Innovative Research Award
| Carlos Nino de Guzman | |
|---|---|
| Affiliation | University of Florida |
| Country | United States |
| Scopus ID | 58300052000 |
| Documents | 3 |
| Citations | 38 |
| h-index | 2 |
| Subject Area | Agricultural and Biological Sciences |
| Event | Global Innovation Technologist Awards |
| ORCID | 0000-0002-2055-257X |
Carlos Nino de Guzman
University of Florida, United States
Carlos Nino de Guzman is a researcher affiliated with the University of Florida whose scholarly work focuses on agricultural and biological sciences, particularly dairy cattle nutrition, rumen microbiology, forage preservation, reproductive management, and livestock production systems. His publications contribute to evidence-based improvements in dairy and beef production through experimental research involving animal health, feed efficiency, microbial ecology, and reproductive performance. The body of work reflects interdisciplinary collaboration within animal science and agricultural sustainability.[1]
Abstract
This article summarizes the academic profile of Carlos Nino de Guzman in relation to the Innovative Research Award. His published research addresses practical challenges in dairy production through investigations of reproductive efficiency, forage quality, ruminal fermentation, microbial supplementation, and feed degradability. These studies provide scientific evidence supporting sustainable livestock management and improved agricultural productivity while contributing to peer-reviewed literature within agricultural and biological sciences.[1]
Keywords
- Agricultural and Biological Sciences
- Dairy Science
- Animal Nutrition
- Rumen Microbiology
- Livestock Sustainability
- Reproductive Performance
- Silage Fermentation
Introduction
Modern livestock production depends upon continuous advances in nutrition, reproductive management, and microbial ecology. Research addressing these areas contributes directly to sustainable food systems and improved farm productivity. Carlos Nino de Guzman’s publications examine practical production challenges using experimental approaches that combine laboratory analysis with applied animal science.[2]
Research Profile
The research portfolio demonstrates interests in dairy cattle health, reproductive performance, silage quality, ruminal fermentation, microbial supplementation, feed enzyme technology, and nutrient utilization. Publications appear in recognized journals specializing in dairy science and animal nutrition, illustrating participation in contemporary agricultural research.[3]
Research Contributions
- Research on pregnancy probability estimation using health indicators and estrus intensity.
- Evaluation of silage fermentation through wilting duration and microbial inoculation.
- Comparison of rumen fluid collection methodologies for microbial analysis.
- Assessment of microbial supplementation effects on dairy cow productivity and immunity.
- Investigation of enzymatic enhancement of starch degradability in beef cattle.
Publications
- Estimation of Probability of Pregnancy Based on Health Status and Estrus Intensity in Organic Dairy Cows. Dairy (2026).
- Effects of wilting duration and microbial inoculation on fermentation profile, chemical composition, aerobic stability and in situ nutrient degradability of ryegrass silage. Animal Feed Science and Technology (2025).
- Comparing rumen fluid collection methods on fermentation profile and microbial population in lactating dairy cows. JDS Communications (2024).
- Effect of Exogenous Glucoamylase on Ruminal in Situ and in Vitro Dry Matter and Starch Degradability, Gas Production, and Volatile Fatty Acids of Cereal Grains in Beef Cattle. SSRN Preprint (2024).
- Effects of direct-fed microbial supplementation on performance and immune parameters of lactating dairy cows. Journal of Dairy Science (2023).
Research Impact
The available publication record indicates continuing scholarly activity within dairy science and animal nutrition. Citation metrics, peer-reviewed publications, and interdisciplinary collaborations contribute to the visibility of the research while supporting advancements in livestock health, feed utilization, and agricultural sustainability. The reported Scopus metrics include 38 citations and an h-index of 2.[4]
Award Suitability
Based on the available scholarly record, the research demonstrates methodological rigor, practical agricultural relevance, and contributions to dairy production science. These characteristics align with the objectives of academic recognition programs emphasizing innovation, scientific quality, and knowledge dissemination. Award consideration should be evaluated alongside broader peer-review criteria, publication influence, and continuing research achievements.[5]
Conclusion
Carlos Nino de Guzman’s research portfolio reflects contributions to agricultural and biological sciences through studies focused on dairy cattle management, nutrition, ruminal microbiology, forage quality, and reproductive efficiency. The published work provides evidence supporting sustainable livestock production and represents an emerging academic profile suitable for recognition within scientific innovation initiatives.
External Links
References
- Carlos Nino de Guzman. Estimation of Probability of Pregnancy Based on Health Status and Estrus Intensity in Organic Dairy Cows. Dairy (2026).
DOI: 10.3390/dairy7040058. - Effects of wilting duration and microbial inoculation on ryegrass silage. Animal Feed Science and Technology (2025).
DOI: 10.1016/j.anifeedsci.2025.116351. - Comparing rumen fluid collection methods on fermentation profile and microbial population. JDS Communications (2024).
DOI: 10.3168/jdsc.2024-0566. - Scopus Author Metrics. Author ID: 58300052000.
- Global Innovation Technologist Awards.
Official Award Website. innovationtechnologist.com.