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178 results for “Spitsbergen”
FIGURE 3 in Taxonomy and biostratigraphy of Ordovician brachiopods from northeastern Ny Friesland, Spitsbergen 3076
FIGURE 3 Rose histograms for the umbonal orientation of the large brachiopod Ectenoglossa? oviforma sp. nov. found in the Olenidsletta Member, Valhallfonna Formation. a) Histogram of 58 specimens from 88 m above the base of the member. b) Histogram of 13 specimens from 94 m above the base of the member.
West Spitsbergen Fold and Thrust Belt: a digital educational data package for teaching structural geology
<p>The following digital educational data package is provided as part of the submission of the publication Horota et al. (2022) <em>West Spitsbergen Fold and Thrust Belt: a digital educational data package for teaching structural geology</em>, considered for publication in the Journal of Structural Geology. The dataset contains a QGIS, ArcGIS Pro and a Petrel projects with all the associated data.</p>
Svalbox 2022 Spring Reconnaissance - Western Spitsbergen photosphere data
<p>360 degree photosphere data for the West Spitsbergen 2022 Svalbox reconnaissance collected in spring 2022.</p>
Data from: Extreme diversity in the songs of Spitsbergen’s bowhead whales
Open the record for dataset details and reuse information.
Fig. 3 in New articulated asteroids (Echinodermata, Asteroidea) and ophiuroids (Echinodermata, Ophiuroidea) from the Late Jurassic (Volgian / Tithonian) of central Spitsbergen
Fig. 3. Savignaster septentrionalis Rousseau & Gale sp. nov. A–B. Holotype PMO 218.000. A. Complete arm and associated interradial area showing chevron ossicles. B. Drawing of holotype showing main morphological features. C. Paratype PMO 217.976, partial arm preserved up to the tip. D. Paratype PMO 217.977, partial arm specimen with elongated, narrow ambulacrals set at nearly right-angle to the arm axis. E. Paratype PMO 217.978, a near complete arm with associated adambulacral spines. F. Paratype PMO 218.008, close-up view of fan-shaped trellis-like adambulacral spines articulated to the lateral margin of the adambulacral. Abbreviations: abact = abactinal ossicle; adamb = adambulacral; amb = ambulacral; cho = chevron ossicle.
FIGURE 2. Arctocypris fuhrmanni n. gen., n in Arctocypris fuhrmanni, n. gen., n. sp. (Crustacea, Ostracoda, Eucypridinae) from Spitsbergen (Norway)
FIGURE 2. Arctocypris fuhrmanni n. gen., n. sp. A ─left valve; B ─right valve.
Fig. 19 in A late Paleocene fauna from shallow-water chemosynthesis-based ecosystems, Spitsbergen, Svalbard
Fig. 19. Thoracic barnacle?Capitulum lailae Gripp, 1927, from the upper Paleocene, Basilika Formation, Fossildalen, Spitsbergen, Svalbard. ZPAL V.48/22, rostral plate.
Fig. 12 in Early-Middle Ordovician cephalopods from Ny Friesland, Spitsbergen - a pelagic fauna with Laurentian affinities
Fig. 12 (previous page). Apical parts of orthoconic cephalopods from the Olenidsletta Member, Floian, Ordovician, near Hinlopenstretet, Ny Friesland, Spitsbergen. A. Cyptendoceras sp. B., FMNH-P30472 from Profilbekken river basin, locality PR-phosphatic. Lateral view with siphuncle toward the left. B. Svalbardoceras sterna gen. et sp. nov, FMNH-P30169, from PO 7.5. Lateral view with siphuncle toward left. C, F–G. Eosomichelinoceras borealis sp. nov. C. Specimen FMNH-P30171, from bed PO 123.3. Lateral view with prosiphuncular side toward the right. D. Bactroceras fluvii sp. nov., FMNH-P30168, from Profilbekken river basin, locality PR-phosphatic, showing the ventral side with ventral sutural lobe. E, H, J. Bactroceras boliviensis Aubrechtová, 2015 from bed PO 131. E. Specimen FMNH-P30165, nearly dorsal view, showing the transition of the extreme apical part toward the juvenile part of the conch. F. Specimen FMNH-P30182, lateral view with siphuncle toward the right. G. Specimen FMNH-P30184, lateral view with siphuncle toward the left. H. Specimen FMNH-P30183, apical view, showing the smooth apical surface of the protoconch. I. Ethanoceras solitudines gen. et sp. nov., FMNH-P30173, from bed PO 123.3, note the fine transverse striation. J. FMNH-P30160, showing details of fine transverse ornamentation. Scale bar = 2 mm for all figures.
Fig. 49 in Early-Middle Ordovician cephalopods from Ny Friesland, Spitsbergen - a pelagic fauna with Laurentian affinities
Fig. 49. Median sections of phragmocones of cephalopods from the Olenidsletta Member, Floian, Ordovician, Profilstranda section, Ny Friesland, Spitsbergen. A. Order, gen. et sp. indet. B, FMNH-P30424, from bed 4.8, see also Fig. 11A for interpretation. B–C. Nyfrieslandoceras bassleroceroides gen. et sp. nov., FMNH-P30353, holotype, from bed PO 131. B. Detail with septa and siphuncle preserved, septa are crushed and taphonomically distorted. C. Detail of septal necks and connecting ring, see Fig. 8D for interpretation. Scale bars: A–B = 5 mm; C = 1 mm.
Fig. 40 in Early-Middle Ordovician cephalopods from Ny Friesland, Spitsbergen - a pelagic fauna with Laurentian affinities
Fig. 40. Diagrams of relative siphuncular diameter and relative siphuncular distance of Eosomichelinoceras borealis gen. et sp. nov. from the Olenidsletta Member, Floian, Ordovician, Profilstranda section, Ny Friesland, Spitsbergen. See Supp. file 1 for details of measurements.
Figure 1 in Enchytraeid assemblages at the foot of a talus slope in Skansbukta on the Arctic island of Spitsbergen
Figure 1. Enchytraeid vertical distribution at the two sites at the foot of a talus slope at Skansbukta (Spitsbergen): Lower Slope (left) and Flat Area (right).
FIGURE 1 in Achnanthidium petuniabuktianum sp. nov. (Achnanthidiaceae, Bacillariophyta), a new representative of the A. pyrenaicum group from Spitsbergen (Svalbard Archipelago, High Arctic)
FIGURE 1. Map of the Svalbard Archipelago (Bjørnøya excluded) with indication of the study area.
Figure 2 in A new polychaete genus and species of the Kongsfjorden, Spitsbergen, Svalbard
Figure 2. Glyphochaeta laudieni gen sp. n., SEM micrographs. (A) Anterior end, frontal view; (B) anterior end, ventral view; (C) lateral view of chaetigers 12–15, neuropodial hooded hooks of chaetiger 12 and 13 broken off; (D) grooved spine of chaetiger 16; (E) neuropodial hooded hooks of a posterior chaetiger; (F) neuropodial hooded hook of a posterior chaetiger, two apical teeth above the main tooth. Scale bars: 60 mm (A, C); 100 mm (B); 10 mm (D); 4 mm (E); 3 mm (F).
Fig. 2 in Acanthodian fish trace fossils from the Early Devonian of Spitsbergen
Fig. 2. Undichna septemsulcata isp. nov., Early Devonian, Spitsbergen. A. Sandstone slab (PMO 169.565) with two specimens of the fish trace Undichna septemsulcata isp. nov., and numerous arthropod trackways (ichnogenera: Merostomichnites, Diplichnites) preserved as delicate positive hyporelief. B, C. Enlarged section and line drawing of the holotype specimen of Undichna septemsulcata isp. nov., overprinted by two arthropod trackways (Diplichnites). D, E. Enlarged section and line drawing of the second, less well−preserved and narrower specimen.
FIGURE 6 in Two Interesting Damaeid Mites (Acari, Oribatida, Damaeidae Berlese, 1896) From The British Isles And Svalbard (Spitsbergen, Norway), With A Description Of Kunstidamaeus Arcticus N.Sp.
FIGURE 6: Epidamaeus sp. (aff. floccosus Behan-Pelletier and Norton, 1985): A – sensillus and bothridial area; B – interbothridial seta;
FIGURE 1 in Two Interesting Damaeid Mites (Acari, Oribatida, Damaeidae Berlese, 1896) From The British Isles And Svalbard (Spitsbergen, Norway), With A Description Of Kunstidamaeus Arcticus N.Sp.
FIGURE 1: Kunstidamaeus arcticus n.sp.: A – dorsal view, legs only partly depicted; B – ventral view, legs and gnathosoma only partly depicted (scale bar = 200 µm).
FIGURE 2 in Two Interesting Damaeid Mites (Acari, Oribatida, Damaeidae Berlese, 1896) From The British Isles And Svalbard (Spitsbergen, Norway), With A Description Of Kunstidamaeus Arcticus N.Sp.
FIGURE 2: Kunstidamaeus arcticus n.sp.: A – lateral part of prodorsum with apophyses P, Sa and Sp, and tubercle La; B – dorsosejugal area with tubercles at posterior end of prodorsum and spinae adnatae; C – spina adnatum of another individual; D – lamellar seta; E – rostral seta; F – exobothridial seta; G – interlamellar seta; H – notogastral seta c1; I – notogastral seta lm; J – sensillus and bothridium (scale bar = 50 µm).
Active layer physical processes at Broeggerhalvoya, western Spitsbergen, Version 1
These data have been collected from an Arctic desert site (latitude 78o57'29N, longitude 12o27'42E), Broeggerhalvoya in western Spitsbergen, 10 km NW from Ny Alesund, 45 m above sea level, 2 km from the shore. This is a low relief tip of a bedrock peninsula covered with several meters of glacial drift and reworked raised beach ridges. The measurements are obtained in the site of well developed patterned ground, sorted polygons, where the influence of plants, including thermal insulation and transpiration, is negligible. The 1985-1986 period was average. Mean annual air temperature was -6.6 C, 0.4 C colder than the long-term (1975-1990) mean, but well within the mean variability. Mean winter air temperature is relatively warm (mean of coldest month, February, is -14.6 C). Annual precipitation was 17 % greater than the ong-term mean (372 mm); however, the number of rain-on-snow events was less (3) than average (5.5). Overall, the reference period is close to long-term averages. A program of automated soil temperature recordings was initiated in the summer of 1984, at a patterned ground field site Thermistors were placed approximately 0.1 m apart in an epoxy-filled PVC rod (18 mm outside diameter), buried in the center of a fine-grained domain of a sorted circle, down to 1.14 m below the ground surface. The data presented here covers 7/1/85-7/1/86, once a day (6 am), at two levels (0.0 m, 1.145 m below surface). The resolution of the thermistors is 0.004 C, and the accuracy is estimated to be 0.02 C near 0 C. Missing data accounts for less than 7 %. The gaps are filled with simple average of the beginning and end of the gap values. For a detailed description of the field site and data analysis see Putkonen (1997) and Hallet and Prestrud (1986). These data are presented on the CAPS Version 1.0 CD-ROM, June 1998.
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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
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