Elisabet Borsheim
Sourced from institutional research profiles (UAMS TRI or ARA).
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Biography and Research Information
OverviewAI-generated summary
Elisabet Borsheim's research investigates how physiological conditions and interventions affect cellular bioenergetics and metabolism. Her recent publications examine alterations in peripheral blood mononuclear cell bioenergetics following burn injury, the influence of cardiorespiratory fitness and exercise on brown adipose tissue function in early life, and the metabolic consequences of carnitine deficiency in mice, including its impact on voluntary physical activity. Borsheim's work contributes to understanding the complex interplay between metabolic pathways, cellular energy production, and physiological states in various biological contexts.
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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