Elisabet Borsheim
Sourced from institutional research profiles (UAMS TRI or ARA).
Graduate Student Researcher
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Elisabet Borsheim is a graduate student at the University of Arkansas for Medical Sciences. Her research interests include the investigation of microbial infections and disease mechanisms, with a specific focus on how these processes interact with the immune system. Borsheim's work also examines the role of specific bacterial species in disease development and progression.
Metrics
- Publications: 1
Selected Publications
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Inborn cardiorespiratory fitness and exercise training modulate brown adipose tissue function and plasticity in early life (2026)
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Carnitine deficiency alters fuel metabolism and voluntary wheel running in mice (2026)
Grants & Funding
As listed on this researcher's institutional profile.
- Effects of amino acids on regional lipid metabolism NIH
- Center for Childhood Obesity Prevention NIH//NIGMS
- Phenotypic and metabolic characteristics in early childhood leading to obesity NIH
- Nutritional Stimulation of Growth in Children with Short Stature Arkansas Children’s Research institute/AR Biosciences Institute
- CTSA K12 Program at the University of Arkansas for Medical Sciences NIH/National Center for Advancing Translational Sciences
- Institutional Career Development NIH
- Lipolysis during Sleep and Cardiometabolic Consequences of Sleep Apnea NIH/NHLBI
- CTSA K12 Program at the University of Arkansas for Medical Sciences NIH
- Arkansas Children’s Nutrition Center (ACNC) USDA/ARS
- GR034191 Borsheim(Weber)Metabolism and Bioenergetics Core, Phase 2 Year 2 NIH/Nat. Inst. of General Medical Sciences via UAMS ACHRI Flow Through
Collaboration Network
Top Collaborators
- Carnitine deficiency alters fuel metabolism and voluntary wheel running in mice
- Inborn cardiorespiratory fitness and exercise training modulate brown adipose tissue function and plasticity in early life
- Carnitine deficiency alters fuel metabolism and voluntary wheel running in mice
- Inborn cardiorespiratory fitness and exercise training modulate brown adipose tissue function and plasticity in early life
- Carnitine deficiency alters fuel metabolism and voluntary wheel running in mice
- Carnitine deficiency alters fuel metabolism and voluntary wheel running in mice
- Carnitine deficiency alters fuel metabolism and voluntary wheel running in mice
- Carnitine deficiency alters fuel metabolism and voluntary wheel running in mice
- Carnitine deficiency alters fuel metabolism and voluntary wheel running in mice
- Inborn cardiorespiratory fitness and exercise training modulate brown adipose tissue function and plasticity in early life
- Inborn cardiorespiratory fitness and exercise training modulate brown adipose tissue function and plasticity in early life
- Inborn cardiorespiratory fitness and exercise training modulate brown adipose tissue function and plasticity in early life
- Inborn cardiorespiratory fitness and exercise training modulate brown adipose tissue function and plasticity in early life
- Inborn cardiorespiratory fitness and exercise training modulate brown adipose tissue function and plasticity in early life
- Inborn cardiorespiratory fitness and exercise training modulate brown adipose tissue function and plasticity in early life
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