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159 results for “authentication”
Fig. 8 in Species authentication of Tor spp. (family Cyprinidae) in Indonesia based on osteocranium structure and biometric data
Fig. 8. Morphology of the mandibular arch (suspensory) and the opercular apparatus seen from the lateral view. A: T. tambroides; B: T. tambra; C: T. douronensis; and D: T. soro. AN: angulo-articular bone; PL: palatinum bone; CM: coronomeckeli bone; DN: dental bone; ECT: ectopterygoid bone; END: endopterygoid bone; HY: hyomandibular bone; IOP: interoperculum bone; MTP: metapterygoid bone; OP: operculum bone; OPJ: opercular joint bone; PCR: coronoideus processus bone; PO: opercular processus bone; POP: preoperculum bone; QD: quadratum bone; RA: retroarticular bone; SOP: suboperculum bone; SYM: symplectic bone. Scale bar: 0.5 cm.
Fig. 7 in Species authentication of Tor spp. (family Cyprinidae) in Indonesia based on osteocranium structure and biometric data
Fig. 7. The morphology of the infraorbital bone seen from the lateral view. A: T. tambroides; B: T. tambra; C: T. douronensis; and D: T. soro. IO 1: infraorbital bone 1st; IO 2: infraorbital bone 2nd; IO 3: infraorbital bone 3rd; IO 4: infraorbital bone 4th; IO 5: infraorbital bone 5th; IO 6: infraorbital bone 6th. Scale bar: 0.5 cm.
Fig. 5 in Species authentication of Tor spp. (family Cyprinidae) in Indonesia based on osteocranium structure and biometric data
Fig. 5. The morphology of the neurocranii bone seen from the ventral view. A: T. tambroides; B: T. tambra; C: T. douronensis; and D: T. soro. BO: basioccipital bone; ETL: lateral ethmoid bone; EXO: exoccipital bone; FR: frontal bone; FST: subtemparal foramen bone; OS: orbitosphenoid bone; PETL: lateral ethmoid processus bone; PM: masticatori processus bone; PPTR: pterotic processus bone; PRO: prootic bone; PS: parasphenoid bone; PSPL: lateral sphenotic processus bone; PTR: pterotic bone; PTS: pterosphenoid bone; SO: supraorbital bone; SP: sphenotic bone; VO: vomer bone. Scale bar: 1 cm.
Fig. 4 in Species authentication of Tor spp. (family Cyprinidae) in Indonesia based on osteocranium structure and biometric data
Fig. 4. The morphology of the neurocranii bone seen from the lateral view. A: T. tambroides; B: T. tambra; C: T. douronensis; and D: T. soro. BO: basioccipital bone; EPO: epiotic bone; EXO: exoccipital bone; FR: frontal bone; MET: mesethmoid bone; NAS: nasal bone; OS: orbitosphenoid bone; PET: preethmoid bone; PETL: lateral ethmoid processus bone; PM: masticatori processus bone; PR: pariental bone; PRO: prootic bone; PS: parasphenoid bone; PTR: pterotic bone; PTS: pterosphenoid bone; SO: supraorbital bone; VO: vomer bone. Scale bar: 1 cm.
Fig. 1 in Species authentication of Tor spp. (family Cyprinidae) in Indonesia based on osteocranium structure and biometric data
Fig. 1. Osteocranium schematic measurement of the Tor genus, where the measurement designations are described in Table 1.
Fig. 2. Fish samples from the Tor genus. A in Species authentication of Tor spp. (family Cyprinidae) in Indonesia based on osteocranium structure and biometric data
Fig. 2. Fish samples from the Tor genus. A: T. tambroides (Bleeker 1854), B: T. tambra (Valenciennes 1842), C: T. douronensis (Valenciennes 1842), and D: T. soro (Valenciennes 1842). Scale bar: 3 cm.
An Empirical Comparative Study of Convolutional Neural Network and Support Vector Machine in Digital Signature for Digital Document Authentication
<p>Dataset dan figure of the research</p>
From Satisfaction to Loyalty: User-perceived Security of Biometric-Based Authentication Methods
<p>While Indonesia has experienced an increase in e-payment systems, phishing attacks that result in the loss of PINs and other sensitive data remain a critical issue for users. Biometric authentication, which identifies individuals based on unique physical traits like fingerprints and facial recognition, is a promising alternative to mitigating these issues. This study explores the factors influencing user satisfaction and continuous use of biometric authentication mechanisms employed in e-payment applications, thereby filling a prominent void in user-centric studies related to this context. Using purposive sampling and structural equation modeling, data were collected from 285 respondents in Indonesia, consisting of biometric-authentication users aged 13 to over 54, between April and July 2024. Eight hypotheses were tested, examining privacy and security risks, system quality, trust, perceived usefulness, self-efficacy, satisfaction, and continuous use. The findings show that trust and perceived usefulness significantly impact satisfaction, which subsequently influences continuous usage. Additionally, system quality and self-efficacy are important factors shaping user perceptions and adoption behavior. The findings from this research provide key insights for e-payment developers, emphasizing the importance of designing systems with strong security, ease of use, and reliable performance to enhance satisfaction and trust. Biometric authentication has the potential to increase public confidence and adoption of biometric technologies, not only in e-payment systems but also in other areas such as e-health and e-commerce. This study lays the groundwork for future research on biometric technologies across broader locations and contexts.</p>
FIGURE Phylogenetic relationships of the Coelastrella genus inferred from the 18S-ITS1-5.8S-ITS2 region. The Neighbor-Joining (NJ), Maximum Likelihood (ML) bootstrap values and Bayesian posterior probabilities (PP) are presented at the nodes (NJ/ML/PP). Only values above 75 are shown. Strains provided in this study are indicated in bold font. Authentic strains marked with asterisks. The scale bar represents the number of substitutions per site. The GenBank accession numbers of Coelastrella can be found in the Table 3. in Morphological and phylogenetic relations of members of the genus Coelastrella (Scenedesmaceae, Chlorophyta) from the Ural and Khentii Mountains (Russia, Mongolia)
FIGURE Phylogenetic relationships of the Coelastrella genus inferred from the 18S-ITS1-5.8S-ITS2 region. The Neighbor-Joining (NJ), Maximum Likelihood (ML) bootstrap values and Bayesian posterior probabilities (PP) are presented at the nodes (NJ/ML/PP). Only values above 75 are shown. Strains provided in this study are indicated in bold font. Authentic strains marked with asterisks. The scale bar represents the number of substitutions per site. The GenBank accession numbers of Coelastrella can be found in the Table 3.
Distribution. Philippines (S Luzon, Catanduanes, Panay, Samar, Leyte, Negros, and Mindanao Is), Peninsular Malaysia, CW Sumatra, N & NW Borneo, Sulawesi, New Guinea and the Bismarck Archipelago (New Ireland and New Britain Is). A record from Java is erroneous, and a record from Bangka I does not appear to be authentic. Previous records from India (Sikkim) and C & E Nepal are misidentifications, now attributable to Joftre's Pipistrelle (Hypsugo joffrer). in Vespertilionidae
Distribution. Philippines (S Luzon, Catanduanes, Panay, Samar, Leyte, Negros, and Mindanao Is), Peninsular Malaysia, CW Sumatra, N & NW Borneo, Sulawesi, New Guinea and the Bismarck Archipelago (New Ireland and New Britain Is). A record from Java is erroneous, and a record from Bangka I does not appear to be authentic. Previous records from India (Sikkim) and C & E Nepal are misidentifications, now attributable to Joftre's Pipistrelle (Hypsugo joffrer).
FIGURE 5 in An authentic record of Eutropis bibronii (Gray, 1838) (Reptilia: Scincidae) from Sri Lanka
FIGURE 5. Sandy seashore habitat in Chundikulam National Park where Eutropis bibronii was observed in the present study.
FIGURE 2 in An authentic record of Eutropis bibronii (Gray, 1838) (Reptilia: Scincidae) from Sri Lanka
FIGURE 2. Diagnostic features of Eutropis bibronii specimen NMSL 2017.13.01NH, A: dorsal aspect of the head, B: lateral aspect of the head showing the transparent lower eye-lid, C: ventral aspect of head, D: ventral aspect of the right foot showing sub-digital lamellae.
FIGURE 1 in An authentic record of Eutropis bibronii (Gray, 1838) (Reptilia: Scincidae) from Sri Lanka
FIGURE 1. Eutropis bibronii specimen (NMSL 2017.13.01NH) recorded from Chundikulam National Park, Sri Lanka.
FIGURE 3 in An authentic record of Eutropis bibronii (Gray, 1838) (Reptilia: Scincidae) from Sri Lanka
FIGURE 3. Close-up of the dorsal body scales of Eutropis bibronii specimen NMSL 2017.13.01NH, showing five keels on each scale.
FIGURE 4 in An authentic record of Eutropis bibronii (Gray, 1838) (Reptilia: Scincidae) from Sri Lanka
FIGURE 4. The present collection locality of Eutropis bibronii (denoted by a red filled triangle) and the approximate locations of all the previous records of E. bibronii in Sri Lanka (denoted by filled circles). Elevation is given in meters above mean sea level.
Banknote Authentication based on Intaglio print
<p>The dataset comprises six image sections of one genuine and two counterfeit banknote-like specimens. The images were captured at 1200dpi and the sections are each 256x256 pixels in size. The genuine banknote specimen was produced with Intaglio printing and the counterfeits with offset printing processes of varying quality. There are 150 instances for each of the six image sections, with 50 samples of each of the three classes available, so in total almost 900 images are provided.</p> <p>When using this dataset under the CC BY 4.0 license, cite the following publication:</p> <p>J. Knaup, C.-A. Holst and V. Lohweg, "Hidden in Plain Sight: Adversarial Attack on Wavelet-Based Banknote Authentication," <em>2024 IEEE 8th Forum on Research and Technologies for Society and Industry Innovation (RTSI)</em>, Milano, Italy, 2024, pp. 560-565, doi: 10.1109/RTSI61910.2024.10761182.</p> <p>Link to publication: https://ieeexplore.ieee.org/document/10761182</p>
Emotional Intelligence and Authentic Leadership. A comparative study of university students in Chile, Spain, and Mexico.
<pre><span>Research database titled: </span><strong><span>Emotional Intelligence and Authentic Leadership. A comparative study of university students in Chile, Spain, and Mexico.</span></strong></pre> <pre></pre>
Lab_02_SOP - Concordant inter-laboratory derived concentrations of ceramides in human plasma reference materials via authentic standards
<h1>Lab_02_SOP - Concordant inter-laboratory derived concentrations of ceramides in human plasma reference materials via authentic standards - mzML files</h1> <p>This dataset is part of the <a href="https://doi.org/10.5281/zenodo.12632989" target="_blank" rel="noopener">ILS Ceramide Ring Trial</a>. The suffix 'SOP' indicates that the results were obtained using the recommended and standard operating procedure protocol to prepare and measure all samples, while the suffix 'OTHER' indicates that the corresponding lab prepared and measured the samples according to their own internal protocol. Please check the corresponding mapping file 'ILS-Ceramide-Ring-Trial-Datasets.csv' in the ILS Ceramide Ring Trial record for a mapping of the originally submitted lab reports and the final lab number as reported in the manuscript.</p> <p>All reports together with the code for analysis and visualization, reproducing the figures in the manuscript, are available under the following doi: <a href="../doi/10.5281/zenodo.10081970" target="_blank" rel="noopener">https://zenodo.org/doi/10.5281/zenodo.10081970</a>. This links to releases of the following GitHub repository: <a href="https://github.com/lifs-tools/ils-ceramide-ring-trial" target="_blank" rel="noopener">https://github.com/lifs-tools/ils-ceramide-ring-trial</a>. The archived version of the lab reports, workflow source code and manuscript visualizations are also available <a href="../doi/10.5281/zenodo.10081970" target="_blank" rel="noopener">here</a>.</p> <p>Please note that most datasets have been acquired in MRM mode, such that the msconvert conversion to mzML has stored the MRM data in the chromatogram part of the mzML files.</p> <p>The msconvert Docker container (Proteowizard release: 3.0.24172 (63d00b1), build date Jun 202 2024 20:01:14) was used with the native vendor libraries / peak picking for conversion, using default arguments. m/z values were encoded with 64 bit (default), while intensity values were encoded with 32 bit (default). All binary data was zlib-compressed.</p>
Lab_32_SOP - Concordant inter-laboratory derived concentrations of ceramides in human plasma reference materials via authentic standards
<h1>Lab_32_SOP - Concordant inter-laboratory derived concentrations of ceramides in human plasma reference materials via authentic standards - mzML files</h1><p>This dataset is part of the <a href="https://doi.org/10.5281/zenodo.12632989" target="_blank">ILS Ceramide Ring Trial</a>. The suffix 'SOP' indicates that the results were obtained using the recommended and standard operating procedure protocol to prepare and measure all samples, while the suffix 'OTHER' indicates that the corresponding lab prepared and measured the samples according to their own internal protocol. Please check the corresponding mapping file 'ILS-Ceramide-Ring-Trial-Datasets.csv' in the ILS Ceramide Ring Trial record for a mapping of the originally submitted lab reports and the final lab number as reported in the manuscript.</p><p>All reports together with the code for analysis and visualization, reproducing the figures in the manuscript, are available under the following doi: <a href="https://zenodo.org/doi/10.5281/zenodo.10081970" target="_blank">https://zenodo.org/doi/10.5281/zenodo.10081970</a>. This links to releases of the following GitHub repository: <a href="https://github.com/lifs-tools/ils-ceramide-ring-trial" target="_blank">https://github.com/lifs-tools/ils-ceramide-ring-trial</a>. The archived version of the lab reports, workflow source code and manuscript visualizations are also available <a href="https://zenodo.org/doi/10.5281/zenodo.10081970" target="_blank">here</a>.</p><p>Please note that most datasets have been acquired in MRM mode, such that the msconvert conversion to mzML has stored the MRM data in the chromatogram part of the mzML files.</p> <p>The msconvert Docker container (Proteowizard release: 3.0.24172 (63d00b1), build date Jun 202 2024 20:01:14) was used with the native vendor libraries / peak picking for conversion, using default arguments. m/z values were encoded with 64 bit (default), while intensity values were encoded with 32 bit (default). All binary data was zlib-compressed.</p>
ADVIO: An Authentic Dataset for Visual-Inertial Odometry
<p><strong>Data abstract:</strong><br> This Zenodo upload contains the ADVIO data for benchmarking and developing visual-inertial odometry methods. The data documentation is available on Github: <a href="https://github.com/AaltoVision/ADVIO">https://github.com/AaltoVision/ADVIO</a></p> <p><strong>Paper abstract:</strong><br> The lack of realistic and open benchmarking datasets for pedestrian visual-inertial odometry has made it hard to pinpoint differences in published methods. Existing datasets either lack a full six degree-of-freedom ground-truth or are limited to small spaces with optical tracking systems. We take advantage of advances in pure inertial navigation, and develop a set of versatile and challenging real-world computer vision benchmark sets for visual-inertial odometry. For this purpose, we have built a test rig equipped with an iPhone, a Google Pixel Android phone, and a Google Tango device. We provide a wide range of raw sensor data that is accessible on almost any modern-day smartphone together with a high-quality ground-truth track. We also compare resulting visual-inertial tracks from Google Tango, ARCore, and Apple ARKit with two recent methods published in academic forums. The data sets cover both indoor and outdoor cases, with stairs, escalators, elevators, office environments, a shopping mall, and metro station.</p> <p><strong>Attribution:</strong><br> If you use this data set in your own work, please cite this paper:</p> <ul> <li>Santiago Cortés, Arno Solin, Esa Rahtu, and Juho Kannala (2018). <em>ADVIO: An authentic dataset for visual-inertial odometry</em>. In European Conference on Computer Vision (ECCV). Munich, Germany.</li> </ul>
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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)
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.