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765 results for “alps”
Figures 31-44. Cricotopus spp., male pupal exuviae. C in CRICOTOPUS (S. STR.) LATELLAI SP. N., A NEW RHEOPHILIC SPECIES OF THE TREMULUS-GROUP FROM THE ITALIAN AND FRENCH MARITIME ALPS (DIPTERA: CHIRONOMIDAE) Abstract
Figures 31-44. Cricotopus spp., male pupal exuviae. C. latellai sp. n.: 31, frontal apotome; 32, cephalothorax, chaetotaxy and granulation; 33-35, thoracic horn, three aspects; 34, thoracic horn, details of apical part; 36, cephalothorax, details of anteromedian area. C. mantetanus: 37, cephalothorax with dorsocentrals; 38, thoracic horn. C. latellai sp. n.: 39, armament and chaetotaxy of abdominal segments V-VII with details of the hook rows on tergites (left) and sternites (right); 40, lateral view of segments VII-VIII and anal segment; 41, armament of tergites V-VI (dorsal view) with median patch of spines and details of the hook rows; 42, anal lobe, right half, dorsal; 43, ventral view of sternites V (distal part) and VI (posteromedian patch of spines); C. mantetanus: 44, anal lobe, right half, dorsal.
Figures 1-12 in CRICOTOPUS (S. STR.) LATELLAI SP. N., A NEW RHEOPHILIC SPECIES OF THE TREMULUS-GROUP FROM THE ITALIAN AND FRENCH MARITIME ALPS (DIPTERA: CHIRONOMIDAE) Abstract
Figures 1-12. Male adult of Cricotopus spp. C. latellai sp. n.: 1, tarsomere 3 with sensilla coeloconica; 2, tergite IX, lateral; 3, tergite IX, dorsal; 4, distribution pattern of setae on median area of tergites II-V. C. mantetanus: 5, tergite IX, dorsal; 6, distribution pattern of setae on median area of tergites II-V. C. latellai sp. n.: 7-8, hypopygium in dorsal and ventral view; 9, inferior volsella, dorsal; 10, left gonostylus, dorsal, at right angle; 11, right gonostylus, dorsal, at acute angle. C. mantetanus: 12, inferior volsella, dorsal.
Figures 13-30 in CRICOTOPUS (S. STR.) LATELLAI SP. N., A NEW RHEOPHILIC SPECIES OF THE TREMULUS-GROUP FROM THE ITALIAN AND FRENCH MARITIME ALPS (DIPTERA: CHIRONOMIDAE) Abstract
Figures 13-30. Male and female adults of Cricotopus spp. C. latellai sp. n., male adult: 13, gonocoxite and inferior volsella, lateral; 14, inferior volsella, lateral; 15, gonostylus, lateral. 16, C. mantetanus: inferior volsella, lateral. C. latellai sp. n., female adult: 17, palpomere 3 with sensilla coeloconica; 18-19, antenna, segments 1-3, two aspects; 20- 21, last flagellomere, two aspects; 22, distribution pattern of setae on median area of tergites II-V; 23, genitalia, ventral and dorsal view with gonapophysis VIII, sternite VIII and seminal capsules; 24, dorsomesal and ventrolateral lobes; 25, apodeme lobe; 26, tergite IX, dorsal; 27, cercus. C. mantetanus: 29, apodeme lobe; 30, seminal capsule.
Fig. 4 in Nouvelle population de Podismopsis Zubovski, 1900 (Orthoptera, Acrididae, Gomphocerinae) découverte dans les Alpes suisses
Fig. 4. Vues sur le milieu (principalement Nardion pâturé) dans lequel la population de près de 100 individus de Podimsopsis sp. a été observée les 14 et 15.09.2016 le long de la crête sommitale entre Planplatten et Gummenhubel (2170–2240 m) à Hasliberg. a: vue à l'ouest sur le Lac de Brienz, b: vue au sud-ouest; c, d: vue au nord en direction de l'Alpen Tower. Les pylônes avec le drapeau orange correspondent à l'espace de décollage des parapentistes. (Photos Stève Breitenmoser)
Fig. 3. Zone d in Nouvelle population de Podismopsis Zubovski, 1900 (Orthoptera, Acrididae, Gomphocerinae) découverte dans les Alpes suisses
Fig. 3. Zone d'observation de la population de Podismopsis sp. à Planplatten – Gummenhubel, Hasliberg (BE), les 14 et 15.09.2016, carré kilométrique 662 / 176. ●: mâles; ●: femelles. Chaque point peut représenter de 1 à 10 individus. Reproduit avec l'autorisation de swisstopo (BA17045).
Fig. 2 in Nouvelle population de Podismopsis Zubovski, 1900 (Orthoptera, Acrididae, Gomphocerinae) découverte dans les Alpes suisses
Fig. 2. Femelle de Podismopsis sp. observée à Planplatten – Gummenhubel, Hasliberg (BE), le 14.09.2016. (Photo Stève Breitenmoser)
Fig. 1 in Nouvelle population de Podismopsis Zubovski, 1900 (Orthoptera, Acrididae, Gomphocerinae) découverte dans les Alpes suisses
Fig. 1. Le premier mâle de Podismopsis sp. observé à Planplatten, Hasliberg BE, le 13.08.2016. (Photo Stève Breitenmoser)
Fig. 3 in Calamagrostis lonana (Poaceae): a new grass species from the Pennine Alps (Switzerland)
Fig. 3. – Calamagrostis lonana Eggenb. & Leibundg. A. Habit of the aerial parts with moss cushion of Warnstorfia exannulata (Schimp.) Loeske. B. Upper root space in the moss layer.
Fig. 4 in Calamagrostis lonana (Poaceae): a new grass species from the Pennine Alps (Switzerland)
Fig. 4. – Alpine alluvial plain of Lona, with fens, alluvial and spring vegetation patches on both sides of the meandering Torrent de Lona.
Fig. 2 in Calamagrostis lonana (Poaceae): a new grass species from the Pennine Alps (Switzerland)
Fig. 2. – Calamagrostis lonana Eggenb. & Leibundg. A. Habit with stolons within the moss layer; B. Inflorescence (contracted panicle); C. Section of inflorescence with adjacent panicle branches; D. Spikelet peduncle with glumes; E. Glume and palea with callus hairs and awn (dorsally inserted).
Robotic Monitoring of Alpine Screes: a Dataset from the EU Natura2000 habitat 8110 in the Italian Alps
<p>Data collected between the 19th and the 21rd of July 2022, in Valfurva, 23030 (SO), Italy, within the Stelvio National Park, located inside the Natura 2000 SPA IT2040044. The data acquisition has been conducted by a team composed of both robotic engineers and plant scientists. The platform used to collect the data is the ANYmal C quadrupedal robot.</p> <p> </p> <p>The dataset contains two different sets of data:</p> <p>1) typical and early warning species data - videos of seven different typical species of the habitat 8110 and one early warning species.</p> <p>2) monitoring mission data - video of the monitoring mission, robot status and point clouds, pictures and videos taken by the robot during the autonomous surveys.</p> <p> </p> <p>This dataset has a multidisciplinary scope and can be used by researchers in several fields. For instance, point clouds and information about the robot state could be used by robotic engineers to test or validate their own methods as well as benchmark the robot performance. On the other hand, plant videos and images recorded by the robot could be used by botanists to assess the quality of this information as well as the habitat's conditions, or by computer scientists interested in testing their AI algorithms for species detection and classification.</p>
Fig. 4 in Orthopteran diversity and distribution in the Monviso Natural Park (Western Italian Alps) (Orthoptera)
Fig. 4 – Plot representing the species-sample rarefaction curve, calculat- ed using the 2019-2020 surveys data (1200 records in 395 survey points, 49 species). The grey area identifies the 95% confidence interval.
Fig. 3 in Orthopteran diversity and distribution in the Monviso Natural Park (Western Italian Alps) (Orthoptera)
Fig. 3 – Map of the study area reporting the number of survey points in each 1x1 km cell (N = 423; red circles). The unexplored cells are identified with a "X", while unfilled circles indicate cells where no surveys were carried out, due to the absence of orthoptera.
Fig. 2 in Orthopteran diversity and distribution in the Monviso Natural Park (Western Italian Alps) (Orthoptera)
Fig. 2 – Map of the study area showing the position of the 28 additional survey points (90 records) reported in literature or in the considered databases (MB = M. Bonifacino's archive; RS = R. Sindaco's archive; PRND = Piemonte Region Naturalistic Database).
Fig. 6 in Orthopteran diversity and distribution in the Monviso Natural Park (Western Italian Alps) (Orthoptera)
Fig. 6 – Barplots showing the distribution of survey points (grey bars) and observed species richness (black bars) along A, the altitudinal gradient within the study area, and B, in each month during the research period.
Fig. 1 in Orthopteran diversity and distribution in the Monviso Natural Park (Western Italian Alps) (Orthoptera)
Fig. 1 – Map showing the geographical position of the study area (Monviso massif, Cottian Alps, Piedmont, Italy). The Monviso Natural Park (yellow line, pale green area) and the SAC/SPA IT1160058 "Gruppo del Monviso e Bosco dell'Alevé" (red line) borders are reported, together with the 1x1 km lattice (UTM grid, zone 32 N) used as spatial reference during this research (in black). Red dots identify the 395 survey points (1200 records) investigated by the author in 2019-2020.
Fig. 9 in Sex-ratio and body size plasticity in two cold-adapted ground beetles co-occurring in a periglacial area of the European Alps (Coleoptera: Carabidae)
Fig. 9 – Polynomial regression graph between elytra width of Nebria castanea females and the springtail abundance.
Fig. 7 in Sex-ratio and body size plasticity in two cold-adapted ground beetles co-occurring in a periglacial area of the European Alps (Coleoptera: Carabidae)
Fig. 7 – Boxplots of elytra width of Nebria castanea females as a function of landform. p-value of N. castanea morphometric analysis with Kruskal-Wallis test, that evaluate the presence of significant differences in body size between landforms with ice (active rock glacier) and without ice (fossil rock glacier and scree slope). Asterisk highlights significant values.
Fig. 3 in Sex-ratio and body size plasticity in two cold-adapted ground beetles co-occurring in a periglacial area of the European Alps (Coleoptera: Carabidae)
Fig. 3 – Boxplot of Nebria germarii body parameters as a function of sex (F=female; M=male). p-value of the Kruskal-Wallis tests for N. germarii body size as a function of sex. Asterisk highlights significant values.
Fig. 5 in Sex-ratio and body size plasticity in two cold-adapted ground beetles co-occurring in a periglacial area of the European Alps (Coleoptera: Carabidae)
Fig. 5 – PCA analysis graphs. Blue stars=active rock glacier specimens; Gold squares=fossil rock glacier specimens; Green dot=scree slope specimens.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.