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October 9, 20250 citationsOpen Access

Optimizing Neuro-Fuzzy and Colonial Competition Algorithms for Skin Cancer Diagnosis in Dermatoscopic Images

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HKHamideh KhaleghpourUniversity of TulsaBMBrett A. McKinneyUniversity of Tulsa

Key Points

  • Achieving 94% accuracy, the method shows promise for detecting skin cancer, particularly melanoma.
  • Utilizing the ISIC database, AI algorithms can distinguish between malignant and benign lesions effectively.
  • A fusion of image processing techniques with neuro-fuzzy and colonial competition approaches aids clinical diagnosis.
  • This research underscores the need for advanced diagnostic aids to improve early detection of skin cancer.

Abstract

The rising incidence of skin cancer, coupled with limited public awareness and a shortfall in clinical expertise, underscores an urgent need for advanced diagnostic aids. Artificial Intelligence (AI) has emerged as a promising tool in this domain, particularly for distinguishing malignant from benign skin lesions. Leveraging publicly available datasets of skin lesions, researchers have been developing AI-based diagnostic solutions. However, the integration of such computer systems in clinical settings is still nascent. This study aims to bridge this gap by employing a fusion of image processing techniques and machine learning algorithms, specifically neuro-fuzzy and colonial competition approaches. Applied to dermoscopic images from the ISIC database, our method achieved a notable accuracy of 94% on a dataset of 560 images. These results underscore the potential of our approach in aiding clinicians in the early detection of melanoma, thereby contributing significantly to skin cancer diagnostics.

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Cite This Study

Khaleghpour et al. (2025) studied this question.

synapsesocial.com/papers/68e82b12e7fc21a30050021ahttps://doi.org/10.48550/arxiv.2505.08886
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