Hambisa Bedassa | Artificial Insemination | Best Researcher Award

Mr. Hambisa Bedassa | Artificial Insemination | Best Researcher Award

Researcher at Ethiopian Institute of Agricultural Research, Ethiopia

Abdi Bedassa is a dedicated professional in the fields of veterinary science, animal health, and food safety, with a strong focus on enhancing the quality and safety of dairy products in Ethiopia. Fluent in Afan Oromo, he combines technical expertise with leadership, adaptability, and strategic planning to address critical challenges in agriculture and public health. With extensive experience in project management and a passion for collaborative problem-solving, Abdi is committed to driving impactful changes in Ethiopia’s agricultural sector.

Publication Profile

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Education 🎓

BSc in Veterinary Science from Addis Ababa University (2012).MSc in Animal Health and Food Safety from Haramaya University (2015).PhD in Veterinary Public Health from Hawassa University (2022).

Experience  💼

Researcher in food safety and dairy value chain improvements (2018–2022).Project leader addressing milk contamination and quality control in Ethiopia.Extensive collaboration with farmers, processors, and stakeholders.

Awards and Honors 🏅

“Excellence in Dairy Safety Research” award (2021).Recognized for exceptional contributions to Ethiopian agricultural development.

Research Focus 🔬

Dairy safety and quality assurance.Comparative ovarian follicular dynamics in cattle breeds.Prevalence of Salmonella enterica in milk and cottage cheese.

Publications 📖

Enhancing Bovine Reproduction (2025): DOI: 10.1111/rda.70003.

Seasonal Variation of Salmonella in Dairy Products (2024): DOI: 10.1186/s40550-024-00108-4.

Risk Factors for Salmonella in Dairy Products (2023): DOI: 10.1186/s40550-023-00101-3.

Conclusion

Abdi Bedassa is a highly capable and dedicated researcher with a proven track record in addressing critical challenges in dairy safety, livestock reproduction, and biotechnology. His commitment to excellence, combined with practical experience and leadership skills, positions him as a strong candidate for the Best Researcher Award. By building international collaborations, enhancing methodological expertise, and broadening research scope, Abdi can further strengthen his candidacy and make an even greater impact on the scientific community.

 

Xin Lv| Crop Information Technology | Best Researcher Award

Dr. Changmin Shi | Crop Information Technology | Best Researcher Award

Deputy Director at Shihezi University, China

Xin Lv, Deputy Director at Shihezi University, is a distinguished agricultural scientist with expertise in crop cultivation, smart agriculture, and applied meteorology. With over three decades of experience, he has led numerous national and provincial projects, authored influential publications, and significantly contributed to advancing cotton production technology in China. His work integrates modern precision agriculture techniques, fostering technological progress and sustainable agricultural practices.

Publication Profile

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🎓 Education

🎓 BSc in Agronomy – Shihezi University (1987) 🎓 MSc in Applied Meteorology – Nanjing Institute of Meteorology (1994  PhD in Crop Cultivation and Tillage Science – Shandong Agricultural University (2002)

💼 Experience

🔧 Deputy Director at Shihezi University 📊 Hosted 19 national and 17 provincial-level projects 📝 Published 289 papers (58 SCI/EI) 📚 Authored 10 books and 15 technical regulations 🤝 Collaborates with National Cotton Engineering Technology Research Center

🏆 Awards and Honors

🥇 First Prize, Xinjiang Scientific and Technological Progress (2015, 2020, 2023) 🏅 Invention Patent Award (2018) 🏆 Second Prize, National Science and Technology Progress Award (Collective) 🌱 Director of China Crop Society, VP of Smart Agriculture Committee

🌱 Research Focus

Xin Lv’s research targets precision agriculture, focusing on cotton production. His work addresses challenges like high costs and inefficiencies through advanced nutrient monitoring, water management, and pest control systems. He pioneered a cloud platform for water and fertilizer management, enhancing crop productivity and sustainability.

Publications

🌵 Warming effect of desert on cotton Verticillium wilt

Industrial Crops and Products – Examines how desert warming influences cotton disease distribution.

🛰️ Growth monitoring index for cotton using Sentinel-2A

Field Crops Research – Utilizes satellite data to monitor cotton growth on a large scale.

🌱 Improving soil quality predictions using spectral data fusion

Geoderma – Combines Vis-NIR and pXRF data for enhanced soil quality assessments.

🌡️ Mulching-induced warming impacts on cotton zones

Atmosphere – Assesses how mulching alters temperatures in machine-picked cotton fields.

📊 Image-spectral fusion for cotton nitrogen monitoring

Computers and Electronics in Agriculture – Deep learning-based nitrogen content monitoring.

🌍 Soil nitrogen estimation using feature selection and stratification

Computers and Electronics in Agriculture – Increases accuracy in soil nitrogen estimation.

🚁 UAV imagery reducing interference for cotton nitrogen monitoring

Frontiers in Plant Science – UAV-based imaging techniques for precise monitoring.

🧪 UAV RGB images for cotton nitrogen diagnostics

Notulae Botanicae Horti Agrobotanici – Uses UAVs to diagnose nitrogen content in cotton.

🌿 Vegetation indices fusion for cotton leaf area prediction

Frontiers in Plant Science – Enhances accuracy in leaf area prediction.

🌱 Estimating cotton leaf nitrogen with the PROSPECT model

Notulae Botanicae Horti Agrobotanici – Constructs models for estimating leaf nitrogen content.

 

Conclusion

XinLv’s extensive research output, leadership in national projects, and innovation in crop information technology position him as an outstanding candidate for the Best Researcher Award. His contributions have significantly advanced precision agriculture and smart farming practices, driving sustainable solutions to key agricultural challenges. With continued efforts in international collaborations and outreach, XinLv’s impact on global agricultural innovation is expected to grow even further.