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zenodo44/100

Datasets for the paper "Model-based parameter analysis of dielectric elastomer loudspeakers"

<p>This upload contains the numerical datasets used for the numerical plots reported in the paper &quot;Model-based parameter analysis of dielectric elastomer loudspeakers&quot; by G. Moretti et al., In&nbsp;<em>2022 IEEE/ASME International Conference on Advanced Intelligent Mechatronics (AIM)</em>&nbsp; (<a href="https://doi.org/10.1109/AIM52237.2022.9863404">10.1109/AIM52237.2022.9863404</a>).</p> <p>Please refer to the readme file for information on the files structure&nbsp;and content.&nbsp;</p>

opencc-by-4.0Oct 2022View details →
zenodo40/100

Database for Market uptake of concentrating solar power in Europe: model-based analysis of drivers and policy trade-offs. MUSTEC project.

<p>This dataset contains the data underlying the modelling activities of the MUSTEC (<em>Market Uptake of Solar Thermal Electricity through Cooperation</em>) project used in the models Green-X (TU Wien) and Enertile (Fraunhofer ISI).</p> <p>For description of the modelled scenarios, results and findings, see: Resch, G., Sch&ouml;niger, F., Kleinschmitt, C., Franke, K., Sensfu&szlig;, F., Thonig, R., and Lilliestam, J.:<em> </em><em> Market uptake of concentrating solar power in Europe: model-based analysis of drivers and policy trade-offs. </em>Deliverable 8.2 MUSTEC project, TU Wien, Wien.</p> <p>For information on the project see: https://www.mustec.eu/</p> <p>For data descriptions, licence, and further information, see README.md.</p> <p>&nbsp;</p>

opencc-by-4.0Jun 2020View details →
zenodo40/100

FIG. 72 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 72. — Comparison of left astragali and their articular patterns in selected metatherians to illustrate what were probably linear stages of transformation in the upper and lower ankle joints, as well as the astragalonavicular joint; A-C, a sudameridelphian (IMG I); A, dorsal view; B, plantar view; C, distal view; D-F, a didelphid (Marmosa); D, dorsal view; E, plantar view; F, distal view; G-I, a microbiothere (Dromiciops); G, dorsal view; H, plantar view; I, distal view; J-L, a dasyurid (Dasycercus); J, dorsal view; K, plantar view; L, distal view. Abbreviations: AFi, astragalofibular facet; ampt, astragalar medial plantar tuberosity; AN, astragalonavicular facet; ATil, lateral astragalotibial facet; ATim, medial astragalotibial facet; CaA, calcaneoastragalar facet; CaAd, distal calcaneoastragalar facet; CLAJP, continuous lower ankle joint pattern; Su, sustentacular facet. Scale bars: 1 mm.

opencc-zeroDec 2001View details →
zenodo40/100

FIG. 74 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 74. — Simplified phylogeny of the taxa (thick vertical bars) and the hypothesized lineages leading to them (dashed lines). Numbered thick vertical arrows show points on the phylogeny where the stem of the various groups can be identified by diagnostic traits with respect to their ancestry. Only the entry of the stem of Sudameridelphia (1) is problematic in this regard because archaic metatherians outside of South America are less well known. Point 4 stands for the last common ancestor of Australidelphia, derivable from a bona fide didelphid (see text). Point 6 is the putative ancestry of the Gondwanadelphia, and as such it is queried. Thinner, and close to horizontal, arrows indicate both direction of phyletic derivations, as well as the direction of geographical dispersal. Note derivation and dispersal of australidelphians from a South American didelphid stem to Antarctica-Australia.

opencc-zeroDec 2001View details →
zenodo40/100

FIG. 71 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 71. — Comparisons of several stages of monotreme and therian astragalocalcaneal patterns and articular relationships. For each of the six taxa the dorsal and distal views are shown in articulation above, and the lower ankle joint surfaces for the two left bones are shown below. In the metatherians the movement of the tarsus on the crus has one degree of freedom in rotation and another in translation, whereas in eutherians the stabilized upper ankle joint usually only allows one degree of freedom in rotation. Arrows on the tibial facet of the astragalus show rotational (and translational) freedom in the upper ankle joint, whereas the slimmer arrow on the astragalar fibular facet shows rotation of the calcaneus under the astragalus (i.e. movement in the lower ankle joint). Abbreviations: AFi, astragalofibular facet; ampt, astragalar medial plantar tuberosity; AN, astragalonavicular facet; ATil, lateral astragalotibial facet; ATim, medial astragalotibial facet; CaA, calcaneoastragalar facet; CaCu, calcaneocuboid facet; CaCua, auxiliary calcaneocuboid facet (australidelphian) CaCud, distal calcaneocuboid facet (didelphid); CaCul, lateral calcaneocuboid facet (australidelphian) CaCum, medial calcaneocuboid facet (australidelphian); CaCup, proximal calcaneocuboid facet (didelphid); CaFi, calcaneofibular facet; cpp, calcaneal peroneal process; ct, calcaneal tuber; Su, sustentacular facet.

opencc-zeroDec 2001View details →
zenodo40/100

FIG. 68 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 68. — Comparisons of the distal end and head of the left humeri of the five extant didelphid species (A-E) with known habitus and the seven Itaboraí humeral groups (F-L); A, D. gliroides; B, R. raphanurus; C, M. domestica; D, C. derbianus; E, M. nudicaudatus. The drawings were prepared so that the distal width of the humerus was kept (approximately) constant, and the size of the head was then drawn at the same scale as the distal end of the same humerus. Anterior is toward the top of the page for the distal ends. From top to bottom, the size of the humeral groups (and possibly the body size as well) increases. Arrows point to the posterior and lateral extension of the curved (to various degrees) facet for the ulna. Scale bars: 2 mm.

opencc-zeroDec 2001View details →
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FIG. 69 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 69. — The patterns of bones in the carpus, viewed anteriorly, in some representatives of major groups of Metatheria. Lines between the patterns that can be found in the taxa (indicated under them by the taxonomic vernacular) represent approximate (or queried) transformations of these patterns. They do not stand for transformation of taxa from one into the other. Abbreviations: Cn, cuneiform; Lu, lunate; Mcp1-5, metacarpals; Mg, magnum; Pi, pisiform; Ra, radius; Sc, scaphocentrale; Tm, trapezium; Tr, trapezoid; Ul, ulna; Un, unciform.

opencc-zeroDec 2001View details →
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FIG. 70 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 70. — The calcaneus, astragalus, navicular, and cuboid of Pucadelphys andinus; A, B, a single left specimen, that has not been separated, of calcaneus, astragalus, and cuboid; A, dorsal view; B, plantar view; C, D, single left specimen of a calcaneus and an astragalus; C, distal view; D, proximal view; E, right specimen of a cuboid and navicular in articulation, dorsal view; F-H, right calcaneus; F, dorsal view; G, medial view; H, distal view; I-L, right astragalus; I, dorsal view; J, medial view; K, plantar view; L, distal view. Abbreviations: ac, astragalar canal; AFi, astragalofibular facet; ampt, astragalar medial plantar tuberosity; AN, astragalonavicular facet; ATil, lateral astragalotibial facet; ATim, medial astragalotibial facet; CaA, calcaneoastragalar facet; CaCu, calcaneocuboid facet; CaFi, calcaneofibular facet; cpp, calcaneal peroneal process; ct, calcaneal tuber; Cu, cuboid; Na, navicular; Su, sustentacular facet. Scale bar: 2 mm.

opencc-zeroDec 2001View details →
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FIG. 67 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 67. — Unguals that probably belong to metatherians from Itaboraí; A-F likely represent terrestrial species, whereas G-J suggest arboreal forms. For numbered designations see text. Scale bar: 2 mm.

opencc-zeroDec 2001View details →
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FIG. 58. — Right IMG Femur 8 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 58. — Right IMG Femur 8; A-C, the whole bone; A, anterior view; B, posterior view; C, medial view; D-G, details; D, anterior view; E, posterior view; F, proximal view; G, distal view. For numbered designations of specific characters see text. Scale bars: A- C, 4 mm; D-G, 2 mm.

opencc-zeroDec 2001View details →
zenodo40/100

FIG. 51. — A-C, left nearly complete IMG Femur 3 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 51. — A-C, left nearly complete IMG Femur 3; A, proximal view; B, anteroir view; C, posterior view; D-F, left nearly complete IMG Femur 4; D, proximal view; E, anteroir view; F, posterior view. For numbered designations of specific characters see text. Scale bars: 2 mm.

opencc-zeroDec 2001View details →
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FIG. 50. — A, B, left incomplete IMG Femur 1 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 50. — A, B, left incomplete IMG Femur 1; A, anterior view; B, posterior view; C-F, left incomplete IMG Femur 2; C, E, anterior view; D, F, posterior view. For numbered designations of specific characters see text. Scale bar: 2 mm.

opencc-zeroDec 2001View details →
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FIG. 46. — A in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 46. — A, lateral view of IMG Innominate 1 (DGM 1.145A-M), specimen from the left side; B, lateral view of IMG Innominate 3 (DGM 1.146B-M), specimen from the right side; C, lateral view of IMG Innominate 2 (DGM 1.146A-M), specimen from the left side. Scale bar: 4 mm.

opencc-zeroDec 2001View details →
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FIG. 42 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 42. — Plots of ulnar parameters. Regression line was drawn for living models only, and the fossil values were plotted subsequently in order to gauge some measure of their relationship to the arboreal-terrestrial dichotomy. The extremes of the living range are represented by the modern species. Abbreviations: CD, Caluromys derbianus; DG, Dromiciops gliroides; MF, Mayulestes ferox; MN, Metachirus nudicaudatus; RR, Rhyncholestes raphanurus; PA, Pucadelphys andinus. Roman numerals stand for Itaboraí Metatherian Group designations of ulnae.

opencc-zeroDec 2001View details →
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FIG. 66. — A in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 66. — A, details of left IMG Tibia 2, proximal view; B-E, K, L, details of left IMG Tibia 3; B, proximal view; C, distal view; D, anterior view of distal end; E, posterior view; K, lateral view of distal end; L, posterior view of distal end; F, left distal tibia of Pucadelphys, anterior view; G, H, left distal tibia of Caluromys; G, lateral view; H, posterior view; I, J, left distal tibia of Metachirus; I, lateral view; J, posterior view. Abbreviations: ATil, lateral astragalotibial facet; ATim, medial astragalotibial facet; CaFi, calcaneofibular facet; FeTil, lateral femorotibial facet; TiFid, distal tibifibular facet; tmm, tibial medial malleolus. Scale bars: 2 mm.

opencc-zeroDec 2001View details →
zenodo40/100

FIG. 55 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 55. — Details of left IMG Femur 5; A, B, proximal third; A, posterior view; B, anterior view; C, D, distal third; C, medial view; D, lateral view. For numbered designations of specific characters see text. Scale bar: 2 mm.

opencc-zeroDec 2001View details →
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FIG. 35 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 35. — Same as for Fig. 34, but with a different body weight surrogate that allows the inclusion of more (fragmentary) fossils.

opencc-zeroDec 2001View details →
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FIG. 57. — Left IMG Femur 7 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 57. — Left IMG Femur 7. Two specimens (A-C et D-G); A, D, anterior view; B, E, posterior view; C, F, proximal view; G, distal view. For numbered designations of specific characters see text. Scale bars: 2 mm.

opencc-zeroDec 2001View details →
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FIG. 33. — A-C, left IMG Humerus 6 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 33. — A-C, left IMG Humerus 6; A, distal third, anterior view; B, proximal view of the head with the approximate axes of orientation of the head and distal end; C, distal third, posterior view; D-F, left IMG Humerus 7; D, distal third, anterior view; E, proximal view of the head with the approximate axes of orientation of the head and distal end; F, distal third, posterior view. For numbered designations of specific characters see text. Scale bar: 4 mm.

opencc-zeroDec 2001View details →
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FIG. 32. — A-E, left IMG Humerus 4 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria

FIG. 32. — A-E, left IMG Humerus 4; A, D, anterior view of the distal third; B, proximal view of the head with the approximate axes of orientation of the head and distal end; C, E, posterior view of the distal third; F-H, left IMG Humerus 5; F, anterior view of the distal third; G, proximal view of the head with the approximate axes of orientation of the head and distal end; H, posterior view of the distal third. Scale bars: 2 mm.

opencc-zeroDec 2001View details →

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Allen Brain Atlas

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allen-brain-atlas
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Last verified 2026-04-30Open record

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Last verified 2026-04-30Open record

DANDI Archive for NWB datasets

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dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record