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308 results for “coil”
Fig. 19 in Early Carboniferous coiled nautiloids from the Anti-Atlas (Morocco)
Fig. 19. Solenochilus lucynae sp. nov.; holotype MB.C.31286 (Leda 2011 Coll.) from 18 km SE of Rissani; dorsal and lateral views. Scale bar units = 1 mm.
Fig. 13 in Early Carboniferous coiled nautiloids from the Anti-Atlas (Morocco)
Fig. 13. Epidomatoceras ebbighausenorum sp. nov. from N of Gara el Itima (all Ebbighausen, Ebbighausen & Korn 2004 Coll.). A. Holotype MB.C.31294.1; dorsal and lateral views. B. Paratype MB.C.31294.2; ventral and lateral views. C. Paratype MB.C.31294.3; lateral and apertural views. Scale bar units = 1 mm.
Fig. 17 in Early Carboniferous coiled nautiloids from the Anti-Atlas (Morocco)
Fig. 17. Liroceras karaouii sp. nov.; dorsal projection, dorsal and lateral views of holotype PIMUZ 39515 (Karaoui Coll.) from the region south-east of Rissani; reconstruction of apertural view, dorsal and lateral views. Scale bar units = 1 mm.
Fig. 18 in Early Carboniferous coiled nautiloids from the Anti-Atlas (Morocco)
Fig. 18. Ephippioceras pygops sp. nov.; holotype MB.C.31292 (Korn 1999 Coll.) from N of Gara el Itima. A. Dorsal and ventral views. B. Whorl profile. C. Suture line, at ww = 76 mm, wh = 53 mm. Scale bar units = 1 mm.
PARALLEL G-QUADRUPLEX FOLDS VIA MULTIPLE PATHS INVOLVING G-TRACT STACKING AND STRUCTURING FROM COIL ENSEMBLE
<p>Data from all-atom molecular dynamics simulations of DNA G-quadruplex and various G-hairpins: input files (Gromacs and Amber), stripped trajectory files (reactive trajectories and reference replicas for G4, and reactive trajectories, and reference replicas for selected hairpin simulations), metadynamics bias files, and the ΔG_fold calculation protocol.</p>
Coil Of Train Wire
3D Scan Mesh Of a Cable from a Train Yard at the Big Pit Mine in Wales. Raw 3D scan Source: Objaverse 1.0 / Sketchfab
Gathered datasets of cardiorespiratory activity by using the inductive coupling with single coil together with reference waveforms of ECG and spirometer
<p>Hereby the datasets, that were gathered during the experiments of monitoring the cardiorespiratory activity by using the inductive coupling together with the reference waveforms of ECG and spirometer, are published.:<br> Waveforms of inductive monitoring.zip<br> Reference waveforms of ECG and spirometer.zip</p> <p>A single volunteer participated in the experiments: healthy male, 33 years old, height of 183 cm and weight of 70 kg.</p> <p>The results are gathered from 12 positions lying around the thorax in imaginary horizontal level, approximately 10 mm below xiphisternal joint. The central position on front side of thorax is designated according to xiphisternum. The central position on front side of thorax is designated according to backbone.</p> <p>The datasets are available in .txt format, and are in separate .zip packages for inductive monitoring and reference waveforms. The correcponding dataset for every position can de identified by position number in both datasets. The signals are raw signals, not processed in any way.</p> <p>In the case of inductive monitoring the change variation of equivalent parallel resonance impedance (Rp) is shown. Concerning the reference waveforms, in the case of ECG, the result is shown in voltages (V). The reference data of respiration (gathered by using spirometer) is available in the form of two sets of digital pulses (0-s and 1-s). These pulses are representing the inhalation and exhalation i.e. either the rotor of the spirometer turns in one way or another. According to the frequency of the pulses, depending on the air flowing speed, the respiratory waveform can be constructed.</p>
MRI raw data: SE measurement of the knee of a healthy volunteer (8 channel coil)
<p>SE measurement of the knee of a healthy volunteer Sequence parameters:</p> <p>TR 1800ms<br> TE 18ms<br> Matrix Size 192x192<br> In Plane Resolution 0.78mmx0.78mm<br> Slice Thickness 2mm<br> 3T System<br> 8 channel knee coil<br> Florian Knoll (florian.knoll@tugraz.at) Date: 2.2.2011</p> <p>Acknowledgements to Tobias Block and Martin Uecker for their support with the in vivo radial spin echo data.</p>
MRI raw data: T2 weighted TSE scan of a healthy volunteer (32 channel head coil)
<p>T2 weighted TSE Scan of the brain of a healthy volunteer, 32 channel coil</p> <p>Sequence parameters:<br> TR 5000ms<br> TE 99ms<br> Turbo Factor 10<br> Matrix Size 256x256<br> In Plane Resolution 0.9mmx0.9mm<br> Slice Thickness 4mm<br> 3T System<br> 32 channel head coil</p> <p>Florian Knoll (florian.knoll@tugraz.at)<br> Date: 2.2.2011<br> </p>
MRI raw data: T2 weighted TSE scan of a healthy volunteer (4 channel head coil)
<p>T2 weighted TSE Scan of the brain of a healthy volunteer, 4 channel coil</p> <p>Sequence parameters:<br> TR 5000ms<br> TE 99ms<br> Turbo Factor 10<br> Matrix Size 256x256<br> In Plane Resolution 0.9mmx0.9mm<br> Slice Thickness 4mm<br> 3T System<br> 4 channel head coil</p> <p>Florian Knoll (florian.knoll@tugraz.at)<br> Date: 2.2.2011<br> </p>
Fragment of coiled ceramic horn
3D model of a fragment of a 16th-century ceramic trumpet found during the excavation of the Skriðuklaustur monastery in eastern Iceland. ICP-MS analysis revealed that the trumpet was produced in a workshop in Lower Saxony, Germany. From there it was first transported to Bremen or Hamburg and then shipped to Iceland with Hanseatic merchants. Such trumpets were called "pilgrim horns" and were commonly used to call the brethren to services. No other ceramic pieces of this kind have been found in Iceland before. Physical object held by the National Museum of Iceland nr: 2008-36-921. Found 22/07/2008, found & logged by BB/GT Part of the Skriðuklaustur Monastery 1550 reconstruction. Digitisation by Open Virtual Worlds, a research team within the School of Computer Science, University of St Andrews, in cooperation with the Gunnar Gunnarsson Institute at Skriðuklaustur and the National Museum of Iceland. 3D digitisation was done by Catherine Cassidy and Iain Oliver with archaeological assistance provided by Sk Source: Objaverse 1.0 / Sketchfab
Data set of "Effect of Proximity, Burden, and Position on the Power Quality Accuracy Performance of Rogowski Coils"
<p>The uploaded data set contains all the measurements collected during the research that led to the publication of " "Effect of Proximity, Burden, and Position on the Power Quality Accuracy Performance of Rogowski Coils"</p>
RF Coil Design for Accurate Parallel Imaging on 13C MRSI using 23Na Sensitivity Profiles
<p>This upload contains data for the article "RF Coil Design for Accurate Parallel Imaging on 13C MRSI using 23Na Sensitivity Profiles" published in Magnetic Resonance in Medicine, https://doi.org/10.1002/mrm.29259.</p> <p>Data are organized with respect to the figures in the article. To read and process the GE MR raw files (p-files) GE software tools are required including Matlab software from the GE MNS Research Pack. For the human data, the raw data are provided in mat-files without header information.</p> <p>All data were processed in Matlab to produce the results presented in the article. Please do not hesitate to reach out, if you are interested in any data processing methods or details, we will be happy to share relevant source code.</p>
Page Induction Coil From US Patent #76,654
Smithsonian source data can be found [here](https://ids.si.edu/ids/media_view?id=3d_package:40cf5b52-0b21-4063-95fc-aa07998eb4dd) This media file is in the public domain (free of copyright restrictions). You can copy, modify, and distribute this work without contacting the Smithsonian. For more information and to review the 3D disclaimer, visit the Smithsonian's [Terms of Use](https://www.si.edu/Termsofuse) page. Page induction coil from US Patent #76,654 Maker: Charles G. Page Measurements: overall: 7 in x 8 3/4 in x 4 3/4 in; 17.78 cm x 22.225 cm x 12.065 cm Object Name: Induction Coil Date Made: ca 1868 ID Number: EM.309254 Catalog Number: 309254 Patent Number: 76654 Accession Number: 49064 Data Source: National Museum of American History EDAN-URL: edanmdm:nmah_703318 Source: Objaverse 1.0 / Sketchfab
Using a whole-body 31P birdcage transmit coil and 16-element receive array for human cardiac metabolic imaging at 7T
<p>The uploaded data relate to the PLoS ONE manuscript of Valkovič et al. entitled "Using a whole-body 31P birdcage transmit coil and 16-element receive array for human cardiac metabolic imaging at 7T." 2017<br> The data consist of the models used for simulating electromagnetic fields, in CST Studio 2016 format, for the whole-body coil and the surface coil, and of the the phantom and anonnymised in vivo data, in Siemens DICOM format, acquired as described in the manuscript.</p>
Data associated with the publication "A de novo designed coiled-coil-based switch regulates the microtubule motor kinesin-1"
<p> All raw data required to reproduce the findings in the manuscript ""A de novo designed coiled-coil-based switch regulates the microtubule motor kinesin-1".</p>
Combining Dipole and Loop Coil Elements for 7 T Magnetic Resonance Studies of the Human Calf Muscle - Dataset
<p>Data necessray to reprodice and to verify the results of the publication "Combining Dipoles and Loops for High SNR and Parallel Imaging Performance in Human Calf Muscle Studies at 7 T".</p>
Cluster merged fluxgate/search coil data for a solar wind interval occuring on 15/02/2015 21:25:00-22:40:00
<p>Cluster merged fluxgate/search coil data for a solar wind interval occuring on 15/02/2015 21:25:00-22:40:00</p>
Fig. 2 in Early Carboniferous coiled nautiloids from the Anti-Atlas (Morocco)
Fig. 2. Stratigraphic position of the fossil sites with the nautiloid assemblages described here.
The Effect of an Azygos Vein Coil on Defibrillation Threshold
ClinicalTrials.gov study NCT00798174. IPD Sharing: Not stated. Countries: 1. Publications: 2.
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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.