AQC0512

Nanopublication — Computational Image Analysis - AQC0512

Claim 1: Computational Image Analysis - AQC0512

K-means clustering analysis [3] (10 colors) performed on artwork Quiet [1] Embrace (AQC0512) [2] by Arnaud Quercy [2] on 2026-02-04. Documentation includes: color families, texture roughness, brightness distribution, spatial coherence.

Context

Analysis performed according to MMIDS-CMP-2025 [3] includes four metric categories: (1) Color distribution via k-means (10 colors), (2) Texture analysis using Haralick features, (3) Brightness and contrast measurements, (4) Spatial pattern characterization. Source image [5]: 1366x2048 pixels. Analysis date: 2026-02-04.

Color Analysis

Rank Color Hex % Family Name
1 C6C2B2 17.1 yellow silver
2 ABA792 14.1 yellow steel gray
3 DEDACD 13.1 yellow lightgray
4 8D8C77 11.3 yellow gray
5 41403A 9.2 gray darkslategray
6 6B6B58 8.6 yellow dimgray
7 CCBC80 8.1 yellow tan
8 201B14 7.1 orange very dark gray
9 B19251 6.9 yellow-orange peru
10 9F531A 4.6 orange burnt sienna
11 253B72 0.3 violet dusty mauve [Accent]
12 6A9A8D 0.3 green cadetblue [Accent]
13 828D3A 0.3 yellow-green olivedrab [Accent]
14 6F3322 0.3 red-orange russet [Accent]
15 45576A 0.3 blue-violet grayish purple [Accent]

Color Families:

Family %
yellow 72.2
orange 11.7
gray 9.2
yellow-orange 6.9
violet 0.3
green 0.3
yellow-green 0.3
red-orange 0.3
blue-violet 0.3

Accent Colors:

Hex Family Name Chroma
253B72 violet dusty mauve 35.7
6A9A8D green cadetblue 19.1
828D3A yellow-green olivedrab 44.9
6F3322 red-orange russet 34.0
45576A blue-violet grayish purple 13.2

Texture Analysis

Metric Value
Global Roughness 0.224
Mean Local Roughness 0.048
Roughness Uniformity 0.023
Edge Density 0.308
Mean Gradient Magnitude 0.369
Gradient Variance 0.088
Gradient Smoothness 0.197
Directional Coherence 0.004
Pattern Complexity 0.117
Pattern Repetition 1.0
Detail Frequency Ratio 0.642
Spatial Variation 0.105
Texture Consistency 0.73

Brightness & Contrast Analysis

Metric Value
Mean Brightness 0.579
Brightness Variance 0.224
Brightness Uniformity 0.612
Brightness Skewness -0.653
Brightness Entropy 7.677
Rms Contrast 0.224
Michelson Contrast 1.0
Weber Contrast 0.731
Mean Local Contrast 0.049
Contrast Uniformity 0.539
Dynamic Range 1.0
Effective Dynamic Range 0.725
Shadow Percentage 17.214
Midtone Percentage 39.283
Highlight Percentage 43.503
Shadow Clipping 0.042
Highlight Clipping 0.003
Tonal Balance 0.343
Fine Contrast 0.029
Medium Contrast 0.06
Coarse Contrast 0.082
Multiscale Contrast Ratio 0.347
Edge Contrast 0.369
Contrast Clustering 0.27

Spatial Distribution Analysis

Metric Value
Spatial Coherence 0.66
Color Clustering 0.748
Color Transition Smoothness 0.064
Transition Uniformity 0.403
Sharp Transition Ratio 0.1
Transition Directionality 0.004
Mean Saturation 0.257
Saturation Variance 0.048
Low Saturation Ratio 0.701
Medium Saturation Ratio 0.239
High Saturation Ratio 0.061
Saturation Clustering 0.997
Hue Concentration 0.862
Complementary Balance 0.022
Analogous Dominance 0.913
Temperature Bias 0.806

Methodology

This analysis employs standardized computational methods for objective image characterization. Color extraction uses k-means clustering algorithm. Texture analysis applies Haralick feature extraction. Brightness metrics include mean, variance, and distribution analysis. Spatial patterns are characterized through coherence and clustering measurements. All methods are deterministic and reproducible. Analysis performed by Multimodal Institute's computational imaging systems.

References

[1] Arnaud Quercy (2024). Quiet Embrace — Catalog raisonné. https://arnaudquercy.art/en/catalogue-raisonne/AQC0512.html

[2] Quercy, A. (2025). Untitled - Gallery. https://artquamanima.com/en/artworks/2024/01/quiet-embrace_5rc.html

[3] Quercy, A. (2025). Computational Image Analysis Standard - MMIDS-CMP-2025 https://multimodal.institute/en/publications/2025/11/mmids-cmp-2025-computational-image-analysis-standard-dg1.html

Epistemic profile

Claim typecomputational analysis
Voicethird person
Epistemic statusempirical measurement
Methodologycomputational analysis
Certaintyhigh

Checksum (SHA-256)

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