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1,961 results for “Sensing”
FIGURES 19–27 in Taxonomic and nomenclatorial revision within the Neotropical genera of the subtribe Odontocheilina W. Horn in a new sense— 18. Six Mexican and Central American species related to Odontocheila mexicana Laporte de Castelnau and O. ignita Chaudoir, with a description of O. potosiana sp. nov.
FIGURES 19–27. Odontocheila mexicana Laporte de Castelnau, left elytron. 19–20—♂, Los Tuxtlas (CCJM ex DBCN); 21— ♀, Fortin Las Flores (CMNH); 22–23 —ditto, detail of elytral sculpture under different angle of illumination; 24–25—♀, LT (BMNH) the same elytron under two slightly different angles of illumination; 26—♀, LT of syn. O. quadrina (MNHN); 27— ♂, "quadrina, Mexique" ex Sallé (MNHN). Bar = 1mm.
FIGURES 100–107. O. iodopleura Bates. 100–104—female elytron. 100 in Taxonomic and nomenclatorial revision within the Neotropical genera of the subtribe Odontocheilina W. Horn in a new sense— 18. Six Mexican and Central American species related to Odontocheila mexicana Laporte de Castelnau and O. ignita Chaudoir, with a description of O. potosiana sp. nov.
FIGURES 100–107. O. iodopleura Bates. 100–104—female elytron. 100—Nicaragua, Chontales, PLT (BMNH); 101–102— Costa Rica, La Virgen (USNM); 103—Costa Rica, La Selva (USNM); 104—Costa Rica, Zurqui Tunnel (DBCN); 105–107— aedeagus: 105—Chontales, LT (BMNH); 106—Costa Rica, Hang Cerro Cacao (CCJM); 107—ditto, internal sac. Bars = 1mm.
FIGURES 77–89. Odontocheila iodopleura Bates. 77–78 in Taxonomic and nomenclatorial revision within the Neotropical genera of the subtribe Odontocheilina W. Horn in a new sense— 18. Six Mexican and Central American species related to Odontocheila mexicana Laporte de Castelnau and O. ignita Chaudoir, with a description of O. potosiana sp. nov.
FIGURES 77–89. Odontocheila iodopleura Bates. 77–78—head: 77—♂, Costa Rica, Veragua (CCJM); 78—♂, Costa Rica, Hang Cerro Cacao (CCJM); 79–85—labrum: 79—♂ Nicaragua, Chontales, LT (BMNH); 80—♂ Nicaragua, Cerro Jesus (CCJM); 81—♂, Costa Rica, Veragua (CCJM); 82–83—♂, Costa Rica, Zurqui Tunnel (DBCN); 84—♀, ibid. (DBCN); 85—♀, Chontales, PLT (BMNH); 86–89—pronotum: 86—♂, Chontales, LT (BMNH); 87—♀, ibid., PLT (MNHN); 88—♂, Zurqui Tunnel (DBCN); 89—♀, ibid. (DBCN). Bars = 1mm.
FIGURES 193–207. Odontocheila exilis Bates. 193–196 in Taxonomic and nomenclatorial revision within the Neotropical genera of the subtribe Odontocheilina W. Horn in a new sense— 18. Six Mexican and Central American species related to Odontocheila mexicana Laporte de Castelnau and O. ignita Chaudoir, with a description of O. potosiana sp. nov.
FIGURES 193–207. Odontocheila exilis Bates. 193–196—pronotum: 193—♂, Panama, Bugaba, LT (BMNH); 194—♂, El Chirogo (KCBC); 195—♂, Costa Rica, La Gamba (CCJM); 196—♀, Costa Rica, Jimenez (DBCN); 197–207—aedeagus: 197—Bugaba, LT (BMNH); 198—ibid., PLT (MNHN); 199—Bocas del Toro (DDCP); 200—internal sac, Panama, El Chirogo (KCBC); 201—Costa Rica, Punta Banco (DBCN); 202–204—Costa Rica, Wilson Bot. Garden (CCJM); 205–207— Costa Rica, La Gamba (CCJM). Bars = 1mm.
FIGURES 46–53 in Taxonomic and nomenclatorial revision within the Neotropical genera of the subtribe Odontocheilina W. Horn in a new sense— 18. Six Mexican and Central American species related to Odontocheila mexicana Laporte de Castelnau and O. ignita Chaudoir, with a description of O. potosiana sp. nov.
FIGURES 46–53. Odontocheila mexicana Laporte de Castelnau, aedeagus. 46—Valle National (CCJM ex DBCN); 47— Palenque (CCJM); 48–49—Los Tuxtlas (CCJM ex DBCN); 50—ditto, internal sac; 51—apex, Los Tuxtlas (CCJM ex DBCN); 52—apex, Temazcal (DBCN); 53—apex, Palenque (CCJM). Bar = 1mm.
FIGURES 149–157. Odontocheila ignita Chaudoir. 149–156 in Taxonomic and nomenclatorial revision within the Neotropical genera of the subtribe Odontocheilina W. Horn in a new sense— 18. Six Mexican and Central American species related to Odontocheila mexicana Laporte de Castelnau and O. ignita Chaudoir, with a description of O. potosiana sp. nov.
FIGURES 149–157. Odontocheila ignita Chaudoir. 149–156—elytron: 149—♂, Mexique, HT (MNHN); 150—♂, Guatemala, Zapote, LT of syn. O. cinctula Bates (BMNH); 151—♂, ibid., PLT of syn. O. cinctula (SDEI); 152—♂, Mexico, Mapastepek (DBCN); 153—♂, Mexico, Union Juarez (CCJM); 154—♀, ibid. (DBCN); 155—♀, Guatemala, Quezaltenango (CCJM); 156—♀, Guatemala, Zapote, PLT of syn. O. cinctula (MNHN); 157—pronotum, ♂, Mexique, HT (MNHN); Bars = 1mm.
Extracted dataset for: "Experiment and modeling of concentration-dependent diffusion in a solution with dual transport-phase flow for paper-based sensing"
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Non-Universal Impact of Cholesterol on Membranes: Mobility, Curvature Sensing, and Elasticity
<p><strong>Dataset repository - Non-Universal Impact of Cholesterol on Membranes: Mobility, Curvature Sensing, and Elasticity</strong></p> <p>==============================</p> <p>The repository contains setup files and parameter files for atomistic molecular dynamics (MD) simulations performed with the GROMACS 2020/2021/2023 series. Modified trajectories for the post-processing analysis are further included. The repositiory corresponds to the following manuscript:</p> <p><strong>Non-Universal Impact of Cholesterol on Membranes: Mobility, Curvature Sensing, and Elasticity</strong></p> <p><strong>Nature Comm. 14, 8038 (2023)</strong></p> <p>Matthias Pöhnl, Marius F.W. Trollmann, and Rainer A. Böckmann<br>Computational Biology, Department of Biology, Friedrich-Alexander-Universität Erlangen-Nürnberg, Erlangen, Germany<br>Erlangen National High-Perfomance Computing Center (NHR@FAU), Erlangen, Germany<br>*rainer.boeckmann@fau.de</p> <p>Corresponding author:</p> <p>* Rainer A. Böckmann (rainer.boeckmann@fau.de)</p> <p> </p> <p>For each simulation system, the start pdb (<em>'name'_start.pdb</em>), topology (<em>.top</em>), the simulation parameters (<em>.mdp</em>), the final pdb file (<em>'name'_end.pdb</em>) , and the simulation input file (<em>.tpr</em>) are provided in <a href="../api/records/10067080/draft/files/Membrane-Systems.zip/content">Membrane-Systems.zip</a>. The different studied systems are listed in '<a href="../api/records/10067080/draft/files/AA_Systems.pdf/content">AA_Systems.pdf' </a>and <a href="../api/records/10067080/draft/files/CG_Systems.pdf/content">CG_Systems.pdf. </a></p> <p>Additionally, the force field files are provided in <a href="../api/records/10067080/draft/files/FF-Charmm.zip/content">FF-Charmm.zip </a>and <a href="../api/records/10067080/draft/files/FF-Martini.zip/content">FF-Martini.zip.</a></p>
Data and Code for "Charge sensing the parity of an Andreev molecule"
<p>This folder contains the raw data and code used to generate the plots for the paper <i>Charge sensing the parity of an Andreev molecule</i>.</p><p>To run the Jupyter notebook, install Anaconda and execute:</p><blockquote><p><i>conda env create -f </i>environment.yml</p></blockquote><p>followed by:</p><blockquote><p><i>conda activate ABS_charge</i></p></blockquote><p>Finally,</p><blockquote><p><i>jupyter lab</i></p></blockquote><p>to launch the notebook.</p><p>Raw data are stored in netCDF (.nc) format. The experimental datasets are exported by the data acquisition package QCoDeS and can be read as an xarray Dataset. Both the experimental and the numerical datasets were saved as netCDF files using xarray built-in function.</p>
multi class dataset_Dipper Throated Optimization with Deep Convolutional Neural Network-based Crop Classification on Remote Sensing Image Analysis
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Adsorption of N, He, and Ne on CGe nanoribbons for sensing and optoelectronic applications
<p>Research into nanomaterials yields numerous exceptional applications in contemporary science and technology. The subject of this investigation is a one-dimensional nanostructure, six atoms wide, featuring hydrogen-functionalized edges. The theoretical foundation of this study relies on Density Functional Theory (DFT) and is executed through the utilization of the Vienna Ab initio Simulation Package (VASP). The outcomes demonstrate the stability of adsorption configurations, along with the preservation of the hexagonal honeycomb lattice. The pristine configuration, characterized by a wide bandgap, is well-suited for optoelectronic applications, whereas adsorption configurations find their application in gas sensing. Nitrogen (N) adsorption transforms the semiconducting system into a semi-metallic one, with the spin-up state displaying semiconductor characteristics and the spin-down state exhibiting metallic attributes. The intricate multi-orbital hybridization is explored through the analysis of partial states. While the pristine system remains non-magnetic, N adsorption introduces a magnetic moment of 0.588 μ<sub>B</sub>. Examination of charge density differences indicates a significant charge transfer from N to the CGe substrate surface. Optical properties are systematically investigated, encompassing the dielectric function, absorption coefficient, and electron-hole density. Notably, the real part of the dielectric function displays negative values, a result that holds promise for future communication applications.</p>
Study of the Guided Wave Sensing by Hybrid Piezoelectric-FBG Approach
<p><span>The objects of the investigation was the panel with dimensions: 1000 mm × 1000 mm × 1 mm made out of aluminium alloy. Elastic waves generation was conducted by piezoceramic actuator (PZT A) in the form of disc. Three diameters of actuators were investigated 10 mm, 20 mm and 30 mm. Actuator was located in the middle of the top surface of the panel</span><span>. The elastic wave sensing was conducted by pair of FBG sensors (on the top and bottom surfaces of panel)</span><span>. Excitation signal – five cycles of sine modulated by Hann window function (tone burst). Excitation frequencies 60 kHz 250 kHz with step 10 kHz. Attached folder contains the data and description file with figure.</span></p> <p> </p> <p><span>The measurements were conducted under the research related to grant agreement no. <strong>2020/39/B/ST8/01753</strong> in the frame of the OPUS project entitled: "Study of elastic wave mode sensing and separation using FBG sensors for structural health monitoring ", supported by the <strong>National Science Centre, Poland</strong>.</span></p>
Basic data that show effect of Panax ginseng and Symphytum officinale boost metronidazole on quorum sensing and biofilm disruption in Porphyromonas gingivalis
<p>Basic data that show effect of Panax ginseng and Symphytum officinale boost metronidazole on quorum sensing and biofilm disruption in Porphyromonas gingivalis</p>
Data in support to the paper: Comparison of Soil Water Content from SCATSAR-SWI and Cosmic Ray Neutron Sensing at four agricultural sites in Northern Italy: insights from spatial variability and representativeness by Emamalizadeh et al. (2024)
<p>The study was conducted within the 21GRD08 SoMMet project. The SoMMet project has received funding from the European Partnership on Metrology, co-financed from the European Union’s Horizon Europe Research and Innovation Programme and by the Participating States (funder name European Partnership on Metrology; funder ID 10.13039/100019599; grant no. 21GRD08 SoMMet).</p>
Arctic Sea Ice Type Products Based on Active and Passive Microwave Remote Sensing (2002-2021)
<p>Based on FY-3 MWRI and other microwave radiometer and scatterometer data, this dataset explores the distribution of Arctic sea ice types from 2002 to 2021 using the K-means clustering method. Spatial and temporal resolutions are 12.5 km and 1 day, respectively. The dataset is of integer type, where 0 represents open water, 1 represents first-year ice, 2 represents multi-year ice, 3 represents land, and 4 represents data gaps. The data is stored in .tiff format.</p>
Dataset for "Toward polarization-enhanced water quality remote sensing measurements from UAVs"
<p>Dataset used in publication "Toward polarization-enhanced water quality remote sensing measurements from UAVs," published and presented at the 2024 SPIE Future Sensing Technologies (FST) conference.</p>
Dynamic conformational changes of acid-sensing ion channels in different desensitizing conditions
<p>Peer-reviewed manuscript, supplemental file, and source data related to the article 'Dynamic conformational changes of acid-sensing ion channels in different desensitizing conditions'.</p>
Stimulated Raman photothermal spectroscopy for gas sensing in a hollow-core optical fiber
<p>This folder supplies the raw data and the plot data for the Figs. of 'Stimulated Raman photothermal spectroscopy for gas sensing in a hollow-core optical fiber' by Hanyu Liao, Yan Zhao, etc.</p>
Field and Lab_Integrating Remote Sensing and Machine Learning for Developing Spatio-Temporal Model to Predict Aquatic Larval Habitats of Malaria
<p>Field and Lab observations_Integrating Remote Sensing and Machine Learning for Developing Spatio-Temporal Model to Predict Aquatic Larval Habitats of Malaria</p>
Meteorological data_Integrating Remote Sensing and Machine Learning for Developing Spatio-Temporal Model to Predict Aquatic Larval Habitats of Malaria
<p>Meteorological data_Integrating Remote Sensing and Machine Learning for Developing Spatio-Temporal Model to Predict Aquatic Larval Habitats of Malaria</p>
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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)
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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.