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274 results for “CV”
250MBaud Gaussian CV-QKD in coexistence with 8x200G PM-16QAM
<p>This dataset comprises the simulation data of the VPItoolkit™ QKD application example "250MBaud Gaussian CV-QKD in coexistence with 8x200G PM-16QAM". This demonstrates the possibility of coexisting Gaussian CV-QKD and two times four classical channels. The classical channels (32 GBaud) are simulated with 8 samples per symbol. The modulation variance is swept to illustrate how excess noise and secret fraction depend on the modulation variance.</p>
Spectral and Chemical Dataset for Ripeness Monitoring in cv. Tempranillo Grapes Using a Multispectral Sensor
<p><strong><span>The dataset consists of 1010 samples of Tempranillo grape berries, offering a comprehensive record of spectral and chemical measurements that serve as a valuable resource for evaluating berry ripeness and sugar content (ºBrix). Each row in the dataset corresponds to a single berry, and the columns include a unique identifier (ID), the date of sampling (spanning 21 different days during the ripening period in 2024), expressed as Day of the Year (DOY) from DOY 210 to DOY 284. The dataset also includes measurements for nine spectral bands which represent the reflectance values recorded by the sensor (F1–F8 and NIR), a dedicated channel to detect ambient light flicker (CLEAR), and the sugar content (</span><span>°Bx</span><span>), ranging from 4.8 to 45 </span><span>°Bx</span><span>, encompassing all maturity stages from early ripeness to over-ripeness. The dataset is structured so that rows correspond to individual berries, and columns represent the measured variables, enabling statistical and machine learning analyses</span></strong></p> <p><strong><span>Center wavelength (λp) (F1: 415 nm, F2: 445 nm, F3: 480nm, F4: 515nm, F5: 555nm, F6: 590nm, F7: 630nm, F8: 680nm)</span></strong></p>
Forcing vine regrowth in vitis vinifera cv. touriga nacional at Douro region (datasets)
<p>Datasets related to the trials performed during 2018 and 2019 in Douro Superior sub-region on 'Touriga Nacional’ grape, at Quinta do Ataide on Tou, in the course of the VISCA project. This data was used to the prepare the article with the DOI 10.5281/zenodo.3568194 (Forcing vine regrowth in vitis vinifera cv. touriga nacional at Douro region). For each year (2018 and 2019), it includes data on : fertility; harvested quantity; Maturation; ProDrawn leaf water potential quantity.</p> <p>The same data was also used for the article "EFEITO DA INTERVENÇÃO EM VERDE CROP FROCING NA CASTA TOURIGA NACIONAL", DOI 10.5281/zenodo.3686023</p> <p>These datasets are provided as part of the open access policy of VISCA project which is participating to the Open Research Data Pilot (ORDP) initiated in H2020, in particular for data used in scientific publications issued during the lifetime of the project.</p>
Building block code of a CV-QKD layout design
<p>Building blocks (splitters, variable attenuators, balanced photodetectors and asymmetric MZI) of a continuous variable (CV) quantum key distribution (QKD) transmitter</p>
Data for: The CD4 transmembrane GGXXG and juxtamembrane (C/F)CV+C motifs mediate pMHCII-specific signaling independently of CD4-Lck interactions
<p>We previously reported that the transmembrane GGXXG motif co-arose with the cytoplasmic juxtamembrane (C/F)CV+C motif in eutherian (placental mammal) CD4 and that constituent residues therein evolve under purifying selection (Lee, et al., 2022). These data led us to discover that mutating these motifs together increased CD4-Lck association but reduced CD3z, Zap70, and Plcg1 phosphorylation levels as well as IL-2 production. Because these mutants preferentially localized CD4-Lck pairs to non-membrane raft fractions, one potential explanation for our results was that they impaired proximal signaling by sequestering Lck away from TCR-CD3. An alternative hypothesis is that the mutations directly impacted TCR-CD3 signaling because the wild type motifs play a Lck-independent role in signaling. Here we used a reductionist approach to discriminate between these possibilities (Lee, et al., 2023). Our current data lead us to conclude that: intracellular CD4-Lck interactions are not necessary for pMHCII-specific signal initiation; the GGXXG and (C/F)CV+C motifs are key determinants of CD4-mediated pMHCII-specific signal amplification; the GGXXG and (C/F)CV+C motifs exert their functions independently of direct CD4-Lck association. These data provide a mechanistic explanation for why residues within these motifs are under purifying selection. The results are also important to consider for biomimetic engineering of synthetic receptors.</p>
Figure 2 in A Seinhorst Model Determined the Host-Parasite Relationships of Meloidogyne javanica Infecting Fenugreek cv. UM202
Figure 2: Effect of increasing nematode population densities (from 0.125 on the left to 128 J2s g-1 soil on the right) of M. javanica on the growth of fenugreek cv. UM-202, showing a reduction in plant growth. Symptoms of nematode attack (a marked reduction of plant growth) were evident at the P level of 8 J2s g-1 soil. However, the tolerance limits (T) of fenugreek plant shoot length i were 1.3 J2s g-1 soil.
Figure 3 in A Seinhorst Model Determined the Host-Parasite Relationships of Meloidogyne javanica Infecting Fenugreek cv. UM202
Figure 3: Relationship between initial population densities (Pi) of M. javanica and relative shoot length (A) and relative shoot dry weights (B) of fenugreek cv. UM-202, grown in pots under glasshouse conditions for 90 days. Each point represents the average of four replicated plants. Lines represent the predicted function calculated by fitting the Seinhorst model to data using the SeinFit program. Statistics for fitted models of shoot length and shoot dry weight were R2 = 0.90, sum of squares (SS) = 0.12; and R2 = 0.92, SS = 0.072, respectively.
Figure 1 in A Seinhorst Model Determined the Host-Parasite Relationships of Meloidogyne javanica Infecting Fenugreek cv. UM202
Figure 1: Scanning electron microscopy (SEM) images of the perineal pattern of M. javanica, which show a rounded to flattened dorsal arch and conspicuous lateral lines that separate the dorsal and ventral regions of the patterns. (A) A close view of the distinct lateral line in a perineal pattern distinguishes this species from other Meloidogyne spp. (B) An inner area was marked by coarsely broken striae and contained the vulva and anus.
Figure 1 in Effects of Indole-3-Butyric Acid (IBA) and rooting media on rooting and survival of air layered wax apple (Syzygium samarangense) CV Jambu Madu
Figure 1. Effects of different rooting media and various concentrations of IBA on the rooting of wax apple air layers. M C: Sphagnum 1 0 moss (wet) + IBA 0 mg L-1, M C: Vermicompost + IBA 0 mg L-1, M C: Garden soil + IBA 0 mg L-1, M C: Sphagnum moss (wet) + 2 0 3 0 1 1 IBA 1000 mg L-1, M C: Vermicompost + IBA 1000 mg L-1, M C: Garden soil + IBA 1000 mg L-1, M C: Sphagnum moss (wet) + IBA 2 1 3 1 1 2 1500 mg L-1, M C: Vermicompost + IBA 1500 mg L-1, M C: Garden soil + IBA 1500 mg L-1, M C: Sphagnum moss (wet) + IBA 2000 mg 2 2 3 2 1 3 L-1, M C : Vermicompost + IBA 2000 mg L-1 and M C : Garden soil + IBA 2000 mg L-1.
Figure 3 in Effects of Indole-3-Butyric Acid (IBA) and rooting media on rooting and survival of air layered wax apple (Syzygium samarangense) CV Jambu Madu
Figure 3. Survival rate of air layers (%) of wax apple as affected by different concentrations of IBA and growing media after detaching from mother plants. M C: Sphagnum moss (wet) + IBA 1000 mg L-1, M C: Vermicompost + IBA 1000 mg L-1, M C: Garden soil + IBA 1 1 2 1 3 1 1000 mg L-1, M C: Sphagnum moss (wet) + IBA 1500 mg L-1, M C: Vermicompost + IBA 1500 mg L-1, M C: Garden soil + IBA 1500 mg L-1, 1 2 2 2 3 2 M C : Sphagnum moss (wet) + IBA 2000 mg L-1, M C : Vermicompost + IBA 2000 mg L-1 and M C : Garden soil + IBA 2000 mg L-1.
Figure 2 in Effects of Indole-3-Butyric Acid (IBA) and rooting media on rooting and survival of air layered wax apple (Syzygium samarangense) CV Jambu Madu
Figure 2. Effects of IBA hormones and different rooting media on the survivability of rate of wax apple air layered. M 1 C 0: Sphagnum moss (wet) + IBA 0 mg L-1, M C: Vermicompost + IBA 0 mg L-1, M C: Garden soil + IBA 0 mg L-1, M C: Sphagnum moss (wet) + IBA 2 0 3 0 1 1 1000 mg L-1, M C: Vermicompost + IBA 1000 mg L-1, M C: Garden soil + IBA 1000 mg L-1, M C: Sphagnum moss (wet) + IBA 1500 mg L-1, 2 1 3 1 1 2 M C: Vermicompost + IBA 1500 mg L-1, M C: Garden soil + IBA 1500 mg L-1, M C: Sphagnum moss (wet) + IBA 2000 mg L-1, M C: 2 2 3 2 1 3 2 3 Vermicompost + IBA 2000 mg L-1 and M C: Garden soil + IBA 2000 mg L-1. Bars represent means (n = 7) ± standard error (S.E.). a, b, and 3 3 c indicate significant differences within each growth period (p <0.05).
BRAIN Journal-Novel Detection Features for SSVEP Based BCI: Coefficient of Variation and Variation Speed-Figure 5. SSVEP detection accuracies by using PSD, CV and VS features
<p>When the results in Figure 5 are analyzed, it is seen that CV and VS features provide detection results similar to PSD, which is a familiar feature. Considering that the chance level is 12.5% in these dataset, CV and VS can be used as discriminative features for SSVEP. Also on some subjects, like S3 on 1st and 4th datasets, and S11 on 1st, 2nd and 4th datasets, the proposed features have given clearly better detection results than PSD.</p>
Fig. 4 in First record of Atherigona reversura Villeneuve (Diptera: Muscidae) feeding on Bermudagrass (Cynodon dactylon cv. Jiggs, Poaceae) in Brazil: morphological and molecular tools for identification
Fig. 4. Analysis using Bayesian posterior probabilities (values shown) using 10 COI sequences for seven species of Atherigona and Cyrtoneuropsis veniseta.
Fig. 3 in First record of Atherigona reversura Villeneuve (Diptera: Muscidae) feeding on Bermudagrass (Cynodon dactylon cv. Jiggs, Poaceae) in Brazil: morphological and molecular tools for identification
Fig. 3. Atherigona (Atherigona) reversura: (A) trifoliate process, dorsal view; (B) trifoliate process, lateral view; (C) hypopygial prominence, lateral view.
Long-read, chromosome-scale assembly of Vitis rotundifolia cv. Carlos and its unique resistance to Xylella fastidiosa subsp. fastidiosa.
<p>We assembled and annotated a new, long-read genome assembly for ‘Carlos’, a cultivar of muscadine that exhibits tolerance, to build upon the existing genetic resources available for muscadine. We are awaiting release of the genome through NCBI, so we have made the assembly and annotations available here.</p>
Datasets related to agroinoculation and transmission experiments with Tomato Leaf Curl New Delhi Virus Spain Strain between zucchini cv. Milenio and Ecballium elaterium plants by Trialeurodes vaporariorum and Bemisia tabaci MED whiteflies
<p>These datasets support the data provided directly in the scientific publication titled "Tomato Leaf Curl New Delhi Virus Spain Strain Is Not Transmitted by Trialeurodes vaporariorum and Is Inefficiently Transmitted by Bemisia tabaci Mediterranean between Zucchini and the Wild Cucurbit Ecballium elaterium", published in the <a href="https://www.mdpi.com/2075-4450/14/4/384">Insects journal</a>. </p> <p>The figure included in the datasets highlights agroinoculation experiments with tomato leaf curl New Delhi virus Spain strain using different source plant–target plant–whitefly species combinations. ToLCNDV (DNA-A and DNA-B) was detected by molecular hybridization after tissue printing on nylon membranes using specific digoxigenin-labelled DNA probes for each viral component. (<strong>A</strong>) Prints of zucchini plants inoculated using Trialeurodes vaporariorum (T. v.) or Bemisia tabaci MED (B. t.) as a vector and infected zucchini plants as the virus source. (<strong>B</strong>) Prints of Ecballium elaterium plants using B. t. as a vector and infected zucchini plants as the virus source. (<strong>C</strong>) Prints of zucchini plants using B. t. as a vector and infected E. elaterium plants as the virus source. Blots from one of the two independent experiments (Experiment 1 in the Table) carried out for each source plant–target plant–whitefly species combination are shown. Prints of ToLCNDV-infected zucchini plants included as positive controls are outlined with red squares.</p> <p>The table included in the datasets show the results of transmission experiments of tomato leaf curl New Delhi virus Spain strain between zucchini cv. Milenio and Ecballium elaterium plants by Trialeurodes vaporariorum and Bemisia tabaci MED. Infection was determined by tissue-printing and molecular hybridization with digoxigenin-labelled ToLCNDV DNA-A and DNA-B probes. Blots from experiment (Exp.) 1 of each source plant–target plant–whitefly species combination are shown in the Figure.</p> <p>The provided datasets are further discussed and interpreted in detail, as well as their subsequent results, in the scientific publication.</p> <p>This research was conducted within the VIRTIGATION project, which is part of the EU Open Research Data pilot. This project has received funding from the European Union’s Horizon 2020 research and innovation program under grant agreement No. 101000570.</p>
KEGG Orthology annotation of Avena sativa (cv. Sang) proteins
<p>KofamScan v1.3.0 was used to assign KEGG Orthologs (KOs) to the <em>Avena sativa</em> (cv. Sang) proteins.</p> <p>exec_annotation Asativa_sang.v1.1.aa.fa -o Asativa_sang.v1.1.aa.ko.txt --profile profiles/eukaryote.hal --ko-list ko_list</p> <p>The Oat proteins (Asativa_sang.v1.1.aa.fa) were downloaded from https://doi.org/10.5447/ipk/2022/2<br> The KOfam database was downloaded from https://www.genome.jp/ftp/db/kofam/archives/2021-12-01/</p>
Ranunculus cf. trilobus Desf. cv. (BR0000014459016)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Populus x jackii cv. gileadensis (BR0000005340958)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Study of Japanese Encephalitis Chimeric Virus Vaccine (JE-CV) in Children Previously Immunized With JE-CV
ClinicalTrials.gov study NCT01190228. IPD Sharing: YES. Countries: 1. Publications: 1.
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.