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6,040 results for “Cave”
Figure 5 in Sharing the space: coexistence among terrestrial predators in Neotropical caves
Figure 5. Ordering diagram of the species produced by the canonical correspondence analysis (CCA). Legend: Hum = humidity; Temp = temperature; Subs = substrate. The codes for species are given in Appendix 1.
Figure 2 in An unusual new species of Trechona (Araneae: Mygalomorphae: Dipluridae), from quartzitic caves of the Diamantina Plateau, Minas Gerais, Brazil, with a key to the known species
Figure 2. Trechona diamantina sp. nov. (a–c) female paratype MZSP 67,290. (a) Cephalothorax, dorsal view. (b) Cephalothorax, ventral view. (c) Vulva, dorsal view. (d) Vulva, dorsal view, female paratype MZSP 67,291. Scale bars = 1 mm.
Figure 2 in Comparison of the species composition of Gamasina mite communities (Acari: Mesostigmata) in selected caves of the Kraków-Cz stochowa Upland (southern Poland) and their immediate surroundings
Figure 2. Diagram of the correspondence analysis (CA) for the sampling sites. The diagram shows only the most important species (for abbreviations see Table 1).
FIG. 5. — Undated female red deer upper left canine from Abri des Autours. A in The worked bone industry and intrusive fauna associated with the prehistoric cave burials of Abri des Autours (Belgium)
FIG. 5. — Undated female red deer upper left canine from Abri des Autours. A, general view; B, detail of perforation; C, detail of the crown with remaining traces of enamel (arrow). Scale bars: A, 10 mm; B, C, 1 mm.
FIG. 7 in The worked bone industry and intrusive fauna associated with the prehistoric cave burials of Abri des Autours (Belgium)
FIG. 7. — Needle made of a suid left fibula, from the Neolithic collective burial at Abri des Autours: A, general view; B, detail of the tip showing a smooth polish associated with fine and short striations; C, detail of the posterior edge near the point, showing fine parallel striations; D, detail of the posterior edge at the midpoint of the tool, showing smooth polish. Scale bars: A, 10 mm; B, C, D, 150 μm.
FIG. 2 in The worked bone industry and intrusive fauna associated with the prehistoric cave burials of Abri des Autours (Belgium)
FIG. 2. — Plan of Abri des Autours: A, circular depression; B, rubble of old (unpublished) excavations; C, crack in the rock; D, pit under low wall (from Polet & Cauwe 2007).
FIG. 6 in The worked bone industry and intrusive fauna associated with the prehistoric cave burials of Abri des Autours (Belgium)
FIG. 6. — Pointed rib of a large bovid, from the Neolithic collective burial at Abri des Autours: A, general view (from left to right: internal, centre and external views); B, detail of the tip (internal view) showing some polish; C, detail of the tip (internal view) showing fine perpendicular striations; D, detail of a lateral edge of the rib devoid of striations. Scale bars: A, 10 mm; B, 500 μm; C, D, 100 μm.
FIG. 3 in The worked bone industry and intrusive fauna associated with the prehistoric cave burials of Abri des Autours (Belgium)
FIG. 3. — Stratigraphy of Abri des Autours, east–west profile (modified from Cauwe 1994): 1a, b, clay, without pebbles; 2, as layer 6, but with more clay; 3a, brown, argillaceous deposit with small, densely dispersed pebbles; 3b, as layer 3a, but less humic. Contains the Neolithic multiple burial; 3c, as layer 3a, but strongly compacted by calcite precipitations; 4, clay with fine pebbles; 5a, b, cryoclastic deposit without humic or clayish fraction; layer 5b corresponds to very fine gravels, while layer 5a includes larger elements. The Mesolithic single burial extends through both of these layers; 6, brown-grey clayey deposit, strongly inclined. Contains the Mesolithic collective burial; 7, cryoclastic layer, included in clayey orange-brown sediment; 8, thin pebble deposit mixed with greyish sediment; 9, low wall constructed of unworked stone blocks.
Figure 98‒99 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)
Figure 98‒99. Distribution maps of cave-adapted diplurans in Asia: Campodeinae Condé, 1956 (red circles), Plusiocampinae Paclt, 1957 (black circles), Lepidocampinae Condé, 1956 (brown circles), Japygidae Haliday, 1864 (red squares). In yellow: karst areas (source: Chen et al. 2017). In orange: deserts (source: Olson & Dinerstein 2002). In violet, encircled by discontinued line: hypogean karst systems (source: Klimchouk 2007). 98. In blue: ice cover and permafrost extent during the Last Glacial Maximum (sources: Ehlers et al. 2011; Lindgren et al. 2016). 99. In blue: areas covered with either continuous or patched permafrost at present (source: Brown et al. 2002).
Figs 92‒97 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)
Figs 92‒97. Mueggejapyx brehieri Sendra & Komerički gen. et sp. nov. 92. Urite X and cerci, ventral side. 93. Proximal and ventral side of the cerci. 94. Ventral proximal portion of the left cercus. 95. Ventral proximal portion of the right cercus. 96. Conical sensillum of the cerci. 97. Cerci, caudal view. See Material and methods for terminology.
Figs 80‒85 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)
Figs 80‒85. Mueggejapyx brehieri Sendra & Komerički gen. et sp. nov. female. 80. First urosternite. 81. Lateral posterior of the first urosternite. 82. Detail of the lateral coxal organ with glandular setae (GS) and setiform setae (SS). 83. Median glandular organ (ss: setae-shaped sensilla). 84. Detail of the large socket setae (lss) of the lateral coxal organ. 85. Detail of the cuticle of the first urosternite.
Figs 75‒79 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)
Figs 75‒79. Mueggejapyx brehieri Sendra & Komerički gen. et sp. nov. 75. Head, prothorax, mesothorax and metathorax, ventral view (paratype, MZB (MCNB) 2020-1157). 76. Head anterior ventral side, (ad) admentum, (el) external lobule, (lp) labial palp, and (sm) submentum. 77. Pro-prosternum (pr-prt) with spine (sp) and anterior portion of prosternum (pr-st). 78. Meso-poststernum (ms-pst), meso-intersternum (ms-ist), and mesosternum (ms-st). 79. Meta-poststernum (mt-pst), meta-intersternum (mt-ist), and metasternum (mt-st).
Figs 71‒74 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)
Figs 71‒74. Mueggejapyx brehieri Sendra & Komerički gen. et sp. nov. 71. Pronotum, mesonotum and metanotum, right side, see terminology in the text (holotype, MZB (MCNB) 2020-1156). 72. Detail of the surface of the mesonotum. 73. Detail of the latero–posterior left side of the mesonotum. 74. Detail of the macroseta base.
Figs 65‒70 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)
Figs 65‒70. Mueggejapyx brehieri Sendra & Komerički gen. et sp. nov. 65. Last antennomere with placoide sensilla (ps). 66. Distal antennomeres with placoide sensilla (ps). 67. Central antennomeres. 68. Proximal antennomeres, ventral side. 69. Head, dorsal side. Abbreviations: see Material and methods. 70. Proximal antennomeres, dorsal side.
Figs 61‒64 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)
Figs 61‒64. Pacificampa wudonghuii Sendra sp. nov. 61. Urotergites III–VIII and IX abdominal segment, left side (holotype, NEIGA-diplura-01). 62. Male first urosternite with glandular a 1 setae. 63. Fourth urosternite, right side. 64. Male eighth urosternite.
Figs 55‒60 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)
Figs 55‒60. Pacificampa wudonghuii Sendra sp. nov. 55. Dorsal macrosetae on the metathoracic femur. 56. Joint between tibia and tarsus with calcars. 57. Ventral macroseta on the tibia. 58. Lateral side of the tarsus. 59. Pretarsus. 60. Detail of the pretarsus.
Figs 46‒48 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)
Figs 46‒48. Grotte du 8ième Ciel Baxian Dong, Banqiao, Hubei, China. 46. Map of the cave. 47. Main entrance. 48. Saltpetre passage with an old saltpetre oven. (Photographs Josiane Lips).
Figs 44‒45 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)
Figs 44‒45. Hubeicampa melissa Sendra & Lips gen. et sp. nov. 44. Central cercal articles. 45. Detail of a cercal macroseta.
Figs 30‒33 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)
Figs 30‒33. Hubeicampa melissa Sendra & Lips gen. et sp. nov. 30. Pronotum, mesonotum, and metanotum, left side, holotype (MZB (MCNB) 2020-1162). 31. Detail of the pronotum. 32. Detail of clothing setae on pronotum. 33. Detail of the surface of metanotum.
Figs 49‒50. Plutocampa methoria Chevrizov, 1978. 49 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)
Figs 49‒50. Plutocampa methoria Chevrizov, 1978. 49. Sensillum of the third antennomere. 50. Left labial palp and palpiform process (pp).
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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.