| A Wireless Sensor Platform for Beehive Monitoring | 2026 | 🇺🇸 North Dakota State University; 🇺🇸 USDA Agricultural Research Service |
| An Automated AI-Based Vision Inspection System for Bee Mite and Deformed Bee Detection Using YOLO Models | 2026 | 🇰🇷 Kangwon National University; 🇰🇷 National Institute of Agricultural Sciences; 🇰🇷 Terramolab Ltd. |
| Deep Learning and Computer Vision for Honey Bee Health Monitoring: A Systematic Survey and Future Directions | 2026 | 🇮🇳 SSVPS's Bapusaheb Shivajirao Deore College of Engineering |
| From Hive Sensors to Environmental DNA: Toward a Systems Biology Framework for Honeybee-Based Early Warning of Colony and Ecosystem Health | 2026 | 🇨🇳 Yangzhou University; 🇸🇦 Imam Mohammad Ibn Saud Islamic University |
| Honeybee Counting on Comb Images via Part-Level Annotation and Hungarian Matching | 2026 | 🇯🇵 Utsunomiya University |
| On the Prediction of Varroa Mite Infestations in Honeybee Colonies via Acoustic Monitoring | 2026 | 🇨🇦 Institut national de la recherche scientifique (INRS); 🇨🇦 Nectar Technologies Inc.; 🇨🇦 Université Laval |
| Transforming Beekeeping Through Technology: A Systematic Review of Precision Beekeeping | 2026 | 🇧🇳 Universiti Brunei Darussalam; 🇱🇰 Uva Wellassa University |
| Image-based honey bee larval viral and bacterial diagnosis using machine learning | 2025 | 🇺🇸 USDA Carl Hayden Bee Research Center; 🇺🇸 University of Arizona; 🇺🇸 Arizona Science Center |
| Queen Detection in Beehives via Environmental Sensor Fusion for Low-Power Edge Computing | 2025 | 🇨🇭 Institute of Neuroinformatics, University of Zurich and ETH Zurich; 🇨🇭 Digital Society Initiative, University of Zurich |
| Recognizing Beehives’ Health Abnormalities Based on Mobile Net Deep Learning Model | 2023 | 🇪🇬 Egyptian Russian University; 🇪🇬 Cairo University; 🇪🇬 Tanta University; 🇪🇬 Scientific Research Group in Egypt |