Kevin C. Thompson
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Role not yet determined Is this you? Add your title
Also affiliated: University of Arkansas System (2024–2026)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Kevin C. Thompson studies plant and animal responses to environmental stressors, with a focus on agricultural and physiological systems. His recent work includes investigating the effects of heat stress on water homeostasis genes in chickens and the impact of drought stress on soybean yield and charcoal rot development. Thompson also examines agronomic practices, such as conservation management in furrow-irrigated corn systems. Additionally, his research extends to thermal process validation for industrial applications, specifically focusing on estimating kill ratios for surrogate-pathogen systems. He has collaborated with researchers at the University of Arkansas at Fayetteville, including Edward E. Gbur and J. C. Rupe, on multiple publications. Thompson's scholarship metrics include an h-index of 5 and 12 total publications with 72 citations.
Metrics
- h-index: 4
- Publications: 10
- Citations: 78
Selected Publications
-
Conservation management effects on soil and agronomic properties in a furrow‐irrigated corn system in east‐central Arkansas (2025)
-
Effect of Drought Stress During Seed Development on Charcoal Rot and Yield of Soybean (2024)
-
Effect of heat stress on the hypothalamic expression profile of water homeostasis‐associated genes in low‐ and high‐water efficient chicken lines (2024)
-
FURTHER PREDICTIVE STATISTICAL ANALYSIS OF A GFSI SURVEY OF INTERNATIONAL FOOD PROCESSORS (2020)HAL (Le Centre pour la Communication Scientifique Directe) OpenAlex
-
The Prognostic Breeding Application JMP Add-In Program (2019)
-
Impact of the Global Food Safety Initiative on Food Safety Worldwide: Statistical Analysis of a Survey of International Food Processors (2017)
-
A Computer Program to Improve the Efficiency and Accuracy of Postulating Race-Specific Resistance Genes (2004)
Collaboration Network
Top Collaborators
- Impact of the Global Food Safety Initiative on Food Safety Worldwide: Statistical Analysis of a Survey of International Food Processors
- The Prognostic Breeding Application JMP Add-In Program
- FURTHER PREDICTIVE STATISTICAL ANALYSIS OF A GFSI SURVEY OF INTERNATIONAL FOOD PROCESSORS
- Impact of the Global Food Safety Initiative on Food Safety Worldwide: Statistical Analysis of a Survey of International Food Processors
- FURTHER PREDICTIVE STATISTICAL ANALYSIS OF A GFSI SURVEY OF INTERNATIONAL FOOD PROCESSORS
- Impact of the Global Food Safety Initiative on Food Safety Worldwide: Statistical Analysis of a Survey of International Food Processors
- FURTHER PREDICTIVE STATISTICAL ANALYSIS OF A GFSI SURVEY OF INTERNATIONAL FOOD PROCESSORS
- A Computer Program to Improve the Efficiency and Accuracy of Postulating Race-Specific Resistance Genes
- A Computer Program to Improve the Efficiency and Accuracy of Postulating Race-Specific Resistance Genes
- Impact of the Global Food Safety Initiative on Food Safety Worldwide: Statistical Analysis of a Survey of International Food Processors
- Impact of the Global Food Safety Initiative on Food Safety Worldwide: Statistical Analysis of a Survey of International Food Processors
- Impact of the Global Food Safety Initiative on Food Safety Worldwide: Statistical Analysis of a Survey of International Food Processors
- The Prognostic Breeding Application JMP Add-In Program
- Effect of heat stress on the hypothalamic expression profile of water homeostasis‐associated genes in low‐ and high‐water efficient chicken lines
- Effect of heat stress on the hypothalamic expression profile of water homeostasis‐associated genes in low‐ and high‐water efficient chicken lines
- Effect of heat stress on the hypothalamic expression profile of water homeostasis‐associated genes in low‐ and high‐water efficient chicken lines
- Effect of heat stress on the hypothalamic expression profile of water homeostasis‐associated genes in low‐ and high‐water efficient chicken lines
- Effect of heat stress on the hypothalamic expression profile of water homeostasis‐associated genes in low‐ and high‐water efficient chicken lines
- Effect of heat stress on the hypothalamic expression profile of water homeostasis‐associated genes in low‐ and high‐water efficient chicken lines
Similar Researchers
Based on overlapping research topics