441 to 450 of 480 Results
Jun 29, 2022
Lipp, Ilona, 2022, "Data for "B+1-correction of MT saturation maps optimized for 7T postmortem MRI of the brain"", https://doi.org/10.17617/3.803OMM, Edmond, V1
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Jun 9, 2022
Israni, Bhawana, 2022, "Alternative transcript splicing regulates UDP-glucosyltransferase-catalyzed detoxification of DIMBOA in the fall armyworm (Spodoptera frugiperda)", https://doi.org/10.17617/3.WTCPOX, Edmond, V1
Proteomics datasets- 1. Identification of interacting proteins identified via affinity purification of SfUGT33F28 variants expressed in insect cells. 2. EMSA- SfUGT33F28 interaction with insect nuclear proteins |
Jun 3, 2022
Serhat, Gokhan; Vardar, Yasemin; Kuchenbecker, Katherine J., 2022, "Dataset – Contact evolution of dry and hydrated fingertips at initial touch", https://doi.org/10.17617/3.LF8H2Q, Edmond, V1
Pressing the fingertips into surfaces causes skin deformations that enable humans to grip objects and sense their physical properties. This process involves intricate finger geometry, non-uniform tissue properties, and moisture, complicating the underlying contact mechanics. Here we explore the initial contact evolution of dry and hydrated fingers... |
Jun 1, 2022
Krüger, Ovid Oktavian; A. Holanda, Bruna; Chowdhury, Sourangsu; Pozzer, Andrea; Pöhlker, Mira L., 2022, "Data Set - Black carbon aerosol reductions during COVID-19 confinement quantified by aircraft measurements over Europe", https://doi.org/10.17617/3.GKRXCN, Edmond, V1
The data was analyzed in the publication by Krüger et al. 2022 (https://acp.copernicus.org/preprints/acp-2021-1100/). The study shows the decrease in atmospheric black carbon aerosol during the first COIVD-19 lockdown in 2020. The dataset consists of aircraft BC data sampled over Europe in 2017 (https://acp.copernicus.org/articles/22/5877/2022/) an... |
May 30, 2022
Bornmann, Lutz; Haunschild, Robin; Boyack, Kevin; Marx, Werner; Minx, Jan C, 2022, "Dataset regarding "How relevant is climate change research for climate change policy? An empirical analysis based on Overton data"", https://doi.org/10.17617/3.DUY0LD, Edmond, V1
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May 29, 2022
Chakrabarti, Kalyan S; Pratihar, Supriya; Giller, Karin; Overkamp, Kerstin; Lee, Ko On; Ryu, Kyoung-Seok; Becker, Stefan; Lee, Donghan; Griesinger, Christian, 2022, "High-power relaxation dispersion NMR data set at different ligand concentrations: a litmus test for classification of recognition mechanism", https://doi.org/10.17617/3.AVKYZC, Edmond, V1
High-power relaxation dispersion of ubiquitin (with SH3c titrated in) The high-power relaxation dispersion experiments were measured using the 15N based constant time E-CPMG experiment for quantifying kinetics of exchange processes in ubiquitin happening on a micro-to-millisecond time-scale. The measurements were conducted in Bruker Avance 600 MHz... |
May 27, 2022
Sun, Huanbo, 2022, "HapDef: super-resolved large scale haptic system using strain gauges", https://doi.org/10.17617/3.CYTBE3, Edmond, V1
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May 27, 2022
Sun, Huanbo, 2022, "ERT-DNN", https://doi.org/10.17617/3.HHL2PC, Edmond, V1
Dataset for the project: Learning the Output Mapping of a SoftERT-Based Tactile Sensor using MultiphysicsSimulation and Deep Neural Networks |
May 20, 2022
Kappel, Johannes; Larsch, Johannes; Baier, Herwig; Shainer, Inbal; Slangewal, Katja; Donovan, Joe; Förster, Dominique; Svara, Fabian; Januszewski, Michal; Sherman, Shachar, 2022, "Data from: Visual recognition of social signals by a tecto-thalamic neural circuit", https://doi.org/10.17617/3.2QCFQP, Edmond, V4
This data set contains the raw data needed to reproduce the figures presented in the paper "Visual recognition of social signals by a tecto-thalamic neural circuit". Johannes M. Kappel, Dominique Förster, Katja Slangewal, Inbal Shainer, Fabian Svara, Joseph C. Donovan, Shachar Sherman, Michal Januszewski, Herwig Baier*, Johannes Larsch* Nature 2022... |
May 13, 2022
Bonnavion, Remy, 2022, "Supplementary file_Liver Gpr182 mCherry F4/80 co staining", https://doi.org/10.17617/3.A4R4KR, Edmond, V1
For analysis of mCherry reporter fluorescence and F4/80 staining, mice were sacrificed by CO2 and perfused with 20 mL PBS through the left ventricle, followed by 4% PFA in PBS. After perfusion, the liver was postfixed in PFA 4% for 16 h at 4°C. After fixation, the liver was washed at least three times with PBS and transferred to PBS containing 30%... |