Publications
Bhandari, R., Gnawali, S., Nyaupane, S., Kharel, S., Poudel, M., & Panth, P. (2021).
Effect of drought & irrigated environmental condition on yield & yield attributing characteristic of bread wheat: A review.
Reviews in Food and Agriculture, 2(2), 59–62.
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Cited by: 12 (Google Scholar)
Abstract: This review paper discusses the effects of drought and irrigated environments on bread wheat yield and yield-attributing traits. It synthesizes findings from multiple studies, highlighting how water stress reduces grain yield, spike length, and kernel weight, while irrigation improves productivity. The review emphasizes the importance of water management strategies for sustainable wheat production.
Timilsina, S., Sharma, S., Gnawali, S., Sato, K., Okada, Y., Watanabe, S., & Kondo, S. (2025).
CNDD-Net: A lightweight attention-based convolutional neural network for classifying corn nutritional deficiencies and leaf diseases.
Electronics, 14(7), 1482.
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Cited by: 5 (Google Scholar)
Abstract: CNDD-Net is a lightweight convolutional neural network enhanced with attention mechanisms, designed to classify corn leaf diseases and nutritional deficiencies. The model achieves high accuracy with reduced computational cost, making it suitable for deployment in resource-constrained environments. The study demonstrates CNDD-Net’s effectiveness compared to existing deep learning models, offering a practical solution for precision agriculture.
Gnawali, S., Kharel, S., Gautam, N., Khanal, B., Khanal, D., & Paudel, K. (2025).
Assessment of insecticidal potential of indigenous Beauveria bassiana isolates against Oriental Fruit Fly (Bactrocera dorsalis) in laboratory conditions.
Journal of Plant Protection Research.
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Cited by: 3 (Google Scholar)
Abstract: This study evaluates the insecticidal potential of indigenous Beauveria bassiana isolates against the Oriental Fruit Fly (Bactrocera dorsalis) under laboratory conditions. Results showed significant mortality rates, indicating that local isolates of B. bassiana could serve as effective biocontrol agents. The findings support the integration of entomopathogenic fungi into pest management strategies for sustainable agriculture.