Area of research
Physiology · Molecular Biology
Research interest
Research interests include Nutrition and Health in Aging, Adipose Tissue and Metabolism, Muscle Physiology and Disorders, and Cardiovascular and exercise physiology.
Global consensus on optimal exercise recommendations for enhancing healthy longevity in older adults (ICFSR)
The mitochondrial multi-omic response to exercise training across rat tissues
Molecular Transducers of Physical Activity Consortium (MoTrPAC): human studies design and protocol
Associations of accelerometry-measured and self-reported physical activity and sedentary behavior with skeletal muscle energetics: The Study of Muscle, Mobility and Aging (SOMMA)
Associations Between D3Cr Muscle Mass and Magnetic Resonance Thigh Muscle Volume With Strength, Power, Physical Performance, Fitness, and Limitations in Older Adults in the SOMMA Study
Skeletal Muscle Composition, Power, and Mitochondrial Energetics in Older Men and Women With Knee Osteoarthritis
Childhood adverse life events and skeletal muscle mitochondrial function
The Study of Muscle, Mobility and Aging (SOMMA): A Unique Cohort Study About the Cellular Biology of Aging and Age-related Loss of Mobility
Lower muscle mitochondrial energetics is associated with greater phenotypic frailty in older women and men: the Study of Muscle, Mobility and Aging
Mitochondrial Energetics in Skeletal Muscle Are Associated With Leg Power and Cardiorespiratory Fitness in the Study of Muscle, Mobility and Aging
A New Approach to Understanding Cancer-Related Fatigue: Leveraging the 3P Model to Facilitate Risk Prediction and Clinical Care
Skeletal muscle transcriptome response to a bout of endurance exercise in physically active and sedentary older adults
State of Knowledge on Molecular Adaptations to Exercise in Humans: Historical Perspectives and Future Directions
Molecular Transducers of Physical Activity Consortium (MoTrPAC): Mapping the Dynamic Responses to Exercise
Commentaries on Viewpoint: Rejuvenation of the term sarcopenia
12,13-diHOME: An Exercise-Induced Lipokine that Increases Skeletal Muscle Fatty Acid Uptake
Physical activity unveils the relationship between mitochondrial energetics, muscle quality, and physical function in older adults
Exercise increases mitochondrial complex I activity and DRP1 expression in the brains of aged mice
Gastric bypass surgery with exercise alters plasma microRNAs that predict improvements in cardiometabolic risk
REDD1 induction regulates the skeletal muscle gene expression signature following acute aerobic exercise
Skeletal Muscle Mitochondrial Energetics Are Associated With Maximal Aerobic Capacity and Walking Speed in Older Adults