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266 results for “shelter”
WW1 two room shelter, Länsimäki, Vantaa, Finland
The only intact First World War two room shelter in base II:7 in [Krepost Sveaborg](https://en.wikipedia.org/wiki/Krepost_Sveaborg) land front defense line in Länsimäki, Vantaa, Finland. The base was built in 1915 - 1918. The whole base contains: * 250 meters of thrench * 5 machine gun positions * 4 observations posts * 14 shelter rooms More info: * [Location in Google Maps](https://goo.gl/maps/9ogw8niAW2djSEV78) * [Wikipedia: Krepost Sveaborg](https://en.wikipedia.org/wiki/Krepost_Sveaborg) * [John Lagerstedt , Markku Saari: Krepost Sveaborg](http://www.novision.fi/viapori/eavaus.htm) * [Finnish Heritage Agency site info](https://www.kyppi.fi/to.aspx?id=112.1000007677) (only in finnish) Source: Objaverse 1.0 / Sketchfab
WW1 artillery battery shelter, Helsinki, Finland
First World War artillery battery shelter room in battery 72 in [Krepost Sveaborg](https://en.wikipedia.org/wiki/Krepost_Sveaborg) land front defense line in Tattariharju, Helsinki, Finland. The base was built in 1915 - 1918. The room walls were originally covered with logs. Battery 72 is part of defense base IX:12. More info: * [Location in Google Maps](https://goo.gl/maps/tv5qnNCHMBW3yGGS8) * [Wikipedia: Krepost Sveaborg](https://en.wikipedia.org/wiki/Krepost_Sveaborg) * [John Lagerstedt , Markku Saari: Krepost Sveaborg](http://www.novision.fi/viapori/eavaus.htm) * [Finnish Heritage Agency site info](https://www.kyppi.fi/to.aspx?id=112.1000013411) (only in finnish) Source: Objaverse 1.0 / Sketchfab
3D Reconstruction of Cold War Shelter: Aarhus, Denmark
<p>This collection showcases high-fidelity 3D models of a Cold War shelter located in Aarhus, Denmark. Leveraging advanced tools like Polycam, Metashape Agisoft Professional, Meshroom, Rhinoceros 3D 8.0, and V-Ray. These models offer detailed reconstructions of the shelter's interior and exterior. The dataset includes LiDAR scans and photogrammetry-derived models, meticulously refined and rendered for accuracy and realism. Shared under a Creative Commons license on Zenodo, these models serve as valuable resources for researchers, educators, and enthusiasts interested in Cold War history and urban resilience. The 3D models have also been uploaded and published in Sketchfab, which are accessible to everyone. </p> <p>For an overview of the models, visit the following Sketchfab URLs or my profil in Sketchfab:</p> <p>Model 1: <a title="Model 1" href="https://skfb.ly/oTV6P">https://skfb.ly/oTV6P</a><br>Model 2: <a title="Model 2" href="https://skfb.ly/oTVnQ">https://skfb.ly/oTVnQ</a><br>Model 3:<a title="Model 3" href="https://skfb.ly/oTVvx"> https://skfb.ly/oTVvx</a><br>Model 4: <a title="Model 4" href="https://skfb.ly/oTVwt">https://skfb.ly/oTVwt</a></p> <p><a href="https://sketchfab.com/kogka16">Konstantina Gkaraliakou (@kogka16) - Sketchfab</a></p> <p> </p> <p> </p> <p> </p>
Live video/audio recording of Hamas rocket attack and rushing for bomb shelter at Weizmann Institute campus, Rehovot, Israel
<p>In the early morning of October 7, 2024, terrorists launched an attack with rockets and death squads on Israel. For several days, an enormous number of rockets was launched by Hamas terrorists in the Gaza strip on Israel.</p> <p>This is a real live video recording of escaping from an apartment in Rehovot, Israel, to the nearby Luftschutzbunker (Shelter).</p> <div> <div>This was one of the massive (Qassam) rocket attacks by Hamas terrorists launched from Gaza strip towards north of Israel, here at Rehovot near Weizmann Institute of Science. The rockets were intercepted by the iron dome system. Several families with children were already inside the Shelter.</div> </div> <div>The scene was recorded in the evening of 7th October 2023. Several attacks happened before that first day of the 2023 Israel-Hamas war. The earliest was 06:30 am in the morning on the Shabat.</div> <div>The rocket attacks stopped at night after the Israeli Air Force had begun raids on the Gaza strip.</div>
Figure 9 in Sheltered life beneath elytra: three new species of Eutarsopolipus (Acari, Heterostigmatina, Podapolipidae) parasitizing Australian ground beetles
Figure 9. Key to the world species of Eutarsopolipus in the leytei group (based on adult females).
Data from: From leaves to whole plants: effects of shelter-builders on arthropod communities are stronger in dry seasons
<p>Leaf shelters function as microclimatic refuges, reducing arthropod exposure to climatic fluctuations of surrounding habitats. Although facilitation is expected to increase under stressful conditions, empirical studies investigating the patterns of variation and magnitude of effects of ecosystem engineering at different spatial and temporal scales are still scarce. In this study we evaluated the facilitation consequences of leaf shelter created by gall-inducers on arthropod communities of <em>Miconia ligustroides </em>(DC.) Naudin (Melastomataceae). We evaluated how such effects change at the leaf and plant levels in an environment subject to strong climatic seasonality. The presence of leaf shelters on <em>M. ligustroides</em> increased arthropod diversity and biomass, modified the species composition at both the leaf and plant levels, and in wet and dry seasons. However, the addition of artificial leaf shelters during the dry season showed greater abundance, richness, and biomass of arthropods when compared to shelters added during the wet season. Regarding the global effects of artificial leaf shelters on the diversity of arthropods associated with <em>M. ligustroides</em>, the dry season showed strong and positive effects, increasing the abundance, richness, and biomass of arthropods by an average of 65% for both years. Our study contributes to a better understanding of the patterns of variation and magnitude of ecosystem engineering at different spatial and temporal scales and provides new insights into the importance of shelters for aridity-sensitive species.</p>
Nagouri (Raisen district) Madhya Pradesh. Rock shelter.
<p>Nagouri (Raisen district) Madhya Pradesh. Rock shelter.</p>
Figure 3 in Shar Mountain National Park (R. North Macedonia) - shelter for caddisfly biodiversity in the country
Figure 3. Male genitalia of Crunoecia bosniaca a) lateral view b) ventral view c) dorsal view.
CoCs with 2023 NonDV PIT and HIC with 2022 Population Totals and Shelter Utilization Rates
<p>Continuum of Care level data with 2023 Non Domestic Violence HUD Point in Time and Housing Inventory Counts with 2022 Population Totals and Shelter Utilization Rates.</p>
Rainout shelter in a Walnut-Sorghum agroforestry system with the tarpaulin folded
<p>Picture of a rainout shelter with a fixed tunnel structure, a folded tarpaulin, and gutters to evacuate water, used in a 28 year old agroforestry system with walnut trees and arable crops in plot A2 of Domaine de Restinclières (coordinates: 43.704274 , 3.860958). Picture taken on 2023-06-29</p>
Table 1 in Prevalence and new genotypes of Enterocytozoon bieneusi in sheltered dogs and cats in Sichuan province, southwestern China
<p><b>Table 1.</b> Prevalence and genotypes of <i>E. bieneusi</i> in sheltered dogs from different cities and sources in Sichuan province, southwestern China.</p><table><tbody><tr><th>City</th><th>Source</th><th>No. examined</th><th>No. positive</th><th>Prevalence (%)</th><th>OR (95% CI)</th><th><i>p-</i> value</th><th>Genotypes (<i>n</i>)</th></tr></tbody><tbody><tr><th></th><td></td><td></td><td></td><td>(95% CI)</td><td></td><td></td><td></td></tr><tr><th>Chengdu</th><td>Shuangliu</td><td>158</td><td>16</td><td>10.1% (5.4–14.8)</td><td>Reference</td><td></td><td>CD9 (8); PtEb IX (7); SCD-1 (1)</td></tr><tr><th></th><td>Wenjiang</td><td>250</td><td>80</td><td>32.0% (26.2–37.8)</td><td>4.176</td><td>0.000</td><td>CD9 (79); PtEb IX (1)</td></tr><tr><th></th><td></td><td></td><td></td><td></td><td>(2.336–7.468)</td><td></td><td></td></tr><tr><th>Ya’ an</th><td>Yucheng</td><td>228</td><td>36</td><td>15.8% (11.1–20.5)</td><td>1.664</td><td>0.112</td><td>CD9 (4); PtEb IX (32)</td></tr><tr><th></th><td></td><td></td><td></td><td></td><td>(0.888–3.117)</td><td></td><td></td></tr><tr><th>Panzhihua</th><td>Dongqu</td><td>44</td><td>2</td><td>4.5% (<i>—</i> 1.6–10.7)</td><td>0.423</td><td>0.264</td><td>CD9 (1); PtEb IX (1)</td></tr><tr><th></th><td></td><td></td><td></td><td></td><td>(0.093–1.913)</td><td></td><td></td></tr><tr><th>Guangyuan</th><td>Lizhou</td><td>44</td><td>2</td><td>4.5% (<i>—</i> 1.6–10.7)</td><td>0.423</td><td>0.264</td><td>Type IV (1); SCD-2 (1)</td></tr><tr><th></th><td></td><td></td><td></td><td></td><td>(0.093–1.913)</td><td></td><td></td></tr><tr><th>Total</th><td></td><td>724</td><td>136</td><td>18.8% (15.9–21.6)</td><td></td><td></td><td>CD9 (92); PtEb IX (41);</td></tr><tr><th></th><td></td><td></td><td></td><td></td><td></td><td></td><td>Type IV (1); SCD-1 (1); SCD-2 (1)</td></tr></tbody></table>
Table 2 in Prevalence and new genotypes of Enterocytozoon bieneusi in sheltered dogs and cats in Sichuan province, southwestern China
<p><b>Table 2.</b> Prevalence and genotypes of <i>E. bieneusi</i> in sheltered cats from different cities and sources in Sichuan province, southwestern China.</p><table><tbody><tr><th>City</th><th>Source</th><th>No. examined</th><th>No. positive</th><th>Prevalence</th><th>OR (95% CI)</th><th><i>p-</i> value</th><th>Genotypes (<i>n</i>)</th></tr></tbody><tbody><tr><th></th><td></td><td></td><td></td><td>(%) (95% CI)</td><td></td><td></td><td></td></tr><tr><th>Chengdu</th><td>Shuangliu</td><td>85</td><td>13</td><td>15.3% (7.6–22.9)</td><td>Reference</td><td></td><td>CD9 (10); D (2); PtEb IX (1)</td></tr><tr><th>Ya’ an</th><td>Yucheng</td><td>23</td><td>3</td><td>13.0% (<i>—</i> 0.7–26.8)</td><td>0.831 (0.215–3.203)</td><td>0.788</td><td>CD9 (1); D (2)</td></tr><tr><th>Panzhihua</th><td>Dongqu</td><td>48</td><td>6</td><td>12.5% (3.1–21.9)</td><td>0.791 (0.280–2.237)</td><td>0.791</td><td>Type IV (6)</td></tr><tr><th>Total</th><td></td><td>156</td><td>22</td><td>14.1% (8.6–19.6)</td><td></td><td></td><td>CD9 (11); Type IV (6);</td></tr><tr><th></th><td></td><td></td><td></td><td></td><td></td><td></td><td>D (4); PtEb IX (1)</td></tr></tbody></table>
Fig. 3 in Invertebrates found in underground shelters of western Bohemia. II. Hoverflies (Diptera: Syrphidae)
Fig. 3: The records of hibernating Eristalis tenax in western Bohemia and the Bohemian Forest.
Fig. 2 in Invertebrates found in underground shelters of western Bohemia. II. Hoverflies (Diptera: Syrphidae)
Fig. 2: Eristalis tenax at the locality Podhradí. Photo: Libor Dvořák.
Fig. 1 in Invertebrates found in underground shelters of western Bohemia. II. Hoverflies (Diptera: Syrphidae)
Fig. 1: Eristalis tenax at the locality Chanovec. Photo: Oldřich Vojtěch.
Figure 6. Silk shelters. a, P. basalis exuvium within a in Natural history of the agave jumping spider, Paraphidippus basalis (Araneae: Salticidae: Dendryphantina)
Figure 6. Silk shelters. a, P. basalis exuvium within a tube shelter that is oriented along the length of a sotol leaf. b, Tube shelter perpendicular to the leaves of an agave. c-d, Tube shelter under a flat sheet of silk stretched between the edges of a yucca leaf. e, The same type of silk shelter as in (c-d), occupied during daytime by a Curicaberis spider. f, Young instar of P. basalis in a mountain yucca, hanging from the end of a dragline at night.
Non-exploitative human disturbance provides shelter for prey from predator
<p>Human activities can influence behaviors of predators and prey, as well as predator-prey interactions. Using camera trap data, we investigated whether or to what extent human activities influenced behaviors of predators (tigers and leopards) and prey (sambar deer, spotted deer, wild boar, barking deer), and predator-prey interactions in the Barandabhar Corridor Forest (BCF), Chitwan District, Nepal. A multispecies occupancy model revealed that the presence of humans altered the conditional occupancy of both prey and predator species. Specifically, the conditional occupancy probability of prey was substantially higher (ψ = 0.91, CI = 0.89–0.92) when humans were present than when humans were absent (ψ = 0.68, CI = 0.54–0.79). The diel activity pattern of most prey species overlapped strongly with humans, whereas predators were generally more active when humans were absent. Finally, the spatio-temporal overlap analysis revealed that human-prey interactions (i.e., the probability that both humans and prey species being present on the same grid at the same hourly period) was ~3 times higher (10.5%, CI = 10.4%–10.6%) compared to spatio-temporal overlap between humans-predators (3.1%, CI = 3.0%–3.2%). Our findings are consistent with the human-shield hypothesis and suggest that ungulate prey species may reduce predation risk by using areas with high human activities.</p>
Data and Code from: Sheltered or suppressed? Tree regeneration in unmanaged European forests
<p><span>Tree regeneration is a key demographic process influencing long-term forest dynamics. It is driven by climate, disturbances, biotic factors, and their interactions. Thus, predictions of tree regeneration are challenging due to complex feedbacks along the wide climatic gradients covered by most tree species. We developed statistical models based on >50,000 recruitment events observed for 24 tree species in an extensive permanent plot network (6,540 plots from 299 unmanaged European temperate, boreal, and subalpine forests) covering a wide climatic gradient. </span></p> <p><span>This repository stores csv files with response and explanatory variables and R-Scripts that are needed to run the analysis and create the figures that are presented in the accompanying article titled "Sheltered or suppressed? Tree regeneration in unmanaged European forests" which was published in Journal of Ecology in 2023.</span></p> <p><span>Our study shows that competition between trees towards climatic stress decreases systematically but depends on species stress tolerance to climate and shade. These findings explain within- and between-species differences in tree recruitment patterns in European temperate forests. Moreover, our findings imply that projections of forest dynamics along wide climatic gradients and under climate change must accommodate both competition and positive interactions, as they strongly affect rates of community turnover.</span></p>
Canberra Bus Shelter
This is version 1. Drawn from memory to practice a few Blender techniques. Version 2 will be more accurate and use non-destructive techniques. Source: Objaverse 1.0 / Sketchfab
WW1 shelter room and observation position
First World War trench shelter room and observation position (type C) in base XXVIII:8 in [Krepost Sveaborg](https://en.wikipedia.org/wiki/Krepost_Sveaborg) land front defense line in Vallikallio, Espoo, Finland. The base was built in 1915 - 1918. More info: * [Location in Google Maps](https://goo.gl/maps/qUTMxKcYTpQXRxwT7) * [Wikipedia: Krepost Sveaborg](https://en.wikipedia.org/wiki/Krepost_Sveaborg) * [John Lagerstedt , Markku Saari: Krepost Sveaborg](http://www.novision.fi/viapori/eavaus.htm) * [Finnish Heritage Agency site info](https://www.kyppi.fi/to.aspx?id=112.1000007751) (only in finnish) Source: Objaverse 1.0 / Sketchfab
ScienceDex guides
Understand access before you commit
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.