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35 results for “Tyrol”
Historical Person Register, Tyrol 15th, 16th century
<p>The dataset consists of a file in CSV format (UTF 8). The historical person register contains late medieval / ENHG person names within the Tyrolean mining documents Hs. 37 and Hs. 1587 (15th and 16th century) as well as a modern standardisation of the names. The persons received unique Identifiers. The names are also split into title, first name, last name, occupation and descriptor. Furthermore, the year is added, provenance if available, and alternate writings of the names within the text.</p> <p>The project “Text Mining Medieval Mining Texts” (2019-2022) processed two historical mining sources: “Verleihbuch der Rattenberger Bergrichter” ( Hs. 37, 1460-1463) and “Schwazer Berglehenbuch” (Hs. 1587, approx. 1515) stored by the Tyrolean Regional Archive, Innsbruck (Austria). The central research objective of T.M.M.M.T. is the extraction and representation of the legal relationships between people, claims and mines over space and time. Furthermore it deals with the semantically opening and visualisation of the montanistic network of two tyrolean mining regions.</p> <p>Citeable Transcripts are online available:<br> Hs. 37 DOI: 10.5281/zenodo.6274562<br> Hs. 1587 DOI: 10.5281/zenodo.6274928</p> <p>View also the facsimiles and transcripts on Mining Hub: https://transkribus.eu/r/mining-hub/#/</p> <p>The research project (2019-2022) was carried out at the university of Innsbruck and funded by go!digital next generation programme of the Austrian Academy of Sciences.</p>
Historical Place Gazetteer and Historical Mine Register, Tyrol 15th, 16th century
<p>The dataset is split in two separated files in CSV format (UTF 8):</p> <p>1) Historical place gazetteer: It contains historical tyrolean names of places (core region: districts Kufstein, Schwaz; Austria) within the mining documents Hs. 37 and Hs. 1587 and their modern equivalents enriched with unique Identifiers. Furthermore, Places were localised and georeferenced as far as current scientific data and knowledge permit. A final column shows corresponding IDs between Hs. 37 and Hs. 1587.</p> <p>2) Historical mine register: The file contains historical Tyrolean names of mines and pits (core region: district Kufsten, Schwaz) within the mining documents Hs. 37 and Hs. 1587 as well as a modern standardisation of the names. The mines also received unique Identifiers.</p> <p>The registers were generated by the research team of the project “Text Mining Medieval Mining Texts” (2019-2022). Two historical mining sources were processed: “Verleihbuch der Rattenberger Bergrichter” ( Hs. 37, 1460-1463) and “Schwazer Berglehenbuch” (Hs. 1587, approx. 1515) stored by the Tyrolean Regional Archive, Innsbruck (Austria). The central research objective of T.M.M.M.T. is the extraction and representation of the legal relationships between people, claims and mines over space and time. Furthermore it deals with the semantically opening and visualisation of the montanistic network of two tyrolean mining regions.</p> <p>Citeable Transcripts are online available:<br> Hs. 37 DOI: 10.5281/zenodo.6274562<br> Hs. 1587 DOI: 10.5281/zenodo.6274928</p> <p>The research project (2019-2022) was carried out at the University of Innsbruck and funded by go!digital next generation programme of the Austrian Academy of Sciences.</p>
Context-Aware Dataset: STS - South Tyrol Suggests IoT Mobile App Data
<p><strong>STS dataset </strong>was collected by a context-aware recommender system mobile app named as<strong> <a href="https://play.google.com/store/apps/details?id=it.unibz.sts.android&hl=en">"South Tyrol Suggests"</a></strong>. The app provides <strong>context-aware recommendations</strong> for attractions, events, public services, restaurants, and much more based on the rating preferences and personality factors of users.</p> <p><strong>Contextual</strong> <strong>variables</strong> includes </p> <ul> <li><strong>distance:</strong> far away, near by</li> <li><strong>time available:</strong> half day, one day, more than one day</li> <li><strong>temperature:</strong> burning, hot, warm, cool, cold, freezing</li> <li><strong>crowdedness:</strong> crowded, not crowded, empty</li> <li><strong>knowledge of surroundings:</strong> new to area, returning visitor, citizen of the area</li> <li><strong>season:</strong> spring, summer, autumn, winter</li> <li><strong>budget:</strong> budget traveler, price for quality, high spender</li> <li><strong>daytime:</strong> morning, noon, afternoon, evening, night</li> <li><strong>weather:</strong> clear sky, sunny, cloudy, rainy, thunderstorm, snowing</li> <li><strong>companion:</strong> alone, with friends/colleagues, with family, with girlfriend/boyfriend, with children</li> <li><strong>mood:</strong> happy, sad, active, lazy weekday: weekday, weekend</li> <li><strong>travel goal:</strong> visiting friends, business, religion, health care, social event, education, scenic/landscape, hedonistic/fun, activity/sport</li> <li><strong>means of transport:</strong> no transportation means, a bicycle, a car, public transport</li> </ul> <p>More details can be found here:</p> <p><em>Braunhofer, Matthias, Mehdi Elahi, and Francesco Ricci. <a href="https://www.researchgate.net/profile/Mehdi_Elahi2/publication/283502363_Techniques_for_cold-starting_context-aware_mobile_recommender_systems_for_tourism/links/56ccaa7608ae059e37507cc0.pdf">"<strong>Techniques for cold-starting context-aware mobile recommender systems for tourism</strong>."</a> Intelligenza Artificiale 8, no. 2 (2014): 129-143.</em></p>
Spatio-temporal water surplus and evapotranspiration in the catchment area of the Vögelsberg landslide (Tyrol, Austria)
<p>Multi-temporal maps of daily water surplus and evapotranspiration in the catchment area of the Vögelsberg landslide (Tyrol, Austria) based on the SVAT model LWF-Brook90 from 01/01/2008 to 31/12/2019. The spatio-temporal results represent the hydrological forcing of acceleration phases of the deep-seated landslide (see also Pfeiffer et al. 2021, <a href="https://doi.org/10.1002/esp.5129">https://doi.org/10.1002/esp.5129</a>). To investigate the feasibility of a modified land cover as nature-based solutions to reduce the landslide's activity, three land cover scenarios were considered (under current climatic conditions):</p> <p>- Current land cover conditions classified based on air-borne laser scanning data</p> <p>- Forest scenario: catchment area completely covered by forests (hypothetical scenario)</p> <p>- Pole timber scenario: open land above agricultural areas is replaced by areas of pole timber (considered realistic)</p> <p>Three land cover classes (open land, pole timber, mature forest), 11 soil types and 5 vertical meteorological domains were distinguished. Maps were produced with a spatial resolution of 10m (Projection: Austria GK West, EPSG: 31254). The maps are provided as raster stacks in tif-format with each layer representing one day.</p> <p>For further details see OPERANDUM deliverables D4.5 and D4.6.</p>
Pesticide residue monitoring in South Tyrol (Italy)
<ul> <li>Pesticide residue monitoring programm in South Tyrol (Province Bolzano, Italy)</li> <li>The programm is organized and conducted by the Department of Public Health, Servizio Igiene e Sanità<br> Pubblica—Azienda Sanitaria dell’Alto Adige, Bolzano, Italy</li> <li>Further despription and data available at: <ul> <li>https://www.sabes.it/gesundheitsvorsorge/umweltmedizin.asp</li> <li>https://umwelt.provinz.bz.it/pestizide-suedtirol.asp</li> </ul> </li> <li>Residue concentrations of grass samples per sampling site and sampling date can be found in the file "Pesticide_monitoring_SouthTyrol_2018_2021.csv "</li> <li>Available period: 2018 to 2021</li> <li>All sampling sites were public sites</li> <li>Names of active agents are in Italian</li> <li>Residue concentartions are given in "mg kg<sup>-1</sup>"</li> <li>"n.d." means "not detected"</li> <li>Lower limit of quantification (LOQ) was by default 0.01 mg kg<sup>-1</sup></li> <li>GPS coordinates of the sampling sites are can be found in thefile "Coordinates_sampling_sites.csv"</li> </ul>
Figure 4 Arcochthonius roynortoni n in A new species of Brachychthoniidae (Acari: Oribatida) from the Eastern Central Alps (Austria, Tyrol), with the proposal of a new genus
Figure 4 Arcochthonius roynortoni n. sp. adult: ventral view. A – subcapitulum. B – right chelicera, antiaxial view. C – right palp, antiaxial view. D – frontal view. Arrow indicates scale with possible internal ocellus (see remark #2). E – variations of frontal rostral apex. F – posterior view. Scale bar 1 Figs A, B, C 20 µm. Scale bar 2 Figs D, E, F 50 µm.
Figure 2 Arcochthonius roynortoni n in A new species of Brachychthoniidae (Acari: Oribatida) from the Eastern Central Alps (Austria, Tyrol), with the proposal of a new genus
Figure 2 Arcochthonius roynortoni n. sp. adult: ventral view (lyrifissures and legs not shown). Scale bar 50 µm.
Knowledge Graph 'Bergbeschau: Schwaz / Rottenburg / Rattenberg' Tyrol, 17th Century
<p>The dataset contain a .nq file of a Knowledge Graph that is based on the extracted information / data of the historical document “Bergbeschau Schwaz/Rottenburg/Rattenberg” of the 17<sup>th</sup> century (approx. 1666). The document is currently stored by the Salinenarchiv Bad Ischl) using the Identifier XXD6.</p> <p>The dataset also encludes the affiliated RDF files and .csv files.</p> <p>The user of the KG may explore the mines associated mine sections as well as places of the historical mining areas in the mining district of Schwaz (Falkenstein, Ringenwechsel, Mehren, Reichental, Palleiten) as well as the mining district of Rattenberg (Groß-, Kleinkogel, Geyer).</p> <p>The ontology used to represent the claims is CIDOC CRM, an ISO certified ontology for Cultural Heritage documentation. Supported by the Karma tool the data is generated as RDF (Resource Description Framework). The generated RDF data is imported into a Triplestore, in this case GraphDB, and then displayed visually. This puts the data from the early mining texts into a semantically structured context and enables the exploration of a historical mining document from another perspective.</p>
Historical Mine Register & Place Gazetteer: Schwaz / Rottenburg / Rattenberg, Tyrol; 17th Century
<p>The data of the historical registers is based on the historical document “Bergbeschau Schwaz/Rottenburg/Rattenberg” of the 17<sup>th</sup> century (approx. 1666). The document is currently stored by the Salinenarchiv Bad Ischl) using the Identifier XXD6.The document contains 6 coloured maps of the mining areas in the mining district of Schwaz (Falkenstein, Ringenwechsel, Mehren/Merach, Reichental, Palleiten) as well as the mining district of Rattenberg (Groß-, Kleinkogel, Geyer). Furthermore, it contains detailed mine descriptions and localisations of the mines in the maps.</p> <p>Historical Mine Register: Sorting is done by mining area, main pit / mine and associated mine sections. The historical writings of the mines and mine sections are summarized in separate columns (alternate writing). Mines written in capital letters symbolize latin characters within the historical document. All mines received an Identifier and URIs which lead to a Knowledge Graph (graph_Link). In a separate column the mines also received a standard spelling (mine_name_standard). The mentioned mines were compared to two geological maps created by Herwig Pirkl (1961). Mines that could be also be georeferenced by comparison also received a geo_link to OpenStreetMap as well as HIK (‘Historische Kartenwerke Tirol’). Finally, the historical mines of the “Bergbeschau” are also linked to the Knowledge Graph TMMMT (DOI: 10.5281/zenodo.6276586) of the UIBK Project „Text Mining Medieval Mining Texts“, whenever possible.</p> <p>The historical place gazetteer is in alphabetical order by place_standard. The historical writings of the place names are summarized in a separate column (alternate writing). Places written in capital letters symbolize latin characters within the historical document. All places received an Identifier and URIs which lead to a Knowledge Graph (graph_Link). In a separate column the places received their current standard spelling (place_standard). Places that could be also be georeferenced also received coordinates as well as a geo_link to OpenStreetMap. Finally, the historical places of the “Bergbeschau” are also linked to the Knowledge Graph TMMMT (DOI: 10.5281/zenodo.6276586) of the UIBK Project „Text Mining Medieval Mining Texts“, whenever possible.</p>
Figure 4 in Abrupt boundaries between mountain meadows and forests separate ground-dwelling invertebrate communities: a case study from South Tyrol, Italy
Figure 4. Abundance-based accumulation curves for ground-dwelling macro-invertebrates from montane meadows and mixed forests in South Tyrol, Italy. The data come from pitfall traps along a linear transect from extensively managed hay meadows ('MM' and 'M', squares) across an abrupt ecotone ('E', diamonds) towards mixed forest stands ('F' and 'FF', circles). The curves show from left to right: the sampling coverage, taxa and species richness (Hill number q = 0), Shannon (q = 1) and Simpson diversity (q = 2). Plot [A] shows the total faunal community data at the highest taxonomic resolution, plot [B] the Araneae data at species level.
Figure 3 in Abrupt boundaries between mountain meadows and forests separate ground-dwelling invertebrate communities: a case study from South Tyrol, Italy
Figure 3. Boxplots with jitter of ground-dwelling macro-invertebrate activity densities from montane meadows and mixed forests in South Tyrol, Italy. Each data point represents a pitfall trap along a linear transect starting from extensively managed hay meadows ('MM' and 'M') across an abrupt ecotone ('E') towards mixed forest stands ('F' and 'FF'). Significant differences between the habitat plots (i.e. on the X-axes) according to GLM and Tukey's HSD post-hoc tests are indicated with different letters at top of each plot.
Daily snow water equivalent and snow depth data from the valley Wattental in the Tuxer Alpen, Tyrol, Austria [dataset]
<p>The herein published dataset contains daily snow depth (HS) and daily snow water equivalent (SWE) data from the catchment of the Lizumbach in the valley bottom of Wattental in the Tuxer Alpen, Tyrol, Austria (N47.16820, E11.63858). The measurements are obtained at the tree line in an altitude of 1995m a.s.l. Measurement data are available from January 11 2010 until September 30 of 2022. The repository will be updated during the coming years. </p> <p> </p>
Chapel in Stubai Alps / Tyrol
Photogrammetric true-to-scale 3d reconstruction of the "Guardian Angel Chapel" (Schutzengel-Kapelle) from architect Clemens Holzmeister, in the Schlickeralm in the municipality of Telfes / Stubai / Austria. Note: This model is a subset of only 1 million points, original model is 10x Source: Objaverse 1.0 / Sketchfab
Figure 3 Arcochthonius roynortoni n in A new species of Brachychthoniidae (Acari: Oribatida) from the Eastern Central Alps (Austria, Tyrol), with the proposal of a new genus
Figure 3 Arcochthonius roynortoni n. sp. adult: lateral view (legs not shown). Scale bar 50 µm.
Data from GB-SAR measurements on Lazaun rock glacier (Val Senales, South Tyrol, northern Italy)
<p>The *.csv files report the kinematic data extracted from the displacement maps obtained from the processing of ground-based SAR measurements of Lazaun rock glacier (Senales Valley, Northern Italy) and presented in the paper <strong><em>“Unprecedented observation of hourly rock glacier velocity with Ground-Based SAR</em></strong><strong><em>”</em></strong> (Bertone et al., 2023, submitted). The data were used to display the time series reported in the paper. The data refer to two field campaigns named <em>survey1</em> (<em>from 09/08/2018 to 18/08/2018</em>), and <em>survey2 </em>(<em>from 13/09/2018 to 03/10/2018</em>).</p> <ul> <li><em>TS_August_moving.cs</em>v: includes the survey 1 displacement data of moving points on the rock glacier.</li> <li><em>TS_August_stable.csv</em>: includes the survey 1 displacement data of stable points outside the rock glacier.</li> <li><em>TS_September_moving.csv</em>: includes the survey 2 displacement data of moving points on the rock glacier.</li> <li><em>TS_ September_stable.csv</em>: includes the survey 2 displacement data on stable points outside the rock glacier.</li> </ul> <p>Each *.csv file contains the following fields:</p> <ul> <li>“<em>displacement</em>”: cumulative displacement (mm);</li> <li>“<em>pointName</em>”: name of point where the time series are computed, as displayed in figure 3;</li> <li>“<em>time</em>”: time of acquisition, in <em>day</em>/<em>month</em>-<em>hour</em>:<em>minute </em>format;</li> <li>“<em>velocity</em>”: velocity (mm/hour);</li> <li>“<em>X</em>” and “<em>Y</em>”: coordinates of points (EPGS 32632) where the time series were extracted.</li> </ul> <p>The polygon representing the area of the Lazaun rock glacier is provided by the shapefile <em>Polygon_RG_Lazaun.shp.</em></p> <p>The velocity distribution on the Lazaun rock glacier as obtained in suvey1 and survey2 is provided by raster files. The velocities were obtained along the LOS and are in mm/day. The two raster files, named <em>raster_survey_1.tif</em> and <em>raster_survey_2.tif</em>, are completed by two files of the same name with the colored overlay (<em>raster_survey_1.lyr</em> and <em>raster_survey_2.lyr</em>).</p> <p>The two velocity maps obtained from survey1 and survey2 are also provided as complete georeferenced figures in geotiff format and named <em>figure_survey_1.tif</em> and<em> figure_survey_2.tif.</em></p> <p>All the geospatial data are provided in the EPSG 32632 spatial reference.</p> <p> </p> <p><strong>AIR TEMPERATURE</strong></p> <p>The LAZ_AIRT_survey1.csv and LAZ_AIRT_survey2.csv files contain the air temperature measured about 250 m North from the Lazaun rock glacier by a Gemini Tinytag TGP 4020 data logger connected to an external probe installed in a passive radiation shield. The data cover the two GB-SAR field campaigns (survey 1 from 09/08/2018 to 18/08/2018, and survey 2 from 13/09/2018 to 03/10/2018).</p> <p>The csv files contain the following fields:</p> <ul> <li>Date: time of acquisition, in <em>day/month/year</em> <em>hour:minute</em> format;</li> <li>Mean: the mean air temperature recorded by the datalogger during the corresponding hour;</li> <li>Maximum: the maximum air temperature recorded by the datalogger during the corresponding hour;</li> <li>Minimum: the minimum air temperature recorded by the datalogger during the corresponding hour;</li> </ul>
Data on epiphytic lichens along elevational gradients in South Tyrol, Italy
<p>1. Several studies have evaluated lichen responses in terms of shifts in species climate suitability, species richness, and community composition. In contrast, patterns of co-occurrence among species that could be related to complex species interactions have received less consideration. Biotic interactions play a major role in shaping species niches, fitness, and adaptation to new environments. Therefore, considering the specific relationships among co-occurring species is essential to further deepen our knowledge of biodiversity response to climate change. In this perspective, the analysis of lichen ecological networks across elevational gradients may provide a powerful tool to understand how communities are structured and how biotic interactions are modulated by changing climatic conditions.</p> <p>2. We evaluated the contribution of environmental and species biological attributes to the structure of epiphytic lichen-host tree networks. Specifically, we studied lichen communities considering two different network levels: the whole lichen community, and groups of lichen species that presented similar biological traits. In this framework, we (1) characterized the structure of the epiphytic lichen-host tree networks; (2) assessed how network structure varied with climate, forest attributes, and community trait diversity; and (3) evaluated the role that biological traits played in the connections established between co-occurring lichens.</p> <p>3. On one hand, results indicate that epiphytic lichen communities are dominated by local segregation, suggesting habitat specialization among lichens within their host tree, and that climatic conditions and, to a lesser extent, lichen diversity are the main drivers of community assemblage. On the other hand, the role of lichen species in the networks depends on their particular biological traits, supporting the hypothesis that biological traits contribute to shape network structure by influencing the ability of the species to interact between each other. These findings warn about the potential impact of climate change on epiphytic lichen communities.</p> <p>4.<i> Synthesis. </i>This study builds towards a better understanding of lichen community assembly and on biodiversity response to climate change in forest alpine ecosystems. In particular, our results highlight the value of lichen-tree networks to inform about assemblage processes acting at different organizational levels and indicate that lichens might become one of the most threatened groups under global change scenarios.</p>
EHYPE - dissolved Tyrol area
This is a subset of the EHYPE v3.0 simulations dataset. It reports streamflow series for those catchments with boundaries within the GEEHP experiment study area, i.e. Italian and Austrian South Tyrol region.
FIG. 6. Troglocheles aggerata n in New species of the genus Troglocheles (Acari: Prostigmata: Rhagidiidae) from Oetztal Alps, Tyrol, with a key to adult species of the genus
FIG. 6. Troglocheles aggerata n. sp., adult female, setal arrangement on legs, lateral aspect: (A) leg I; (B) leg II; (C) leg III; (D) leg IV (v, Q, s and e designations for solenidia on tarsus, tibia, genu and for famulus, respectively).
FIG. 7 in New species of the genus Troglocheles (Acari: Prostigmata: Rhagidiidae) from Oetztal Alps, Tyrol, with a key to adult species of the genus
FIG. 7. Geographic distribution of Troglocheles species in Europe: 1, T. strasseri; 2, T. tiroliensis; 3, T. gineti sensu Rack, 1974; 4, T. vornatscheri; 5, T. spp; 6, T. gineti sensu Cooreman, 1959; 7, T. vandeli; 8, T. archetypica n. sp.; 9, T. aggerata n. sp.; 10, T. conciana; 11, T. odontochela.
FIG. 5. Troglocheles aggerata n in New species of the genus Troglocheles (Acari: Prostigmata: Rhagidiidae) from Oetztal Alps, Tyrol, with a key to adult species of the genus
FIG. 5. Troglocheles aggerata n. sp., adult female: (A) chelicera, lateral aspect; (B) rhagidial organ I, dorsal aspect; (C) rhagidial organ II, dorsal aspect; (D) palpus, lateral aspect; (E) subcapitulum, ventral aspect; (F) apex of tarsus II with oar-like setae, lateral aspect.
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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.