Mammalian motor systems adapt to the demands of their environment. For example, muscle fibre types change in response to increased load or endurance demands. However, for adaptations to be effective, motoneurons must adapt such that their properties match those of the innervated muscle fibres. We used a rat model of chronic functional overload to assess adaptations to both motoneuron size and a key modulatory synapse responsible for amplification of motor output, C‐boutons. Overload of extensor digitorum longus (EDL) muscles was induced by removal of their synergists, tibialis anterior muscles. Following 21 days survival, EDL muscles showed an increase in fatigue resistance and a decrease in force output, indicating a shift to a slower phen...
Skeletal muscle shows a remarkable plasticity that permits functional adaptations in response to dif...
The musculoskeletal system is remarkably plastic during growth. The purpose of this study was to exa...
Skeletal muscle is the largest organ system in mammalian organisms providing postural control and mo...
Mammalian motor systems adapt to the demands of their environment. For example, muscle fibre types c...
Motoneurons demonstrate adaptations in their physiological properties to alterations in chronic acti...
The motor unit comprises a variable number of muscle fibres that connect through myelinated nerve fi...
Published in Muscle & Nerve, 2007; 35 (2):135-158 at www.interscience.wiley.comTo help reduce the ga...
The purpose of this study was to determine the plasticity of spinal motoneuron size and succinate de...
Muscle is highly plastic in terms of size (maximum force), speed, maximum power, and endurance. Well...
NEW FINDINGS:What is the central question of this study? Does combining endurance and hypertrophic s...
SYNOPSIS. The neuromuscular system can adapt to a variety of different kinds of chronic workloads. T...
Acute responses of motor units were investigated during submaximal voluntary isometric tasks followi...
Contractile strength training has been investigated in a large variety of training designs. The purp...
Although maximal force increases following short-term isometric strength training, the rate of force...
Hyperexcitability has been suggested to contribute to motoneuron degeneration in amyotrophic lateral...
Skeletal muscle shows a remarkable plasticity that permits functional adaptations in response to dif...
The musculoskeletal system is remarkably plastic during growth. The purpose of this study was to exa...
Skeletal muscle is the largest organ system in mammalian organisms providing postural control and mo...
Mammalian motor systems adapt to the demands of their environment. For example, muscle fibre types c...
Motoneurons demonstrate adaptations in their physiological properties to alterations in chronic acti...
The motor unit comprises a variable number of muscle fibres that connect through myelinated nerve fi...
Published in Muscle & Nerve, 2007; 35 (2):135-158 at www.interscience.wiley.comTo help reduce the ga...
The purpose of this study was to determine the plasticity of spinal motoneuron size and succinate de...
Muscle is highly plastic in terms of size (maximum force), speed, maximum power, and endurance. Well...
NEW FINDINGS:What is the central question of this study? Does combining endurance and hypertrophic s...
SYNOPSIS. The neuromuscular system can adapt to a variety of different kinds of chronic workloads. T...
Acute responses of motor units were investigated during submaximal voluntary isometric tasks followi...
Contractile strength training has been investigated in a large variety of training designs. The purp...
Although maximal force increases following short-term isometric strength training, the rate of force...
Hyperexcitability has been suggested to contribute to motoneuron degeneration in amyotrophic lateral...
Skeletal muscle shows a remarkable plasticity that permits functional adaptations in response to dif...
The musculoskeletal system is remarkably plastic during growth. The purpose of this study was to exa...
Skeletal muscle is the largest organ system in mammalian organisms providing postural control and mo...