Chieri Kubota
Agricultural and Biological Sciences · The Ohio State University
Publications
162
Citations
5,490
Est. group size
~1
Recurring co-author estimate
Active years
37
Publishing since 1990
Chieri Kubota's research focuses on controlled environment agriculture, including greenhouse and indoor vertical farming systems, plant grafting techniques, lighting effects on crop growth, and the use of automation and AI for managing indoor plant production. Much of the work addresses practical crop-production problems such as preventing tipburn in lettuce, improving seedling quality through grafting, and optimizing lighting and nutrient delivery for vegetables and fruits like strawberries and watermelon.
Publication output has fluctuated over the last decade without a clear upward or downward trend, though 2025 shows a notable increase in output.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Vegetative Growth, Flowering, and Mineral Nutrient Status of Grafted Citrullus as Affected by Rootstock and Scion
HortScience · 2026
- Supplemental Far-red Light Prevents Semidormancy and Enhances Yield and Fruit Quality of Short-day Strawberry in Indoor Production
HortTechnology · 2025
- AI Applications in the Environmental Control of Controlled Environment Agriculture in the Digital Age
Modern Agriculture · 2025
- Nighttime Blue Lighting and Downward Airflow to Manage Tipburn in Indoor Farm Lettuce
HortScience · 2025
- Cyber physical biological system in controlled environment agriculture for energy optimization: A comprehensive overview, key challenges, and future outlook
Energy · 2025
- Production Planning in an Indoor Farm: Using Time and Space Requirements to Define an Efficient Production Schedule and Farm Size
SSRN Electronic Journal · 2024
- Production planning in an indoor farm: Using time and space requirements to define an efficient production schedule and farm size
The International Food and Agribusiness Management Review · 2024
- Testing Cultivar-specific Tipburn Sensitivity of Lettuce for Indoor Vertical Farms
HortScience · 2023
- Reduced Daily Light Integral at the End of Production Can Delay Tipburn Incidence with a Yield Penalty in Indoor Lettuce Production
HortScience · 2023
- Effect of Self- and Inter-Cultivar Grafting on Growth and Nutrient Content in Sweet Basil (Ocimum basilicum L.)
Frontiers in Plant Science · 2022
- Evaluating Ethylene Sensitivity and Exogenous Ethylene Impact on Early Growth of Grafted and Nongrafted Tomato Seedlings
HortTechnology · 2022
- Watermelon Seedling Quality, Growth, and Development as Affected by Grafting and Chilling Exposure During Simulated Transportation
HortScience · 2022
- Automated workflow analysis in vegetable grafting using an Ultra-Wide Band based real-time indoor location tracking system
Computers and Electronics in Agriculture · 2022
- Engaging Undergraduate Students in Research
HortTechnology · 2022
- A Dynamic HMM-Based Real-Time Location Tracking System Utilizing UHF Passive RFID
IEEE Journal of Radio Frequency Identification · 2021
- HortScience×8
- HortTechnology×7
- Elsevier eBooks×4
- Scientia Horticulturae×3
- Computers and Electronics in Agriculture×2
- Cary A. Mitchell
Agricultural and Biological Sciences · Purdue University West Lafayette
- Fatemeh Sheibani
Agricultural and Biological Sciences · Purdue University West Lafayette
- Michael P. Dzakovich
Agricultural and Biological Sciences · The Ohio State University
- David E. Somers
Agricultural and Biological Sciences · The Ohio State University
- Celina Gómez
Agricultural and Biological Sciences · Purdue University West Lafayette
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
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