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1 tifying the lateral edges of the convex data scatter plot.
2 at can be calculated for any two-dimensional scatter plot.
3  and ordinary least-squares regression (OLS) scatter plot.
4  fitted line beyond the observed data in any scatter plot.
5 th widefield imaging were mapped on a radial scatter plot.
6 ut groups of genes can be highlighted on the scatter plots.
7 and 97 %), lower value of standard error and scattered plot.
8                                              Scatter plot analysis, literature reviews and expert con
9                                    Phenotype scatter-plot analysis and cluster analysis were used for
10 relevant regions of density in the eta-theta scatter plot and then nucleotides in colocalized cluster
11 genes, (iii) correlation coefficients in the scatter plots and (iv) distributions of gene function.
12         Additional information obtained from scatter plots and angular distance maps, showing variati
13 tware also offers graphical features such as scatter plots and bar charts to depict signal repartitio
14                                          The scatter plots and Bland-Altman plots showed systematic d
15 here in a more complete statistical form, as scatter plots and distributions, to reveal the full rang
16                                              Scatter plots and histograms of molecular step sizes ind
17 rameters and pachymetry were evaluated using scatter plots and the Spearman correlation coefficient w
18 tween SES indicators and the TCS by means of scatter-plots and Spearman's rank correlation coefficien
19 inement of these lists using two-dimensional scatter plots, and dissection into cliques of co-regulat
20         Reduced-dimension or spatial in situ scatter plots are widely employed in bioinformatics pape
21 atasets using principal coordinate analyses, scatter plots, bar plots, hierarchal clustering and heat
22 04, the root mean square error of 0.02 and a scattered plot between experimental and predicted values
23  R package that creates easily interpretable scatter plots by redundant coding of cell groups using c
24            A comparison of three-dimensional scatter plots comprised of the detected ions, their rela
25 and in a pixel-based manner using dual-color scatter plots followed by the calculation of Pearson's c
26                             In addition, the scatter plots for radial droplets possess a characterist
27  subtracted, re-scaled, error-barred, and/or scatter-plotted from individual spectral segment centroi
28 ntion revealed that the vast majority of the scatter plots have a similar, ellipsoid shape.
29        The data are presented in interactive scatter plots, heatmaps, time series and Venn diagrams.
30 sualizations such as line charts, box plots, scatter plots, histograms and volcano plots.
31 and directly manipulated in images, reports, scatter plots, histograms, expression profile plots and
32 limited text), and dendrogram, heat map, and scatter plot images can be saved in several different fo
33                            Signal ratios and scatter plots indicated that the chromosomes were very s
34 a three-dimensional visualizations including scatter plot matrices, distribution plots, dendrograms,
35                                 A 4-quadrant scatter plot of Dice similarity versus tumor coverage wa
36                                            A scatter plot of morning versus nighttime flows also supp
37 nds in the data set could be visualized by a scatter plot of the two Gompertz parameters (rate consta
38                                              Scatter plots of C-peptide and quantiles for ln(C-peptid
39                                              Scatter plots of fold increase in current against basal
40 ages, time intervals between detections, and scatter plots of peak frequency, RMS, and peak-to-peak r
41 tensive set of moderators, funnel plots, and scatter plots of physical activity amount were examined.
42 livan and his colleagues were digitized from scatter plots of seven different indicators versus a com
43 y volunteers were well differentiated in the scatter plots of spatial coherence and temporal periodic
44                                              Scatter plots of TD-CRDS and SMPS data correlated (r(2)
45  Data were compiled from comparable studies, scatter plots of the data were created, and third-order
46 with and without changes in expression, (ii) scatter plots of the genes, (iii) correlation coefficien
47 f proteins is displayed on a two-dimensional scatter-plot, organized according to the order of genes
48                                              Scatter plots revealed a positive linear correlation of
49  data into two-dimensional row space-derived scatter plots (row space plots) eliminates the need to m
50 dsorbates generate distinct changes in light scattering plots (side versus forward scattering).
51 ata, the software produces three-dimensional scatter plots similar in concept to Sewall Wright and Jo
52 on data sets, we use cyclic-locally weighted scatter plot smoothing (LOWESS) and linear regression no
53                   The UNCLES method, the M-N scatter plots technique, and the expression data synthes
54  differential log-hazard ratio, the survival scatter plot, the hazard ratio receiver operating charac
55                          Here we introduce a scatter plot tool (AAScatterPlot) that easily shows the
56                             Alternatively, a Scatter Plot tool displays the correlation coefficients
57 ogy in sets of genes identified using CF and Scatter Plot tools allows inferences to be made about th
58  best-fitting line through a two-dimensional scatter plot typically requires the user to assume that
59                                     However, scatter plots using the Bland and Altman methodology ill
60                      We also propose the M-N scatter plots validation technique and adopt it to set t
61 uated based on graphical plotting, including scatter plot, violin plot, box plot and Taylor diagram.
62                                              Scatter plots were constructed to investigate correlatio
63   Also, Pearson correlation coefficients and scatter plots were used to assess the correlation betwee
64                                          The scatter plots were utilized to depict the prevalence of
65              In the randomized study, the EI scatter plots were visibly separated for the low- and hi
66 rHatch plots are more accessible than simple scatter plots when simulated for various types of CVDs.
67 possible, e.g., by replacing bar graphs with scatter plots wherever feasible and violin or box-and-wh
68 genes against two user-selected queries on a scatter plot which can be useful for visual identificati
69 ts individual cells in a visual similar to a scatter plot, while using all pairwise distances in high
70  lipid structures only, and a lipid category scatter plot with color blind friendly pallet.
71 es based on ontology classes, and displays a scatter plot with two proposed new bibliometric statisti