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Cleiton Augusto Libardi

Universidade Federal de São Carlos · BR
Area of research
Orthopedics and Sports Medicine · Complementary and alternative medicine
Research interest
Research interests include Sports Performance and Training, Cardiovascular and exercise physiology, Exercise and Physiological Responses, and Sports injuries and prevention.
h-index
36
citations
5,944
works
157
NIH funding
primary concept
email

Recent publications

Large increases in resistance training volume do not impair skeletal muscle hypertrophy or anabolic–catabolic molecular signalling in trained individuals
bioRxiv (Cold Spring Harbor Laboratory) 2026cited by 0position: lastdoi
Molecular signatures underlying heterogenous hypertrophy responsiveness to resistance training in older men and women: a within-subject design
Journal of Applied Physiology 2025cited by 5position: middledoi
Resistance exercise and mechanical overload upregulate vimentin for skeletal muscle remodeling
American Journal of Physiology-Cell Physiology 2025cited by 2position: middledoi
Is there a volume saturation point for muscle hypertrophy in resistance-trained individuals? A narrative review
European Journal of Applied Physiology 2025cited by 1position: lastdoi
Individual muscle hypertrophy response is affected by the overload progression model and is associated with changes in satellite cell content
European Journal of Applied Physiology 2025cited by 1position: lastdoi
Proteomic profiling of skeletal muscle ribosomes from higher versus lower responders to 10 weeks of resistance training
bioRxiv (Cold Spring Harbor Laboratory) 2025cited by 0position: middledoi
Estrogen receptor signaling markers are poor predictors of muscle hypertrophy outcomes in young women and men
Journal of Applied Physiology 2025cited by 0position: lastdoi
Effects of Resistance Training Overload Progression Protocols on Strength and Muscle Mass
International Journal of Sports Medicine 2024cited by 23position: lastdoi
Higher resistance training volume offsets muscle hypertrophy nonresponsiveness in older individuals
Journal of Applied Physiology 2024cited by 23position: middledoi
Resistance training-induced changes in muscle proteolysis and extracellular matrix remodeling biomarkers in the untrained and trained states
European Journal of Applied Physiology 2024cited by 15position: lastdoi
Effects of low-load resistance training with blood flow restriction on muscle fiber myofibrillar and extracellular area
Frontiers in Physiology 2024cited by 10position: firstdoi
Skeletal muscle myosin heavy chain fragmentation as a potential marker of protein degradation in response to resistance training and disuse atrophy
Experimental Physiology 2024cited by 9position: middledoi
The effects of resistance training to near volitional failure on motor unit recruitment during neuromuscular fatigue
PeerJ 2024cited by 5position: middledoi
Correction to: Resistance training‑induced changes in muscle proteolysis and extracellular matrix remodeling biomarkers in the untrained and trained states
European Journal of Applied Physiology 2024cited by 5position: lastdoi
Acute and Chronic Resistance Training, Acute Endurance Exercise, nor Physiologically Plausible Lactate In Vitro Affect Skeletal Muscle Lactylation
International Journal of Molecular Sciences 2024cited by 3position: middledoi
Acute and Chronic Changes in Muscle Androgen Receptor Markers Are Not Associated with Muscle Hypertrophy in Women and Men
Medicine & Science in Sports & Exercise 2024cited by 2position: lastdoi
Androgen receptor markers do not differ between nonresponders and responders to resistance training-induced muscle hypertrophy
Journal of Applied Physiology 2024cited by 1position: lastdoi
Skeletal muscle myosin heavy chain protein fragmentation as a potential marker of protein degradation in response to resistance training and disuse atrophy
bioRxiv (Cold Spring Harbor Laboratory) 2024cited by 1position: middledoi
Resistance Exercise and Mechanical Overload Upregulate Vimentin for Skeletal Muscle Remodeling
bioRxiv (Cold Spring Harbor Laboratory) 2024cited by 0position: middledoi
Mechanisms of mechanical overload-induced skeletal muscle hypertrophy: current understanding and future directions
Physiological Reviews 2023cited by 186position: middledoi
The effects of resistance training to near failure on strength, hypertrophy, and motor unit adaptations in previously trained adults
Physiological Reports 2023cited by 19position: middledoi
Resistance training diminishes mitochondrial adaptations to subsequent endurance training in healthy untrained men
The Journal of Physiology 2023cited by 19position: middledoi
Proteolytic markers associated with a gain and loss of leg muscle mass with resistance training followed by high‐intensity interval training
Experimental Physiology 2023cited by 14position: middledoi
Time Course of Proteolysis Biomarker Responses to Resistance, High-Intensity Interval, and Concurrent Exercise Bouts
The Journal of Strength and Conditioning Research 2023cited by 6position: lastdoi
Resistance Training Diminishes Mitochondrial Adaptations to Subsequent Endurance Training
bioRxiv (Cold Spring Harbor Laboratory) 2023cited by 4position: middledoi
A Comparison Of Techniques Assessing The Morphological Characteristics Of Skeletal Muscle Fibers
Medicine & Science in Sports & Exercise 2023cited by 0position: middledoi
Changes in vastus lateralis fibre cross‐sectional area, pennation angle and fascicle length do not predict changes in muscle cross‐sectional area
Experimental Physiology 2022cited by 30position: middledoi
GPR56 mRNA Expression Is Modulated by Acute and Chronic Training Variable Manipulations in Resistance-Trained Men
Muscles 2022cited by 1position: lastdoi
RESISTANCE TRAINING INCREASES SARCOLEMMAL PROTEIN CONCENTRATIONS IN UNTRAINED COLLEGE-AGED WOMEN
Medicine & Science in Sports & Exercise 2022cited by 0position: middledoi
Frequent Manipulation of Resistance Training Variables Promotes Myofibrillar Spacing Changes in Resistance-Trained Individuals
Frontiers in Physiology 2021cited by 6position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Michael D. Roberts · Auburn University27 papers (2021–2026)Joshua S. Godwin · Pennsylvania State University23 papers (2021–2025)Andreas N. Kavazis · Auburn University18 papers (2021–2025)Carlos Ugrinowitsch · Rush University Medical Center15 papers (2019–2025)João Guilherme Almeida Bergamasco · Universidade Federal de São Carlos13 papers (2024–2026)Paulo H. C. Mesquita · Oklahoma Medical Research Foundation12 papers (2021–2025) · 12 papers (2019–2025)Maíra C. Scarpelli · University of Padua11 papers (2024–2025)Mason C. McIntosh · Auburn University10 papers (2022–2024)Bradley A. Ruple · University of Utah10 papers (2021–2024)C. Brooks Mobley · Auburn University10 papers (2022–2025)Diego Bittencourt · Universidade Federal de São Carlos10 papers (2024–2026) · 9 papers (2019–2025)Kaelin C. Young · Pacific Northwest University of Health Sciences8 papers (2021–2024)Casey L. Sexton · University of Alabama at Birmingham8 papers (2021–2024) · 8 papers (2024–2025) · 7 papers (2024–2025) · 7 papers (2024–2025)Felipe C. Vechin · University of North Texas6 papers (2022–2025)J. Max Michel · Florida Institute for Human and Machine Cognition6 papers (2024–2026)