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5,875 results for “lively”
(10)-Strobl2022A-DS0002 – Ceratitis capitata TREhs43-hid^Ala5_F1m2 long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(10)-Strobl2022A-DS0002 – <em>Ceratitis capitata</em> TREhs43-hid<sup>Ala5</sup>_F1m2 long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
(10)-Strobl2022A-DS0007 – Ceratitis capitata TREhs43-hid^Ala5_F1m2 long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(10)-Strobl2022A-DS0007 – <em>Ceratitis capitata</em> TREhs43-hid<sup>Ala5</sup>_F1m2 long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
(10)-Strobl2022A-DS0009 – Ceratitis capitata TREhs43-hid^Ala5_F1m2 long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(10)-Strobl2022A-DS0009 – <em>Ceratitis capitata</em> TREhs43-hid<sup>Ala5</sup>_F1m2 long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
(10)-Strobl2022A-DS0006 – Ceratitis capitata TREhs43-hid^Ala5_F1m2 long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(10)-Strobl2022A-DS0006 – <em>Ceratitis capitata</em> TREhs43-hid<sup>Ala5</sup>_F1m2 long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
(10)-Strobl2022A-DS0005 – Ceratitis capitata TREhs43-hid^Ala5_F1m2 long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(10)-Strobl2022A-DS0004 – <em>Ceratitis capitata</em> TREhs43-hid<sup>Ala5</sup>_F1m2 long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
Effects of severe anthropogenic disturbance on the heart rate and body temperature in free-living greylag geese (Anser anser)
<p>Anthropogenic disturbances are a major concern for the welfare and conservation of wildlife. We recorded heart rate and body temperature of 20 free-living greylag geese in response to a major regularly re-occurring anthropogenic disturbance, New Year’s Eve fireworks. Heart rate and body temperature were significantly higher in the first and second hour of the new year, compared to the same hour on the 31<sup>st</sup> of December, the average during December and the average during January. Heart rate and body temperature was not significantly affected by sex or age. From 0200-0300 onwards, 1<sup>st</sup> of January heart rates did not significantly differ from the other periods, however body temperatures were significantly increased until 0300-0400. From 0400-0500, heart rate was not affected by any of the investigated factors, whereas body temperature was significantly increased on the 1<sup>st</sup> of January compared 31<sup>st</sup> of December and the December average but not compared to the January average. To conclude, our results show that New Year’s Eve fireworks cause a substantial physiological response, indicative of a stress response in greylag geese, which is costly in terms of energy expenditure.</p>
Carbon Nanotube Uptake in Cyanobacteria for Near-infrared Imaging and Enhancing Bioelectricity Generation in Living Photovoltaics
<p>Dataset of the work entitled "Carbon Nanotube Uptake in Cyanobacteria for Near-infrared Imaging and Enhancing Bioelectricity Generation in Living Photovoltaics".</p>
DATASET: Environmental analysis of servicing centralised and decentralised wastewater treatment for population living in neighbourhoods
<p>DATASET:</p> <p>Article: Environmental analysis of servicing centralised and decentralised wastewater treatment for population living in neighbourhoods</p> <p>Journal of Water Process Engineering, Volume 37, October 2020, 101469</p> <p>https://doi.org/10.1016/j.jwpe.2020.101469</p>
Fig. 17. Lycosa piochardi Simon, 1876, live females demonstrating common dorsal coloration morphs. A in Lycosa Latreille, 1804 (Araneae, Lycosidae) of Israel, with a note on Geolycosa Montgomery, 1904
Fig. 17. Lycosa piochardi Simon, 1876, live females demonstrating common dorsal coloration morphs. A. Sandy morph, Midreshet Ben-Gurion. B. Dark brown morph, Mt. Gilboa. C. Light brown with dark brown median bands, Mt. Hermon. D. Light brown morph, Modi'in. Photos by I. Armiach Steinpress.
Fig. 8. Live specimens. A. Geolycosa vultuosa C.L. Koch, 1838. B in Lycosa Latreille, 1804 (Araneae, Lycosidae) of Israel, with a note on Geolycosa Montgomery, 1904
Fig. 8. Live specimens. A. Geolycosa vultuosa C.L. Koch, 1838. B. Lycosa gesserit sp. nov., holotype, ♂ (HUJ INV-AR20631) C. Lycosa hyraculus sp. nov., juveniles. D. Lycosa hyraculus sp. nov., ♂ (specimen not collected). E. Hogna (cf.) graeca (specimen not collected). F. Hogna effera (O. Pickard-Cambridge, 1872). Photos by I. Armiach Steinpress.
Long-Term, Single-Molecule Imaging of Proteins in Live Cells with Photoregulated Fluxional Fluorophores
<p>Supporting data for paper "Long-Term, Single-Molecule Imaging of Proteins in Live Cells with Photoregulated Fluxional Fluorophores"</p>
OpenDRIVE dataset of 5G Living Lab research track in Wolfsburg
<p>This OpenDRIVE dataset models a road network excerpt of the city of Wolfsburg, Lower Saxony, Germany. Main application scopes of this OpenDRIVE data are in the domain of automated driving: simulation, verification and validation. The data has been acquired in context of the research project <a href="https://verkehrsforschung.dlr.de/en/projekte/5g-reallabor">5G Living Lab in the Mobility Region Braunschweig-Wolfsburg</a>.</p>
Text-fig. 2. Strobili of modern Equisetum hyemale L. in different stages of expansion/maturation. Living specimens from near Billerbeck in Westphalia, Germany. Scale bars 5 mm. in First Record Of Intact Equisetalean Strobili From The Wealden (Lower Cretaceous) Of The Isle Of Wight, Southern England
Text-fig. 2. Strobili of modern Equisetum hyemale L. in different stages of expansion/maturation. Living specimens from near Billerbeck in Westphalia, Germany. Scale bars 5 mm.
Text-fig. 7. Fossil and living examples of leaves of Acer. a: Acer sp. (fossil), Pleistocene diatomaceous deposits near Faufouille, France (scale bar = 10 mm); National Museum Wales specimen 86.54G.1a; b: Leaf from living Acer growing near Machynlleth, mid-Wales, UK; photo by B. A. Thomas. in Naming Of Parts: The Use Of Fossil-Taxa In Palaeobotany
Text-fig. 7. Fossil and living examples of leaves of Acer. a: Acer sp. (fossil), Pleistocene diatomaceous deposits near Faufouille, France (scale bar = 10 mm); National Museum Wales specimen 86.54G.1a; b: Leaf from living Acer growing near Machynlleth, mid-Wales, UK; photo by B. A. Thomas.
Fig. 7. Habitat and live colouration. A–D in On two new species of the genus Lobothelphusa Bouvier, 1917 (Decapoda: Brachyura: Potamidae: Potaminae) from the Pegu Range, central Myanmar
Fig. 7. Habitat and live colouration. A–D, Lobothelphusa bagoensis, new species: A, habitat; B, paratype, ovigerous female (SEABRIDYX3); C, D, holotype, male (NNU16-DYX1). E–G, Lobothelphusa thewanica, new species: E, habitat; F, G, holotype, male (NNU16-BG1).
Text-fig. 4. Graphical visualization of Phytogeographic Reference Regions Assessment (PRRA) of nearest living relative genera of fossil-taxa from late Early Miocene Wiesa assemblage in eastern Germany. Analysis yields only NLRs which have modern distribution area (partly) in E and SE Asia. For relationships of fossil-taxa to nearest living relatives or ecological equivalents, see Tab. 6; taxa used for analysis marked with asterisks. Three geographic resolutions conducted: a – grid with 1.5° latitude/longitude resolution, b – grid with 2°, c – grid with 3°; similarity column indicates cooccurrences of genera of nearest living relatives in single grid box. Maximum value in our analysis: grid box marked with arrow in map a, located in western Yunnan Province, P. R. China and southern Kachin Province, NE Myanmar (east of Myitkyina city), area with 97.371 7–98.874 2° longitude and 24.586 7–25.837 5° latitude, yields 23 co-occurring species of 13 genera (Tab. 7). in Assessment Of Phytogeographic Reference Regions For Cenozoic Vegetation: A Case Study On The Miocene Flora Of Wiesa (Germany)
Text-fig. 4. Graphical visualization of Phytogeographic Reference Regions Assessment (PRRA) of nearest living relative genera of fossil-taxa from late Early Miocene Wiesa assemblage in eastern Germany. Analysis yields only NLRs which have modern distribution area (partly) in E and SE Asia. For relationships of fossil-taxa to nearest living relatives or ecological equivalents, see Tab. 6; taxa used for analysis marked with asterisks. Three geographic resolutions conducted: a – grid with 1.5° latitude/longitude resolution, b – grid with 2°, c – grid with 3°; similarity column indicates cooccurrences of genera of nearest living relatives in single grid box. Maximum value in our analysis: grid box marked with arrow in map a, located in western Yunnan Province, P. R. China and southern Kachin Province, NE Myanmar (east of Myitkyina city), area with 97.371 7–98.874 2° longitude and 24.586 7–25.837 5° latitude, yields 23 co-occurring species of 13 genera (Tab. 7).
Fig. 4. – Living material. A. Lijndenia darainensis R.D in Revised treatment of the genus Lijndenia (Melastomataceae, Olisbeoideae) in Madagascar
Fig. 4. – Living material. A. Lijndenia darainensis R.D. Stone, flowering branchlets; B. Lijndenia darainensis R.D. Stone, flowers; C. Lijndenia melastomoides (Naudin) Jacq.-Fél., flowers.
Raw data accompanying the manuscript "Cost-effective high-speed, three-dimensional live-cell imaging of HIV-1 transfer at the T cell virological synapse"
<p>These are the raw datasets used to generate the figures for the manuscript entitled "Cost-effective high-speed, three-dimensional live-cell imaging of HIV-1 transfer at the T cell virological synapse". The data files are 3D image stacks of a custom-built wide field deconvolution fluorescence microscope (.tif) and super-resolution structured illumination microscopy data (.dv) of Jurkat T cells transferring HIV-1 virus particles to previously uninfected primary T cells.</p>
Figs 61–68. Live specimens. 61–62 in The Panjange nigrifrons group in Borneo (Araneae: Pholcidae): high diversity in Sarawak, apparent absence in Sabah
Figs 61–68. Live specimens. 61–62. Pa. iban Huber, 2011, Ƌ and ♀ with egg-sac from Semengoh. 63–64. Pa. kubah Huber, sp. nov., Ƌ from Kubah. 65–68. Pa. seowi Huber, sp. nov., Ƌ, ♀, and ♀ with egg-sac from Penrissen.
Figs 8–15. Live specimens. 8–9 in The Panjange nigrifrons group in Borneo (Araneae: Pholcidae): high diversity in Sarawak, apparent absence in Sabah
Figs 8–15. Live specimens. 8–9. Panjange pueh Huber, sp. nov., Ƌ and ♀ from Pueh. 10–14. Pa. kapit Huber, sp. nov. from Kapit. 10–11. Adult Ƌ, 12. Penultimate instar Ƌ, 13–14. ♀ with egg-sac. 15. Pa. niah Huber, sp. nov., ♀ with egg-sac from Niah.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.