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Early Poplar ( Populus ) Leaf-Based Disease Detection through Computer Vision, YOLOv8, and Contrast Stretching Technique.

Sensors (Basel, Switzerland) · 11 Aug 2024 · 10.3390/s24165200

Abstract

Poplar ( Populus ) trees play a vital role in various industries and in environmental sustainability. They are widely used for paper production, timber, and as windbreaks, in addition to their significant contributions to carbon sequestration. Given their economic and ecological importance, effective disease management is essential. Convolutional Neural Networks (CNNs), particularly adept at processing visual information, are crucial for the accurate detection and classification of plant diseases. This study introduces a novel dataset of manually collected images of diseased poplar leaves from Uzbekistan and South Korea, enhancing the geographic diversity and application of the dataset. The disease classes consist of "Parsha (Scab)", "Brown-spotting", "White-Gray spotting", and "Rust", reflecting common afflictions in these regions. This dataset will be made publicly available to support ongoing research efforts. Employing the advanced YOLOv8 model, a state-of-the-art CNN architecture, we applied a Contrast Stretching technique prior to model training in order to enhance disease detection accuracy. This approach not only improves the model's diagnostic capabilities but also offers a scalable tool for monitoring and treating poplar diseases, thereby supporting the health and sustainability of these critical resources. This dataset, to our knowledge, will be the first of its kind to be publicly available, offering a valuable resource for researchers and practitioners worldwide.

Plant phenotyping relevance

ポプラ葉の病害状態を画像から検出・分類するYOLOv8手法とコントラスト伸張、公開データセットが研究の中心であり、植物病害フェノタイピングに該当する。

abstractThis study introduces a novel dataset of manually collected images of diseased poplar leaves from Uzbekistan and South Korea
abstractEmploying the advanced YOLOv8 model, a state-of-the-art CNN architecture, we applied a Contrast Stretching technique prior to model training in order to enhance disease detection accuracy.
abstractThis dataset, to our knowledge, will be the first of its kind to be publicly available

Code and data availability

The paper introduces a novel 'Poplar-Disease' image dataset and a YOLOv8-based detection model, but only promises future public release without any deposit, repository, or URL. Roboflow and Make Sense AI are generic third-party tools, not paper-specific assets.

No evidence-backed public reproduction asset is currently recorded.

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