Area of research
Cell Biology · Orthopedics and Sports Medicine
Research interest
Research interests include Muscle metabolism and nutrition, Sports Performance and Training, Muscle Physiology and Disorders, and Exercise and Physiological Responses.
Effects of end-stage osteoarthritis on markers of skeletal muscle Long INterspersed Element-1 activity
Whey Protein Supplementation Effects on Body Composition, Performance, and Blood Biomarkers During Army Initial Entry Training
Translational Significance of the LINE-1 Jumping Gene in Skeletal Muscle
LAT1 Protein Content Increases Following 12 Weeks of Resistance Exercise Training in Human Skeletal Muscle
Molecular Differences in Skeletal Muscle After 1 Week of Active vs. Passive Recovery From High-Volume Resistance Training
An intron variant of the GLI family zinc finger 3 (GLI3) gene differentiates resistance training‐induced muscle fiber hypertrophy in younger men
Effects of 12-Week Multivitamin and Omega-3 Supplementation on Micronutrient Levels and Red Blood Cell Fatty Acids in Pre-menopausal Women
Ketone Bodies Attenuate Wasting in Models of Atrophy
Skeletal Muscle Protein Composition Adaptations to 10 Weeks of High-Load Resistance Training in Previously-Trained Males
An optimized procedure for isolation of rodent and human skeletal muscle sarcoplasmic and myofibrillar proteins
Skeletal Muscle Myofibrillar Protein Abundance Is Higher in Resistance-Trained Men, and Aging in the Absence of Training May Have an Opposite Effect
Markers of Bone Health and Impact of Whey Protein Supplementation in Army Initial Entry Training Soldiers: A Double-Blind Placebo-Controlled Study
Ketone Bodies Attenuate Wasting in Diverse Models of Atrophy
Effects of 12‐week multivitamin supplementation on serum 25‐hydroxycholecalciferol levels in pre‐menopausal females
Effects of 12-Week Multivitamin Supplementation on Serum Folate Levels in Pre-Menopausal Females
Muscle fiber hypertrophy in response to 6 weeks of high-volume resistance training in trained young men is largely attributed to sarcoplasmic hypertrophy
Pre-training Skeletal Muscle Fiber Size and Predominant Fiber Type Best Predict Hypertrophic Responses to 6 Weeks of Resistance Training in Previously Trained Young Men
Bovine Milk Extracellular Vesicles (EVs) Modification Elicits Skeletal Muscle Growth in Rats
Skeletal muscle LINE-1 ORF1 mRNA is higher in older humans but decreases with endurance exercise and is negatively associated with higher physical activity
Skeletal muscle LINE-1 retrotransposon activity is upregulated in older versus younger rats
Muscle fiber hypertrophy in response to 6 weeks of high-volume resistance training in trained young men is largely attributed to sarcoplasmic hypertrophy
Five months of voluntary wheel running downregulates skeletal muscle LINE-1 gene expression in rats
A Comparison of Techniques for Estimating and Detecting Changes in Skeletal Muscle Cross-Sectional Area
Active and Passive Recovery Following High Volume Resistance Training: Markers of Molecular Gene Expression
LINE-1 Retrotransposition Increases with Age in Rodent Skeletal Muscle
Agreement Between Dual-Energy X-Ray Absorptiometry and a New Standing Bioimpedance Spectroscopy Device for Detecting Changes in Fat-Free Tissue
An Investigation Into Age-related Sarcopenia In Rodents
Molecular Implications of Active and Passive Recovery Following High Volume Resistance Training
Wheel Running Decreases LINE‐1 Gene Expression in Rodent Skeletal Muscle
Biomarkers associated with low, moderate, and high vastus lateralis muscle hypertrophy following 12 weeks of resistance training