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932 results for “CAP”
Data from: Speciation in mountain refugia: phylogeography and demographic history of the pine siskin and black-capped siskin complex
Following Pleistocene glacial maxima, species that adapted to temperate climates in low-latitude refugia had to modify their ranges as climate changed, expanding either latitudinally towards the poles, or altitudinally to higher elevations in mountainous regions. Within just a few thousand years, populations taking alternative routes during interglacials became isolated from each other and subjected to different selection pressures, often leading to lineage divergence and speciation. The pine siskin Spinus pinus is a common and widespread songbird showing relative phenotypic uniformity across the North American continent. One exception is the subspecies found in the highlands of northern Central America (S. p. perplexus), which shows marked differentiation in plumage color and shares some traits with the endemic and partly sympatric black-capped siskin S. atriceps, suggesting potential introgression or even a hybrid origin of perplexus. Relationships and species limits among pinus, perplexus and atriceps have been controversial for decades. We provide new molecular evidence to help resolve the evolutionary history of the group. Phylogenetic analysis of mitochondrial DNA and nuclear intron sequences revealed three distinct lineages within the complex, corresponding to: 1) S. pinus individuals from Canada through central Mexico (S. p. pinus and S. p. macropterus), 2) individuals from the highlands of Guatemala and Chiapas (S. p. perplexus), and 3) S. atriceps. Pine siskins across North America show evidence of a recent postglacial population expansion and extremely low levels of diversity and structure. In contrast, S. p. perplexus shows evidence of demographic stasis, reflecting long-term isolation and restricted dispersal. Marked and diagnostic genetic differences among the three lineages in mtDNA and at least one intron, suggest that a hybrid origin of S. p. perplexus is unlikely, yet some degree of introgression between S. p. perplexus and S. atriceps cannot be ruled out in localities where they occur in sympatry.
Black capped and mountain chickadee nestling fecal samples
<p>Urban and suburban ecosystems are growing in size and number as the human population continues to increase. Not all cities are built the same, however, and it is still unclear how resident organisms are faring in increasingly urban habitats and whether cities are ecological sinks. To investigate how urbanization is affecting breeding success in insectivorous birds, we studied two species of chickadee, the <a>black-capped and mountain chickadee</a>[KG1] , along an urban-rural gradient in Boulder County, CO, USA. We used a citizen-science based experimental framework of nest boxes installed on private land throughout Boulder, CO, USA to local monitor breeding populations of chickadees relative to urbanization. Black-capped and mountain chickadees are two species of closely-related songbirds that co-occur broadly along an elevational gradient. Black-capped chickadees are considered to prefer nesting in low-elevation deciduous trees typically found in cities, while mountain chickadee prefer higher elevation, coniferous forests often considered more rural. However, both species do nest in relatively urbanized habitats, but little is known about how they are navigating these urban habitats. Using arthropod surveys & eDNA metabarcoding paired with field observations, we sought to determine if there are species differences between 1) how chickadee nestling condition varies with the level of urbanization of a nesting site and how urbanization of a nest site infleunces 2) insect availability, 3) nestling diet, and 4) adult provisioning effort. We found that there was no significant effect of urbanization on nestling condition in either species, and that urbanization did not significantly predict insect availability, nestling diet, or adult provisioning effort. We did detect however, differences in diet between the species, highlighting clear ecological niches between these species, despite overlapping breeding habitat. This is, to our knowledge, the first study documenting discrete ecological niches in prey preference for developing chicks and adds to a growing body of literature detailing ecological differentiation between these two species. How this divergence in diet contributes to these species ability to navigate increasingly urban habitats is less clear. It is likely that Boulder, Colorado is made of vegetation patches, effectively urban forest fragments, that allow chickadees living in the city to reproduce successful despite decreased prey quality and quantity associated with urban spaces.</p> <div> <div> <div class="msocomtxt"></div> </div> </div>
Wmid-b5a45b - Post Medieval Knife end cap
A complete copper alloy knife end cap from a scale-tang knife, of Post Medieval dating (AD 1500 to AD 1600). The knife end cap is cylindrical with a slot through the centre. This slot still contains the end of the iron scale tang. The exterior is engraved with two saltires within rectangular frames and, on the proximal end, with eight radial lines (i.e. a cross on a saltire). For more information, please visit the online database record available at: https://finds.org.uk/database/artefacts/record/id/1066287 Source: Objaverse 1.0 / Sketchfab
Underwater images collected by an Autonomous Surface Vehicle in Cap-La-Houssaye, Réunion - 2023-06-28
<i>This dataset was collected by an Autonomous Surface Vehicle in Cap-La-Houssaye, Réunion - 2023-06-28.</i> <br> <br><br>Underwater or aerial images collected by scientists or citizens can have a wide variety of use for science, management, or conservation. These images can be annotated and shared to train IA models which can in turn predict the objects on the images. We provide a set of tools (hardware and software) to collect marine data, predict species or habitat, and provide maps.<br><br> This dataset is part of larger collection referencing numerous underwater and aerial images <a href="https://doi.org/10.5281/zenodo.11125847" target="_blank">Seatizen Altas</a>. Methods, tools and scientific objectives are also described in a dedicated data paper.<br> <h2> Generic folder structure </h2> YYYYMMDD_COUNTRYCODE-optionalplace_device_session-number <br> ├── DCIM : folder to store videos and photos depending on the media collected. <br> ├── GPS : folder to store any positioning related file. If any kind of correction is possible on files (e.g. Post-Processed Kinematic thanks to rinex data) then the distinction between device data and base data is made. If, on the other hand, only device position data are present and the files cannot be corrected by post-processing techniques (e.g. gpx files), then the distinction between base and device is not made and the files are placed directly at the root of the GPS folder. <br> │ ├── BASE : files coming from rtk station or any static positioning instrument. <br> │ └── DEVICE : files coming from the device. <br> ├── METADATA : folder with general information files about the session. <br> ├── PROCESSED_DATA : contain all the folders needed to store the results of the data processing of the current session. <br> │ ├── BATHY : output folder for bathymetry raw data extracted from mission logs. <br> │ ├── FRAMES : output folder for georeferenced frames extracted from DCIM videos. <br> │ ├── IA : destination folder for image recognition predictions. <br> │ └── PHOTOGRAMMETRY : destination folder for reconstructed models in photogrammetry. <br> └── SENSORS : folder to store files coming from other sources (bathymetry data from the echosounder, log file from the autopilot, mission plan etc.). <br> <h2> Software </h2> All the raw data was processed using our <a href="https://github.com/SeatizenDOI/plancha-workflow/releases/tag/v1.0.3" target="_blank">worflow</a>. <br>All predictions were generated by our <a href="https://github.com/SeatizenDOI/plancha-inference/releases/tag/v1.0.0" target="_blank">inference pipeline</a>. <br>You can find all the necessary scripts to download this data in this <a href="https://github.com/SeatizenDOI/zenodo-tools" target="_blank">repository</a>. <br>Enjoy your data with <a href="https://github.com/SeatizenDOI" target="_blank">SeatizenDOI</a>! <br>
Underwater images collected by an Autonomous Surface Vehicle in Cap-La-Houssaye, Réunion - 2023-06-28
<i>This dataset was collected by an Autonomous Surface Vehicle in Cap-La-Houssaye, Réunion - 2023-06-28.</i> <br> <br><br>Underwater or aerial images collected by scientists or citizens can have a wide variety of use for science, management, or conservation. These images can be annotated and shared to train IA models which can in turn predict the objects on the images. We provide a set of tools (hardware and software) to collect marine data, predict species or habitat, and provide maps.<br><br> This dataset is part of larger collection referencing numerous underwater and aerial images <a href="https://doi.org/10.5281/zenodo.11125847" target="_blank">Seatizen Altas</a>. Methods, tools and scientific objectives are also described in a dedicated data paper.<br> <h2> Generic folder structure </h2> YYYYMMDD_COUNTRYCODE-optionalplace_device_session-number <br> ├── DCIM : folder to store videos and photos depending on the media collected. <br> ├── GPS : folder to store any positioning related file. If any kind of correction is possible on files (e.g. Post-Processed Kinematic thanks to rinex data) then the distinction between device data and base data is made. If, on the other hand, only device position data are present and the files cannot be corrected by post-processing techniques (e.g. gpx files), then the distinction between base and device is not made and the files are placed directly at the root of the GPS folder. <br> │ ├── BASE : files coming from rtk station or any static positioning instrument. <br> │ └── DEVICE : files coming from the device. <br> ├── METADATA : folder with general information files about the session. <br> ├── PROCESSED_DATA : contain all the folders needed to store the results of the data processing of the current session. <br> │ ├── BATHY : output folder for bathymetry raw data extracted from mission logs. <br> │ ├── FRAMES : output folder for georeferenced frames extracted from DCIM videos. <br> │ ├── IA : destination folder for image recognition predictions. <br> │ └── PHOTOGRAMMETRY : destination folder for reconstructed models in photogrammetry. <br> └── SENSORS : folder to store files coming from other sources (bathymetry data from the echosounder, log file from the autopilot, mission plan etc.). <br> <h2> Software </h2> All the raw data was processed using our <a href="https://github.com/SeatizenDOI/plancha-workflow/releases/tag/v1.0.3" target="_blank">worflow</a>. <br>All predictions were generated by our <a href="https://github.com/SeatizenDOI/plancha-inference/releases/tag/v1.0.0" target="_blank">inference pipeline</a>. <br>You can find all the necessary scripts to download this data in this <a href="https://github.com/SeatizenDOI/zenodo-tools" target="_blank">repository</a>. <br>Enjoy your data with <a href="https://github.com/SeatizenDOI" target="_blank">SeatizenDOI</a>! <br>
LAMMPS output from creep simulation of passivated silica sphere caps
<p>Results from creep simulation of silica sphere caps, passivated with hydroxy groups.</p> <p>50 nanoseconds of data, including log files and dump files.</p> <p>This description will be updated with a github repo and more information when possible.</p>
Data for 'Fatty acid capped, metal oxo clusters as smallest conceivable nanocrystal prototypes'
<p>The <em>.pxp</em> documents contain the experimental data of the figures in the manuscript and they can be opened/edited with the software IGOR Pro 8.0 or higher.</p> <p>Figure 3: Experimental PDF of zirconium oxo clusters with different capping ligands. The C-C, Zr-O, and Zr-Zr distances are assigned. We make a distinction between the Zr-Zr distances within one Zr6 cluster and the Zr-Zr distances that are characteristic for the dimer</p> <p>Figure 4: PDF refinement of the Zr12-acetate cluster with various models, derived from the reported crystal structure. 4 The best fit is obtained when including the oxygen and carbon atoms from the acetate ligands. The refined parameters are given in Table S1</p> <p>Figure 5: PDF refinement for Zr12-butanoate and Zr12-octanoate using the Zr12-acetate structure model. PDF refinement of Zr6- methylbutanoate using the Zr6-acetate structure model. Finally, the PDF refinement of Zr12-oleate using the Zr12-propionate structure model, with or without background correction in reciprocal space. If applied in the refinement, the exponentially dampening sine wave is shown (orange dotted lines). The refined parameters are given in Table S3.</p> <p>Figure 6: FTIR spectra of Zr12-acetate, -propionate, -hexanoate, -oleate and Zr6-methylheptanoate. The weak band at 1750 cm-1 in the spectrum of Zr12-acetate is assigned to a small amount of acetic acid that is not involved in hydrogen bonding of any kind. 71<br> An ester impurity is ruled out because of the absence of any signal around 4 ppm in NMR, (see Figure S10).</p> <p>Figure 7: (A) NMR spectra in CDCl3 of Zr12-acetate, -propionate, -hexanoate, -oleate and Zr6-methylheptanoate. (B) DOSY of the Zr12-acetate cluster with one faster diffusing species and a set of three resonances pertaining to a slowly diffusing species (the cluster)</p> <p>Figure 8: ESI-HR-MS analysis of the dimeric Zr12-butanoate cluster and of the monomeric Zr6-methylbutanoate cluster. Both the ex- perimental and simulated spectra are shown.</p> <p>Figure 10: (A) PDF fit for Hf12-acetate, Hf6-methylbutanoate and Hf12-oleate clusters with exponentially dampening sine wave con- tribution. The refined parameters are indicated in Table S9. (B) FTIR spectra of the hafnium oxo clusters synthesized via bottom up.</p> <p>Figure 11: Catalytic esterification of oleic acid with ethanol, catalyzed by either Zr12-oleate (green) or ZrO2 nanoparticles (gray). In both cases, 10 mol% Zr, with respect to the carboxylic acid substrate, was added.</p>
Pekka Päivärinta's Running Cap
Pekka Päivärinta was one of the best Finnish long-distance runners in the early 1970's. He competed at the Olympic Games of 1972 and 1976 and won a total of 14 Finnish championship titles. His greatest achievement was victory at the inaugural World Cross-Country Championships in 1973. Päivärinta was famous for always wearing a red-and-white cap while running, which earned him the nickname "Lätsä-Pekka" (Pekka the Cap). Actually there were two caps, one for training and one for racing. Päivärinta donated the racing cap, sown by his wife Merja, to the Sports Museum in 1978. Source: Objaverse 1.0 / Sketchfab
Cap del Gegant d'Olot, Museu de la Garrotxa
**CAT** Escultura realitzada entre 1888 i 1889 a partir d'un model de l'escultor Miquel Blay. L'escultura es va fer al taller de l'empresa l'Art Cristià sota la direcció de l'artista Josep Berga i Boix. La peça es pot veure al Museu dels Sants d'Olot. **ES** Escultura realizada entre 1888 y 1889 a partir de un modelo del escultor Miquel Blay. La escultura se hizo en el taller de la empresa el Arte Cristiano bajo la dirección del artista Josep Berga y Boix. La pieza se puede ver en el Museu dels Sants d'Olot. **EN** Sculpture completed between 1888 and 1889, based on a maquette by sculptor Miquel Blay. The piece was completed in the workshop of the El Arte Cristiano company under the direction of artist Josep Berga i Boix and can be seen at the Museu dels Sants in Olot. Número de registre: MCGO 1131. [Adreça web >](https://museus.olot.cat/coleccio/cap-i-carcassa-del-gegant-dolot) Fotografies: Aleix Barberà. Processat: Néstor Marqués. Text: Àlex Rebollo. Source: Objaverse 1.0 / Sketchfab
Street dentist's cap
This cap belonged to a street "dentist" or tooth puller. It is made of brown velvet and felt, and decorated with approximately 88 decayed human teeth, once belonging to his patients. The teeth have been drilled and attached with twine. Wearing a cap like this was supposed to imply the "magician" aspect of the dentists work. As teeth pulling was painful and risky and done without anaesthetic, people needed to have some faith in the "dentist", even if it was only the evidence, worn on the cap, that he had successfully plied his trade. You can see more images and information about this object on [our website](http://heritage.southwark.gov.uk/objects/18384/cap?ctx=e3aa8d3b-85ff-49ce-8efc-204771adee21&idx=19). Source: Objaverse 1.0 / Sketchfab
Cap de boc, Museu de Tortosa
**CAT** Cap de boc modelat en pedra artificial. Estava ubicat a la façana de l'antic escorxador, edifici modernista actualment seu del Museu de Tortosa. Concretament estava encastat damunt d'un dels accessos per la Rambla Felip Pedrell. **ES** Cabeza de chivo modelada en piedra artificial. Estaba ubicada en la fachada del antiguo matadero, edificio modernista actualmente sede del Museu de Tortosa. Concretamente estaba empotrada encima de uno de los accesos por la Rambla Felip Pedrell. **EN** Ram's head made of artificial stone. This sculpture once decorated the façade of the old slaughterhouse, a Modernista building that now houses the Museum of Tortosa. It was located above one of the entrances on Rambla Felip Pedrell. Número de registre: MMT034114. [Museu de Tortosa](http://www.museudetortosa.cat) Model: Jaime Salguero. Text: Museu de Tortosa Source: Objaverse 1.0 / Sketchfab
HIGH Virkalakki - Uniform cap
Junanlähettäjän virkalakki on kuulunut Emelie "Milly" Tojkanderille (1866-1939), joka oli ensimmäinen nainen asemapäällikön virassa Suomessa. Hän työskenteli Valtionrautateillä eri tehtävissä kaikkiaan 48 vuotta ja yleni harjoittelijasta kirjuriksi ja asemapäälliköksi. Lakki on Valtionrautateiden virkapukukaudelta 1929-1950. Lakin yksityiskohdat, merkit ja värit kertovat kantajansa ammatista ja tehtävästä rautateillä. Train dispatcher's uniform cap Belonged to Emelie "Milly" Tojkander (1866-1939), the first female stationmaster in Finland. She worked in the Finnish State Railways in different positions during 48 years. Cap is from State Railways' uniform period years 1929-1950. Details, marks and colours of the cap tell about the owner's position and profession in the railways. The object: Finnish Railway Museum (member of Traffic Museums Association). 3D model: Finnish Railway Museum and Ninma Oy. https://record/musketti_rautatie.M014:4847: Source: Objaverse 1.0 / Sketchfab
1 Axle Cap and Linch Pin
This is an Axle Cap and Linch Pin. Here are a few things to know about it. It used to be a part of a Chariot. Then it became an artifact shortly after it turned obsolete as the technology it was made for. Now it sits inside a museum as an artifact. Source: Objaverse 1.0 / Sketchfab
Aurel Terec - Cap de copil
AAurel Terec, Cap de copil. Material: teracotă – Această reprezentare ușor stilizată a unui portret de fetiță emană o eleganța aparte a expresiei feței, precum și o mândrie ascunsă, încă atractivă la copii, bine surprinsă de artist. Source: Objaverse 1.0 / Sketchfab
An Observational Study to Assess the Prevalence and Outcomes of Primary Pulmonary Coccidioidomycosis in Persons Aged > / = 14 Years Presenting With Community Acquired Pneumonia (CAP) in Endemic Areas
ClinicalTrials.gov study NCT03908632. IPD Sharing: Not stated. Countries: 1. Publications: 0.
XVIVO Heart Box (XHB) With Supplemented XVIVO Heart Solution (SXHS) Continued Access Protocol (CAP)
ClinicalTrials.gov study NCT06895070. IPD Sharing: NO. Countries: 1. Publications: 0.
The Effect of Cap-assisted Water Exchange Colonoscopy on Straight Passage of the Colonoscope Through the Sigmoid Colon, Without Loop Formation
ClinicalTrials.gov study NCT06992856. IPD Sharing: YES. Countries: 1. Publications: 0.
Effect of DA-5515 (Circulan® Soft Cap.) in Patients With Chronic Fatigue Symptoms Due to Impaired Blood Circulation
ClinicalTrials.gov study NCT03542721. IPD Sharing: NO. Countries: 1. Publications: 0.
Effects of Cold Atmospheric Plasma (CAP) on Peritoneal Tumor Tissue
ClinicalTrials.gov study NCT06796634. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Efficacy of Combination of Biodentine and Simvastatin as a Pulp Capping Materials in Vital Pulpotomy of Primary Molars
ClinicalTrials.gov study NCT05582317. IPD Sharing: Not stated. Countries: 1. Publications: 0.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.