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150 results for “Apennines”
Fig. 1 in Eurasian badger Meles meles habitat and sett site selection in the northern Apennines
Fig. 1 - Geographic position of the study area, with Sett Points, Random Points and water (rivers and streams) layer.
Text-fig. 5. CA climate charts for the Monte Tondo and Tossignano floras, showing climatic ranges of the Nearest Living Relatives of the fossil taxa with respect to MPwarm. For legend see Text-fig. 3. in Palaeoenvironmental Analysis Of The Messinian Macrofossil Floras Of Tossignano And Monte Tondo (Vena Del Gesso Basin, Romagna Apennines, Northern Italy)
Text-fig. 5. CA climate charts for the Monte Tondo and Tossignano floras, showing climatic ranges of the Nearest Living Relatives of the fossil taxa with respect to MPwarm. For legend see Text-fig. 3.
Text-fig. 4. CA climate charts for the Monte Tondo and Tossignano floras, showing climatic ranges of the Nearest Living Relatives of the fossil taxa with respect to MAP. For legend see Text-fig. 3. in Palaeoenvironmental Analysis Of The Messinian Macrofossil Floras Of Tossignano And Monte Tondo (Vena Del Gesso Basin, Romagna Apennines, Northern Italy)
Text-fig. 4. CA climate charts for the Monte Tondo and Tossignano floras, showing climatic ranges of the Nearest Living Relatives of the fossil taxa with respect to MAP. For legend see Text-fig. 3.
Text-fig. 1. Location of the Tossignano and Monte Tondo sites in the Romagna Apennines (modified after Lugli et al. 2010). 1 – Tossignano quarry, 2 – Monte Tondo quarry. in Palaeoenvironmental Analysis Of The Messinian Macrofossil Floras Of Tossignano And Monte Tondo (Vena Del Gesso Basin, Romagna Apennines, Northern Italy)
Text-fig. 1. Location of the Tossignano and Monte Tondo sites in the Romagna Apennines (modified after Lugli et al. 2010). 1 – Tossignano quarry, 2 – Monte Tondo quarry.
Text-fig. 3. CA climate charts for the Monte Tondo and Tossignano floras, showing climatic ranges of the Nearest Living Relatives of the fossil taxa with respect to MAT. Right-hand positoned large bold figures and shaded areas in each case indicate the Coexistence Interval, with the number of overlapping taxa being at a maximum. in Palaeoenvironmental Analysis Of The Messinian Macrofossil Floras Of Tossignano And Monte Tondo (Vena Del Gesso Basin, Romagna Apennines, Northern Italy)
Text-fig. 3. CA climate charts for the Monte Tondo and Tossignano floras, showing climatic ranges of the Nearest Living Relatives of the fossil taxa with respect to MAT. Right-hand positoned large bold figures and shaded areas in each case indicate the Coexistence Interval, with the number of overlapping taxa being at a maximum.
Text-fig. 2. Stratigraphy of western part of the Romagna Apennines (after Roveri et al. 2006). Symbol "arrow" – stratigraphical position of the studied floras of Tossignano and Monte Tondo. in Palaeoenvironmental Analysis Of The Messinian Macrofossil Floras Of Tossignano And Monte Tondo (Vena Del Gesso Basin, Romagna Apennines, Northern Italy)
Text-fig. 2. Stratigraphy of western part of the Romagna Apennines (after Roveri et al. 2006). Symbol "arrow" – stratigraphical position of the studied floras of Tossignano and Monte Tondo.
FIGURE 6. Shaded coloured 3D in Elongated theropod tracks from the Cretaceous Apenninic Carbonate Platform of southern Latium (central Italy
FIGURE 6. Shaded coloured 3D photogrammetric model of footprint F1 and F2 with relative section (S4) passing through the metatarsal impression and digit III.
FIGURE 5. Shaded coloured 3D in Elongated theropod tracks from the Cretaceous Apenninic Carbonate Platform of southern Latium (central Italy
FIGURE 5. Shaded coloured 3D photogrammetric model of footprint F3 and relative sections (S1, S2, S3).
FIGURE 2 in Elongated theropod tracks from the Cretaceous Apenninic Carbonate Platform of southern Latium (central Italy
FIGURE 2. Thin sections of the trampled block. 1, Nezzazata isabellae; 2, Cuneolina sliteri; 3, Aligned spathic calcite crystals suggesting emersive condition of the surface during trampling. Scale bar equals 0,5 mm (1 and 2) and 1,5 mm (3).
FIGURE 1 in Elongated theropod tracks from the Cretaceous Apenninic Carbonate Platform of southern Latium (central Italy
FIGURE 1. Map of provenance (black footprint) and present location of the track-bearing block (Lido di Porto Canale-Riomartino, grey spot).
FIGURE 4. 1, Shaded grey 3D in Elongated theropod tracks from the Cretaceous Apenninic Carbonate Platform of southern Latium (central Italy
FIGURE 4. 1, Shaded grey 3D photogrammetric model of the track-bearing block; 2, Shaded coloured 3D photogrammetric model.
FIGURE 3. 1 in Elongated theropod tracks from the Cretaceous Apenninic Carbonate Platform of southern Latium (central Italy
FIGURE 3. 1, The track-bearing block; 2, Close-up of the studied footprints; 3, Orthophoto of the trampled block; 4, Interpretative field drawing (scale bar equals 10 cm); F1, F2 and F3 indicate the three theropod tracks discussed in the text; A-D indicate poorly preserved traces, possibly produced by the trackmaker of F1, F2, and F3.
Fig. 3. A in First record of the ichnofossil Atollites from the Late Cretaceous of the Northern Apennines, Italy
Fig. 3. A. Schematic and simplified pre−diagenetic reconstruction of the whole architecture of Atollites italicum ichnosp. nov., For drawing purposes, the number of lateral cylinders and clubs has been reduced to less than half of those actually present. B–D. Computer visualization of gradual compaction of the structure.
Robotic Monitoring of Forests: a Dataset from the EU habitat 9210* in the Tuscan Apennines (Central Italy)
<p>Data collected between the 27th and the 28th of April 2022, in Chiusi Della Verna, Arezzo 52010 (AR), Italy, inside the Natura 2000 SAC IT5180101. The data has been acquired mainly by the legged robot ANYmal C guided by a team of both roboticists and plant scientists. </p><p>The dataset contains four different sets of data: </p><p>1) species data - photos of four indicator species of the habitat 9210 (3 typical species and 1 early warning species).</p><p>2) mapping data - three dimensional point clouds of the habitat environment.</p><p>3) autonomous monitoring mission data - photos and videos taken by the robot during the surveys, robot status, and external videos of the autonomous mission.</p><p>4) teleoperated monitoring mission data - photos and videos taken by the robot during the surveys, robot status, and external videos of the teleoperated mission.</p><p>Researchers from a variety of disciplines can benefit from using this dataset because of its multidisciplinary scope. On the one hand, robotic engineers could, for instance, benchmark the performance of the robots and test or validate their own methods using the point clouds and the information about the robot state. On the other hand, botanists could evaluate the accuracy of this data as well as the habitat's conditions using the plant videos and images that the robot captured, or computer scientists could test their AI algorithms for identifying and classifying different species using these data.</p>
Fig. 1 in Desoria calderonis sp. nov., a new species of alpine cryophilic springtail (Collembola: Isotomidae) from the Apennines (Italy), with phylogenetic and ecological considerations
Fig. 1. Desoria calderonis sp. nov., general aspect.
Fig. 15 in A new species of Heteraphorura Bagnall, 1948 (Collembola, Poduromorpha, Onychiuridae) from Apennine Mountains (Tuscany, Italy).
Fig. 15.- Heteraphorura steineri sp. nov. Anal valves. Scale¡ 0.05 mm.
Fig. 1 in First record of the ichnofossil Atollites from the Late Cretaceous of the Northern Apennines, Italy
Fig. 1. Location map of the site (asterisk) where the specimen was collected.
WRF-Noah/Alpine3D simulations for 2018-2021 snow seasons in Italian Central Apennines
<p>This dataset contains the results of two numerical simulations over Italian Central Apennines at 3 km resolution for the three snow seasons 2018/19, 2019/20 and 2020/21. The file wrf-noah_2018-2021.nc contains the WRF-Noah model output, while the file wrf-alpine3d_2018-2021.nc contains the WRF-Alpine3D model output.</p>
Supporting reintroduction planning: A framework integrating habitat suitability, connectivity and individual-based modelling. A case study with the Eurasian lynx in the Apennines
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A dataset of hydrological effects induced by historical and modern earthquakes in the Southern Apennines of Italy
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.