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2,679 results for “softness”
Science Soft Video
Science Soft video
Data from: A pioneering experimental investigation of a novel in-situ dynamic characterization of the tensile/compression stress-strain mechanism on human plantar soft tissue
<p><span>We have conducted the first in-situ and in-vivo dynamic mechanical test on human plantar soft tissue. A dynamic mechanical analysis (DMA)-like device has been invented to perform the in-situ and in-vivo stress-strain tests on living plantar in order to characterize the material mechanism of biological soft tissue, whereas it is nearly impossible to prepare a sample from a living body for classical tests. A series of pioneering tests of tensile/compression on the heel of ten volunteers are reported, with the reference of tests on mimic foot model made by silicon rubber, standard silicon rubber brick sample, and finite elementary analysis. In addition to demonstrating the effectiveness of the device and approach, interesting correlations between the results and clinic data were found, suggesting considerable potential for the invention in future research.</span></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>
COgITOR Soft Robot
<p>This movie features two scientists at Empa in Switzerland, Physicits Dr. Loghman Jamilpanah, and Chemist Dr. Kwanele W. Kunene, who carry out materials research for the development of a soft robot. The robot project is called COgITOR, inspired by Prof. Dr. Alessandro Chiolerio, Italian Institute of Technology, Torino, and Genova.</p> <div> <div> <div> <p><strong>COgITOR</strong> is a project funded under the topic H2020-FETOPEN-2018-2020 / H2020-FETOPEN-2018-2019-2020-01 programme, aiming at developing a liquid state cybernetic system prototype. Holonomic memory and computing, pressure sensing, and energy harvesting from thermal gradients will be achieved using colloids. The prototype will be tested in extreme environments for potential space applications.</p> <p>This project has received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 964388</p> <p>The website reflects only the author's view and that the European Commission is not responsible for any use that may be made of the information it contains</p> </div> </div> </div> <div> <div> <div> </div> </div> </div>
Decoupling the rheological responses of a soft solid emulsion with liquid inclusions
<p>Data used to write the paper Decoupling the rheological responses of a soft solid emulsion with liquid inclusions submitted to Journal of Physics: Condensed Matter for the Focus Issue on Materials with Liquid Inclusions (DOI: 10.1088/1361-648X/ad61ad)</p>
Cryo soft X-ray tomography of 5 microns thick slab extracted from C. elegans midbody region
<p>Samples of C. elegans <span>larvae of strain DM8005 </span>were high pressure frozen using the waffle method. Multiple <span>roughly </span>5 micron thick slabs spanning <span>an L2 larva</span> were extracted using <span>the Serial Lift-Out</span> technique, and placed on rectangular <span>mesh </span>grids. Soft X-ray tomography was performed on individual slabs using the SXT-100 soft x-ray microscope at SiriusXT. The data reveals label free internal structure of fully hydrated C. elegans tissue, annotating the worm volume and adding context to cryo electron tomography data. </p> <p>SXT data was acquired from -50° to +53° in 1° steps and reconstructed using Weighted Back Projection. A 32 nm objective zone plate was used. Data pixel size is 29 nm. </p>
Cryo soft X-ray tomography of 5 microns thick slab extracted from C. elegans anterior region
<p>Samples of C. elegans <span>larvae of strain DM8005 </span>were high pressure frozen using the waffle method. Multiple <span>roughly </span>5 micron thick slabs spanning <span>an L2 larva</span> were extracted using <span>the Serial Lift-Out</span> technique, and placed on rectangular <span>mesh </span>grids. Soft X-ray tomography was performed on individual slabs using the SXT-100 soft x-ray microscope at SiriusXT. The data reveals label free internal structure of fully hydrated C. elegans tissue, annotating the worm volume and adding context to cryo electron tomography data. </p> <p>SXT data was acquired from -50° to +53° in 1° steps and reconstructed using Weighted Back Projection. A 32 nm objective zone plate was used. Data pixel size is 29 nm. </p>
Data associated with the manuscript: 'COLIS: An advanced light scattering apparatus for investigating soft matter onboard the International Space Station'
<p>Experimental data shown in the manuscript.</p>
Get Stylish Unique Soft Woolen Beanie Hat for Women
<p>Thin <a href="https://invisibletouch.lt/product/handmade-soft-wool-stylish-beanie-invisible-touch/">soft wool stylish hat</a>. Perfect go-to the office or casual outfit. Be sure it will keep you warm. The hat is not stretching much so be sure you order the right size.</p>
Human-robot co-manipulation of soft materials: enable a robot manual guidance using a depth map feedback [Video]
<p>Video of the paper submitted at RO-MAN 2022 </p> <p>Human-robot co-manipulation of soft materials: enable a robot manual guidance using a depth map feedback<br> Giorgio Nicola, Enrico Villagrossi, Nicola Pedrocchi</p> <p>Code for trainings and test available at:</p> <p>https://github.com/giorgionicola/SMAHRCO</p>
Data from: Experimental analysis of organ decay and pH gradients within a carcass and the implications for phosphatization of soft tissues
<p>Replacement of soft-tissues by calcium phosphate yields spectacular fossils. Decay experiments have shown that pH is a major control on the precipitation of calcium phosphate and tissue replication: for this to occur pH must fall below the carbonic acid dissociation constant (pH 6.38). However, in the fossil record, phosphatisation is highly selective - some internal organs, such as muscles, stomachs, and intestines, appear to preferentially phosphatise while other organs seldomly phosphatise. The reasons for this are unclear but one hypothesis is that, during decay, organs create distinct chemical microenvironments and only some fall below the critical pH threshold for mineralization to occur. Here, we present a novel investigation using microelectrodes that records fluctuating dynamic spatial and temporal pH gradients inside of organs within a carcass in real time. Our experiments demonstrate that within a decaying carcass, organ-specific microenvironments are not generated. Rather, a pervasive pH environment forms within the body cavity (i.e. the coelom) which persists until integumentary failure. With no evidence to support the development of organ-specific microenvironments during decay other factors must control organ phosphatisation. We propose it is tissue histology that plays an important role in selective phosphatisation. Tissues with high phosphate content (and those rich in collagen) are most likely to phosphatise. Internal organs that have low tissue-bound phosphate, including the integuments of the stomach and intestine, only phosphatise when associated with ingested phosphate-rich organic matter. Identifying the driver behind selective phosphatisation may provide insights into other highly selective modes of soft-tissue preservation i.e. pyritization.</p>
Data for "Direct Observation of Ultrafast Exciton Localization in an Organic Semiconductor with Soft X-ray Transient Absorption Spectroscopy"
<p>Underlying data for figures 1-3 and supplementary figures S1-S7 for the paper entitled 'Direct Observation of Ultrafast Exciton Localization in an Organic Semiconductor with Soft X-ray Transient Absorption Spectroscopy'.</p>
Synthesis of soft skills results in before-after measures
<p>Synthesis of soft skills results in before-after measures</p>
Magnetic Soft Robotic Bladder for Assisted Urination.
<p>Dataset</p>
Data from: Skeletal and soft tissue completeness of the acanthodian fossil record
<p>Acanthodians are a poorly understood paraphyletic grade of extinct Palaeozoic fishes. They play an increasingly prominent role in our understanding of vertebrate evolution as part of the chondrichthyan stem-group even though their evolutionary history is scarce. The limited preservation of their mostly cartilaginous skeleton largely results in a bias towards isolated remains such as fin spines and scales. Here, we quantify the quality of the acanthodian fossil record by using a variation of the Skeletal Completeness Metric (SCM), an approach that calculates how complete the skeletons of individuals are compared to their theoretical complete skeleton. A novel Soft Tissue Completeness Metric (STCM) is introduced to estimate the percentage of soft body tissue preserved as an alternate measurement of completeness. Completeness scores for >1600 specimens comprising >300 taxa obtained from museum collection visits and literature surveys were assembled into a database. Acanthodian completeness peaks in the Lochkovian, Givetian, Bashkirian-Moscovian, and the Asselian, with lowest scores in the Llandovery. There is no correlation between acanthodian taxonomic richness and completeness. Acanthodians show a significantly lower completeness distribution than many tetrapod groups, but a similarly low distribution to bats. Skeletons deposited in freshwater are significantly more complete than in marine environments where sea level significantly negatively correlates with observed completeness. Our assessment of completeness reveals only weak spatial biases influencing the acanthodian fossil record while environmental biases are much higher. Variation in completeness will have an impact on the utility of characters for assessing the phylogenetic relationships and inclusion of the various acanthodian groups.</p>
NFFA-Europe|Pilot proposal "Resolving Local Coordination of Doped-Carbon Supported Soft-Landed Metal Nanoparticles For CO2 Electroreduction" (PID: 159). XPS data.
<p>XPS data of copper oxide nanoparticles synthesized withtin the NFFA-Europe|Pilot proposal "Resolving Local Coordination of Doped-Carbon Supported Soft-Landed Metal Nanoparticles For CO2 Electroreduction” (PID: 159).</p>
Research data supporting: "Classifying soft self-assembled materials via unsupervised machine learning of defects"
<p>Research data supporting: "Classifying soft self-assembled materials via unsupervised machine learning of defects".</p> <p>The root folder contains 5 folders:</p> <ol> <li>FIBERS</li> <li>MEMBRANES_and_MICELLES</li> <li>NANOPARTICLES</li> <li>COMPARISON</li> <li>paper_images</li> </ol> <p>The folders 1. to 3. contain the data for every soft-matters architecture used to produce the results discussed in the main paper. Each of these folders contain additional sub-fordels: TRAJ, SOAP, PCA, CLUSTERING, containing the files discussed in the main paper.</p> <p>Folder 4. contains the data of the comparison between different classes of materials (SOAP, PCA, and CLUSTERING sub-folders).</p> <p>Folder 5. contains the images that are showed in the main paper and in the Supporting Information.</p>
Figs 1–17 in A new species of soft-winged flower beetle of the genus Kuatunia Evers, 1949 (Coleoptera, Cleroidea, Malachiidae) from Nepal
Figs 1–17. Kuatunia andreasi Tshernyshev sp. n., holotype, male (1, 2–16), allotype,
Figs 1–13 in A new genus and species of the soft flower beetles tribe Apalochrini (Coleoptera: Malachiidae) from Africa
Figs 1–13. Tibipectinus caeruleoviolaceus Tshernyshev sp. n., holotype, male. 1 – ex-
Soft tissue changes in extraction versus non-extraction treatment with fixed orthodontic appliances: a systematic review and meta-analysis
<p>Export of the dataset used in Stata to conduct all meta-analyses reported in the published paper.</p>
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.