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23 results for “Cave entrances”
Figs 14–18. 14–16. Entrances. 17–18 in A new Diplura species from Georgia caves, Plusiocampa (Plusiocampa) imereti (Diplura, Campodeidae), with morphological and molecular data
Figs 14–18. 14–16. Entrances. 17–18. Plans of the studied caves. 14. Datvis Cave. 15. Melouri Cave. 16. Shvilobisa Cave. 17. Plan of the Melouri Cave (Tatashidze et al. 2009a). 18. Plan of the Shvilobisa Cave (Tatashidze et al. 2009a). Black dots = locations where the specimens of the new species were sampled; E = entrance.Scale bares: 14–16 = 1 m.
Bhiwkund, Maharashtra, India. Main cave, entrance
<p>Bhiwkund, Maharashtra, India (21.052010, 79.45922). Main cave, entrance, as documented 2/2015.</p>
Figure 1 in Biodiversity of phototrophs in illuminated entrance zones of seven caves in Montenegro
Figure 1. Map of the studied caves in Montenegro and photographs of their entrance zones. Cave numbers correspond to numbers in Map. 1- Obodska Pećina, 2- Golubinja Pećina, 3- Njegoš Pećina, 4- Veluštica Pećina, 5- untitled cave, 6- Vrbačka jama, 7- Jama ER-1.
Figure 2 in Biodiversity of phototrophs in illuminated entrance zones of seven caves in Montenegro
Figure 2. The dendrogram distribution diagram based on a comparison of all flora (A) and algal flora (B) of caves using the Jacquard floristic similarity coefficient. The dendrogram distribution diagram based on the comparison of all flora (C) and algal flora (D) of caves using the Shorygin floristic similarity coefficient. U - Untitled cave; N - Njegoš Pećina; Ve - Veluštica Pećina; G - Golubinja Pećina; Vr - Vrbačka jama; O - Obodska Pećina; J - Jama ER-1.
Data from: External temperature and distance from nearest entrance influence microclimates of cave and culvert roosting tri-colored bats Perimyotis subflavus
<p>Many North American bat species hibernate in both natural and artificial roosts. Although hibernacula can have high internal climate stability, they still retain spatial variability in their thermal regimes, resulting in various 'microclimates' throughout the roost that differ in their characteristics (e.g., temperature, air moisture). These microclimate components can be influenced by factors such as the number of entrances, the depth of the roost, and distance to the nearest entrance of the roost. Tri-colored bats are commonly found roosting in caves in winter, but they can also be found roosting in large numbers in culverts, providing the unique opportunity to investigate factors influencing microclimates of bats in both natural and artificial roost sites. As tri-colored bats are currently under consideration for federal listing, information of this type could be useful in aiding in the conservation and management of this species through a better understanding of what factors affect the microclimate near roosting bats. We collected data on microclimate temperature and microclimate actual water vapor pressure (AWVP) from a total of 760 overwintering tri-colored bats at 18 caves and 44 culverts. Using linear mixed models analysis, we found that variation in bat microclimate temperatures was best explained by external temperature and distance from nearest entrance in both caves and culverts. External temperature had a greater influence on microclimate temperatures in culverts than caves. We found that variation in microclimate AWVP was best explained by external temperature, distance from nearest entrance and proportion from entrance (proportion of the total length of the roost from the nearest entrance) in culvert roosting bats. Variation in microclimate AWVP was best explained by external temperature and proportion from entrance in cave roosting bats. Our results suggest that bat microclimate temperature and AWVP are influenced by the similar factors in both artificial and natural roosts, although the relative contribution of these factors differ between roost types.</p>
WW1 cave entrance, Mäkkylä, Espoo, Finland
Entrance to a First World War 45 m² cave in base XXVIII:19 in [Krepost Sveaborg](https://en.wikipedia.org/wiki/Krepost_Sveaborg) land front defense line in Mäkkylä, Espoo, Finland. The base was built in 1915 - 1918. The whole base contains: * 2 machine gun positions * 2 searchlight positions * 2 observations positions * 1 rifle firing position * 1 large firing position * 150 meters of trench * 3 caves More info: * [Location in Google Maps](https://goo.gl/maps/1QfFtnjk1qj1msxx5) * [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=112.1000007767) (only in finnish) Source: Objaverse 1.0 / Sketchfab
Cave entrance in WW1 base, Helsinki, Finland
Entrance to 20 m² cave in First World War base XI:2 in [Krepost Sveaborg](https://en.wikipedia.org/wiki/Krepost_Sveaborg) land front defense line in Ala-Malmi, Helsinki, Finland. The base was built in 1915 - 1918. The cave has acces to trenches in the hill above. This base build in the hill of Ormusmäki has rare combination of caves and trenches in the same hill. Caves are build under the trenches and there are entrances from threnches to the caves. The whole base contains 4 caves: 23 m², 85 m², 20 m² and 23 m². More info: * [Location in Google Maps](https://goo.gl/maps/tRFvMkRRfcoRaJ548) * [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=112.1000013430) (only in finnish) Source: Objaverse 1.0 / Sketchfab
Rocky cave entrance
3D model of the Hohlenstein-Stadel cave entrance (Swabian Jura, Germany), under the belly of a mammoth shaped rock, which has undoubtedly been visible since prehistoric times. Photogrammetry processing 27 images taken by Nature-Témoin in april 2022. Top info has not been acquired neither processed, since humans have only seen this rock from the bottom up. Source: Objaverse 1.0 / Sketchfab
Two WW1 cave entrances Viikki, Helsinki, Finland
Two First World War cave entrances (VIII:7 and VIII:8) in [Krepost Sveaborg](https://en.wikipedia.org/wiki/Krepost_Sveaborg) land front defense line in Viikki, Helsinki, Finland. The base was built in 1915 - 1918. Western cave is 60 m² and eastern 62 m². More info: * [Location in Google Maps](https://goo.gl/maps/DU6KWz4XcV4pHS1F6) * [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=112.1000011958) (only in finnish) Source: Objaverse 1.0 / Sketchfab
Kunghāḍā कुंघाडा (Tahsil Brahmapuri, Chandrapur) Maharashtra. Central passage and cave entrance
<p>Kunghāḍā कुंघाडा (Tahsil Brahmapuri, Chandrapur) Maharashtra. Central passage and cave entrance.</p>
Data from: External temperature and distance from nearest entrance influence microclimates of cave and culvert roosting tri-colored bats Perimyotis subflavus
Open the record for dataset details and reuse information.
FIGURE 2. A–H in Primulina hochiensis var. rosulata (Gesneriaceae)-a new variety at an entrance of a limestone cave from Guangxi, China
FIGURE 2. A–H: Primulina hochiensis var. rosulata F.Wen & Y.G.Wei. (A) habitat; (B) plants; (C) leaves; (D) frontal view of flower; (E); lateral view of flower; (F) corolla and stigma; (G) stigma; (H) dehiscent capsule. I–L: P. hochiensis (C.C.Huang & X.X.Chen) Mich.Möller & A.Weber var. hochiensis. (I) plant with stolons; (J) leaves and stolon; (K) frontal view of flower; (L) lateral view of flower and stigma.
FIGURE 1. Primulina hochiensis var. rosulata F.Wen & Y.G in Primulina hochiensis var. rosulata (Gesneriaceae)-a new variety at an entrance of a limestone cave from Guangxi, China
FIGURE 1. Primulina hochiensis var. rosulata F.Wen & Y.G.Wei (A) habit; (B) corolla opened with stamens and staminodes; (C) calyx and pistil; (D) stigma (based on B.Gao 08171).
FIGURE 5. A, cave entrance. B in Teretamon spelaeum, a new species of freshwater crab (Crustacea: Decapoda: Potamidae) from a limestone cave in Meghalaya, India
FIGURE 5. A, cave entrance. B, limestone structure of cave.
Text-fig. 15. Za Hájovnou Cave. Section ZH P-11 (Narozeninová chodba (= Birthday Corridor), former entrance). in The Unique Record Of Za Hájovnou Cave
Text-fig. 15. Za Hájovnou Cave. Section ZH P-11 (Narozeninová chodba (= Birthday Corridor), former entrance).
Figure 4 from: Pellegrini TG, Ferreira RL (2016) Are inner cave communities more stable than entrance communities in Lapa Nova show cave? Subterranean Biology 20: 15-37. https://doi.org/10.3897/subtbiol.20.9334
Figure 4 - Multidimensional scaling (n-MDS) of sectors in entrance areas in April (A-black triangles), and sectors in deep areas of the cave in April (A-black circles), and sectors in entrance areas in September (S-white triangles), and sectors in deep areas of the cave in September (S-white circles), by the Bray-Curtis quantitative similarity index.
Figure 2 from: Pellegrini TG, Ferreira RL (2016) Are inner cave communities more stable than entrance communities in Lapa Nova show cave? Subterranean Biology 20: 15-37. https://doi.org/10.3897/subtbiol.20.9334
Figure 2 - A Passage in Lapa Nova Cave B, C, D, E Examples of troglomorphic species recorded in the Northwest region of the state of Minas Gerais, Brazil. B Collembola: Arrhopalitidae: Arrhopalites sp.1 C Collembola: Poduromorpha, Acherontides sp.1 D Araneae: Ochyroceratidae sp.1 and E Pseudoscorpiones: Chthoniidae, Pseudochthonius sp.1.
Figure 1 from: Pellegrini TG, Ferreira RL (2016) Are inner cave communities more stable than entrance communities in Lapa Nova show cave? Subterranean Biology 20: 15-37. https://doi.org/10.3897/subtbiol.20.9334
Figure 1 - Lapa Nova Show cave map depicting the sectors: green tones correspond to entrance areas; the other six colors correspond to deeper regions of the cave. Legend: (TH) Temperature measurement areas.
Figure 3 from: Pellegrini TG, Ferreira RL (2016) Are inner cave communities more stable than entrance communities in Lapa Nova show cave? Subterranean Biology 20: 15-37. https://doi.org/10.3897/subtbiol.20.9334
Figure 3 - Multidimensional scaling (n-MDS) of sectors collected in April (circles) and September (triangles) periods, by the Bray-Curtis quantitative similarity index.
WW1 cave entrance, Rajakylä, Vantaa, Finland
Entrance to First World War 110 m² U shaped cave in base III:9 in [Krepost Sveaborg](https://en.wikipedia.org/wiki/Krepost_Sveaborg) land front defense line in Rajakylä, Vantaa, Finland. The base was built in 1915 - 1918. The whole base contains: * 135 meters of thrench * 3 machine gun positions * 2 observations posts * 12 shelter rooms, one 35 m² room is inside a rock in tunnel * 110 m² cave More info: * [Location in Google Maps](https://goo.gl/maps/duEN1zb8HHBVqjiZ8) * [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=112.1000007726) (only in finnish) Source: Objaverse 1.0 / Sketchfab
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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.