skeletal muscle hypertrophy
Effects of oral adenosine-5′-triphosphate supplementation on athletic performance, skeletal muscle hypertrophy and recovery in resistance-trained men
11
A phosphatidylinositol 3-kinase/protein kinase B-independent activation of mammalian target of rapamycin signaling is sufficient to induce skeletal muscle hypertrophy
11
Irisin is a pro-myogenic factor that induces skeletal muscle hypertrophy and rescues denervation-induced atrophy
17
β-Hydroxy-β-methylbutyrate (HMβ) supplementation stimulates skeletal muscle hypertrophy in rats via the mTOR pathway
7
LIM and cysteine-rich domains 1 (LMCD1) regulates skeletal muscle hypertrophy, calcium handling, and force
19
Effect of protein/essential amino acids and resistance training on skeletal muscle hypertrophy: A case for whey protein
11
β-arrestin 1 regulates β2-adrenergic receptor-mediated skeletal muscle hypertrophy and contractility
13
Modeling Energy Dynamics in Mice with Skeletal Muscle Hypertrophy Fed High Calorie Diets
14
EFFECTS OF SUPPLEMENT-TIMING AND RESISTANCE EXERCISE ON SKELETAL MUSCLE HYPERTROPHY
34
Does aerobic training promote the same skeletal muscle hypertrophy as resistance
31
Coordination of metabolic plasticity in skeletal muscle
11
Swimming-induced exercise promotes hypertrophy and vascularization of fast skeletal muscle fibres and activation of myogenic and angiogenic transcriptional programs in adult zebrafish
20
Molecular networks in skeletal muscle plasticity
9
Human skeletal muscle biochemical diversity
10
Satellite cell depletion prevents fiber hypertrophy in skeletal muscle
9
Two tales concerning skeletal muscle
5
A role for Galgt1 in skeletal muscle regeneration
16
The problem with skeletal muscle series elasticity
14
Failed reinnervation in aging skeletal muscle
13
Differential response of skeletal muscles to mTORC1 signaling during atrophy and hypertrophy
16