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1,938
datasets available to search
ShareScore release 0.9.0
Dataset results
1,938 results for “Resonances”
Magnetic Resonance Imaging Scan of the Brain of a Orangutan (Pongo pygmaeus)
<p>Magnetic Resonance Imaging Scan of the Brain of a Orangutan (<i>Pongo pygmaeus</i>) from http://braincatalogue.org/Orangutan</p>
Magnetic Resonance Imaging Scan of the Brain of a Lion (Panthera leo)
<p>Magnetic Resonance Imaging Scan of the Brain of a Lion (<i>Panthera leo</i>) from http://braincatalogue.org/Lion</p>
Magnetic Resonance Imaging Scan of a Bottlenose Dolphin Brain (Tursiops truncatus)
<p>Magnetic Resonance Imaging Scan of a Bottlenose Dolphin Brain (<em>Tursiops truncatus</em>) from http://braincatalogue.org/Bottlenose_dolphin</p>
Magnetic Resonance Imaging Scan of a Black Rhinoceros (Diceros Bicornis)
<p>Magnetic Resonance Imaging Scan of a Black Rhinoceros (Diceros Bicornis) from http://braincatalogue.org/Black_rhinoceros</p>
Magnetic Resonance Imaging Scan of a Red Squirrel Brain (Sciurus vulgaris)
<p>Magnetic Resonance Imaging Scan of a Red Squirrel Brain (<em>Sciurus vulgaris</em>) from http://braincatalogue.org/Bottlenose_dolphin</p>
Magnetic Resonance Imaging Scan of the Brain of a Nursehound (Scyliorhinus stellaris)
<p>Magnetic Resonance Imaging Scan of the Brain of a Nursehound (<i>Scyliorhinus stellaris</i>) from http://braincatalogue.org/Nursehound</p>
Magnetic Resonance Imaging Scan of a Blackbuck (Antilope cervicapra)
<p>Magnetic Resonance Imaging Scan of a Blackbuck (Antilope cervicapra) from http://braincatalogue.org/Blackbuck</p>
Magnetic Resonance Imaging Scan of the Brain of a Gorilla (Gorilla gorilla)
<p>Magnetic Resonance Imaging Scan of the Brain of a Gorilla (<i>Gorilla gorilla</i>) from http://braincatalogue.org/Gorilla</p>
Magnetic Resonance Imaging Scan of the Brain of a Ostrich (Struthio camelus)
<p>Magnetic Resonance Imaging Scan of the Brain of a Ostrich (<i>Struthio camelus</i>) from http://braincatalogue.org/Ostrich</p>
Magnetic Resonance Imaging Scan of the Brain of a Giant panda (Ailuropoda melanoleuca)
<p>Magnetic Resonance Imaging Scan of the Brain of a Giant panda (<i>Ailuropoda melanoleuca</i>) from http://braincatalogue.org/Giant_panda</p>
Magnetic Resonance Imaging Scan of a Baboon Brain (Papio Papio)
<p>Magnetic resonance imaging scan of a baboon brain (Papio papio) from http://braincatalogue.org/Baboon</p>
Magnetic Resonance Imaging Scan of the Brain of a Cheetah (Acinonyx jubatus)
<p>Magnetic Resonance Imaging Scan of the Brain of a Cheetah (<i>Acinonyx jubatus</i>) from http://braincatalogue.org/Cheetah</p>
Ultrafast Vibrational Control of Organohalide Perovskite Optoelectronic Devices Using Vibrationally Promoted Electronic Resonance
<p>2D PC/PL-VIPER Maps, and results of molecular dynamics simulations for the above titled paper</p>
Data for figures in the paper "Parity Violation in Resonant Inelastic Soft X-Ray Scattering at Entangled Core Holes"
<p>This dataset can be used to recreate the figures in the paper "Parity Violation in Resonant Inelastic Soft X-Ray<br>Scattering at Entangled Core Holes" (doi to be published when available). Additional data can be provided upon reasonable request to the corresponding author (Johan Söderström, Johan.Soderstrom@physics.uu.se)</p><p>November 13: Added new experimental data for Fig. 2B (the old experimental data is still available). The data is the same but binned somewhat differently and the background is differently subtracted. Use the new version if you want to reuse some of this data.</p>
Accumulation of 3-aminopropylphosphonate in the ex vivo brain observed by phosphorus-31 nuclear magnetic resonance
<p>This dataset contains primary data for DOI: 10.1002/nbm.4721</p><p>NMR in Biomedicine. 2022; 35(8):e4721</p><p>Title: Accumulation of 3-aminopropylphosphonate in the ex vivo brain observed by phosphorus-31 nuclear magnetic resonance</p><p>Authors: David Shaul, Benjamin Grieb, Naama Lev-Cohain, Jacob Sosna, J. Moshe Gomori, Rachel Katz-Brull</p><p> </p><p>These primary datasets contain data presented in the above publication and consist of 31P-NMR spectra. </p><p> </p><p>Please consult the Archive Guide.</p>
The metabolic representation of ischemia in rat brain slices: A hyperpolarized 13 C magnetic resonance study
<p>This dataset contains primary data for DOI: 10.1002/nbm.4509</p><p>NMR in Biomedicine. 2021; 34(7):e4509</p><p>Title: The metabolic representation of ischemia in rat brain slices: A hyperpolarized 13 C magnetic resonance study </p><p>Authors: David Shaul , Benjamin Grieb, Gal Sapir, Sivaranjan Uppala, Jacob Sosna, J Moshe Gomori, Rachel Katz-Brull</p><p> </p><p>These primary datasets contain data related to the above publication and consist of 31P (thermal equilibrium) and hyperpolarized 13C -NMR spectra. </p><p>Please consult the Archive Guide.</p>
Source data for the publication "Longitudinal coupling between a Si/SiGe double quantum dot and an off-chip TiN resonator"
<p>This repository contains data reported in the publication "Longitudinal coupling between a Si/SiGe double quantum dot and an off-chip TiN resonator."</p>
Data for the article "Capacitive coupling of coherent quantum phase slip qubits to a resonator"
<p>Zip file containing data for the article "Capacitive coupling of coherent quantum phase slip qubits to a resonator" published in the New Journal of Physics. The data used in the figures and tables are saved in separate txt files.</p>
Experimental data to manuscript "Resonance-Induced Anomalies in Temperature-Dependent Raman Scattering of PdSe2"
<p>Experimental data to manuscript "Resonance-Induced Anomalies in Temperature-Dependent Raman Scattering of PdSe2"</p>
Engineering the Compositional Architecture of Core-Shell Upconverting Lanthanide-Doped Nanoparticles for Optimal Luminescent Donor in Resonance Energy Transfer: The Effects of Energy Migration and Storage
<p>Förster Resonance Energy Transfer (FRET) between single molecule donor (D) and acceptor (A) is well understood from fundamental perspective and is widely applied in biology, biotechnology, medical diagnostics and bio-imaging. However, the reliability of molecular FRET measurements can be affected by numerous artefacts which eventually hamper quantitative and reliable analysis, mostly due to issues with the donor and acceptor molecules. Lanthanide doped upconverting nanoparticles (UCNPs) have demonstrated their suitability as alternative donor species. Nevertheless, while they solved most disadvantageous features of organic donor molecules, such as photo-bleaching, spectral cross-excitation and emission bleed-through, the fundamental understanding and practical realizations of bio-assays with UCNP donors remain challenging. Among others, the actual donor ions in individual donor UCNPs are the numerous activator ions randomly distributed in the nanoparticle at various distances to acceptors anchored on the nanoparticle surface. Further, the power dependent, complex energy transfer upconversion and energy migration between sensitizing and activating lanthanide ions within UCNPs complicate the decay based analysis of <strong><em>D</em></strong>-<strong><em>A</em></strong> interaction. In this work, the assessment of designed virtual core-shell nanoparticle (VNP) models led us to the new designs of UCNPs, such as …@Er, Yb@Er, Yb@YbEr, which were experimentally evaluated as donor nanoparticles and compared to the simulations. Moreover, the specific properties of lanthanide-based upconversion motivated us to analyze not only steady-state luminescence and luminescence decay responses of both the UNCP donor and the sensitized acceptor, but also the effects of their luminescence rise kinetics upon RET was discussed in newly proposed disparity measurements. The presented studies help to understand the role of energy-transfer and energy migration between lanthanide ion dopants (due to their concentration and spatial distribution) and how the architecture of core-shell UCNPs affects their performance as FRET donors to organic acceptor dyes.</p>
ScienceDex guides
Understand access before you commit
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.