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35 results for “MEA”
Raw data for the article "Effective perspiration is essential to uphold the stability of zero-gap MEA-based cathodes used in CO2 electrolysers"
<p>Raw data for the article "Effective perspiration is essential to uphold the stability of zero-gap MEA-based CO2 electrolysers", published in Journal of Materials Chemistry A 2023 11:5083–5094, doi: <a href="https://doi.org/10.1039/D2TA06965B">10.1039/D2TA06965B</a></p> <p>Folder names describe the type of data content.</p>
Raw data for the article "The role of ionomers in the electrolyte management of zero-gap MEA-based CO2 electrolysers: A Fumion vs. Nafion comparison''
<p>Raw data for the article "The role of ionomers in the electrolyte management of zero-gap MEA-based CO2 electrolysers: A Fumion vs. Nafion comparison'', published in Applied Catalysis B: Environmental 2023 335:122885, doi: <a href="https://doi.org/10.1016/j.apcatb.2023.122885">10.1016/j.apcatb.2023.122885</a></p> <p>Folder names describe the type of data content.</p>
Electrophysiological recordings from human-derived cardiomyocytes in the form of MEA (microelectrode array) recordings
<p><span>The electrophysiological data were acquired using standard software for MEA acquisition, such as the programs provided with the used MEA acquisition system coupled with the SiMulTox prototype.</span></p>
Data set supporting journal article: Markwitz, C. and Siebicke, L.: "Low-cost eddy covariance: a case study of evapotranspiration over agroforestry in Germany", Atmos. Meas. Tech., 2019
<p>This data set contains evapotranspiration data obtained by a conventional eddy covariance set-up and a low-cost eddy covariance set-up as described in the research article: Markwitz, C. and Siebicke, L.: "Low-cost eddy covariance: a case study of evapotranspiration over agroforestry in Germany", Atmos. Meas. Tech., 2019.</p> <p>The data set contains all necessary data needed to replicate figures and analysis presented in the research article. The data sets are sorted and named according to the figure the data were used for. </p>
Closed loop recordings from IPSC cell culture using planar MEA
<p>Recordings from IPSC cell culture using planar MEA in closed loop with the AlzModel. </p> <p>The script 'alzgraphs.py' is used to display summary statistics. </p>
Data set supporting Journal article: Siebicke, L., and Emad, A., "True eddy accumulation trace gas flux measurements: proof of concept", Atmos. Meas. Tech., 12, 1–28, 2019.
<p>This data set contains carbon dioxide trace gas flux measurements obtained by the true eddy accumulation technique as described in the research article:</p> <p>Siebicke, L., and Emad, A., "True eddy accumulation trace gas flux measurements: proof of concept", Atmos. Meas. Tech., 12, 1–28, 2019.</p> <p>It contains meteorological measurements (file "meteo.csv"), turbulent energy fluxes (file "energy_fluxes.csv"), three-diomensional wind vector measurements ("file wind.csv"), and carbon dioxide trace gas fluxes obtained by true eddy accumulation (file "co2_flux_TEA.csv") and eddy covariance using data from two separate anomemoters (files "co2_flux_EC_TEA_sonic.csv" and "co2_flux_EC_EC_sonic.csv").</p>
A selective small-molecule agonist of G protein-gated inwardly-rectifying potassium channels reduces epileptiform activity in a mouse model of tumor associated epilepsy - Part 2: WT Non-Tumor MEA Data
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Alzheimer's disease risk gene BIN1 induces Tau-dependent network hyperexcitability — MEA Axion Biosciences Maestro Recordings, Figure 6
<p>Genome-wide association studies identified the <i>BIN1</i> locus as a leading modulator of genetic risk in Alzheimer's disease (AD). One limitation in understanding <i>BIN1</i>'s contribution to AD is its unknown function in the brain. AD-associated <i>BIN1</i> variants are generally noncoding and likely change expression. Here, we determined the effects of increasing expression of the major neuronal isoform of human BIN1 in cultured rat hippocampal neurons. Higher BIN1 induced network hyperexcitability on multielectrode arrays, increased frequency of synaptic transmission, and elevated calcium transients, indicating that increasing BIN1 drives greater neuronal activity. In exploring the mechanism of these effects on neuronal physiology, we found that BIN1 interacted with L-type voltage-gated calcium channels (LVGCCs) and that BIN1–LVGCC interactions were modulated by Tau in rat hippocampal neurons and mouse brain. Finally, Tau reduction prevented BIN1-induced network hyperexcitability. These data shed light on BIN1's neuronal function and suggest that it may contribute to Tau-dependent hyperexcitability in AD.</p>
Nematodes carried by beetles and remaining in malt extract agar (MEA)
<p>To show the importance of vector switching of nematodes in the evolution of the <i>Bursaphelenchus xylophilus</i> group, we tested a hypothesis that "<i>Bursaphelenchus doui</i> (or its ancestor) was transferred by <i>Acalolepta fraudatrix</i>, <i>Acalolepta sejuncta</i>, and/or<i> Monochamus subfasciatus</i> (or their ancestral species) from broad-leaved trees to conifers, switched vectors from these cerambycid beetles to <i>Monochamus</i> beetles in conifers, and then evolved into the common ancestor of <i>Bursaphelenchus mucronatus</i> and <i>B. xylophilus</i>." We used a simple nematode-loading method to beetles and produced 20 binary combinations of five <i>B. xylophilus</i> group species and four cerambycid beetle species in the tribe Lamiini. The affinity of the nematodes for the beetles was examined based on phoretic stage formation of the nematodes. Phoretic stages of <i>B. doui</i> appeared in all beetle species examined, namely <i>A</i><i>calolepta luxuriosa</i>, <i>Psacothea hilaris</i>, <i>A. fraudatrix</i>, and <i>M</i><i>onochamus alternatus</i>, although the affinity of the nematode for <i>M. alternatus</i> was weak. This finding indicates that <i>B. doui</i> could switch vectors to conifer-using <i>Monochamus</i> beetles after transfer by <i>A. fraudatrix</i> from broad-leaved trees to conifers. We conclude that vector switching of nematodes could have potentially happened during the evolutionary history of the <i>B. xylophilus</i> group.</p>
Electron moments (density & temperature) extracted from MEA 1, during the cruise phase, onboard Bepicolombo.
<p>The following archive contain electron density and temperature, extracted with MEA 1 instrument, for all the solar wind and Venus fly-by campaigns.</p><p>It contains moments deduced with 3D data product mode (ne and Te) and with the Omni data product mode (ne only).</p><p>Refer to the articles:</p><p>"Pre-flight Calibration and Near-Earth Commissioning Results of the Mercury Plasma Particle Experiment (MPPE) Onboard MMO (Mio)"</p><p>from Y. Saito published on 2021 to get technical information on MEA detector.</p><p>and</p><p>"Electron moments derived from the Mercury Electron Analyzer during the cruise phase of BepiColombo" from Mathias Rojo, soon available 2023 (accepted with minor revisons),</p><p>to know how we derive those moments and what are the instrumental biais.</p>
PDMS microstructures and rGO MEA primary hippocampal cultures
<p>CLSM images and videos of primary hippocampal cultures. Used as supporting information for various chapters of my doctorl thesis.</p>
BepiColombo/Mio MSA, MIA and MEA 2 Data during the third Mercury flyby
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HD-MEA extracellular measurements of iPSC-derived cardiomyocytes
<p>Human iPSC-derived cardiomyocytes (short QT syndrome).</p> <p>Extracellular measurements obtained using high-density microelectrode arrays.</p> <p> </p> <p>Ethics statement: The generation of iPSCs was approved by the Ethics Committee of the University Medical Center Göttingen in Germany (approval number: 10/9/15) and carried out in accordance with the approved guidelines. Written informed consent was obtained from all participants or their legal representatives prior to participation in the study.</p> <p> </p>
HD-MEA intracellular-like measurements of iPSC-derived cardiomyocytes
<p>Human iPSC-derived cardiomyocytes (iCell Cardiomyocytes).</p> <p>Intracellular-like measurements obtained using high-density microelectrode arrays.</p>
Evaluation of Patients After Cardiac Surgery: Novel Ultrasound Parameters for Quantification of Renal Perfusion & Analysis of Phenylephrines' Effect on Invasive Haemodynamics and Echocardiographic Mea
ClinicalTrials.gov study NCT04419662. IPD Sharing: NO. Countries: 1. Publications: 2.
Nematodes carried by beetles and remaining in malt extract agar (MEA)
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Alzheimer’s disease risk gene BIN1 induces Tau-dependent network hyperexcitability — MEA Axion Biosciences Maestro Recordings, Figure 6
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2D cortical human neuron from ipsc - cultures and electrical activiy based on HD-MEA
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SE-590 Field-Meas. Reflectances (OTTER)
Spectral reflectance measurements made by Spectron SE590 instruments in the context of validation of geometric-optical BRDF models.
Single nucleus RNA-seq of genetically labeled Esr1+ neurons from the bed nucleus of the stria terminalis (BNST), preoptic area (POA), ventromedial hypothalamus (VMH), and medial amygdala (MeA)
GEO Series GSE183093. Mus musculus. 14 samples. Type: Expression profiling by high throughput sequencing.
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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.