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156 results for “underground”
PROCESS OF MOVEMENT OF ROCKS IN ORE MINES AND MEASURES TO PROTECT THE OBJECTS OF UNDERGROUND EXCAVATION WORKS FROM HARMFUL EFFECTS
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Demo: Virtual Tour through the Mont Terri Underground Research Laboratory
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Demo: Prototype of a Virtual Experiment Information System for the Mont Terri Underground Laboratory
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Figure 2 from: Rosa G, Penado A (2013) Rana iberica (Boulenger, 1879) goes underground: subterranean habitat usage and new insights on natural history. Subterranean Biology 11: 15-29. https://doi.org/10.3897/subtbiol.11.5170
Figure 2 - Polar coordinates representing the activity cycle and breeding period of Rana iberica in two different sites (inside the drainage gallery in Sazes and the whole area of Planalto Superior) in Serra da Estrela; Portugal. Dark brown areas: post-metamorphic phase; beige areas: larval phase; green areas: adults in breeding activity.
Figure 1 from: Rosa G, Penado A (2013) Rana iberica (Boulenger, 1879) goes underground: subterranean habitat usage and new insights on natural history. Subterranean Biology 11: 15-29. https://doi.org/10.3897/subtbiol.11.5170
Figure 1 - Serra da Estrela Natural Park and hypogean habitat used by individuals of Rana iberica: A entrance of the underground spring B Schistostega pennata covering walls and floor of the drainage gallery C horizontal tunnel of drainage gallery. Photo A by Madeira M, B by Rosa GM, C by Laurentino T.
Figure 5 from: Rosa G, Penado A (2013) Rana iberica (Boulenger, 1879) goes underground: subterranean habitat usage and new insights on natural history. Subterranean Biology 11: 15-29. https://doi.org/10.3897/subtbiol.11.5170
Figure 5 - Rana iberica tadpoles feeding on lost clutch: A fresh egg mass of Rana iberica laid (mostly) above water surface (11 March, 2012) B group of tadpoles feeding on the dead eggs (29 April, 2012) C, D and E close ups of tadpole feasting on the eggs. Photos by Rosa GM.
Figure 6 from: Rosa G, Penado A (2013) Rana iberica (Boulenger, 1879) goes underground: subterranean habitat usage and new insights on natural history. Subterranean Biology 11: 15-29. https://doi.org/10.3897/subtbiol.11.5170
Figure 6 - Salamandra salamandra gallaica larvae predation upon Rana iberica tadpole on the 29 April (2012): A individual of salamander approaching tadpole instants before seizing it B salamander larval ingesting tadpole. Photos by Rosa GM.
Figure 4 from: Rosa G, Penado A (2013) Rana iberica (Boulenger, 1879) goes underground: subterranean habitat usage and new insights on natural history. Subterranean Biology 11: 15-29. https://doi.org/10.3897/subtbiol.11.5170
Figure 4 - Egg and early life stages of Rana iberica inhabiting a drainage gallery in Serra da Estrela, Portugal: A egg mass stuck to underwater rock (28 January, 2012) B eggs' detail with new born tadpoles (one day old) C tadpole with dark pigmented colouration (Gosner stage 25; 11 March, 2012) D recently post-metamorphic individual (31 May, 2012). Photos by Rosa GM.
Figure 3 from: Rosa G, Penado A (2013) Rana iberica (Boulenger, 1879) goes underground: subterranean habitat usage and new insights on natural history. Subterranean Biology 11: 15-29. https://doi.org/10.3897/subtbiol.11.5170
Figure 3 - Adult individuals of Rana iberica found inhabiting a drainage gallery in Serra da Estrela, Portugal: A male with typical lichen-shaped pattern on the back B female hidden in a crevice of the gallery C male climbing up the wall D couple in axillary amplexus in water E axillary amplexus out of the water. Photos by Rosa GM.
Figure 3 from: Rudy J, Rendoš M, Ľuptáčik P, Mock A (2018) Terrestrial isopods associated with shallow underground of forested scree slopes in the Western Carpathians (Slovakia). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. Title. ZooKeys 801: 323-335. https://doi.org/10.3897/zookeys.801.24113
Figure 3 Depth distribution of Mesoniscusgraniger. Site 1 is out of the species range. Study sites 4 and 5 were not depicted, because whole depth gradient was not represented (see locality description).
Figure 2 from: Rudy J, Rendoš M, Ľuptáčik P, Mock A (2018) Terrestrial isopods associated with shallow underground of forested scree slopes in the Western Carpathians (Slovakia). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. Title. ZooKeys 801: 323-335. https://doi.org/10.3897/zookeys.801.24113
Figure 2 Ethylene glycol to formaldehyde ratio of sampled specimens from all study sites, where both fixating solutions were used.
Figure 1 from: Rudy J, Rendoš M, Ľuptáčik P, Mock A (2018) Terrestrial isopods associated with shallow underground of forested scree slopes in the Western Carpathians (Slovakia). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. Title. ZooKeys 801: 323-335. https://doi.org/10.3897/zookeys.801.24113
Figure 1 Location of the study sites. 1/ Borinka (Malé Karpaty Mts.), 2/ Belinské skaly (Cerová vrchovina Highlands), 3/ Drienok Valley, 4/ Slope next to the Malá drienčanská Cave, 5/ Collapse above the Veľká drienčanská Cave (three sites are in the Revúcka vrchovina Highlands), 6/ Vysoký vrch Hill, 7/ Doline next to Silická ľadnica Ice Cave (both sites in Slovak Karst), 8/ Malý Ružinok Valley (Čierna hora Mts.).
Figure 4 from: Rudy J, Rendoš M, Ľuptáčik P, Mock A (2018) Terrestrial isopods associated with shallow underground of forested scree slopes in the Western Carpathians (Slovakia). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. Title. ZooKeys 801: 323-335. https://doi.org/10.3897/zookeys.801.24113
Figure 4 Comparison of warm and cold period sampling of Mesoniscusgraniger on study sites 2, 3, 6, 7.
Fig. 3. Key NOESY correlations for compounds 1–4 in Secondary metabolites from the underground parts of Valeriana sisymbriifolia Vahl. and their in vitro cytotoxic activities
Fig. 3. Key NOESY correlations for compounds 1–4.
Fig. 2. 1H–1H in Secondary metabolites from the underground parts of Valeriana sisymbriifolia Vahl. and their in vitro cytotoxic activities
Fig. 2. 1H–1H–COSY and Key HMBC (arrow, C→H) correlations of 1–4.
Fig. 7. Predictable biosynthesis pathway for some polyacetylenes and acetylenes from S in Comprehensive characterization of polyacetylenes and diterpenes from the underground parts of Solidago altissima L. and their contribution to the overall allelopathic activity
Fig. 7. Predictable biosynthesis pathway for some polyacetylenes and acetylenes from S. altissima.
Fig. 2 in Comprehensive characterization of polyacetylenes and diterpenes from the underground parts of Solidago altissima L. and their contribution to the overall allelopathic activity
Fig. 2. Chemical structures of compounds 1–10 isolated from the underground parts of S. altissima.
Fig. 5. HMBC correlations observed for 3 in Ecdysteroids from the underground parts of Rhaponticum acaule (L.) DC
Fig. 5. HMBC correlations observed for 3.
Fig. 7. NOESY correlations observed for 4 and 5 in Ecdysteroids from the underground parts of Rhaponticum acaule (L.) DC
Fig. 7. NOESY correlations observed for 4 and 5.
Fig. 2 in Ecdysteroids from the underground parts of Rhaponticum acaule (L.) DC
Fig. 2. Molecular fragments of compound 1.
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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)
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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.