Magazine Paper
Khot, A. L., and J. Zhou. 2016. Precision agriculture: beyond the domain of small UAS. ASABE Resource Magazine, 23(3), 201-21.
Book Chapter (* = corresponding author)
- Zhou, J., C. N. Vong, Zhou*. 2021. High-throughput crop phenotyping systems for controlled environments. In Sensing, data managing, and control technologies for agricultural systems. Springer. (60% contribution)
- Feng, J. Zhou*, H. Nguyen, H. Ye. 2021. Unmanned aerial vehicle (UAV) applications in cotton production. In Progress and advances of unmanned aerial systems (UASs) in agricultural applications. Springer. (70% contribution)
- Zhou, J.*, Nguyen. 2021. Solve the breeder’s equation using high-throughput crop phenotyping technology. In High-throughput Crop Phenotyping, Ch1. Springer (80% contribution)
- Zhou, J.*, J. Zhou, H. Nguyen, H. Ye. 2021. High-throughput crop phenotyping systems for controlled environments. In High-throughput Crop Phenotyping, Ch9. Springer. (70% contribution)
- Chen, H., H. Ye, T. Do, Zhou, B. Valliyodan, G. Shannon, P. Chen, X. Chen, and H. Nguyen. 2019. Advances in Genetics and Breeding of Salt Tolerance in Soybean. In Salinity Responses and Tolerance in Plants, Volume 2. Springer, Cham. (10% contribution)
Book Editor
- Zhou, J, Nguyen, H. (editors). 2021. Advanced Concepts and strategies in Plant Sciences: High-throughput Crop Phenotyping. Springer. (80% contribution) https://link.springer.com/book/10.1007/978-3-030-73734-4
- Zhang, Z., Zhou (editors). 2021. Unmanned Aerial Systems in Precision Agriculture. Springer. (15% contribution)
High-Throughput Crop Phenotyping
Concepts and Strategies in Plant Sciences
- Explains how high-throughput phenotyping helps to breed plants that can adapt to low-input agriculture and resource-limited environments