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594 results for “Mission”
Fig. 4 in Probable protective mission of actinomycetes associated with black garden ants, Lasius niger (Linnaeus, 1758) (Hymenoptera: Formicidae)
Fig. 4. Antagonistic activity of actinomycete strains, associated with L. niger: a — heatmap of antagonism to Bacillus thuringiensis (B.th.), Paenibacillus alvei (P.al.),Staphylococcus aureus (S.aur.), Conidiobolus coronatus(C.cor.), Beauveria bassiana (B.bas.), Candida albicans (C.alb): from the absence of inhibition zones of test organisms (neutralism) to pronounced suppression zones with a width of more than 15 mm (antagonism); b — agar diffusion method for in vitro determination of antimicrobial activity against Staphylococcus aureus ATCC 25923. The numbers indicate strains: 1 — Lf5; 2 — Nm19; 3 — L5-1; 4 — L2-5; 5 — L4-2; 6 — Nm4; 7 — Lf15; 8 — Lf8; 9 — L2-6; 10 — L1-9. Рис. 4. АнтагонистическаЯ активность актиномицетов, ассоциированных с L. niger: a — тепловаЯ карта подавлениЯ роста Bacillus thuringiensis (B.th.), Paenibacillus alvei (P.al.), Staphylococcus aureus (S.aur.), Conidiobolus coronatus (C.cor.), Beauveria bassiana(B.bas.), Candida albicans (C.alb): от отсутствиЯ Зон ингибированиЯ тест-органиЗмов (нейтралиЗм) до выраженных Зон угнетениЯ Шириной более 15 мм (антагониЗм); b — определение антимикробной активности in vitro в отноШении Staphylococcus aureus ATCC 25923 методом диффуЗии в агар. Цифрами помечены Штаммы: 1 — Lf5, 2 — Nm19, 3 — L5-1, 4 — L2-5, 5 — L4-2, 6 — Nm4, 7 — Lf15, 8 — Lf8, 9 — L2-6, 10 — L1-9.
Fig. 3 in Probable protective mission of actinomycetes associated with black garden ants, Lasius niger (Linnaeus, 1758) (Hymenoptera: Formicidae)
Fig. 3. Morphology of spore chains of the dominated streptomycete strains after incubation on ISP 3 agar at 28°C for 14 days: Streptomyces sp. L1-9 (a), Streptomyces sp. L2-5 (b), Streptomyces sp. L4-2 (c), Streptomyces sp. Lf5 (d), Streptomyces sp. Nm19 (e), Streptomyces sp. Nm4 (f). Рис. 3. МорфологиЯ цепочек спор доминируюЩих Штаммов стрептомицетов, выделенных иЗ муравьев Lasius niger, после инкубации в течении 14 дней на овсЯном агаре при 28°С: Streptomyces sp. L1-9 (a), Streptomyces sp. L2-5 (b), Streptomyces sp. L4-2 (c), Streptomyces sp. Lf8 (d), Streptomyces sp. Nm19 (e), Streptomyces sp. Nm4 (f).
Datasets for Abyssal Marine Tectonics from the SWOT Mission
<p> </p> <p>swot_vgg.grd:</p> <p>vertical gravity gradient from SWOT ocean data spanning April 2023 to July 2024.</p> <p>VGG SWOT.kmz:</p> <p>google earth overlay showing details of SWOT VGG.</p> <p>The GEBCO grid is from:</p> <p>https://www.gebco.net/data_and_products/gridded_bathymetry_data/#global</p> <p>Nadir models (east_32.1.nc, north_32.1.nc, curve_32.1.nc) are from: <a href="https://topex.ucsd.edu/pub/global_grav_1min/" rel="nofollow">https://topex.ucsd.edu/pub/global_grav_1min/</a></p>
Adaptive planning for assistive-care robotic missions - use case 1
<p>Videos of scenarios A and B from Use Case 1 (UC1), recreated in a digital environment using the <a href="https://gazebosim.org/home">Gazebo</a> simulator and our adaptive path-finding framework.</p>
Drone-based Thermal Target Tracking with Track Segment Association for Search and Rescue Missions
<p>Supplementary_Video_S1.mp4</p> <p>Supplementary_Video_S2.mp4</p> <p>Supplementary_Video_S3.mp4</p> <p>Supplementary_Video_S4.mp4</p> <p>Supplementary_Video_S5.mp4</p> <p>Supplementary_Video_S6.mp4</p>
"Coastal clean-up project": Pepsico and WWF-Pakistan's mission to clean Karachi's Beaches
<p>Video resumen de un artículo presentado en el VI Congreso Latinoamericano de Marketing Social en Brasil</p>
Relating North Atlantic Deep Water transport to ocean bottom pressure variations as a target for satellite gravimetry missions
Open the record for dataset details and reuse information.
Supporting data for 68 LECs in the two candidate landing areas of China's first Mars mission (Tianwen-1)
<p>For all 68 LECs (44 in SUIP and 24 in SCP): (1) the CSFD-based dating plots, (2) the CTX mosaic for their ejecta deposits outline (blue line) and identifiable superposed craters (red circles), (3) the resulting SCC files (used for dating) for individual LECs exported from ArcGIS with the “Crater Tools", and (4) the geologic maps arranged in ArcGIS version shown in Figure 3 are here provided as supporting data. They have been introduced in the following publication, where more details can be found:</p> <p> </p> <p>Shengli Niu, Feng Zhang, Kaichang Di, Sheng Gou, Zongyu Yue</p> <p><strong>Layered Ejecta Craters in </strong><strong>the Candidate Landing Areas of </strong><strong>China's First Mars Mission (Tianwen-1)</strong><strong>: Implications for Subsurface Volatile Concentrations</strong></p> <p>Journal of Geophysical Research: Planets, 127, e2021JE007089. https://doi.org/10.1029/2021JE007089</p>
Comparison of a system using the MROS metacontroller to a benchmark system (Baseline) for a navigation mission
<p>The data from this navigation mission experiment of the paper "MROS: Runtime AdaptationFor Robot Control Architectures" can be found in this repo.</p>
FIGURE 6 in Revisiting Glaziou and the botany of the second Cruls Mission: three new species and 23 accepted species of Myrcia (Myrtaceae) collected from Goiás, Brazil and a detailed description of his "Goyaz" itinerary
FIGURE 6. Glaziou's itinerary in the Distrito Federal (1894-1895). Grey scale is indicative of altitude with darker shades higher. Black triangle indicates Base Camp (Chico Lobo).
FIGURE 5 in Revisiting Glaziou and the botany of the second Cruls Mission: three new species and 23 accepted species of Myrcia (Myrtaceae) collected from Goiás, Brazil and a detailed description of his "Goyaz" itinerary
FIGURE 5. Glaziou's itinerary in Goiás and the Distrito Federal (1894-1895). Coloured dots = Goiás; black dots = Distrito Federal. Grey scale is indicative of altitude with darker shades higher.
FIGURE 4. Field images. A – C in Revisiting Glaziou and the botany of the second Cruls Mission: three new species and 23 accepted species of Myrcia (Myrtaceae) collected from Goiás, Brazil and a detailed description of his "Goyaz" itinerary
FIGURE 4. Field images. A – C Myrcia siriacoana; D – E Myrcia tocantinensis; F – H Myrcia depauperata. Photographs by P.O. Rosa and T.N.C. Vasconcelos.
FIGURE 3 in Revisiting Glaziou and the botany of the second Cruls Mission: three new species and 23 accepted species of Myrcia (Myrtaceae) collected from Goiás, Brazil and a detailed description of his "Goyaz" itinerary
FIGURE 3. Myrcia tocantinensis. Top (left to right): habit, longitudinal section of bud, open flower and bud with bracteoles. Bottom (left to right): adaxial surface of whole leaf, detail of adaxial surface, abaxial surface whole leaf and detail of abaxial surface (Cezare et al. 551 at UB).
FIGURE 1 in Revisiting Glaziou and the botany of the second Cruls Mission: three new species and 23 accepted species of Myrcia (Myrtaceae) collected from Goiás, Brazil and a detailed description of his "Goyaz" itinerary
FIGURE 1. Myrcia depauperata. Top (left to right): habit, inflorescence, bud and dissected bud. Bottom (left to right): flower, old flower, transversal section of ovary and longitudinal section of old flower (Proença 2564 at UB).
Ouseley mission to Persia 1810-15 – Data on people mentioned and others of relevance
<p>These files form part of an archive of research data relating to the diplomatic mission to Persia 1810-15, led by Sir Gore Ouseley as ambassador. The data have been compiled by independent researchers W H (Bill) Martin and Sandra Mason; their contact details are in the README file.. The files comprise a number of searchable listings relating to the reports produced by members of the mission and other relevant data. The data formed the basis for a published report on the Ouseley Mission referenced below, which is also part of the archive. </p> <p>This section of the archive contains a database, <em>ouspeople</em>, listing people mentioned in the reports on the Ouseley mission and others of relevance to the analysis. The database file has been saved in two formats: a Microsoft Access database (.accdb) and a comma-delimited text file (.txt). The explanatory README text file contains a table showing the fields included in the database and giving definitions of them and of the codings used in different cases. </p>
Joint Use of Far-Infrared and Mid-Infrared Observation for Sounding Retrievals: Learning from the Past for Upcoming Far-Infrared Missions
<p>Dataset and software (Matlab) used for the analysis of synoptic weather pattern, information content and retrieval estimates</p>
Analytical datasets of impact glass beads from the Chang'e-5 mission
<p>Table 1. Summary information of mount CE5#33</p> <p>Table 2. EPMA analytical results of CE5 impact glass beads with smooth and clear textures.</p> <p>Table 3. NanoSIMS analytical results of water abundances and hydrogen isotope compositions of the standards.</p> <p>Table 4. Water abundances and hydrogen isotope compositions of CE5 impact glass beads after correction of spallation effects.</p> <p>Table 5. Summary of water abundances and hydrogen isotope compositions of melt inclusions, impact glasses, and pyroclastic glass beads from lunar samples in the literature.</p>
Data of the paper "The ionospheric exploration based on TJU#01 meteorological microsatellite mission: initial results"
<p>Ionospheric occultation data of the paper "The ionospheric exploration based on TJU#01 meteorological microsatellite mission: initial results"</p>
EFECT Modelling Mission 2023 | Input dataset
<p>This upload contains the supplementary data for the EFECT modelling mission 2023.</p> <p> </p>
Lunar Landing Missions: Lander Mass & Blast Zone Area
<p><strong>This page archives data used in the following article:</strong></p> <p><strong>Qiao, L., Hess, M., Xu, L., Wöhler, C., Head, J. W., Chen, J., Wang, Y., Bugiolacchi, R., Xiao, A., Zhang, F., Ling, Z., 2023. Extensive lunar surface disturbance at the Chang’e-5 mission landing site: Implications for future lunar base design and construction. <em>Journal of Geophysical Research: Planets</em>, 128, e2022JE007730. <a href="https://doi.org/10.1029/2022JE007730" target="_blank" rel="noopener">https://doi.org/10.1029/2022JE007730</a></strong></p> <p><strong>It contains lander dry mass and blast zone area values for Apollo, Luna, Surveyor, and Chang’e missions, the data plotted in Figure 8 of the above article.</strong></p>
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.