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70 results for “Early Modern”
Apprenticeship in Early Modern Venice - Supporting data and code
<p>A dataset of contracts of apprenticeship from early modern Venice, along with R code to analyse them. These were used for a chapter on Apprenticeship in Early Modern Venice for the CUP. This work is part of the Garzoni project: https://garzoni.hypotheses.org.</p>
GIS data - Středověké a časně novověké oslídlení ČR (založeno na databázi CZ_Retro) | GIS data - Medieval and Early Modern Settlement of the Czcech Republic (based on the CZ_Retro Database)
<p>GeoTIFF layers of medieval and early modern settlement, based on data from the CZ_Retro database (https://sovamm.wordpress.com/projects/aktualni-projekty-sovamm/cz_retro/), containing: (1) "obce_vaha.tif" layer - raster representation of settlements weighted on the basis of their estimated size; (2) "obce_vaha_6000.tif" layer - a Kernel Density layer for a 6 km radius calculated on the basis of the first layer. For a detailed description of layers, see http://doi.org/10.5281/zenodo.3367296</p>
Interactive Mobile Health Intervention to Improve Early Postpartum Modern Contraceptive Method Uptake
ClinicalTrials.gov study NCT05666037. IPD Sharing: NO. Countries: 1. Publications: 2.
Data from: Highly resolved early Eocene food webs show development of modern trophic structure after the end-Cretaceous extinction
Generalities of food web structure have been identified for extant ecosystems. However, the trophic organization of ancient ecosystems is unresolved, as prior studies of fossil webs have been limited by low-resolution, high-uncertainty data. We compiled highly resolved, well-documented feeding interaction data for 700 taxa from the 48 million-year-old latest early Eocene Messel Shale, which contains a species assemblage that developed after an interval of protracted environmental and biotal change during and following the end-Cretaceous extinction. We compared the network structure of Messel lake and forest food webs to extant webs using analyses that account for scale dependence of structure with diversity and complexity. The Messel lake web, with 94 taxa, displays unambiguous similarities in structure to extant webs. While the Messel forest web, with 630 taxa, displays differences compared to extant webs, they appear to result from high diversity and resolution of insect–plant interactions, rather than substantive differences in structure. The evidence presented here suggests that modern trophic organization developed along with the modern Messel biota during an 18 Myr interval of dramatic post-extinction change. Our study also has methodological implications, as the Messel forest web analysis highlights limitations of current food web data and models.
FIGURE 3 in An advanced, new long-legged bird from the Early Cretaceous of the Jehol Group (northeastern China): insights into the temporal divergence of modern birds
FIGURE 3. Details of the skull of Gansus zheni. A. Holotype BMNHC—Ph 1342 showing teeth in dentary. B. BMNHC-Ph 1318. Abbreviations: af—antorbital fenestra, d—dentary, pm—premaxilla, q—quadrate.
FIGURE 2 in An advanced, new long-legged bird from the Early Cretaceous of the Jehol Group (northeastern China): insights into the temporal divergence of modern birds
FIGURE 2. Photograph and line drawing of a referred specimen (BMNHC—Ph 1318) of Gansus zheni. Abbreviations as in Fig. 1.
FIGURE 1 in An advanced, new long-legged bird from the Early Cretaceous of the Jehol Group (northeastern China): insights into the temporal divergence of modern birds
FIGURE 1. Photograph and interpretive drawing of the holotype of Gansus zheni (BMNHC—Ph 1342). Abbreviations: co—coracoid, cv—cervical vertebrae, fem—femur, fi—fibula, fu—furcula, g—gastroliths, h—humerus, pu—pubis, r—radius, sc—scapula, st—sternum, ti—tibiotarsus, tmt—tarsometatarsus, u—ulna; roman numerals refer to the manual and pedal digits.
FIGURE 6 in An advanced, new long-legged bird from the Early Cretaceous of the Jehol Group (northeastern China): insights into the temporal divergence of modern birds
FIGURE 6. Details of thoracic region of Gansus zheni showing gastroliths in BMNHC—Ph 1318 (A) and BMNHC—Ph 1342 (B). Abbreviations as in Fig. 1.
Figure 8 in Modern hydrophilid clades present and widespread in the Late Jurassic and Early Cretaceous (Coleoptera: Hydrophiloidea: Hydrophilidae)
Figure 8. Reconstructions of the clypeus shape and meso- and metathoracic morphology of the Early Cretaceous hydrophilid genera known in adult stage (three-dimensional structure of the mesoventrite not reconstructed). Alegorius gen. nov. (A, B); Cretoxenus gen. nov. (C, D); Hydroyixia gen. nov. (E, F). Head and thorax of the respective genus not to scale.
Figure 7 in Modern hydrophilid clades present and widespread in the Late Jurassic and Early Cretaceous (Coleoptera: Hydrophiloidea: Hydrophilidae)
Figure 7. Hydrophilid fossils from Early Cretaceous Yixian Formation, China. Alegorius yixianus sp. nov.: holotype CNU 2009079, whole specimen (A), detail of meso- and metaventrite (B), detail of abdominal apex (C); paratype CNU 2009078, whole specimen (D), detail of mesoventrite (E). Hydroyixia elongata sp. nov.: paratype CNU 2009075, detail of head and pronotum (F), whole specimen (G); holotype CNU 2010005: whole beetle, piece and counterpiece (H, I), detail of head (J), detail of meso- and metaventrite (K), detail of abdominal apex (L). Hydroyixia latissima sp. nov.: holotype CNU 2009074, detail of abdominal apex (M), whole specimen in dry condition (N) and under alcohol (O). Abbreviations: apls, anapleural suture; abem, apical emargination of abdominal ventrite 5.
Figure 9 in Modern hydrophilid clades present and widespread in the Late Jurassic and Early Cretaceous (Coleoptera: Hydrophiloidea: Hydrophilidae)
Figure 9. Known distribution of the Hydrophilidae in the Late Jurassic and Early Cretaceous. 1, Solnhofen, Germany; 2, Talbragar, Australia; 3, Baissa, Russia; 4, Yixian Formation, China; 5, Koonwarra, Australia.
Figure 4 in Modern hydrophilid clades present and widespread in the Late Jurassic and Early Cretaceous (Coleoptera: Hydrophiloidea: Hydrophilidae)
Figure 4. Results of the phylogenetic analyses of the position of Baissalarva hydrobioides. Unconstrained analysis, strict consensus of seven most-parsimonious trees of 207 steps (A); single most parsimonious tree of length 240 steps resulting from the constrained analysis (B).
Figure 6 in Modern hydrophilid clades present and widespread in the Late Jurassic and Early Cretaceous (Coleoptera: Hydrophiloidea: Hydrophilidae)
Figure 6. Fossil and recent representatives of the Hydrobiusini and Hydrophilini. Baissalarva hydrobioides sp. nov.: holotype PIN 3063/6975, anterior part of the piece (A), detail of the head of the piece (B), detail of the head of the counterpiece (C); paratype PIN 3063/6977 (D). Larva of extant Limnoxenus niger (Hydrobiusini): whole larva in dorsal view (E), detail of head (G). Larva of extant Sternolophus rufipes (Hydrophilini): whole larva in dorsal view (F), detail of head (H). Holotype of Cretoxenus australis sp. nov. NMVP 103312, piece and counterpiece (I, J). Extant hydrobiusine Limnoxenus zealandicus in ventral view, whole beetle (K) and detail of meso- and metaventrite (L). Abbreviations: md, mandible; mtvpr, metaventral process.
Figure 3 in Modern hydrophilid clades present and widespread in the Late Jurassic and Early Cretaceous (Coleoptera: Hydrophiloidea: Hydrophilidae)
Figure 3. Early Cretaceous representatives of the Hydrobiusini. Cretoxenus australis gen. nov., sp. nov., Koonwarra, Australia, NMVP 103312, piece and counterpiece (A, B). Baissalarva hydrobioides gen. nov., sp. nov. from Baissa, Russia: paratype PIN 3063/6977 (C); holotype PIN 3063/6975: piece, detail of the head (D), counterpiece, detail of the head (E), whole specimen, counterpiece (F). Abbreviations: absc, abdominal dorsal sclerite; absc4, absc7, abdominal dorsal sclerite of segment 4 or 7; aes3, metanepisternum; apls, anapleural suture; cersc, cervical sclerite; dpl8, dorsal plate on abdominal segment 8; epl, epistomal lobe; md, mandible; men, mentum; mssc, mesoscutum; mstr1, mesotarsomere 1; msv, mesoventrite; mxp, maxillary palpus; mtsc, metascutum; ns, nasale; occf, occipital foramen; pros, prosternum; sbm, submentum; scsh, scutellar shield; sstr, sutural stria; ttr, tracheal trunk.
Figure 2 in Modern hydrophilid clades present and widespread in the Late Jurassic and Early Cretaceous (Coleoptera: Hydrophiloidea: Hydrophilidae)
Figure 2. Alegorius yixianus gen. nov., sp. nov. from the Yixian Formation, China. Holotype, CNU 2009079 (A); paratype, CNU 2009078 (B). Abbreviations: abem, apical emargination of abdominal ventrite 5; aes3, metanepisternum; bst, maxillary basistipes; fmtta, free metatibial anterobasal angle; lb, labrum; men, mentum; mstr1, mesotarsomere 1; msv, mesoventrite; pros, prosternum; sstr, sutural stria; tf, transverse fold of prothorax.
Figure 1 in Modern hydrophilid clades present and widespread in the Late Jurassic and Early Cretaceous (Coleoptera: Hydrophiloidea: Hydrophilidae)
Figure 1. Late Jurassic fossils of the Hydrophilidae. Protochares brevipalpis gen. nov., sp. nov., AMF109568, Talbragar, Australia (A, B, F); 'Mesosperchus' schultzi Ponomarenko, 1985, NHMW 1985/20, Solnhofen, Germany: whole specimen (C, G–H), details of the head of the piece using different lighting (D–E). Abbreviations: aes3, metanepisternum; fcs, frontoclypeal suture; gs, gular suture; mttr1, metatarsomere 1; mxp, maxillary palpus; prospr, prosternal process; scstr, scutellar stria; sstr, sutural stria.
Early Modern Bowl, Castilla-La Mancha, Spain
Enameled ceramic bowl from the site of ??, , Castilla-La Mancha, Spain. Early modern period. In the collection of the Ciudad Real Museum. Catalog number DO000901. Processed in Reality Capture from 538 images. This work is part of the collaboration agreement signed in 2020 between the Junta de Comunidades de Castilla-La Mancha and Global Digital Heritage for the digitization of the Cultural Heritage of Castilla-La Mancha region. We want to publicly thank the collaboration of the Museum of Ciudad Real, especially by its director José Ignacio de la Torre. Source: Objaverse 1.0 / Sketchfab
Evolutive Dynamics in Early Modern European Drama: Reproduction Materials
<p>The ZIP archive contains all materials necessary to reproduce/replicate workflows and results from this work:</p> <blockquote> <p>Luca Giovannini, <em>Evolutive Dynamics in Early Modern European Drama: A Computational Approach</em>, PhD dissertation, Universität Potsdam and Università di Padova, 2024.</p> </blockquote> <p>The archive is a copy of <a href="https://github.com/lucagiovannini7/emdracor" target="_blank" rel="noopener">this GitHub repository</a> and contains the following folders:</p> <ul> <li><code>tei</code>: 150 early modern European plays, encoded in XML-TEI, composing the EmDraCor corpus. This folder, together with the <code>corpus.xml</code> file, can be used to (re)build the corpus on a dockerised version of DraCor (Börner et al., 2023b) through the <a href="https://github.com/dracor-org/stabledracor" target="_blank" rel="noopener">StableDraCor</a> Python library.</li> <li><code>scripts</code>: several commented Python scripts for corpus building, metadata enrichment, and analysis.</li> <li><code>metadata</code>: metadata tables, retrieved from the API and enriched through scripts, and other useful files. Most computations carried out in the dissertation can be performed directly on these tables, without need for dockerisation.</li> <li><code>legacy</code>: deprecated XML files.</li> </ul>
Replication package for: "Catholic Censorship and the Demise of Knowledge Production in Early Modern Italy"
<p>Replication package for: "Catholic Censorship and the Demise of Knowledge Production in Early Modern Italy"</p>
Data from: A Devonian predatory fish provides insights into the early evolution of modern sarcopterygians
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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.