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594 results for “Mission”
FIGURES 53–54 in Neotropical Agromyzidae (Diptera) of the Mission Géodésique de l'Équateur: Becker (1920) revisited
FIGURES 53–54. Nemorimyza fuscibasis (Malloch), (53) phallus, lateral, (54) phallus, ventral. Scale bar = 0.05 mm.
FIGURES 48–52 in Neotropical Agromyzidae (Diptera) of the Mission Géodésique de l'Équateur: Becker (1920) revisited
FIGURES 48–52. Liriomyza sp. A, (48) postgonites, (49) postgonites and subepandrial sclerites, (50) epandrium, lateral, (51) left side of epandrium, arrow shows hook-like projection, (52) ejaculatory apodeme. Scale bars = 0.05 mm.
FIGURES 44–47 in Neotropical Agromyzidae (Diptera) of the Mission Géodésique de l'Équateur: Becker (1920) revisited
FIGURES 44–47. Liriomyza nigra, (44) phallus, lateral, (45) phallus, ventral, (46) ejaculatory apodeme, (47) epandrium with subepandrial sclerites. Scale bars = 0.05 mm.
FIGURES 38–43. Liriomyza biformata. 38–41, L in Neotropical Agromyzidae (Diptera) of the Mission Géodésique de l'Équateur: Becker (1920) revisited
FIGURES 38–43. Liriomyza biformata. 38–41, L. braziliensis (holotype) (38) phallus, lateral, (39) phallus, ventral, (40) epandrium showing surstylus, (41) ejaculatory apodeme. 42–43, L. biformata, Ecudaor (42) phallus, lateral (43) phallus, ventral. Scale bars = 0.05 mm.
FIGURES 32–37 in Neotropical Agromyzidae (Diptera) of the Mission Géodésique de l'Équateur: Becker (1920) revisited
FIGURES 32–37. Liriomyza biformata Becker (holotype), (32) head anterior, double-arrow shows epistoma depth, (33) head, lateral, (34) head, dorsal, (35) scutellum, (36) L. braziliensis, (holotype): scutellum and pre-scutellar area (37) L. ecuadorensis (holotype), scutellum and pre-scutellar area.
FIGURES 25–27 in Neotropical Agromyzidae (Diptera) of the Mission Géodésique de l'Équateur: Becker (1920) revisited
FIGURES 25–27. Cerodontha nigricornis Becker, (25) phallus, lateral (before dissection), (26) phallus, lateral, (27) phallus, ventral. Scale bars = 0.05 mm.
FIGURES 28–31 in Neotropical Agromyzidae (Diptera) of the Mission Géodésique de l'Équateur: Becker (1920) revisited
FIGURES 28–31. Liriomyza biensis Boucher, (28) phallus, lateral. Inset shows freshly dissected specimen, (29) phallus, ventral. Inset shows freshly dissected specimen, (30) epandrium and surstyli, (31) ejaculatory apodeme. Scale bars = 0.05 mm.
FIGURES 21–24 in Neotropical Agromyzidae (Diptera) of the Mission Géodésique de l'Équateur: Becker (1920) revisited
FIGURES 21–24. Cerodontha colombiensis Spencer, (21) phallus, lateral, (22) phallus, ventral. Cerodontha dorsalis (Loew) (specimens from Jamaica), (23) phallus, lateral, (24) phallus, ventral. Scale bars = 0.05 mm.
FIGURES 10–16 in Neotropical Agromyzidae (Diptera) of the Mission Géodésique de l'Équateur: Becker (1920) revisited
FIGURES 10–16. Melanagromyza pontis Boucher, (10) phallus, lateral, (11) phallus, ventral. Inset shows freshly dissected specimen, (12) epandrium, arrow shows small spine at hind corner, (13) epandrium, posterior, arrow shows small patch of setae on surstylus, (14) surstylus, lateral, arrow shows small patch of setae, (15) hypandrium with apodeme, (16) ejaculatory apodeme. Scale bars = 0.05 mm.
FIGURES 7–9 in Neotropical Agromyzidae (Diptera) of the Mission Géodésique de l'Équateur: Becker (1920) revisited
FIGURES 7–9. Melanagromyza memoranda Spencer, (7) phallus, lateral, (8) phallus, ventral, (9) hypandrium and epandrium, arrow shows small epandrial spine. Scale bars = 0.05 mm except Fig. 9 = 0.01 mm.
FIGURES 17–20 in Neotropical Agromyzidae (Diptera) of the Mission Géodésique de l'Équateur: Becker (1920) revisited
FIGURES 17–20. Cerodontha angela Boucher, (17) phallus, lateral. Inset shows freshly dissected specimen with phallus strongly sclerotized, (18) phallus, ventral, (19) epandrium and associated structures, (20) ejaculatory apodeme. Scale bars = 0.05 mm.
FIGURES 1–6 in Neotropical Agromyzidae (Diptera) of the Mission Géodésique de l'Équateur: Becker (1920) revisited
FIGURES 1–6. Melanagromyza lini Spencer, (1) phallus, lateral, (2) phallus, ventral, (3) hypandrium and epandrium. Inset shows hypandrium of freshly dissected specimen, (4) hypandrium and phallus, holotype, permanent mount, (5) ejaculatory apodeme. Inset shows freshly dissected specimen, (6) epandrium, lateroventral. Scale bars = 0.05 mm.
Weta Robot Autonomous Mission with AgRob4Demeter Supervision and Mobile User Interface
<p>This is a demonstration video of <a href="https://gitlab.inesctec.pt/agrob/agrob4demeter/-/tree/ros-foxy?ref_type=heads">AgRob4Demeter </a>Supervision System during a spraying autonomous mission of <a href="https://scorpion-h2020.eu/weta-robot-from-scorpion-wins-the-if-prize/">Weta </a>Robot, with a mobile user interface to follow the mission execution. </p><p> </p>
From Microorganisms to Biosignatures: Subcritical Water Extraction as a Sample Preparation Technique for Future Life Detection Missions
<p>Data for all figures included in "From Microorganisms to Biosignatures: Subcritical Water Extraction as a Sample Preparation Technique for Future Life Detection Missions". Amino acid concentrations, enantiomeric excesses, and relative distributions for E. coli cells and B. subtilis spores after subcritical water extraction for 30 min at 200 °C using water and dilute acid.</p>
Mission Océanographique BALGIM - Compte-rendu et liste des stations
<p>Cruise report and list of sampling stations</p>
Lightning sferic data from China for Thor-Davis mission
<p>The dataset contains three VLF/LF station signals only used for the THOR-DAVIS missions. The filename of the txt is the beginning time of the first point of the event. The txt has three columns, representing three channel signal with different bandwidths and gains.</p>
Models for "Pre-Mission InSights on the Interior of Mars"
<p>See README.txt file in archive for information.</p> <p>This directory includes all reference models as desribed in "Pre-Mission<br> InSights on the Interior of Mars" by Smrekar et al. in Space Science Reviews. </p> <p>For full author list, see the Space Science Reviews paper.</p> <p>There are 13 models, and each one is available in 2 formats. The files with<br> the extension bm are in a format compatible with the AxiSem wave propagation<br> code, while the .deck models are compatible with the normal mode code MINEOS.</p> <p>The models are all plotted in figure 19 of the paper.<br> </p> <p> </p> <p> </p>
Research Libraries on a Mission: Engaging the Public
<p>Audio from <em>Session 8: Research Libraries on a Mission - Engaging the Public</em>, held Thursday 27 June 2019 at the LIBER 2019 Annual Conference.</p> <p>Talks included:</p> <ul> <li>8.1 <a href="https://doi.org/10.5281/zenodo.3259729">The Social Mission of 21st Century Research Libraries: Building Data Literate Communities</a>, Sheila Mary Corrall, University of Pittsburg, United States of America</li> <li>8.2 <a href="https://doi.org/10.5281/zenodo.3259733">Enriching Europeana: the Crowdsourcing Platform of the European Library</a>, Hui Ting Chung, Austrian National Library, Austria</li> <li>8.3 <a href="https://doi.org/10.5281/zenodo.3259741">#Protest: Info-Activism, Archive Literacy and Digital Learning</a>, Dr Barry Houlihan, NUI Galway, Ireland</li> <li>8.4 <a href="https://doi.org/10.5281/zenodo.3259743">Open Data for the Crowd: an Account of Citizen Science at the ETH Library</a>, Stefan Wiederkehr, ETH Zurich, Switzerland</li> <li>8.5 <a href="https://doi.org/10.5281/zenodo.3259751">Crowdsourcing at the Austrian National Library</a>, Paul David Sommersguter, Austrian National Library, Austria</li> </ul>
Fig. 2 in Probable protective mission of actinomycetes associated with black garden ants, Lasius niger (Linnaeus, 1758) (Hymenoptera: Formicidae)
Fig. 2. Neighbor-joining tree based on 16S rRNA gene sequences showing the relationship between actinomycetes associated with Lasius niger and related type strains. Strains from different nests are marked with pictograms of different colors: Krylatskoye (black), Leninskie gory (gray), Filevsky park (white). Рис. 2. Филогенетическое положение Штаммов актиномицетов, ассоциированных с Lasius niger и блиЗких им генетически типовых Штаммов стрептомицетов, на основании NJ-аналиЗа нуклеотидных последовательностей фрагмента гена 16S рРНК. Штаммы иЗ раЗных гнеЗд отмечены пиктограммами раЗных цветов: Крылатское (черные), Ленинские горы (серые), Филевский парк (белые).
Fig. 1 in Probable protective mission of actinomycetes associated with black garden ants, Lasius niger (Linnaeus, 1758) (Hymenoptera: Formicidae)
Fig. 1. Nocardia strains in heads of Lasius niger are most related to Nocardia fluminea DSM 44489: cultural features on ISP 2 (left), morphological characteristics studied by SEM (center), the structure of actinomycete communities on ants (right). Рис. 1. Представители рода Nocardia в головном отделе Lasius niger представлены Штаммами, наиболее блиЗкими к Nocardia fluminea DSM 44489: культуральные приЗнаки на среде ISP2 (слева), морфологические приЗнаки, иЗученные с помоЩью сканируюЩей Электронной микроскопии (в центре), структура актиномицетных комплексов (справа).
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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.