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715 results for “Varieties”
FIGURE A4-1 in Morphospace dynamics and intraspecies variety of Sorex araneus and S. tundrensis according to recent and fossil data
FIGURE A4-1. Result of principal component analyses based on the m1 shape. The tooth data represented as three repetition of four samples within space of PC1 and PC2: SeV, SeF, SeH and PtU.
FIGURE 7 in Morphospace dynamics and intraspecies variety of Sorex araneus and S. tundrensis according to recent and fossil data
FIGURE 7. Result of regression analyses and the normality test of two linear characters, aLML and MRH. A, Fitting data (aLML vs MRH; n = 138) to a von Bertalanffy growth model. B, aLML values distribution histogram with a gap marking between two subsamples. C, Visual combination of the result of four separate regression analyses: line d1, von Bertalanffy (n = 138); d2 line, bivariate linear regression (BLR; S. tundrensis, n = 20); d3 line, BLR (PtU, n = 56); d4 line, BLR (Serov, n = 45). D, The regression line parameters, d1–d4. Key: a, line of Gaussian distribution; b, gap, detected by the W-test; c, an overlapping zone, calculated by the predicted values (μ ± 2σ); PtU (1063), re-defined specimen (from S. araneus to S. tundrensis).
FIGURE 10 in Morphospace dynamics and intraspecies variety of Sorex araneus and S. tundrensis according to recent and fossil data
FIGURE 10. Combined plot of three-dimensional landmarks data set of m1 (A), visualization of two first axes of PCA (phylomorphospace) performed on three-dimensional data set of the m1 shape with phylogenetic projection (B), molecular phylogeny (concatenated tree based on seven mitochondrial and nuclear genes; source: Bannikova et al., 2018; see Appendix 6), displaying the estimated phylogenetic relationships among Sorex species (C), and visualization of the shape changes between S. tundrensis (upper teeth, red points) (D) and S. araneus (lower teeth, blue points) (E). A, m1 in subocclusal (upper) and subapical (bottom) views with landmarks position (Appendix 3: Table A3-3). B, Phylomorphospace of 7 soricine species (six Sorex, ingroup; Neomys outgroup). C, Phylogenetic tree. D1(E1), Shape transformation in the apical view. D2 (E2), Shape transformation in the lingual view. D3(E3), Shape transformation in the posterior view. Key: i, elongation of the tooth crown base in S. tundrensis; ii, narrowing the crown base in S. tundrensis; iii, posterior shifting of the paraconid of S. tundrensis; iv, swallowing the protocristid notch of S. tundrensis; v, shortening of the hypolophid of S. tundrensis. D, E unscaled.
FIGURE A3-3 in Morphospace dynamics and intraspecies variety of Sorex araneus and S. tundrensis according to recent and fossil data
FIGURE A3-3. Key points of the m1 alignment into 'Functional View.' A, Reference image that prepared before a mass processing of the images (is opening during the image processing within a separate window for collation). B, Four key points that help m1 alignment: overall view of the paraconid and the anterior edge of m1; the functional view of the protoconid, i.e. the pre- and postprotocristid external edges hide a buccal surface of the trigonid; a view of the oblique cristid contact in manner of two planes as shown in C; and a shape (narrow triangle) of the posterobuccal surface of the talonid. D, m1 conids. Abbreviations: a, b — planes of oblique cristid and the trigonid posterior border.
Figure 4 in Growth curve of Nile tilapia from different families of the AquaAmérica variety
Figure 4. Growth curve for torso length (cm) as a function of age (days) in three contrasting families (Family AA1, Family AA9 and Family AA14) of Nile tilapia (Oreochromis niloticus) AquaAmérica variety.
Figure 2 in Growth curve of Nile tilapia from different families of the AquaAmérica variety
Figure 2. Growth curve for total length (cm) as a function of age (days) in three contrasting families (Family AA1, Family AA9 and Family AA14) of Nile tilapia (Oreochromis niloticus) AquaAmérica variety.
Figure 3 in Growth curve of Nile tilapia from different families of the AquaAmérica variety
Figure 3. Growth curve for standard length (cm) as a function of age (days) in three contrasting families (Family AA1, Family AA9 and Family AA14) of Nile tilapia (Oreochromis niloticus) AquaAmérica variety.
Figure 5 in Growth curve of Nile tilapia from different families of the AquaAmérica variety
Figure 5. Growth curve for body width (cm) as a function of age (days) in three contrasting families (Family AA1, Family AA9 and Family AA14) of Nile tilapia (Oreochromis niloticus) AquaAmérica variety.
Figure 2 in Evaluation of some nutritional quality criteria of seventeen Moroccan dates varieties and clones, fruits of date palm (Phoenix dactylifera L.)
Figure 2. Representation of dates varieties and clones according to their quality characteristics. (a) Representation of variables according to PCA. (b) Segregation of 17 dates varieties and clones according to their quality attributes.
Tradeoffs between the use of improved varieties and agrobiodiversity conservation in the Sahel
<p>This folder includes the data source and do-files used for writing the paper entitled "Tradeoffs between the use of improved varieties and agrobiodiversity conservation in the Sahel".</p>
Рис. 2. СреΑнее процентное соΑержание в гастроΛитах гусей основных грануΛометрических фракций зерен (сΛева) и их минераΛьных разновиΑностей (справа) Fig. 2. Average percentage of the main granulometric fractions of grains (left) and their mineral varieties (right) in goose gastroliths in The mineral composition of gastroliths in the stomachs of Anatidae in Primorsky Region and the importance of silicon minerals in the physiology of birds
Рис. 2. СреΑнее процентное соΑержание в гастроΛитах гусей основных грануΛометрических фракций зерен (сΛева) и их минераΛьных разновиΑностей (справа) Fig. 2. Average percentage of the main granulometric fractions of grains (left) and their mineral varieties (right) in goose gastroliths
Fig. 1 in Can the choice behavior and fitness of Tamarixia radiata (Hymenoptera: Eulophidae) be affected by the citrus (Sapindales: Rutaceae) variety used to rear the Asian citrus psyllid (Hemiptera: Liviidae)?
Fig. 1. Mean percentage (± SE) of parasitism of Tamarixia radiata on nymphs of Diaphorina citri reared on 4 citrus varieties. Means do not differ by Tukey's test (P> 0.05).
Fig. 2 in Resistance of rice varieties to Sitophilus oryzae (Coleoptera: Curculionidae)
Fig. 2. Correlaton between the percentage of grains with fissures in the shell and mass of grain consumed by Sitophilus oryzae (Coleoptera: Curculionidae) in 22 rice varietes. 1-Aimoré; 2-Araguaia; 3-BonanÇa; 4-CabaÇu; 5-Caripuna; 6-Carisma; 7-Centro América; 8-ConfianÇa; 9-Curinga; 10-Esmeralda; 11-IRGA 22; 12-Monarca; 13-Pepita; 14-Progresso; 15-Rio Paraguai; 16-Rio Paranaíba; 17-Rio Verde; 18-Sertaneja; 19-Soberana; 20-Tangará; 21-Vencedora; 22-Xingu.
Fig. 1 in Resistance of rice varieties to Sitophilus oryzae (Coleoptera: Curculionidae)
Fig. 1. Preference index of feeding by Sitophilus oryzae (Coleoptera: Curculionidae) on 22 rice varietes.
High-resolution glomerular responses to a large variety of odorants in the mouse olfactory bulb
<p>Imaging of glomerular responses using intrinsic optical signal and synaptopHluorin. </p> <p>Find the software here: <a href="https://doi.org/10.5281/zenodo.3383874">https://doi.org/10.5281/zenodo.3383874</a></p> <p>The paper is here: </p> <p>Soelter, J., Schumacher, J., Spors, H., Schmuker, M.: Computational exploration of molecular receptive fields in the olfactory bulb reveals a glomerulus-centric chemical map. <em>Sci Rep</em> 10, 77 (2020). <a href="https://doi.org/10.1038/s41598-019-56863-4">https://doi.org/10.1038/s41598-019-56863-4</a></p>
Bodhgayā, Bihār. Quartz, variety rock crystal, small fragments.
<p>Bodhgayā, Bihār. Quartz, variety rock crystal, small fragments. British Museum 1892,1103.54 presented by Alexander Cunningham.</p>
Fig. 4 in Standard method for detecting Bombyx mori nucleopolyhedrovirus disease-resistant silkworm varieties
Fig. 4. IIM for placing silkworms on mulberry leaves. (A) One larva was placed on each leaf. (B) The larva eating the leaf. (C) The leaf after being eaten by the silkworm.
Fig. 3 in Standard method for detecting Bombyx mori nucleopolyhedrovirus disease-resistant silkworm varieties
Fig. 3. GIM for placing silkworms on mulberry leaves. (A) The leaves were arranged in the box after smearing them with BmNPV, and then they were air dried. (B) Five larvae were placed on each leaf. (C) The leaves after being eaten by the silkworms.
Figure 1 in Performance of Anastrepha fraterculus (Wiedemann) (Diptera: Tephritidae) rearing on fruits of two guava varieties under forced infestation
Figure 1. Infestation parameters of Anastrepha fraterculus in guavas "Tailandesa" (red pulp) and "Kumagai" (white pulp). Bars with different letters indicate significant differences by Student´s t-test (P <0.05).
Figure 4 in Performance of Anastrepha fraterculus (Wiedemann) (Diptera: Tephritidae) rearing on fruits of two guava varieties under forced infestation
Figure 4. Plots of the principal component analysis of physical and physicochemical profile data for two guavas. PC1/PC2 scores () and loadings plot () accounted for 100.00% of the total variation. Samples: Red pulp ("Tailandesa" guava), White pulp ("Kumagai" guava). Trait abbreviations: pupae per fruit [PPF], pupal weight [PW], pupae per kg [PPK], pupal viability [PV], luminosity peel [LPE], a* peel [APE], b* peel [BPE], angle Hue peel [HPE], chromaticity peel [CPE], luminosity pulp [LPU], a* pulp [APU], b* pulp [BPU], angle Hue pulp [HPU], chromaticity pulp [CPU], peel firmness [PEF], pulp firmness [PUF], pH [PH], titratable acidity [TA], soluble solids [SS], ratio [RAT].
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.