Il-Young Kim
UAMS Contingent Worker
Also affiliated: Gachon University (2019); Kangwon National University (2008); Yonsei University (2007); Seoul Metropolitan Government (2019); Yonsei University College of Dentistry (2007); The University of Texas at Austin (2013–2014)
Geriatrics, College of Medicine
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Il-Young Kim's research has focused on the study of health and medical research impacts, with a particular emphasis on health disparities and outcomes. This work has involved investigating factors that influence the health and well-being of diverse populations. Kim's contributions are situated within the broader field of health sciences research and education, aiming to improve understanding and outcomes in healthcare.
Metrics
- h-index: 7
- Publications: 8
- Citations: 497
Positions
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UAMS Contingent Worker publications 2016–2019University of Arkansas for Medical Sciences Geriatrics, College of Medicine Institutional directory
Selected Publications
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Consumption of a Specially-Formulated Mixture of Essential Amino Acids Promotes Gain in Whole-Body Protein to a Greater Extent than a Complete Meal Replacement in Older Women with Heart Failure (2019)
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Obstructive Sleep Apnea Dynamically Increases Nocturnal Plasma Free Fatty Acids, Glucose, and Cortisol During Sleep (2017)
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Applications of stable, nonradioactive isotope tracers in in vivo human metabolic research (2016)
Grants & Funding
As listed on this researcher's institutional profile.
- Ferrando - Warfighter Recovery Nutrition: Optimizing Protein Quantity, Quality, and Combat Ration Delivery Systems U.S. Army Research Institute of Environmental Medicine Co-Investigator
- Ferrando - Pikes Peak U.S. Army Research Institute of Environmental Medicine via Battelle Memorial Institute Co-Investigator
- Subcontract w/Essential Blends, LLC: UpBeat Phase 2 NIH/Nat. Inst. on Aging via Essential Blends, LLC Co-Investigator
- Substrate Cycling in Energy Metabolism NIH Co-Investigator
- Arkansas Claude Pepper Older Americans Independence Center at UAMS NIH Co-Investigator
- Ferrando - D.E.B. Dairy - Effect of Dietary Protein Intake Distribution on Protein Metabolism and Skeletal Muscle National Dairy Council Co-Investigator
Collaboration Network
Top Collaborators
- Applications of stable, nonradioactive isotope tracers in in vivo human metabolic research
- Obstructive Sleep Apnea Dynamically Increases Nocturnal Plasma Free Fatty Acids, Glucose, and Cortisol During Sleep
- Consumption of a Specially-Formulated Mixture of Essential Amino Acids Promotes Gain in Whole-Body Protein to a Greater Extent than a Complete Meal Replacement in Older Women with Heart Failure
- Applications of stable, nonradioactive isotope tracers in in vivo human metabolic research
- Applications of stable, nonradioactive isotope tracers in in vivo human metabolic research
- Obstructive Sleep Apnea Dynamically Increases Nocturnal Plasma Free Fatty Acids, Glucose, and Cortisol During Sleep
- Obstructive Sleep Apnea Dynamically Increases Nocturnal Plasma Free Fatty Acids, Glucose, and Cortisol During Sleep
- Obstructive Sleep Apnea Dynamically Increases Nocturnal Plasma Free Fatty Acids, Glucose, and Cortisol During Sleep
- Obstructive Sleep Apnea Dynamically Increases Nocturnal Plasma Free Fatty Acids, Glucose, and Cortisol During Sleep
- Obstructive Sleep Apnea Dynamically Increases Nocturnal Plasma Free Fatty Acids, Glucose, and Cortisol During Sleep
- Obstructive Sleep Apnea Dynamically Increases Nocturnal Plasma Free Fatty Acids, Glucose, and Cortisol During Sleep
- Obstructive Sleep Apnea Dynamically Increases Nocturnal Plasma Free Fatty Acids, Glucose, and Cortisol During Sleep
- Obstructive Sleep Apnea Dynamically Increases Nocturnal Plasma Free Fatty Acids, Glucose, and Cortisol During Sleep
- Obstructive Sleep Apnea Dynamically Increases Nocturnal Plasma Free Fatty Acids, Glucose, and Cortisol During Sleep
- Consumption of a Specially-Formulated Mixture of Essential Amino Acids Promotes Gain in Whole-Body Protein to a Greater Extent than a Complete Meal Replacement in Older Women with Heart Failure
- Consumption of a Specially-Formulated Mixture of Essential Amino Acids Promotes Gain in Whole-Body Protein to a Greater Extent than a Complete Meal Replacement in Older Women with Heart Failure
- Consumption of a Specially-Formulated Mixture of Essential Amino Acids Promotes Gain in Whole-Body Protein to a Greater Extent than a Complete Meal Replacement in Older Women with Heart Failure
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