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3,145 results for “Well Being”
Data from: The Metapopulation Microcosm Plate: a modified 96-well plate for use in microbial metapopulation experiments
1. Researchers in many sub-fields of ecology and evolutionary biology test hypotheses relating to metapopulation dynamics and landscape spatial structure. Key aspects of these hypotheses are often (a) large numbers of subpopulations and dispersal corridors and (b) their positions relative to each other. Testing such spatial hypotheses using traditional lab equipment and methods can be impractical, unwieldy, expensive, or impossible. 2. The Metapopulation Microcosm Plate (MMP) overcomes these difficulties. This device resembles a 96-well microtiter plate, but contains dispersal corridors between wells that can be modified in their spatial position to create various artificial landscapes, each with up to 96 habitat patches and hundreds of non-intersecting dispersal corridors of varying lengths. The device can be filled with nutrient broth and used to culture microbial metapopulations. 3. Here I describe how MMPs are designed, assembled, sterilized, and filled and demonstrate that MMPs can remain water tight and sterile with minimal evaporation for 5-7 days. 4. MMPs can be used to test many spatial hypotheses that have previously been prohibitively difficult to test. Further, by incorporating individual behavioral responses to within-patch conditions, MMPs can incorporate greater realism than do directed pipetting or other artificial dispersal methods.
Frog Lane - Tunbridge Wells
Frog Lane - Tunbridge Wells scanned with iPhone12Pro Source: Objaverse 1.0 / Sketchfab
Dravidian Column in Step well structure
Telangana, India Source: Objaverse 1.0 / Sketchfab
Greek Well
Source: Objaverse 1.0 / Sketchfab
Carolina Inn Well
**Carolina Inn Well** Location: Carolina Inn, Orange County, North Carolina. Period: Nineteenth century. Material: granite. Dimensions of exposed well: 1.42-1.55 m diameter; about 2 m deep (to top of fill). Notes: Stone-lined well discovered by workmen in July, 2018, while repaving a driveway adjacent to the University of North Carolina's Carolina Inn (opened in 1924). It was cleaned, photographed, and mapped by archaeologists from UNC's Research Laboratories of Archaeology. The well likely is associated with an earlier house that was built on this lot in the mid-1800s. Model by Steve Davis. Source: Objaverse 1.0 / Sketchfab
St. Declan's Holy Well, Dysert, Ardmore
Holy well & superstructure. Believed to have been built in early 1800s. Created with Polycam Source: Objaverse 1.0 / Sketchfab
Stair Well 160221
Elanvow stair well in NE corner of E wall. Source: Objaverse 1.0 / Sketchfab
Old well
Old well model, developed for the game "The Priest". Source: Objaverse 1.0 / Sketchfab
Pathfinder Ranch well pumping
<p>High-resolution records of fluid extraction at two wells on the grounds of the Pathfinder Ranch, located within a few hundred meters of two Plate Boundary Observatory borehole strainmeters, namely B089 and B082. The records begin in early 2011 and end in late 2013.</p> <p>These data accompany the following publication:</p> <p>Barbour, A. J., & Wyatt, F. K. (2014). Modeling strain and pore pressure associated with fluid extraction: The Pathfinder Ranch experiment. <em>Journal of Geophysical Research: Solid Earth</em>, http://dx.doi.org/10.1002/2014JB011169</p> <p>This work was supported by grants EAR10-53208, and EAR12-51568 from the U.S. National Science Foundation.</p>
FIGURE 9 in Studies in Liocranidae (Araneae): redescriptions and transfers in Apostenus Westring and Brachyanillus Simon, as well as description of a new genus
FIGURE 9. Arabelia pheidoleicomes sp. n., Lesbos, Agiasos, pine wood near Megali Limni, live animal on underside of stone, among Pheidole ants.
FIGURE 8 A–H in Studies in Liocranidae (Araneae): redescriptions and transfers in Apostenus Westring and Brachyanillus Simon, as well as description of a new genus
FIGURE 8 A–H. Dorsal views of specimens. A, Apostenus humilis, holotype; B, Apostenus ochraceus, Lesbos, Kratigos; C, Agraecina rutilia, holotype; D, Agraecina lineata, female, MNHN5653; E, Cybaeodes liocraninus, holotype; F, Cybaeodes testaceus, holotype; G, Cybaeodes madidus, holotype; H, Arabelia pheidoleicomes sp. n., Lesbos, Agiasos, Megali Limni. Scale bars: 0.5.
FIGURE 6 A. Cybaeodes liocraninus, holotype. B. Cybaeodes madidus, holotype. A in Studies in Liocranidae (Araneae): redescriptions and transfers in Apostenus Westring and Brachyanillus Simon, as well as description of a new genus
FIGURE 6 A. Cybaeodes liocraninus, holotype. B. Cybaeodes madidus, holotype. A, habitus, lat; B, habitus, lat. Scale bar: 1.
FIGURE 5 A–G. Cybaeodes madidus, holotype. A in Studies in Liocranidae (Araneae): redescriptions and transfers in Apostenus Westring and Brachyanillus Simon, as well as description of a new genus
FIGURE 5 A–G. Cybaeodes madidus, holotype. A, carapace, do; B, carapace, lat; C, sternum and mouth parts, ve; D, carapace, fr; E, epigyne; F, leg II, tarsal tip; G, leg IV, tarsal tip. Scale bars: A–E: 0.5; F–G: 0.1.
FIGURE 4 A–G. Cybaeodes testaceus, holotype. A in Studies in Liocranidae (Araneae): redescriptions and transfers in Apostenus Westring and Brachyanillus Simon, as well as description of a new genus
FIGURE 4 A–G. Cybaeodes testaceus, holotype. A, carapace, do; B, carapace, lat; C, sternum and mouth parts, ve; D, carapace, fr; E, epigyne; F, leg I, tarsal tip; G, leg III, tarsal tip. Scale bars: A–D: 0.5; E: 0.25; F–G: 0.1.
FIGURE 3 A–B. Agraecina rutilia. C–G. Cybaeodes liocraninus, holotype. A in Studies in Liocranidae (Araneae): redescriptions and transfers in Apostenus Westring and Brachyanillus Simon, as well as description of a new genus
FIGURE 3 A–B. Agraecina rutilia. C–G. Cybaeodes liocraninus, holotype. A, epigyne of holotype; B, vulva MRAC 148.466; C, carapace, do; D, carapace, lat; E, sternum and mouth parts, ve; F, carapace, fr; G, leg IV, tarsal tip. Scale bars: A, B, G: 0.1; C–F: 0.5.
FIGURE 2 A–K. Leg spination schematics. A in Studies in Liocranidae (Araneae): redescriptions and transfers in Apostenus Westring and Brachyanillus Simon, as well as description of a new genus
FIGURE 2 A–K. Leg spination schematics. A, legend; B, Apostenus humilis, male holotype; C, Apostenus humilis, female, MNHN25; D, Apostenus ochraceus, female; E, Agraecina rutilia, female holotype; F, Agraecina lineata, female, MNHN5653; G, Cybaeodes liocraninus, holotype; H, Cybaeodes testaceus, female holotype, MNHN3107; I, Cybaeodes madidus, female holotype, MNHN1677; J, Cybaeodes marinae, female, Italy, Castelporziano, AMNH; K, Arabelia pheidoleicomes, female holotype.
FIGURE 1 A–E. Apostenus humilis. F–G. Apostenus ochraceus. A, B, male holotype. A in Studies in Liocranidae (Araneae): redescriptions and transfers in Apostenus Westring and Brachyanillus Simon, as well as description of a new genus
FIGURE 1 A–E. Apostenus humilis. F–G. Apostenus ochraceus. A, B, male holotype. A, left male palp, rl view; B, left male palp, ve view; C, epigyne; D, leg II, tarsal tip; E, vulva, ve; F. vulva, ve.; G, epigyne. Scale bars: 0.1.
FIGURE 3 A–C. Metatrachelas rayi. D–F, H. Paratrachelas acuminus. G, H. Paratrachelas atlantis. A in Studies in Corinnidae (Araneae): a new Paratrachelas Kovblyuk & Nadolny from Algeria, as well as the description of a new genus of Old World Trachelinae
FIGURE 3 A–C. Metatrachelas rayi. D–F, H. Paratrachelas acuminus. G, H. Paratrachelas atlantis. A, male, MNHN- 1523 do; B, female, MNHN-1523 do; C, vulva, ve; D, male allotype, do; E, female holotype, do; F, vulva, ve; G, male holotype, do; H, male palps of P. acuminus (left) and P. atlantis, pl, ve and rl. Scale bars: A–B, D–E, G: 1; C, F: 0.1; H: 0.25.
FIGURE 5 A–D. Paratrachelas atlantis, holotype. A in Studies in Corinnidae (Araneae): a new Paratrachelas Kovblyuk & Nadolny from Algeria, as well as the description of a new genus of Old World Trachelinae
FIGURE 5 A–D. Paratrachelas atlantis, holotype. A, cheliceral teeth, ve; B, male palp, ve; C, male palp, rl; D, habitus. Scale bars: A–C: 0.25; D: 1.
FIGURE 2 A–B in Studies in Corinnidae (Araneae): a new Paratrachelas Kovblyuk & Nadolny from Algeria, as well as the description of a new genus of Old World Trachelinae
FIGURE 2 A–B. Strict consensus trees obtained under equal weighting. Bremer support values (as number of steps) are indicated in italics below branches. A, strict consensus tree for 14 tracheline species represented by males and females and two phrurolithine outgroup species; B, strict consensus tree for 16 tracheline species and two phrurolithine outgroup species.
ScienceDex guides
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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.