Hilal Mirvana, Gaudêncio Andreia S, Vaz Pedro G, Cardoso João, Humeau-Heurtier Anne
Univ Angers, LARIS, SFR MATHSTIC, F-49000 Angers, France.
LIBPhys, Department of Physics, University of Coimbra, P-3004-516 Coimbra, Portugal.
Entropy (Basel). 2022 Jun 15;24(6):831. doi: 10.3390/e24060831.
Texture analysis is a subject of intensive focus in research due to its significant role in the field of image processing. However, few studies focus on colored texture analysis and even fewer use information theory concepts. Entropy measures have been proven competent for gray scale images. However, to the best of our knowledge, there are no well-established entropy methods that deal with colored images yet. Therefore, we propose the recent colored bidimensional fuzzy entropy measure, FuzEnC2D, and introduce its new multi-channel approaches, FuzEnV2D and FuzEnM2D, for the analysis of colored images. We investigate their sensitivity to parameters and ability to identify images with different irregularity degrees, and therefore different textures. Moreover, we study their behavior with colored Brodatz images in different color spaces. After verifying the results with test images, we employ the three methods for analyzing dermoscopic images of malignant melanoma and benign melanocytic nevi. FuzEnC2D, FuzEnV2D, and FuzEnM2D illustrate a good differentiation ability between the two-similar in appearance-pigmented skin lesions. The results outperform those of a well-known texture analysis measure. Our work provides the first entropy measure studying colored images using both single and multi-channel approaches.
纹理分析因其在图像处理领域的重要作用而成为研究的重点课题。然而,很少有研究关注彩色纹理分析,使用信息论概念的研究更少。熵测度已被证明适用于灰度图像。然而,据我们所知,目前还没有成熟的处理彩色图像的熵方法。因此,我们提出了最近的彩色二维模糊熵测度FuzEnC2D,并介绍了其用于彩色图像分析的新多通道方法FuzEnV2D和FuzEnM2D。我们研究了它们对参数的敏感性以及识别具有不同不规则程度(即不同纹理)图像的能力。此外,我们研究了它们在不同颜色空间中对彩色Brodatz图像的表现。在用测试图像验证结果后,我们使用这三种方法分析恶性黑色素瘤和良性黑素细胞痣的皮肤镜图像。FuzEnC2D、FuzEnV2D和FuzEnM2D在两种外观相似的色素沉着皮肤病变之间表现出良好的区分能力。结果优于一种著名的纹理分析测度。我们的工作提供了第一个使用单通道和多通道方法研究彩色图像的熵测度。