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193 results for “subterranean habitat”
Figures 5-12 from: Sendra A, López H, Selfa J, Oromí P (2020) Two new dipluran species unearthed from subterranean habitats of the Canary Islands (Arthropoda, Hexapoda, Entognatha). Subterranean Biology 34: 39-59. https://doi.org/10.3897/subtbiol.34.50231
Figures 5-12 Remycampa herbanica sp. nov. 5 Distal antennomere 6 lateral detail of the cupuliform organ with olfactory chemoreceptors 7 cupuliform organ 8 apical end of an olfactory chemoreceptor 9 medial antennomere 10 gouge sensilla 11 frontal process 12 ventral view of the head, detail of labial palps and submentum.
Figures 13-16 from: Sendra A, López H, Selfa J, Oromí P (2020) Two new dipluran species unearthed from subterranean habitats of the Canary Islands (Arthropoda, Hexapoda, Entognatha). Subterranean Biology 34: 39-59. https://doi.org/10.3897/subtbiol.34.50231
Figures 13-16 Remycampa herbanica sp. nov. 13 Pro-, meso- and metanotum of holotype, left side 14 detail of pronotum with medial anterior macrosetae 15 left posterior portion of pronotum and left anterior anterior portion of mesonotum 16 right posterior portion of mesonotum with lateral posterior macrosetae.
Figures 1-3 from: Sendra A, López H, Selfa J, Oromí P (2020) Two new dipluran species unearthed from subterranean habitats of the Canary Islands (Arthropoda, Hexapoda, Entognatha). Subterranean Biology 34: 39-59. https://doi.org/10.3897/subtbiol.34.50231
Figures 1-3 Cueva de Montaña Blanca, El Castillo, Fuerteventura, Canary Islands. 1 Interior of the volcanic tube 2 entrance to the cave through a concrete tunnel 3 view of the entrance of the cave in an abandoned building.
Figures 21-26 from: Sendra A, López H, Selfa J, Oromí P (2020) Two new dipluran species unearthed from subterranean habitats of the Canary Islands (Arthropoda, Hexapoda, Entognatha). Subterranean Biology 34: 39-59. https://doi.org/10.3897/subtbiol.34.50231
Figures 21-26 Remycampa herbanica sp. nov. metathoracic leg. 21 Distal portion of the tarsus 22 detail of claws 23 right metathoracic leg 24 pretarsus 25 joint between tibia and tarsus with a calcar 26 medial portion of tibia with ventral macrosetae.
Figure 4 from: Sendra A, López H, Selfa J, Oromí P (2020) Two new dipluran species unearthed from subterranean habitats of the Canary Islands (Arthropoda, Hexapoda, Entognatha). Subterranean Biology 34: 39-59. https://doi.org/10.3897/subtbiol.34.50231
Figure 4 Brezal del Palmital, Gran Canaria, Canary Islands, Spain, site in the MSS where a pitfall was installed; dashed line shows the limit between epigean and hypogean (i.e. subterranean) environments.
Figure 2 from: Mammola S, Martinez A (2020) Let research on subterranean habitats resonate! Subterranean Biology 36: 63-71. https://doi.org/10.3897/subtbiol.36.59960
Figure 2 Variations in citations over time in papers focused on subterranean systems published in specialized journals. The average ± standard error number of Web of Science citations is based on a subset of articles published in Acta Carsologica, International Journal of Speleology, Journal of Cave and Karst Studies, and Subterranean biology (n= 969). Note that prior to 2005, no data was available for these journals in Web of Science.
Figure 1 from: Mammola S, Martinez A (2020) Let research on subterranean habitats resonate! Subterranean Biology 36: 63-71. https://doi.org/10.3897/subtbiol.36.59960
Figure 1 Variations in citations and impact factor of papers focused on subterranean systems over time. a Average ± standard error number of Web of Science citations to articles. Citation counts are normalized by the year of publication b Average ± standard error Impact Factor of the journals in which the papers are published. Graphs are based on a database of 21,486 research articles focused on caves and other subterranean habitats published between 1991 and 2018 (Martínez and Mammola 2020). The yearly Impact factor of journals is based on the periodical reports by the Journal Citation Reports of Clarivate. For this graph, the year 1997 was chosen as a starting point because around this date the use of Impact Factor started to become widespread (Archambault and Larivière 2009). Note also that the overall Impact Factor of scientific journals increased over the last 21 years, a feature that may have partly inflated this trend.
FIGURE 2 in Studies on subterranean amphipod crustaceans of Primory, Russia. Part 1. Three new species of the genus Pseudocrangonyx from springs and other groundwater habitats in far eastern Russia
FIGURE 2. ML-tree with bootstrap values based on the mt-cox1 sequences.
FIGURE 1 in A new species of the subterranean amphipod genus Stygobromus (Amphipoda: Crangonyctidae) from two caves and a spring in western Maryland, USA with additional records of undescribed species from groundwater habitats in central Maryland
FIGURE 1. Distribution of Stygobromus amicus in western Maryland, USA.
Figure 8 from: Balestra V, Lana E, Vanin S (2022) Observations on the habitat and feeding behaviour of the hypogean genus Eukoenenia (Palpigradi, Eukoeneniidae) in the Western Italian Alps. Subterranean Biology 42: 23-41. https://doi.org/10.3897/subtbiol.42.75784
Figure 8 Approach and bite of Eukoenenia strinatii and two living Collembola (photos by V. Balestra).
Figure 5 from: Balestra V, Lana E, Vanin S (2022) Observations on the habitat and feeding behaviour of the hypogean genus Eukoenenia (Palpigradi, Eukoeneniidae) in the Western Italian Alps. Subterranean Biology 42: 23-41. https://doi.org/10.3897/subtbiol.42.75784
Figure 5 Habitat monitored and different microhabitat where Eukoenenia individuals were observed. A Rimstone dams (gours) in Buranco di Bardineto cave BE. strinatii on wood in Bossea cave CE. strinatii near water in Bossea cave DE. strinatii on Bossea cave ground EE. strinatii on raft of crystalline materials in Bossea cave FE. strinatii on raft of crystalline materials, fungal hyphae and organic remains in Bossea cave. (photos A, C, D, E, F by V. Balestra, B by E. Lana).
Figure 3 from: Balestra V, Lana E, Vanin S (2022) Observations on the habitat and feeding behaviour of the hypogean genus Eukoenenia (Palpigradi, Eukoeneniidae) in the Western Italian Alps. Subterranean Biology 42: 23-41. https://doi.org/10.3897/subtbiol.42.75784
Figure 3 Relation between temperature and relative humidity in the micro-habitat of genus Eukoenenia in the Western Italian Alps. AEukoenenia species BE. strinatii.
Figure 1 from: Balestra V, Lana E, Vanin S (2022) Observations on the habitat and feeding behaviour of the hypogean genus Eukoenenia (Palpigradi, Eukoeneniidae) in the Western Italian Alps. Subterranean Biology 42: 23-41. https://doi.org/10.3897/subtbiol.42.75784
Figure 1 Location of the sampling (maps used for the plate retrieved from https://d-maps.com/carte.php?num_car=2232&lang=en, https://d-maps.com/carte.php?num_car=5894&lang=en, https://d-maps.com/carte.php?num_car=8273&lang=en and modified).
Figure 7 from: Baković N, Matoničkin Kepčija R, Siemensma FJ (2022) Transitional and small aquatic cave habitats diversification based on protist assemblages in the Veternica cave (Medvednica Mt., Croatia). Subterranean Biology 42: 43-60. https://doi.org/10.3897/subtbiol.42.78037
Figure 7 Presence of guano on researched habitats (0 – absent, 1 – low quantity, 2 – medium quantity, 3 – high quantity).
Figure 3 from: Baković N, Matoničkin Kepčija R, Siemensma FJ (2022) Transitional and small aquatic cave habitats diversification based on protist assemblages in the Veternica cave (Medvednica Mt., Croatia). Subterranean Biology 42: 43-60. https://doi.org/10.3897/subtbiol.42.78037
Figure 3 ACentropyxis bipilata; B, CCyphoderia ampullaB test C collar CCryptodifflugia oviformisETrinema lineareF, GEuglypha tuberculataF test G aperture HDifflugia oblonga. Scale bars: 50 µm (A, B, H); 20 µm (F); 10 µm (C–E, G); light microscopy.
Figure 2 from: Baković N, Matoničkin Kepčija R, Siemensma FJ (2022) Transitional and small aquatic cave habitats diversification based on protist assemblages in the Veternica cave (Medvednica Mt., Croatia). Subterranean Biology 42: 43-60. https://doi.org/10.3897/subtbiol.42.78037
Figure 2 Map of the Veternica cave [adapted from Čapelak (1979)] with marked sampling sites (CP-clay pools; SP-sinter pools and HP-hygropetric).
Figure 4 from: Baković N, Matoničkin Kepčija R, Siemensma FJ (2022) Transitional and small aquatic cave habitats diversification based on protist assemblages in the Veternica cave (Medvednica Mt., Croatia). Subterranean Biology 42: 43-60. https://doi.org/10.3897/subtbiol.42.78037
Figure 4 A, BRaphidocystis marginataA LM micrograph of a living cell B REM micrograph of plate-scales and spine-scales C, DAcanthocystis myriospinaC LM micrograph of a living cell D REM micrograph of plate-scales. Scale bars: 20 µm (A, C); 2 µm (B, D); LM, light microscopy; REM, raster electron microscopy.
FIGURE 1 in Expanding the taxonomic knowledge of Adelosgryllus Mesa & Zefa, 2004 (Orthoptera: Grylloidea: Phalangopsidae): description of four new species for Brazilian subterranean habitats
FIGURE 1. Distribution map of the occurrences of Adelosgryllus species in South America.
Supplementary material 2 from: Gutjahr S, Schmidt S, Hahn H (2014) A proposal for a groundwater habitat classification at local scale. Subterranean Biology 14: 25-49. https://doi.org/10.3897/subtbiol.14.5429
Output of the one-way ANOSIMS' pairwise test.:
Supplementary material 3 from: Gutjahr S, Schmidt S, Hahn H (2014) A proposal for a groundwater habitat classification at local scale. Subterranean Biology 14: 25-49. https://doi.org/10.3897/subtbiol.14.5429
Output of a Canonical Analysis of Principal Coordinates (CAP).:
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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.