AI Article Synopsis

  • Accurate and unbiased skin lesion examinations are essential for early diagnosis, but varying visual features and different imaging equipment complicate this process.
  • Ensembled convolutional neural networks (CNNs) have shown promise for classifying skin images, but they face limitations due to their heavy weight and inability to process contextual information effectively.
  • The new HierAttn network improves on existing lightweight models by using multi-stage and multi-branch attention mechanisms, demonstrating superior accuracy in tests involving various datasets compared to state-of-the-art lightweight networks.

Article Abstract

Accurate and unbiased examinations of skin lesions are critical for the early diagnosis and treatment of skin diseases. Visual features of skin lesions vary significantly because the images are collected from patients with different lesion colours and morphologies by using dissimilar imaging equipment. Recent studies have reported that ensembled convolutional neural networks (CNNs) are practical to classify the images for early diagnosis of skin disorders. However, the practical use of these ensembled CNNs is limited as these networks are heavyweight and inadequate for processing contextual information. Although lightweight networks (e.g., MobileNetV3 and EfficientNet) were developed to achieve parameter reduction for implementing deep neural networks on mobile devices, insufficient depth of feature representation restricts the performance. To address the existing limitations, we develop a new lite and effective neural network, namely HierAttn. The HierAttn applies a novel deep supervision strategy to learn the local and global features by using multi-stage and multi-branch attention mechanisms with only one training loss. The efficacy of HierAttn was evaluated by using the dermoscopy images dataset ISIC2019 and smartphone photos dataset PAD-UFES-20 (PAD2020). The experimental results show that HierAttn achieves the best accuracy and area under the curve (AUC) among the state-of-the-art lightweight networks.

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Source
http://dx.doi.org/10.1109/JBHI.2023.3308697DOI Listing

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