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360 results for “Monuments”
XRECO 3D Buildings and Monuments v1
<p>The dataset consists of 201 textured 3D models created with photogrammetry of monuments and buildings mainly across Europe. The 3D models depict various buildings and monuments mainly across Europe. They were cleaned manually by removing all background information from the scene and keeping only the main building. The data are annotated into 12 building classes including: castle, cathedral, church, city hall, factory, hotel, house, mosque, office, palace, school, villa.</p>
The role of plants and fibres in modelling monumental terracruda sculptures of the Silk Roads - Dataset
<p>Phytoliths and fibre datasets associated with the publication:</p> <p>Title: The role of plants and fibres in modelling monumental <em>terracruda</em> sculptures of the Silk Roads: archaeobotanical analyses from the Buddhists sites of Tepe-Narenj and Qol-e-tut (Kabul, Afghanistan)</p> <p>Authors: Mònica López-Prat, Carla Lancelotti, Gema Campo-Francés, Sudipa Ray Bandyopadhyay, Begoña Carrascosa, Noor Agha Noori, Alessandra Pecci, José Simón-Cortés & Domenico Miriello</p> <p>Journal: Heritage Science</p>
Words are monuments data-only archive
<p>These are the data that go with the paper <a href="https://besjournals.onlinelibrary.wiley.com/doi/full/10.1002/pan3.10302">"Words are monuments: Patterns in US national park place names perpetuate settler colonial mythologies including white supremacy"</a> (available 6 April 2022) by the above authors. Our code (and these data) are available at <a href="https://doi.org/10.5281/zenodo.5712009">https://doi.org/10.5281/zenodo.5712009</a>. This archive is here for folks who just want the data. This is the <strong>full dataset with name explanations</strong> and references for the explanations, traditional Indigenous place names for settler colonial place names (where available), additional categories for sorting, and more. </p> <p>Note: .csv files can be opened in Excel and Google Sheets.</p> <p>column info:</p> <p>A: Unique ID per row</p> <p>B: National Park place name is in</p> <p>C: Place name according to NPS visitor map</p> <p>D: Feature type (mountain, island, picnic area, etc.)</p> <p>E: Name type (person, non-human animal, plant, etc.)</p> <p>F: Natural or human constructed (human constructed includes so-called "ruins", as well as visitor centers, etc.)</p> <p>G: Is the word from an Indigenous or western language?</p> <p>H: Is it a traditional Indigenous place name?</p> <p>I: If it is Indigenous is it the name of an Indigenous person or people?</p> <p>J: Is it a translation of a traditional Indigenous PN?</p> <p>K: Word meaning class (similar to column E)</p> <p>L: Erasure -- see paper for definitions of each class below and decision trees</p> <ul> <li>Yes</li> <li>potentially</li> <li>no information</li> <li>not erasure - evidence it is a traditional Indigenous PN or settler built with western PN</li> <li>translation of traditional IPN)</li> </ul> <p>M: Dimensions of racism and colonialism -- see paper for definitions of each class below and decision trees</p> <ul> <li>No (traditional Indigenous PN, western built with western PN, or erasure as only problem)</li> <li>Name itself promotes racist ideas and/or violence against a group</li> <li>Named after person who supported racist ideas (but not physically violent)</li> <li>Named for a person who directly or use their power to indirectly perpetrate violence against a racial group</li> <li>Western use of Indigenous name (Appropriation)</li> <li>Other - truly does not fit any other classes</li> <li>No info - cannot find explanation</li> <li>Colonialism - memorializes colonialism</li> <li>Relevant western use of Indigenous name (i.e., appropriation of traditional name)</li> </ul> <p>N: Derogatory</p> <ul> <li>Yes</li> <li>Potentially</li> <li>No info</li> </ul> <p>O: explanation of name found in research</p> <p>P: Link to resources explaining name (for full citation for books cited, e.g., "name year" entries, see Table S1 in the paper).</p> <p>Q: Link to resources explaining name (if second link or source available)</p> <p>R: Indigenous name found in research</p> <p>v1.0.0 did not include columns O-R by mistake; corrected in this version update.</p>
ArmmA (ARmorial Monumental du Moyen-Age)
<p>Voir le site web <a href="https://armma.saprat.fr">Armma</a>.</p> <p> </p> <p>Ce travail a bénéficié d'une aide de l'Etat gérée par l'Agence Nationale de la Recherche au titre du Programme d'Investissements d'Avenir portant la référence ANR-21-ESRE-0005 (ÉquipEx Biblissima+)</p>
The modelling pastes of the monumental terracruda sculpture of the Silk Roads: archaeometric study of the Tepe Narenj and Qol-e-tut examples (Kabul, Afghanistan)
<p>These data are the results of the mineralogical, petrographic and chemical study of different archaeological samples related to terracruda sculptures and other elements that were part of the architectural decoration of the Buddhist sites of Tepe Narenj and Qol-e-tut (Kabul, Afghanistan - 5th to 11th centuries CE). The main objective of the study was to characterize the samples using an archaeometric approach. The study helped to better understand the materials involved in the modelling of Afghan sculptures and their processing, such as the different nature of the clay layers and the finishing "stucco" coating. The results further indicate that similarities exist among the manufacturing process of the studied samples and that used today by an ancient caste of clay-artists in West Bengal (India), suggesting the existence of a continuous technological tradition that deserves to be further explored in the future. </p> <p><strong>Supplementary materials – S1. </strong>Bengali artist adding <em>bele-mati</em> to model the final shape of a terracruda sculpture (Kumortuli, Kolkata, 2019).</p> <p><strong>Supplementary materials - S2. </strong>Pictures of the sculpture samples</p> <p><strong>Supplementary materials - S3. </strong>Pictures of the relief and mural painting samples</p> <p><strong>Supplementary materials - S4</strong>. Pictures of the wall samples</p> <p><strong>Table 1. </strong>Samples analyzed, location, subsamples ID and description.</p> <p><strong>Table 2. </strong>Results of petrographic and mineralogic analyses.</p> <p><strong>Table 3</strong>. List of the main components for each sample [FA=fatty acid; C<sub>18:0</sub> = stearic acid; C<sub>18:1</sub> = oleic acid; C<sub>16:0</sub> = palmitic acid; S<sub>27</sub>= cholesterol; βS= β-sitosterol, TA= tartaric acid; N= none; Y= yes].</p> <p><strong>Figure 2</strong>. Microphotographs in thin section under crossed nicols. (a) Phyllite in sample QT3. (b) Quartzite in sample TN4. (c) Cryptocrystalline limestone in TN1. (d) Muscovite (Ms) and calcite (Cal) in TN2. (e) Amphiboles (Amp) in QT3. (f) Microcline in QT1.</p> <p><strong>Figure 3. </strong>Powder X-ray diffraction patterns from untreated clay samples (on the right) and samples after ethylene-glycol treatment (on the left) Mnt: montmorillonite.</p> <p><strong>Figure 4. </strong>Microphoto by EMPA. (a) Particular of sample TN2 in which the phyllosilicate origin of the matrix is evident. (b), (c) and (d) Cuticles in sample TN4. (e) Pollen in sample TN4. (f) Oogonia in sample QT4.</p> <p><strong>Figure 5</strong>. (a) Different layers in QT2, scan of the thin section under parallel nicols. (b) Stucco layer in TN1_a, arrows indicate the voids left by the fibers, micro photo in thin section under parallel nicols. (c) Different layer in TN2, scan of thin section under crossed nicols. (d) TN2_b layer where the red colour of the clay is evident, micro photo in thin section under parallel nicols. (e) Sample TN5, micro photo in thin section under parallel nicols. (f) SEM Image with particular of a fiber in TN5.</p> <p><strong>Figure 6.</strong> Remains and imprints of a fabric between the stucco layer and the underlying earthen mortar in sample QT2. Left: OM Image 8x LEICA-EZ4W. Right: macroscopic view of a fragment of the internal part of QT2.</p> <p><strong>Figure 7</strong>. Microphoto by EMPA. (a) Crushed pure gypsum in TN1_a. (b) Crushed gypsum in TN5 (yellow arrows) and amorphous areas (red arrows) corresponding to the organic matter.</p> <p><strong>Figure 8</strong>. Microphotographs in thin section under Epifluorescence microscopy. (a) Stucco layer TN1_a. (b) Sample TN5. (c) Layers b and c in sample TN2. (d) Clay layer TN1_b </p> <p><strong>Figure 9.</strong> Partial gas chromatograms from exctracts (i) of samples (a) QT2_c, (b) QT2_b and (c) QT2_a. [Cn:0 TMS= trimethylsilylated fatty acids with a specific number (n) of carbons, S<sub>27</sub>= cholesterol, β= β-sitosterol, dots= phthalates and IS= internal standard]. </p> <p><strong>Figure 10</strong>. (a) Raman spectra of the blue pigment analyzed in sample QT1 and of lazurite present in the RRUFF database (RRUFF ID: R040023). (b) Raman spectra of the red pigment analyzed in sample QT1 and of hematite present in the Unical database. (c) Raman spectra of the QT1 binder and of calcite present in the Unical database. (d) Raman spectrum of the red pigment analyzed in sample QT2 and comparison with the hematite and gypsum spectra present in the Unical database.</p> <p><em>This work has been supported by National Geographic Society (EC-59568C-19) and is part of results of the doctoral research of M. López-Prat and the Juan de la Cierva contract (FJC2021-046803-I). The results have been obtained in the framework of the activities of the DIBEST department of the University of Calabria, the ERAAUB (a recognized and financed research group of the Generalitat de Catalunya - 2021 SGR 00696), the Institut d’Arqueologia of the Universitat de Barcelona, the Conservació-Restauració del Patrimoni research group (a recognized research group of the Generalitat de Catalunya - 2021 SGR 00089),and the CASEs research group (a recognized and financed research group of the Generalitat de Catalunya – 2021 SGR-00950). </em></p>
GPS Survey Monuments on the Virginia Coast Reserve 1992-1994
The Virginia Coast Reserve Long-term Ecological Research project, in association with the Virginia Marine Resources Commission, conducted an intensive GPS survey during February 1992. A second GPS survey was conducted in August 1994 to add supplemental GPS monuments. Most monuments consist of stainless steel pipes driven to refusal and topped with a bolt with a point imprinted on it. Others may consist of existing markers or cultural features. Elevations refer to the monument, not the surrounding ground surface. All data were processed by the VCR/LTER. Several caveats must be applied to use of this survey network: 1. These are preliminary results and are subject to change as the network is revised. 2. This network is designed for research purposes only, the data are not suitable for legal uses of survey data. 3. The network includes several US Government benchmarks, but except for the VCR1 monument recently resurveyed and "fixed" by the National Geodetic Survey (see below), the coordinates for those benchmarks have not been adjusted to agree with blue-book values for those benchmarks. 4. Elevations are based on mean sea-level (NAVD88) for a single point (VCR1). No geoid corrections have been applied to any other point. *** Update: MINOR coordinate shifts resulting from NGS adjustment of the VCR1 monument's estimated lat/lon following the NAD83 (Va) HARN adjustment of 2011 have been calculated (0.017 m S, 0.001 m W), but not otherwise applied to the data. A shapefile of the VCR GPS network based on the original coordinates has also been included.
Figures 19-20. 19 in The Lepidoptera of White Sands National Monument, Otero County, New Mexico, USA 1. Two new species of Noctuidae (Lepidoptera, Noctuinae, Agrotini)
Figures 19-20. 19. White dunes habitat of type locality of Euxoa lafontainei and Protogygia whitesandsensis. 20. Distribution map for Euxoa lafontainei and Protogygia whitesandsensis.
Figures 10-12 in The Lepidoptera of White Sands National Monument, Otero County, New Mexico, USA 1. Two new species of Noctuidae (Lepidoptera, Noctuinae, Agrotini)
Figures 10-12. Female genitalia of Euxoa species. 10. E. lafontainei paratype. 11. E. simulata. 12. E. medialis.
Figures 7-9 in The Lepidoptera of White Sands National Monument, Otero County, New Mexico, USA 1. Two new species of Noctuidae (Lepidoptera, Noctuinae, Agrotini)
Figures 7-9. Male genitalia of Euxoa species: a-valves, b-aedeagus with vesica everted. 7. E. lafontainei paratype. 8. E. simulata. 9. E. medialis.
Figures 1-6 in The Lepidoptera of White Sands National Monument, Otero County, New Mexico, USA 1. Two new species of Noctuidae (Lepidoptera, Noctuinae, Agrotini)
Figures 1-6. Adults of Euxoa species. 1. E. lafontainei, male paratype. 2. E. lafontainei, male paratype. 3. E. misturata, male. 4. E. tronellus, female. 5. E. simulata, male. 6. E. medialis, male.
Figures 17-18 in The Lepidoptera of White Sands National Monument, Otero County, New Mexico, USA 1. Two new species of Noctuidae (Lepidoptera, Noctuinae, Agrotini)
Figures 17-18. Male genitalia of Protogygia species: a-valves, b-aedeagus with vesica everted. 17. P. whitesandsensis, paratype. 18. P. pectinata.
Societies in balance: Monumentality and feasting activities among southern Naga communities, Northeast India (Data repository)
<p>The files provide supplementary information for the paper "Societies in balance: Monumentality and feasting activities among southern Naga communities, Northeast India".</p> <p>In accordance with the content and research questions of the article, this repository includes information on the megalithic monuments, as well as transcripts of the interviews conducted in the village of Rünguzu (Nagaland, India). Therefore, both the quantitative, and the qualitative results presented in the article could be reconstructed and reproduced on the basis of this repository.</p> <p>Information concerning the megalithic monuments of all the villages included in the analyses of the article are given in .csv format. The files include details of the monument type, the orientation of the monuments, the metric measures of the monuments, as well as the social affiliation of the monument builders (if available). These data are the basis for the comparative analyses of the megalithic monuments of the different villages, as well as the detailed analyses of the village Rünguzu. All box plots and bar charts presented in the article are completely based on the data made available here.</p> <p>Secondly, this repository includes transcripts of the interviews which were conducted in the village of Rünguzu. The qualitative descriptions of the village structure itself, the feasting activities, as well as the details of megalithic building activities are based on these interviews. Additionally, social anthropological literature and studies were vital as additional sources of information. The transcripts are, apart from the interviewers, completely anonymised in accordance to ethical standards in the publication of interviews.</p>
Sequencing a botanical monument: a chromosome-level assembly of the 400-year-old Goethe's Palm (Chamaerops humilis L.) at the Botanical Garden of the University of Padua (Italy)
<p>The enclosed data pertains to the genome assemblies of the mitochondrion (final_mitogenome.fasta) and the plastid (plastid_genome.fasta) of the dwarf palm <em>Chamaerops humilis</em> L.</p> <p><strong><em>Please refer to the published paper for further details.</em></strong></p>
FIGURE 7 in Novel analysis of locality data can inform better inventory and monitoring practices for paleontological resources at John Day Fossil Beds National Monument Oregon, USA
FIGURE 7. Boxplot of yield difference over area index by hiatus class. Note the median for each hiatus class is close to zero. This indicates similar amounts of collection between the earlier year and the later year regardless of the number of years the area has been left to erode.
FIGURE 6. Map showing estimated collection area. Points are field localities and 15 meter buffer shows estimated prospecting areas for 2008 in Novel analysis of locality data can inform better inventory and monitoring practices for paleontological resources at John Day Fossil Beds National Monument Oregon, USA
FIGURE 6. Map showing estimated collection area. Points are field localities and 15 meter buffer shows estimated prospecting areas for 2008 (yellow), 2009 (green), and 2010 (blue). Precise locality information is available to qualified researchers upon request from JODA's museum program.
FIGURE 9. All field collections from 2013 - early 2019 in Novel analysis of locality data can inform better inventory and monitoring practices for paleontological resources at John Day Fossil Beds National Monument Oregon, USA
FIGURE 9. All field collections from 2013 - early 2019 to be used for tracking previous collection area. Points outside of JODA boundaries are BLM, USFS, or private localities. Precise locality information is available to qualified researchers upon request from JODA's museum program.
Рис. 1. Карта района иссΛеΑований. УсΛовные обозначения: красными кружками показаны базовые Λагеря; фиоΛетовой штриховкой — территория ΛанΑшафтного памятника прироΑы местного значения «ВΛасьевские торфяники»; синей штриховкой — акватория памятника прироΑы краевого значения «ЗаΛив Счастья с островами Кевор и Чаечный» Fig. 1. Map of the study area. Legend: red circles show base camps; purple shading — the territory of the landscape natural monument of local importance "Vlasyevsky Torfyaniky"; blue shading — the water area is a natural monument of regional significance "The Bay of Schastꞌе with the islands of Kevor and Chaechny" in New data on rare and insufficiently studied birds of the Shchastya Bay, the Sea of Okhotsk, and adjacent territories (Khabarovsk Krai)
Рис. 1. Карта района иссΛеΑований. УсΛовные обозначения: красными кружками показаны базовые Λагеря; фиоΛетовой штриховкой — территория ΛанΑшафтного памятника прироΑы местного значения «ВΛасьевские торфяники»; синей штриховкой — акватория памятника прироΑы краевого значения «ЗаΛив Счастья с островами Кевор и Чаечный» Fig. 1. Map of the study area. Legend: red circles show base camps; purple shading — the territory of the landscape natural monument of local importance "Vlasyevsky Torfyaniky"; blue shading — the water area is a natural monument of regional significance "The Bay of Schastꞌе with the islands of Kevor and Chaechny"
FIGURE 4. A caver rappels into Fossil Cave, Lava Beds National Monument. The lava tube has a in The Cave Fauna of California
FIGURE 4. A caver rappels into Fossil Cave, Lava Beds National Monument. The lava tube has a moist microclimate that sustains ferns in the entrance. Jean Krejca and Steve Taylor.
Fig. 2 in A monument of inefficiency: The presumed course of the recurrent laryngeal nerve in sauropod dinosaurs
Fig. 2. The longest cells in the bodies of sauropods were sensory neurons that connected receptors in the skin of the extremities with interneurons in the brainstem, a pattern of neural architecture that is present in all extant vertebrates. The nerve cell bodies would have been located in the dorsal root ganglia adjacent to the spinal cord. The diagram of the neuron is based on Butler and Hodos (1996: fig. 2−1B).
Fig. 1 in A monument of inefficiency: The presumed course of the recurrent laryngeal nerve in sauropod dinosaurs
Fig. 1. Course of the left vagus nerve and left recurrent laryngeal nerve in a human, a giraffe, and Supersaurus. The right recurrent laryngeal nerve passes caudal to the right subclavian artery rather than the aorta and ductus arteriosus, but otherwise its course is identical to that of the left.
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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)
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.