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596 results for “cast”
Fig. 2 in A new reconstruction of multituberculate endocranial casts and encephalization quotient of Kryptobaatar
Fig. 2. Kryptobaatar dashzevegi, GI PST 8−2. A. Right paraflocculus in oblique ventro−lateral view, showing anterior ampulla, lateral ampulla, and lateral semicircular canal. B. The same in posterior view, showing posterior ampulla. Both stereo−photographs, coated with ammonium chloride.
Fig. 1 in A new reconstruction of multituberculate endocranial casts and encephalization quotient of Kryptobaatar
Fig. 1. Kryptobaatar dashzevegi, GI PST 8−2. A. Skull showing endocast in dorsal view. B. The same in posterior view. C. Posterior part of the same skull in right lateral view. A1, B1, C1, stereo−photographs; A2, B2, C2, explanatory drawings of the same, slightly reconstructed and reduced.
Dataset for the paper "Yield Performance of Standard Multicrystalline, Monocrystalline, and Cast-Mono Modules in Outdoor Conditions"
<p>Dataset for the paper "Yield Performance of Standard Multicrystalline, Monocrystalline, and Cast-Mono Modules in Outdoor Conditions", published at Energies.</p>
Residual stress data for T6 AlSiCuMg cast wedges determined by neutron diffraction
<p>Residual stress data measured in cast AlSiCuMg wedges in the T6 condition by neutron diffraction at POLDI (PSI) and ENGIN-X (ISIS). <br><br>The wedges were measured at POLDI in three orthogonal directions corresponding to the height of the wedge (x) the depth of the wedge (x) and cross sectional thickness of the wedge (y). The gauge volume was 4 mm cube. <br><br>The stress-free reference was an identically made wedge which had been cut into a reference comb be electro discharge machining. The comb was measured at ENGIN-X using a 2 mm cubic gauge volume. The comb was mastered to the sample measurements using a reference powder measured at both locations so the positionally dependent residual stress could be calculated. </p> <p> </p>
Fig. 7 in Evolution of Caste in Neotropical Swarm-Founding Wasps (Hymenoptera: Vespidae; Epiponini)
Fig. 7. Caste syndromes defined as in fig. 6, optimized on cladogram produced by using caste syndrome as a character in combination with the matrix of Wenzel and Carpenter.
Fig. 3 in Evolution of Caste in Neotropical Swarm-Founding Wasps (Hymenoptera: Vespidae; Epiponini)
Fig. 3. Caste discrimination found in some epiponines based on size and shape. Individuals identified by dissection to be ''queens'' are represented as squares, while those identified as ''workers'' are solid dots. Separate regression lines are drawn for illustration only; see text for discussion.
Fig. 6 in Evolution of Caste in Neotropical Swarm-Founding Wasps (Hymenoptera: Vespidae; Epiponini)
Fig. 6. Caste syndromes defined by data of table 1 and ovarian dissection, optimized on cladogram of Wenzel and Carpenter. Where genera are polymorphic for caste syndrome, terminals are coded according to parsimonious optimization.
Fig. 5 in Evolution of Caste in Neotropical Swarm-Founding Wasps (Hymenoptera: Vespidae; Epiponini)
Fig. 5. Plots of Wilks' lambda values versus queens correctly classified using discriminant function analysis for some epiponines. See text for discussion.
Fig. 4 in Evolution of Caste in Neotropical Swarm-Founding Wasps (Hymenoptera: Vespidae; Epiponini)
Fig. 4. Comparison of the level of caste distinction between epiponines (1–59, white circles indicate workers with ovarian development, black diamonds indicate workers without ovarian development) and a Vespinae (60, black square) based on wing length queen–worker ratio versus length of tergite I (except 14, 16, 17, 33–35, 37: hamuli number and 56: width of tergite I). 1. Agelaia areata, 2. A. fulvofasciata, 3. A. lobipleura, 4. A. multipicta, 5. A. pallipes, 6. A. vicina, 7. A. yepocapa, 8. Angiopolybia pallens, 9. Apoica flavissima, 10. A. gelida, 11. A. pallens, 12. Asteloeca ujhelyii, 13. Brachygastra augusti, 14. B. bilineolata, 15. B. lecheguana, 16. B. moebiana, 17. B. scutellaris, 18. Chartergellus communis, 19. Charterginus fulvus, 20. Chartergus chartarius, 21. C. globiventris, 22. C. metanotalis, 23. Clypearia sulcata, 24. Epipona tatua, 25. E. guerini, 26. Leipomeles dorsata, 27. Metapolybia aztecoides, 28. M. docilis, 29. Nectarinella championi, 30. Parachartergus colobopterus, 31. Pa. fraternus, 32. P. smithii, 33. Polybia bicytarella, 34. Po. bistriata, 35. Po. catillifex, 36. Po. dimidiata, 37. Po. emaciata, 38. Po. erythrothorax, 39. Po. jurinei, 40. P. liliacea, 41. P. occidentalis, 42. P. parvulina, 43. P. platycepha sylvestris, 44. P. quadricincta, 45. Po. rejecta, 46. Po. ruficeps, 47. Po. scutellaris, 48. Po. singularis, 49. Po. spinifex, 50. Po. striata, 51. Protonectarina sylveirae, 52. Protopolybia exigua, 53. Pr. minutissima, 54. Pr. pumilla, 55. Pr. sedula, 56. Pseudopolybia difficilis, 57. Ps. vespiceps, 58. Synoeca cyanea, 59. S. surinama, 60. Vespula squamosa. For references for the species, see table 1.
Fig. 2 in Evolution of Caste in Neotropical Swarm-Founding Wasps (Hymenoptera: Vespidae; Epiponini)
Fig. 2. Slight caste discrimination found in some epiponines based mostly on shape (when applicable). Individuals identified by dissection to be ''queens'' are represented as squares, while those identified as ''workers'' are solid dots. Separate regression lines are drawn for illustration only; see text for discussion.
Fig. 1 in Evolution of Caste in Neotropical Swarm-Founding Wasps (Hymenoptera: Vespidae; Epiponini)
Fig. 1. Representative measures for morphometric analyses of this paper: head width (HW), minimum interorbital distance (IDm), gena width (GW), width of mesoscutum (MSW), alitrunk length (AL), length of gastral tergite I (T1L), basal height of T1 (T1BH), basal widths of tergite II (T2BW), and partial length of the forewing (WL).
Fig. 8 in Evolution of Caste in Neotropical Swarm-Founding Wasps (Hymenoptera: Vespidae; Epiponini)
Fig. 8. Wheeler's (1991) model of the evolution of caste, stepwise in graphical terms, representing morphometric variation measured within a colony. See text for explanation.
Text-fig. 2. Staniantsi open cast mine seen from south-east (a) and in a more detailed view from the south (b). Most of the studied castorid material originates from the black coal bearing areas (swamp facies). in Castor-Like Postcranial Adaptation In An Uppermost Miocene Beaver From The Staniantsi Basin (Nw Bulgaria)
Text-fig. 2. Staniantsi open cast mine seen from south-east (a) and in a more detailed view from the south (b). Most of the studied castorid material originates from the black coal bearing areas (swamp facies).
Data set for publication Sikora P., Techman M., Federowicz K., El-Khayatt A.M., Saudi H.A., Abd Elrahman M., Hoffmann M., Stephan D., Chung S.-Y. Insight into the microstructural and durability characteristics of 3D printed concrete: Cast versus printed specimens. Case Studies in Construction Materials (2022), 17, e01320.
<p>Open dataset for publication Sikora P., Techman M., Federowicz K., El-Khayatt A.M., Saudi H.A., Abd Elrahman M., Hoffmann M., Stephan D., Chung S.-Y. Insight into the microstructural and durability characteristics of 3D printed concrete: Cast versus printed specimens. <strong>Case Studies in Construction Materials (2022)</strong>, 17, e01320. <a href="https://doi.org/10.1016/j.cscm.2022.e01320">https://doi.org/10.1016/j.cscm.2022.e01320</a></p> <p>File 1 - Mechanical characteristics - *.opju (Origin)</p> <p>File 2 - Particle size distributions of used materials - *.opju (Origin)</p> <p>File 3 - Sorptivity measurement data - *.opju (Origin)</p> <p>File 4 - G-code for printing of 1 layered specimen - *txt</p> <p>File 5 - G-code for printing of 3 layered specimens - *txt</p>
Data from: A caste differentiation mutant elucidates the evolution of socially parasitic ants
<div> <div> <div> <div> <p>Most ant species have two distinct female castes – queens and workers – yet the developmental and genetic mechanisms that produce these alternative phenotypes remain poorly understood. Working with the clonal raider ant, <em>Ooceraea</em> <em>biroi</em>, we discovered a variant strain that expresses queen-like traits in individuals that would normally become workers. The variants show changes in morphology, behavior, and fitness that cause them to rely on workers in wild-type (WT) colonies for survival. Overall, they resemble the queens of many obligately parasitic ants that have evolutionarily lost the worker caste and live inside colonies of closely related hosts. <br><br>To understand the genetic basis of this variant strain, which we term the queen-like mutants (QLM), we re-analyzed published PacBio and Hi-C data (McKenzie and Kronauer 2018) using the Falcon pipeline. </p> </div> </div> </div> </div>
Resilin distribution and abundance in Apis mellifera across biological age classes and castes
<p>The presence of resilin, an elastomeric protein, in insect vein joints provides the flexible, passive deformations that are crucial to flapping flight. This study investigated the resilin gene expression and autofluorescence dynamics among <em>Apis</em> <em>mellifera</em> (honey bee) worker age classes and drone honey bees. Resilin gene expression was determined via ddPCR on whole honey bees and resilin autofluorescence was measured in the 1m-cu, 2m-cu, Cu-V, and Cu2-V joints on the forewing and the Cu-V joint of the hindwing. Resilin gene expression varied significantly with age, with resilin activity being highest in the pupae. Autofluorescence of the 1m-cu and the Cu-V joints on the ventral forewing and the Cu-V joint on the ventral hindwing varied significantly between age classes on the left and right sides of the wing, with the newly emerged honey bees having the highest level of resilin autofluorescence compared to all other groups. The results of this study suggest that resilin gene expression and deposition on the wing is age-dependent and may inform us more about the physiology of aging in honey bees.</p> <p> </p>
Toward greater realism in inclusive fitness models: the case of caste fate conflict in insect societies
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Data from: A caste differentiation mutant elucidates the evolution of socially parasitic ants
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Resilin distribution and abundance in Apis mellifera across biological age classes and castes
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Conductivity Temperature Depth (CTD) Log of CTD casts from CCE LTER process cruises in the CCE region, 2006 - 2019 (ongoing).
Individual casts of Conductivity, Temperature and Depth (CTD) are logged on CCE Process cruises (since 2006, ongoing) in the Southern California region. The log includes time, location, number of bottles, cast and event numbers and other information about CTD casts.
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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.