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FIGURES 14–22. Margattea bisignata Bey-Bienko 14 head 15 maxillary palps 3–5 16 pronotum 17 tegmen 18 hind wing 19 front femur 20 eighth abdominal tergum 21 in Four new and three redescribed species of the cockroach genus Margattea Shelford, 1911 (Blattodea, Ectobiidae, Pseudophyllodromiinae) from China
FIGURES 14–22. Margattea bisignata Bey-Bienko 14 head 15 maxillary palps 3–5 16 pronotum 17 tegmen 18 hind wing 19 front femur 20 eighth abdominal tergum 21 supra-anal plate and paraprocts, ventral view 22 subgenital plate and phallomeres, dorsal view. Scale bars=0.5mm (Figs. 14–16, 19–22), 2.0mm (Figs. 17–18).
FIGURE 1. Aspidistra nikitensis. A. Flower, front view. B. Flower with partly removed perigone, side view. C, D in Aspidistra nikitensis (Asparagaceae, Nolinoideae), a new species from Vietnam
FIGURE 1. Aspidistra nikitensis. A. Flower, front view. B. Flower with partly removed perigone, side view. C, D. Longitudinal sections of flower. E. Plant with flowers. F, G. Habit.
Resonance at the front of lightning impulse voltage waveforms caused by the load capacitor
<p>On the front of impulse voltage waveform, the voltage usually increases up to thousands of kV within one microsecond, and the frequency range covers up to several megahertz. The capacitor in the high voltage arm is usually from 400 ‍pF to 1000‍ pF. We calculated the impedance of different capacitors in damped capacitive divider at the frequency range from 100‍ kHz to 1000‍ kHz. As Fig. 3 shows, the impedance ranges from 160‍ ohm to 4000‍ ohm.</p>
FIGURE 2. Cattleya porphyrascens. A. Habit. B. Front view. C. Profile. D, Rear view. E. Peduncle. F. Petals and sepals. G. Entire labellum flattened. H. Labellum dissected. I. Median lobe. J in Cattleya porphyrascens, a new species (Laeliinae) of the genus Cattleya is described for Minas Gerais State, Brazil
FIGURE 2. Cattleya porphyrascens. A. Habit. B. Front view. C. Profile. D, Rear view. E. Peduncle. F. Petals and sepals. G. Entire labellum flattened. H. Labellum dissected. I. Median lobe. J. View of the white lamella. K. Column, ventral view, dorsal, and side profile. L. Anther. M. Pollinia. Photographs by Mauro Sergio Rosim based on the Holotype.
Replication Data for: ``Toward machine learning-augmented, bathymetry-aware parameterizations of mesoscale eddy buoyancy fluxes across upwelling slope fronts''
<p>This dataset contains the Python scripts for training the Artificial Neural Networks (ANNs), the trained ANNs, configuration files for the reference 2D MITgcm simulations, and model outputs used in the paper.</p>
FIGURE 4. Cyrtopodium virescens. A. Flower, front view. B in A New Overlooked Species of Cyrtopodium (Cymbidieae, Orchidaceae) from the Southern Andean Yungas and Chaco Serrano Ecoregions of Northern Argentina and Southwestern Bolivia
FIGURE 4. Cyrtopodium virescens. A. Flower, front view. B. Lip, front view, showing the callus. C. Leaves fully developed. Cyrtopodium paniculatum. D. Habit. E. Flower, front view. F. Flower, ¾ lateral view. A and B from Batista 2137 (BHCB 119818), photos by João A. N. Batista; C from Batista 472 (CEN 21209); D and E from a specimen in cultivation from Venezuela (Francischete s.n. - CEN 40588), photos by João A. N. Batista; F from Ecuador (Salazar 9801 - MEXU), photo by Gerardo A. Salazar.
FIGURE 1. Cyrtopodium valebellae. A. Habit and inflorescence. B. Pseudobulbs and young leaves. C. Flower, front view. D in A New Overlooked Species of Cyrtopodium (Cymbidieae, Orchidaceae) from the Southern Andean Yungas and Chaco Serrano Ecoregions of Northern Argentina and Southwestern Bolivia
FIGURE 1. Cyrtopodium valebellae. A. Habit and inflorescence. B. Pseudobulbs and young leaves. C. Flower, front view. D. Plant in situ. E. Flower, front view. A and B from plants in cultivation in Jardín Botánico de la Fundación Miguel Lillo, photos by Jazmín Senz; C from Tucumán, Argentina, photo by Miriam Valebella; D and E from Gran Chaco, Tarija, Bolivia, photos by Ludmila Pizarro.
Sediment gravity-flow drives the buildup of the modern Huanghe (Yellow River) delta front
<p>The dataset contains the output data of the numerical model and the source code for processing the data.</p> <p>1 Model validation </p> <p>The simulation time period covers 1996 to 2010 CE for H1, 1986 to 2009 CE for H2, and 1986 to 2008 CE for H3.</p> <p>1.1 The grain size distribution of the H1-H3 profile .grain</p> <p>1.2 The seafloor topography of the H1-H3 profile .bin</p> <p> </p> <p>2 Sensitivity numerical experiments</p> <p>2.1 The grain size distribution of the YD01-YD03 cores .grain</p> <p>We selected three cores (YD01, YD02, and YD03) at the H2 profile, simulated for the period of 1986-2006.</p> <p>2.2 The seafloor topography of the H2 profile .bin</p> <p>The model runs over timespans of 10 years (1986 to 1996), 20 years (1986 to 2006), and 30 years (1986 to 2015).</p> <p>2.3 The measured seafloor topography of the H2 profile .xlsx</p> <p>2.4 Original experimental data related to soil core samples .xlsx</p> <p> </p> <p>3 The plot_ grain.m and plot_ elevation.m file is used to process and analyze grain size distribution and topography, respectively</p>
Datasets associated with the publication: "The three-dimensional structure of fronts in mid-latitude weather systems in numerical weather prediction models".
<p>ECMWF HRES and ERA5 datasets for the paper "The three-dimensional structure of fronts in mid-latitude weather systems in numerical weather prediction models".</p> <p>Content: </p> <p>========================================================================================</p> <p>Storm Friederike:</p> <p>ECMWF HRES forecast, 18.01.2018 00:00 UTC - 23:00 UTC, hourly, GRIB-format.</p> <p>ECMWF ERA5 reanalysis, 16.01.2018 12:00 UTC - 19.01.2018 00:00 UTC, twelve-hourly data, GRIB-format.</p> <p>========================================================================================</p> <p>Storm Vladiana:</p> <p>ECMWF HRES analysis, 23.09.2016 00:00 UTC - 23.09.2016 00:00 UTC, six-hourly data, rotated North Pole (latitude: 51˚, longitude: 160˚), NetCDF-format.</p> <p>========================================================================================</p> <p>Storm Egon:</p> <p>ECMWF ERA5 reanalysis, 12.01.2017 00:00 UTC - 13.01.2017 06:00 UTC, six-hourly data, GRIB-format.</p>
FIGURE 3. Aeginetia acaulis. A. Habitat. B. Flowers, front view. C in Sorting out Aeginetia (Orobanchaceae) in Indochina: A. sessilis is a synonym of A. acaulis
FIGURE 3. Aeginetia acaulis. A. Habitat. B. Flowers, front view. C. Plant with long pedicels. Photos by V.C. Nguyen from Nguyen s.n. (A), V.C. Nguyen from Pham, Nguyen PVT1031 (B), X.T. Tran from Pham, Tran PVT1029 (C); design by M. Nuraliev.
FIGURE 1. Triphora gallegosii. A. Flowering plant B. Flower from front C. Flower from side D in A new species of Triphora (Orchidaceae: Triphoreae, Triphorinae) from Mexico
FIGURE 1. Triphora gallegosii. A. Flowering plant B. Flower from front C. Flower from side D. Flower in oblique view E. Dorsal sepal F. Petal G. Lateral sepal H. Lip I. Lip surface J. Margin of the central lobe K. Flower from side with petals and sepals removed showing the lip and the column in natural position L. Column from front M. Column from side N. Pollinarium from front O. Pollinarium from back. Drawing by R. Jiménez-Machorro from D. Szeszko sub R. Jiménez 2901.
Observations of multiple fronts in the near-field Yellow River plume
<p>The observed data for"Observations of multiple fronts in the near-field Yellow River plume"</p>
FIGURE 64. Orobanche colorata. A–C. General habit. D, E, G. Flower, front view. F. Flower, side view. H, J in Holoparasitic Orobanchaceae in Georgia (Caucasus): taxonomic revision, diversity, distribution, habitats and host range
FIGURE 64. Orobanche colorata. A–C. General habit. D, E, G. Flower, front view. F. Flower, side view. H, J. Representative habitats (H. Samtskhe-Javakheti prov., Timotesubani. I. Kakheti prov., Kvemo Bodbe). I. Representative host, Salvia nemorosa. Photos by R. Piwowarczyk.
FIGURE 56. Orobanche cicerbitae. A–D, O. General habit. E–G. Flower, side view. H–I. Flower, front view. J–M, P in Holoparasitic Orobanchaceae in Georgia (Caucasus): taxonomic revision, diversity, distribution, habitats and host range
FIGURE 56. Orobanche cicerbitae. A–D, O. General habit. E–G. Flower, side view. H–I. Flower, front view. J–M, P. Representative hosts (J–K, P. Caucasalia macrophylla. L–M. Pojarkovia pojarkovae). N, P, R. Representative habitats (N. Samegrelo-Zemo Svaneti prov., Shdugra waterfall near Mazeri. R. Mestia, in direction to Koruldi Lake trial. P. Racha-Lechkhumi and Kvemo Svaneti prov., S of Shovi, near the trail to Udziro Lake). Photos by R. Piwowarczyk.
FIGURE 54. Orobanche inulae. A–D. General habit. E–G. Flower, side view. H. Flower, front view. J–K in Holoparasitic Orobanchaceae in Georgia (Caucasus): taxonomic revision, diversity, distribution, habitats and host range
FIGURE 54. Orobanche inulae. A–D. General habit. E–G. Flower, side view. H. Flower, front view. J–K. Representative habitats (RachaLechkhumi and Kvemo Svaneti prov., S of Shovi, near the trail to Udziro Lake). I, L. Host, Inula orientalis. Photos by R. Piwowarczyk.
FIGURE 58. Orobanche mlokosiewiczii. A–D. General habit. E–G. Flower, side view. H–J. Flower, front view. K, M in Holoparasitic Orobanchaceae in Georgia (Caucasus): taxonomic revision, diversity, distribution, habitats and host range
FIGURE 58. Orobanche mlokosiewiczii. A–D. General habit. E–G. Flower, side view. H–J. Flower, front view. K, M. Habitat (MtskhetaMtianeti prov., Dariali Gorge, near Gveleti). L. Host, Aconitum cymbulatum. Photos by R. Piwowarczyk.
FIGURE 50. Orobanche ingens. A–D, L. General habit. E–G. Flower, side view. H–J. Flower, front view. K–M in Holoparasitic Orobanchaceae in Georgia (Caucasus): taxonomic revision, diversity, distribution, habitats and host range
FIGURE 50. Orobanche ingens. A–D, L. General habit. E–G. Flower, side view. H–J. Flower, front view. K–M. Represenative hosts (K. Heracleum leskovii. L–M. Ligusticum alatum). N. Representative habitat (Racha-Lechkhumi and Kvemo Svaneti prov., S of Shovi, near the trail to Udziro Lake). Photos by R. Piwowarczyk.
FIGURE 46. Orobanche hederae. A–C. General habit. D–F. Flower, side view. G–H. Flower, front view. I–K in Holoparasitic Orobanchaceae in Georgia (Caucasus): taxonomic revision, diversity, distribution, habitats and host range
FIGURE 46. Orobanche hederae. A–C. General habit. D–F. Flower, side view. G–H. Flower, front view. I–K. Representative habitat (I. Adjara, slopes of the Black Sea near Botanical Garden. J–K. Kakheti prov., Lagodekhi). J, K. Host, Hedera helix, H. colchica. Photos by R. Piwowarczyk.
FIGURE 44. Orobanche laxissima. A–C. General habit. D–F. Flower, side view. G–I. Flower, front view. J in Holoparasitic Orobanchaceae in Georgia (Caucasus): taxonomic revision, diversity, distribution, habitats and host range
FIGURE 44. Orobanche laxissima. A–C. General habit. D–F. Flower, side view. G–I. Flower, front view. J. Representative habitat, Kakheti prov., near Lagodekhi. K–N. Representative hosts (K. Carpinus orientalis. L. Fraxinus angustifolia. M. Acer campestre. N. Punica granatum). Photos by R. Piwowarczyk.
FIGURE 62. Orobanche gracilis. A–D, K, M. General habit. E–G. Flower, side view. H–J. Flower, front view. K, M in Holoparasitic Orobanchaceae in Georgia (Caucasus): taxonomic revision, diversity, distribution, habitats and host range
FIGURE 62. Orobanche gracilis. A–D, K, M. General habit. E–G. Flower, side view. H–J. Flower, front view. K, M. Representative habitats (K. Samtskhe-Javakheti prov., Kortaneti. M. Borjomi). L. Host, Cytisus ruthenicus. Photos by R. Piwowarczyk.
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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.