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Image Search Results
Journal: bioRxiv
Article Title: MVPAlab: A Machine Learning decoding toolbox for multidimensional electroencephalography data
doi: 10.1101/2021.06.24.449693
Figure Lengend Snippet: (a) Initial view. (b) Analysis configuration view. (c) Plot utility view. (d) MATLAB command window.
Article Snippet: The
Techniques:
Journal: Sensors (Basel, Switzerland)
Article Title: Affective Colormap Design for Accurate Visual Comprehension in Industrial Tomography
doi: 10.3390/s21144766
Figure Lengend Snippet: The 11 colormaps we studied with their hues and lightness characteristics, followed by each colormap’s underlying design strategy .
Article Snippet: Second, we chose
Techniques:
Journal: Sensors (Basel, Switzerland)
Article Title: Affective Colormap Design for Accurate Visual Comprehension in Industrial Tomography
doi: 10.3390/s21144766
Figure Lengend Snippet: Top-down image processing pipeline (arrow): Each of the 11 colormaps (1st row) is applied to the same MWT image resulting in a new image (2nd row) and yielding corresponding segmented images (3rd row). Due to limited space, we randomly chose one MWT image from our total of eight. The goal of segmentation was to visualize the blue parts in the colormap parula .
Article Snippet: Second, we chose
Techniques:
Journal: Sensors (Basel, Switzerland)
Article Title: Affective Colormap Design for Accurate Visual Comprehension in Industrial Tomography
doi: 10.3390/s21144766
Figure Lengend Snippet: The quantitative evaluation of the 11 colormaps over 8 samples . The first subfigure: Jaccard index (the higher value, the better performance); Middle subfigure: Dice coefficient (the higher value, the better performance); Third subfigure: false positive (the lower value, the better performance).
Article Snippet: Second, we chose
Techniques:
Journal: Sensors (Basel, Switzerland)
Article Title: Affective Colormap Design for Accurate Visual Comprehension in Industrial Tomography
doi: 10.3390/s21144766
Figure Lengend Snippet: The specification of the user study carried out, including the stimuli and the anticipated results.
Article Snippet: Second, we chose
Techniques:
Journal: Sensors (Basel, Switzerland)
Article Title: Affective Colormap Design for Accurate Visual Comprehension in Industrial Tomography
doi: 10.3390/s21144766
Figure Lengend Snippet: The individual distribution of the affect for the 11 colormaps in the dimension of valence.
Article Snippet: Second, we chose
Techniques:
Journal: Sensors (Basel, Switzerland)
Article Title: Affective Colormap Design for Accurate Visual Comprehension in Industrial Tomography
doi: 10.3390/s21144766
Figure Lengend Snippet: The individual distribution of the affect for the 11 colormaps in the dimension of arousal.
Article Snippet: Second, we chose
Techniques:
Journal: Sensors (Basel, Switzerland)
Article Title: Affective Colormap Design for Accurate Visual Comprehension in Industrial Tomography
doi: 10.3390/s21144766
Figure Lengend Snippet: The synthetic distribution of the 11 colomaps regarding the affect evoked in the valence–arousal coordinate system. The white dots represent the exact locations of the colormaps.
Article Snippet: Second, we chose
Techniques:
Journal: Sensors (Basel, Switzerland)
Article Title: Affective Colormap Design for Accurate Visual Comprehension in Industrial Tomography
doi: 10.3390/s21144766
Figure Lengend Snippet: The overall accuracy rating results of the 11 colormaps by the 73 participants (rating scale: very high accuracy, high accuracy, intermediate accuracy, low accuracy and very low accuracy).
Article Snippet: Second, we chose
Techniques:
Journal: Sensors (Basel, Switzerland)
Article Title: Affective Colormap Design for Accurate Visual Comprehension in Industrial Tomography
doi: 10.3390/s21144766
Figure Lengend Snippet: The holistic accuracy rankings (high to low) of the 11 colormaps obtained from study part 2.
Article Snippet: Second, we chose
Techniques:
Journal: Sensors (Basel, Switzerland)
Article Title: Affective Colormap Design for Accurate Visual Comprehension in Industrial Tomography
doi: 10.3390/s21144766
Figure Lengend Snippet: The analytic results for the three baseline colormaps autumn , viridis and parula . The X-axis represents the positive–exciting (P-E) and other quadrants (OTH) from the valence–arousal model. The Y-axis shows the number of participants who rated the designated colormap. Right: the number of people who rated the baseline colormap as desirable in the crowdsourced study in Part II. Wrong: the number of people who rated the baseline colormap as undesirable in the crowdsourced study in Part II.
Article Snippet: Second, we chose
Techniques: