Low-frequency neuromuscular electrical stimulation (NMES) has been used as an endurance exercise model. This study aimed to test whether low-frequency NMES increases the phosphorylation of anabolic signaling molecules and induces skeletal muscle hypertrophy, as seen with high-frequency NMES. Using Sprague-Dawley rats, 1 bout of exercise (with dissection done immediately (Post0) and 3 h (Post3) after exercise) and another 6 sessions of training were performed. All experimental groups consisted of high- and low-frequency stimulation (HFS: 100 Hz; LFS: 10 Hz). Periodic acid-Schiff (PAS) staining was conducted to investigate type II fiber activation, and western blot analysis (WB) was conducted to examine whether NMES leads to anabolic intracel...
Regulation of skeletal muscle mass is highly dependent on contractile loading. The purpose of this s...
Import JabRef | WosArea Physiology; Sport SciencesInternational audienceThe aim of the present study...
Anaerobic exercise has been advocated as a prescribed treatment for the management of diabetes: howe...
Copyright © 2013 Arata Tsutaki et al. This is an open access article distributed under the Creative ...
Transcutaneous neuromuscular electrical stimulation (NMES) can be applied as a complementary interve...
The aim of this study was to analyze the effects of high-frequency neuromuscular electrical stimu...
The purpose of the present study is to investigate the effects of low-frequency electrical muscle st...
The molecular responses to acute resistance exercise are well characterized. However, how cellular s...
The molecular responses to acute resistance exercise are well characterized. However, how cellular s...
The capability of regeneration for skeletal muscle after injury depends on the differentiation and p...
Effects of fibre type composition and type of contraction on low-frequency fatigue (LFF) were invest...
Endurance training induces a partial fast‐to‐slow muscle phenotype transformation and mitochondrial ...
BACKGROUND: Transcutaneous neuromuscular electrical stimulation (NMES) can be applied as a complemen...
BACKGROUND: Transcutaneous neuromuscular electrical stimulation (NMES) can be applied as a complemen...
Regulation of skeletal muscle mass is highly dependent on contractile loading. The purpose of this s...
Import JabRef | WosArea Physiology; Sport SciencesInternational audienceThe aim of the present study...
Anaerobic exercise has been advocated as a prescribed treatment for the management of diabetes: howe...
Copyright © 2013 Arata Tsutaki et al. This is an open access article distributed under the Creative ...
Transcutaneous neuromuscular electrical stimulation (NMES) can be applied as a complementary interve...
The aim of this study was to analyze the effects of high-frequency neuromuscular electrical stimu...
The purpose of the present study is to investigate the effects of low-frequency electrical muscle st...
The molecular responses to acute resistance exercise are well characterized. However, how cellular s...
The molecular responses to acute resistance exercise are well characterized. However, how cellular s...
The capability of regeneration for skeletal muscle after injury depends on the differentiation and p...
Effects of fibre type composition and type of contraction on low-frequency fatigue (LFF) were invest...
Endurance training induces a partial fast‐to‐slow muscle phenotype transformation and mitochondrial ...
BACKGROUND: Transcutaneous neuromuscular electrical stimulation (NMES) can be applied as a complemen...
BACKGROUND: Transcutaneous neuromuscular electrical stimulation (NMES) can be applied as a complemen...
Regulation of skeletal muscle mass is highly dependent on contractile loading. The purpose of this s...
Import JabRef | WosArea Physiology; Sport SciencesInternational audienceThe aim of the present study...
Anaerobic exercise has been advocated as a prescribed treatment for the management of diabetes: howe...