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138 results for “cliffs”
Indicative distribution map for Ecosystem Functional Group T6.2 Polar/alpine cliffs, screes, outcrops and lava flows
<p>This archive contains indicative distribution maps and profiles for <strong>T6.2 Polar/alpine cliffs, screes, outcrops and lava flows</strong>, a ecosystem functional group (EFG, level 3) of the <a href="https://global-ecosystems.org/">IUCN Global Ecosystem Typology</a> (v2.0). Please refer to Keith <em>et al.</em> (2020) for details.</p> <p>The descriptive profiles provide brief summaries of key ecological traits and processes, maps are indicative of global distribution patterns, and are not intended to represent fine-scale patterns. The maps show areas of the world containing major (value of 1, coloured red) or minor occurrences (value of 2, coloured yellow) of each ecosystem functional group. Minor occurrences are areas where an ecosystem functional group is scattered in patches within matrices of other ecosystem functional groups or where they occur in substantial areas, but only within a segment of a larger region. Given bounds of resolution and accuracy of source data, the maps should be used to query which EFG are likely to occur within areas, rather than which occur at particular point locations. Detailed methods and references for the maps are included in the profile (xml format).</p>
Common Raven (Corvus corax) Occupancy Survey and Habitat Selection Data in Cliff Habitat of the Central Appalachian Region, USA, 2009-2010
We identified 24 cliff sites across four states of the Central Appalachian Region of the eastern USA (Kentucky, North Carolina, Virginia, and West Virginia) with known raven occupancy at which to perform occupancy surveys for estimating detection probability and the effects of covariates. We surveyed each cliff site 2-4 times in either 2009 or 2010 and recorded time-to-first detection and time to confirmed cliff occupancy during a two-hour survey. Daily surveys were completed between 06:00 and local solar noon. During each survey, we recorded covariates, including air temperature at survey start time, cloud cover, wind speed, and day of year. We also calculated the distance of the observation point from the cliff being surveyed and the forest cover around the cliff. We also collected data thought to be pertinent for habitat selection by ravens on 26 cliffs occupied by ravens and 26 cliffs deemed unoccupied by ravens in 2010. For each cliff, we measured cliff physiographic characteristics, such as cliff length, cliff height, and occlusion by vegetation, and landscape characteristics, including percent forest and urban cover around the cliff and distances from the cliff to the nearest road and human habitation.
RFP01 Properties of large hillslope blocks and cliff faces along the cottonwood limestone near the konza prairie nature trail
This data is a collection of point observations and measurments of large rock fragments on grassland hillslopes. Data was collected from 30 hillslope transects that extend downslope perpidicular from the bedrock cliff formed from the Cottonwodd limestone. Transects are 30 meters long and 1 meter wide. Observations of blocks include properites such as size, shape, and surface weathering. This data set also includes observtions of cliff properties associated with each transpect location. Measurments we made in field by hand for rock fragments larger than pebble (>64mm).
Promiscuity cliffs (PCs), promiscuity cliff pathways (PCPs), and promiscuity hubs (PHs) formed by inhibitors of human kinases
<p>The PC, PCP, and PH data structures have been introduced for the analysis of compound promiscuity [1-3]. A comprehensive collection of PCs, PCPs, and PHs formed by kinase inhibitors covering more than 80% of the human kinome is made available. See readme.txt for more information regarding the provided files.</p> <p>References:</p> <ol> <li>Dimova, D.; Gilberg, E.; Bajorath, J. Identification and Analysis of Promiscuity Cliffs Formed by Bioactive Compounds and Experimental Implications. RSC Adv. 2017, 7, 58–66.</li> <li>Miljković, F.; Bajorath, J. Computational Analysis of Kinase Inhibitors Identifies Promiscuity Cliffs across the Human Kinome. ACS Omega 2018, 3, 17295–17308.</li> <li>Miljković, F; Vogt, M; Bajorath, J. Systematic Computational Identification of Promiscuity Cliff Pathways Formed by Inhibitors of the Human Kinome. J. Comput. Aided Mol. Des. 2019, in press, doi: doi.org/10.1007/s10822-019-00198-9</li> </ol>
SBC LTER: Land: Hydrology: Stream discharge and associated parameters at Arroyo Burro Creek, Cliff Drive (AB00)
Stream Discharge and water temperature were collected with a Solinst Model 3001 LT Levelogger at Arroyo Burro Creek at Cliff Drive, AB00 in the Santa Barbara coastal area (site ID: AB00). Data are reported hourly. Stage values were converted to discharge using a rating curve developed with stream channel cross-sections, roughness estimates and the HEC-RAS model.
New Categories of Activity Cliffs
<p>7465 activity cliffs (ACs) are provided including ACs with two substitution sites (ds-ACs), isomer ACs (iso-ACs), and ACs containing privileged substructures (PS-ACs). See readme.txt for further details.</p>
Model outputs to "Langtang Ice Cliff Modelling Study"
<p>This dataset contains all the model results of our study "Supraglacial ice cliffs can substantially increase the mass loss of debris-covered glaciers".</p> <p>The zip-file contains one main folder: "Cliffmodel_Results" (produced using the 3D-backwasting ice cliff model from Buri et al., 2016b, Buri & Pellicciotti, 2018).</p> <p>More raw data upon request.</p> <p> </p> <p><strong>Folder structure of "Langtang_IceCliffModellingStudy.7z":</strong></p> <p>───Cliffmodel_Results<br> ├───LangshishaGlacier<br> │ ├───Output_Cliffs_Langshisha2014_A_3m<br> │ ├───Output_Cliffs_Langshisha2014_B_3m<br> │ ├───Output_Cliffs_Langshisha2014_C_3m<br> │ ├───Output_Cliffs_Langshisha2014_D_3m<br> │ ├───Output_Cliffs_Langshisha2014_E_3m<br> │ ├───Output_Cliffs_Langshisha2014_F_3m<br> │ ├───Output_Cliffs_Langshisha2014_G_3m<br> │ └───Output_Cliffs_Langshisha2014_H_3m<br> ├───LangtangGlacier<br> │ ├───Output_Cliffs_Langtang2014_A_3m<br> │ ├───Output_Cliffs_Langtang2014_B_3m<br> │ ├───Output_Cliffs_Langtang2014_C_3m<br> │ ├───Output_Cliffs_Langtang2014_D_3m<br> │ ├───Output_Cliffs_Langtang2014_E_3m<br> │ ├───Output_Cliffs_Langtang2014_F_3m<br> │ ├───Output_Cliffs_Langtang2014_G_3m<br> │ ├───Output_Cliffs_Langtang2014_H_3m<br> │ ├───Output_Cliffs_Langtang2014_I_3m<br> │ ├───Output_Cliffs_Langtang2014_J_3m<br> │ ├───Output_Cliffs_Langtang2014_K_3m<br> │ ├───Output_Cliffs_Langtang2014_L_3m<br> │ ├───Output_Cliffs_Langtang2014_M_3m<br> │ ├───Output_Cliffs_Langtang2014_N_3m<br> │ ├───Output_Cliffs_Langtang2014_O_3m<br> │ ├───Output_Cliffs_Langtang2014_P_3m<br> │ ├───Output_Cliffs_Langtang2014_Q_3m<br> │ ├───Output_Cliffs_Langtang2014_R_3m<br> │ ├───Output_Cliffs_Langtang2014_S_3m<br> │ └───Output_Cliffs_Langtang2014_T_3m<br> ├───LirungGlacier<br> │ ├───Output_Cliffs_Lirung2014_A_3m<br> │ │ └───intermediateOutput<br> │ └───Output_Cliffs_Lirung2014_B_3m<br> │ └───intermediateOutput<br> └───ShalbachumGlacier<br> ├───Output_Cliffs_Shalbachum2014_A_3m<br> │ └───intermediateOutput<br> ├───Output_Cliffs_Shalbachum2014_B_3m<br> │ └───intermediateOutput<br> ├───Output_Cliffs_Shalbachum2014_C_3m<br> │ └───intermediateOutput<br> ├───Output_Cliffs_Shalbachum2014_D_3m<br> │ └───intermediateOutput<br> └───Output_Cliffs_Shalbachum2014_E_3m<br> └───intermediateOutput<br> </p> <p> </p> <p><strong>File structure within Cliffmodel_Results \ <GLACIERNAME> \ Output_Cliffs_<GLACIERNAME>2014_A_3m:</strong></p> <p><em>DC_Fluxes_ts<TIMESTEP1>to<TIMESTEP2>_Cliffs_<GLACIERNAME>2014_3m_ls.rda</em></p> <p>→List of 10 matrices for each energy balance flux with average diurnal cycle (rows) and cliff (columns) for specific model period </p> <p><em>geom_ts<TIMESTEP1>_Cliffs_Lirung2014_A_3m.txt</em></p> <p>→Characteristics (Elevation,Slope,Aspect,x,y,ID,VsI,VsL,Vd) for each pixel of all cliffs (specific ID) for specific model period </p> <p><em>MODELSETTINGS_GSM_<GLACIERNAME>_<GLACIERSECTOR>_22Aug_Cliffs_<GLACIER>2014.txt</em></p> <p>→Details on all modelsettings</p> <p><em>PC_Melt_ts<TIMESTEP1>to<TIMESTEP2>_Cliffs_<GLACIERNAME>2014_3m.txt</em></p> <p>→Melt values for each cliff (columns) and timestep (rows) for specific model period </p> <p><em>PC_Stats_ts<TIMESTEP1>to<TIMESTEP2>_Cliffs_<GLACIERNAME>2014_3m.txt</em></p> <p>→Summary statistics for each cliff (rows) for specific model period </p> <p><em>perPx_DC_Fluxes_ts<TIMESTEP1>to<TIMESTEP2>_Cliffs_<GLACIERNAME>2014_3m_ls.rda</em></p> <p>→List of list with per pixel diurnal cycle and standard deviation of each energy flux for specific model period </p> <p><em>SD_Fluxes_ts<TIMESTEP1>to<TIMESTEP2>_Cliffs_<GLACIERNAME>2014_3m_ls.rda</em></p> <p>→List of 10 matrices for each energy balance flux with standard deviation for each hour of the day (rows) and cliff (columns) for specific model period </p> <p><em>Stats_MeanFluxes_tts<TIMESTEP1>to<TIMESTEP2>_Cliffs_<GLACIERNAME>2014_3m.txt</em></p> <p>→Mean energy fluxes per timestep (rows) averaged over all ice cliffs</p> <p><em>Stats_NonGriddedData_ts<TIMESTEP1>to<TIMESTEP2>_Cliffs_<GLACIERNAME>2014_3m.txt</em></p> <p>→Statistics of non-distributed parameters averaged over all cliffs per timestep (rows)</p>
784 promiscuity cliffs from ChEMBL
<p>Reported are the 784 promiscuity cliffs formed by compounds from medicinal chemistry sources. Compounds forming cliffs are provided as SMILES. For each compound its promiscuity degree (PD) and the list of ChEMBL target IDs are provided. </p>
High-Priority Promiscuity Cliffs from PubChem
<p>A representative sample of 278 high-priority promiscuity cliffs identified from PubChem is provided. These promiscuity cliffs were formed by pairs of structurally analogous compounds with a difference in promiscuity degrees of at last 20 targets. These compounds were tested in at least 300 shared primary assays (SA) and showed assay similarity (AS) and assay frequency ratio (AFR) values of at least 0.85. A README file is also given.</p>
Activity cliffs with dual-atom replacements and single-atom analogs
<p>From the ChEMBL database, 852 activity cliffs (ACs) with dual-atom replacements were extracted which were formed by compounds with high-confidence activity data. Each AC captured an at least 10-fold difference in compound potency. For a subset of these ACs, analogs with corresponding single-atom replacements were identified. The dual-atom ACs and available single-atom replacement analogs were provided (SMILES representation and ChEMBL compound ID). For each AC compound and analog, targets from ChEMBL are reported (with UniProt ID). The target shared by all associated compounds represents the primary AC target </p>
FIG. 18. — Specimen APVM2 in New data on the theropod diversity from the Middle to Late Jurassic of the Vaches Noires cliffs (Normandy, France)
FIG. 18. — Specimen APVM2, caudal vertebrae of an indeterminate tetanuran from Callovian or Oxfordian marls, in anterior (A), posterior (B), left lateral (C) and ventral (D) views. Abbreviations: po, postzygapophyse; spof, spinopostzygapophyseal fossa; sprf, spinoprezygapophyseal fossa; tp, transverse process. Scale bar: 5 cm.
FIG. 19 in New data on the theropod diversity from the Middle to Late Jurassic of the Vaches Noires cliffs (Normandy, France)
FIG. 19. — Representation of the supposed three theropods taxon of the Vaches Noires cliffs with anatomic referred specimen positioning. Indeterminate Allosauroidea (A). Streptospondylus altdorfensis with the probable individual from Oolithes Ferrugineuse de Villers (B). Indeterminate Megalosauroidea distinct from Streptospondylus altdorfensis (C). Scale bars: 1 m.
FIG. 17 in New data on the theropod diversity from the Middle to Late Jurassic of the Vaches Noires cliffs (Normandy, France)
FIG. 17. — Indeterminates tetanuran caudal vertebrae of the former Pennetier collection from Callovian or Oxfordian marls. Specimen MPV 2020.1.4 in anterior (A), posterior (B) views. MPV 2020.1.6 specimen in left lateral (C) view. Successive caudal vertebrae MPV 2020.1.4, 8 and 5 in left lateral (D) and ventral (E) views. Abbreviations: po, postzygapophysis; pr, prezygapophyse; ri, ridges; spof, spinopostzygapophyseal fossa; sprf, spinoprezygapophyseal fossa; tp, transverse process; vg, ventral groove. Scale bars: 5 cm.
FIG. 16. — Specimen B7 in New data on the theropod diversity from the Middle to Late Jurassic of the Vaches Noires cliffs (Normandy, France)
FIG. 16. — Specimen B7, anterior caudal vertebra of an indeterminate tetanuran from Callovian or Oxfordian marls, in anterior (A), posterior (B), left lateral (C) and ventral (D) views. Abbreviations: acdl, anterior centrodiapophyseal lamina; po, postzygapophysis; pr, prezygapophysis; prcdf, prezygapophyseal centrodiapophyseal fossa; spof, spinopostzygapophyseal fossa; sprf, spinoprezygapophyseal fossa; tp, transverse process; vg, ventral groove. Scale bar: 5 cm.
FIG. 15 in New data on the theropod diversity from the Middle to Late Jurassic of the Vaches Noires cliffs (Normandy, France)
FIG. 15. — Dorsal vertebrae of an indeterminate tetanuran from Callovian or Oxfordian marls. Specimen MPV 2020.1.7 (Callovian or Oxfordian marls) in left lateral (A) and ventral (B) views. Specimen MPV V869 (Oxfordian marls), in left lateral? (C) and ventral (D) views. Abbreviations: vp, ventral plateau. Scale bars: 5 cm.
FIG. 14. — Specimen B4 in New data on the theropod diversity from the Middle to Late Jurassic of the Vaches Noires cliffs (Normandy, France)
FIG. 14. — Specimen B4, dorsal vertebra of an indeterminate tetanuran from Callovian or Oxfordian marls, in left lateral (A) and right lateral (B) views. Abbreviations: acdl, anterior centrodiapophyseal lamina; ns, neural spine; pcd, pleurocentral depression; pcdl, posterior centrodiapophyseal lamina; spl, supplementary lamina. Scale bar: 5 cm.
FIG. 13. — Specimen MPV 2020.1.9 in New data on the theropod diversity from the Middle to Late Jurassic of the Vaches Noires cliffs (Normandy, France)
FIG. 13. — Specimen MPV 2020.1.9, first or second dorsal vertebra of an indeterminate Allosauroidea from Oxfordian marls, in anterior (A), posterior (B) and left lateral (C) views. Abbreviations: cpof, centropostzygapophyseal fossa; acdl, anterior centrodiapophyseal lamina; cpol, centrodiapophyseal lamina; cpof, centropostzygapophyseal fossa; cprl, centroprezygapophyseal lamina; dp, diapophysis; ls, ligament scar; ns, neural spine; pcdl, posterior centrodiapophyseal lamina; plr, pleurocoel; po, postzygapophysis; pocdf, postzygapophyseal centrodiapophyseal fossa; pp, parapophysis; pr, prezygapophysis; prcdf, prezygapophyseal centrodiapophyseal fossa; prdl, prezygodiapophyseal lamina; spof, spinopostzygodiapophyseal fossa. Scale bar: 5 cm.
FIG. 11 in New data on the theropod diversity from the Middle to Late Jurassic of the Vaches Noires cliffs (Normandy, France)
FIG. 11. — Allosauroidea indet., braincase (B25392) and frontals (APVM1). Braincase in anterior view (A); frontals in posterior view (B); associated specimens B25392 and APVM1 in dorsal (C) and right lateral (D) views. Abbreviations: fm, foramen magnum; pr, parietal; frr, frontal remains on B25392. Scale bar: 5 cm.
FIG. 10 in New data on the theropod diversity from the Middle to Late Jurassic of the Vaches Noires cliffs (Normandy, France)
FIG. 10. — Allosauroidea indet., right maxilla (MPV 2020.1.1), in lateral (A), medial (B) and dorsal (C) views. Details of mesial denticles from a replacement tooth of the second alveoli in lingual view (D). Abbreviations: aof, antorbital fossa; aor, antorbital ridge; amp, anteromedial process; pmr, promaxillary recess. Scale bar: A-C, 5 cm; D, 1 mm.
FIG. 9 in New data on the theropod diversity from the Middle to Late Jurassic of the Vaches Noires cliffs (Normandy, France)
FIG. 9. — Allosauroidea indet., left maxilla and dentary (A1). Tentative positioning of A1 specimen in an "allosauroid like" skull (A); maxillary in dorsal view (A) and interpretative drawing (C). Abbreviations: amp, anteromedial process; man, maxillary antrum; pmf, promaxillary fossa; pmr, promaxillary recess; poas, postantral strut; pras, preantral strut. Scale bar: 5 cm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.