach map (velocity, m/s) (the locations of the crayfish catches are marked with red dots).
Fig. 6 in New Findings Of White Clawed Crayfish, Austropotamobius Pallipes (Decapoda, Astacidae), And Peculiarities Of Its Spatial Distribution In Neretvica (Bosnia And Herzegovina)
Fig. 6. Extraction of the crayfish from the trap at Neretvica near the confluence with the Crny Potok.
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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.