Zachary C. Campbell
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Researcher
Also affiliated: Arkansas Biosciences Institute (2016–2023)
Unknown Researcher
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Zachary C. Campbell's research focuses on plant physiology and the development of infrastructure for high-throughput phenotyping. He has investigated the impact of high night air temperature stress on irrigated rice and developed a novel hydroponic system for studying nitrogen deficiency in Arabidopsis thaliana. His work involves understanding plant responses to environmental stressors, contributing to agricultural science and crop improvement. Campbell has published six papers and has been cited 117 times, with an h-index of 3. He collaborates with researchers at Arkansas State University, including Argelia Lorence, Shannon S Cunningham, Karina Medina‐Jiménez, and Rodney S. Harris, with whom he shares multiple publications.
Metrics
- h-index: 3
- Publications: 6
- Citations: 118
Selected Publications
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Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice (2023)
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Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice (2022)
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A Novel High-Throughput Phenotyping Hydroponic System for Nitrogen Deficiency Studies in Arabidopsis thaliana (2022)
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eIFiso4G Augments the Synthesis of Specific Plant Proteins Involved in Normal Chloroplast Function (2019)
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Engineering plants for tomorrow: how high-throughput phenotyping is contributing to the development of better crops (2018)
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Moderate to severe water limitation differentially affects the phenome and ionome of Arabidopsis (2016)
Collaboration Network
Top Collaborators
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- A Novel High-Throughput Phenotyping Hydroponic System for Nitrogen Deficiency Studies in Arabidopsis thaliana
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- A Novel High-Throughput Phenotyping Hydroponic System for Nitrogen Deficiency Studies in Arabidopsis thaliana
- A Novel High-Throughput Phenotyping Hydroponic System for Nitrogen Deficiency Studies in Arabidopsis thaliana
- A Novel High-Throughput Phenotyping Hydroponic System for Nitrogen Deficiency Studies in Arabidopsis thaliana
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
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